Tuesday, 29 September 2026

Chuck's picture corner to Sept. 29, 2026

The great fall has begun, leaves have begun to cover the ground, night time temps are cool. We enjoyed entertainment from long ago society.

Heading to the airport as R. and B. are leaving on a jet plane.

The Ottawa River

Leaving the mountains.

Taking R. to vote before she leaves for Spain

We enjoyed a good Quebec meal here after an afternoon of entertainment.

Sticks and stones.

The shiny armour of the French knight.

The tournament lasted about an hour.

The Polish knight is on the left.

Sadly the local Montpellier knight was the looser.

even the wee folk were there.

This fellow was an excellent rider.

attendees wore their finest furs

lots of vendors

lol

on our way to the fair



Enjoy your day.
https://chuckincardinal.blogspot.com/



Medieval Manuscripts Reveal a 3,500-Year-Old Viral Secret Hidden in Parchment

By D. Kearns, U. College Dublin, Sept. 23, 2026

Created in Northumbria in the eighth century, this copy of the Epistles of St Paul is among the oldest books held in the Trinity College Cambridge Library. 
Credit: Reproduced with kind permission of the Master and Fellows of Trinity College, Cambridge

Medieval parchment preserved two histories: the words written by scribes and the DNA of a sheep virus that had circulated for thousands of years.

Animal skins used to make historic manuscripts have revealed the 3,500-year history of the sheep pox virus (SPPV). By recovering viral DNA from parchment, researchers traced the pathogen across Bronze Age Eurasia and medieval Europe, turning celebrated documents such as the York Gospels into unexpected records of animal health.

The international project, led by University College Dublin, brought together geneticists, historians, virologists, protein chemists, and conservators. Their findings provide the first genetic evidence that sheep pox was affecting European flocks centuries before modern veterinary records began.

A Virus Hidden In Parchment

Sheep pox is a highly contagious disease that can spread quickly through a flock. It is especially dangerous to young animals and can cause high death rates while reducing the production of wool, meat, and milk.

Parchment was commonly made from processed sheep, goat, or cattle hides. Although the manufacturing process removed most visible signs of the animal, fragments of its DNA and traces of pathogens could remain trapped in the material. Each surviving page can therefore preserve information about the animal from which it was made.

DNA recovered from the medieval manuscripts revealed that the sheep pox virus has been affecting livestock for thousands of years. 
Credit: Reproduced with kind permission of the Master and Fellows of Trinity College, Cambridge



“The recording of ancient DNA of pathogens has completely changed our understanding of infectious disease in the past, and here we show that parchment can also preserve animal pathogen DNA. It is possible that archives and libraries around the world also contain the genetic traces of disease outbreaks in animals in the past,” said Louis L’Hôte, a UCD PhD candidate and the study’s lead author.

“These genomes help us understand how these pathogens evolved and how they impacted past societies, such as sheep pox virus, which we show has been affecting Eurasian sheep herds for at least three and a half millennia.”

Historic Manuscripts Reveal Infected Flocks

In the study, published in Science Advances, the researchers reconstructed more than 3,500 years of sheep pox virus evolution. They identified its DNA in several medieval manuscripts, including documents with considerable historical importance.

One was the 1,000-year-old York Gospels, among the finest illuminated manuscripts to survive from the early Anglo-Saxon period. The researchers also examined the Corpus Glossary at Corpus Christi College Cambridge, one of the earliest English dictionaries, and other medieval works from Britain and continental Europe.

Several pages within the same manuscripts carried sheep pox virus DNA. That pattern suggests the books were assembled using hides from multiple infected animals and raises the possibility that their pages captured evidence of outbreaks affecting entire flocks.

The discovery shows that manuscripts can reveal more than intellectual and artistic history. Because livestock were central to medieval farming, clothing, food production, and trade, the diseases recorded in parchment may also offer clues about the economic pressures faced by past communities.

Unexpected DNA on Goat and Cattle Skins

One particularly surprising result was the detection of sheep pox virus on parchment identified as calfskin and goatskin. These findings could represent rare cross-species infections, although the researchers said contamination during the parchment-making process is another possible explanation.

“Parchment making has been considered a vanishing craft, but we are beginning to understand just how much of the past it has retained. This project shows that parchments not only preserve our cultural history for hundreds of years, but also the landscape of disease in our livestock in the medieval period,” said Dr. Kevin G. Daly, an associate professor at the UCD School of Agriculture and Food Science and the study’s supervising author.


The Life of Earth
https://chuckincardinal.blogspot.com/

Just 5 Infections Responsible For More Than 2 Million New Cancer Cases Annually

29 Sept. 2026, By J. Cockerill

(Kateryna Kon/Science Photo Library RF/Getty Images)

Cancer may seem like an inevitable part of life, but there are so many factors that can help reduce your risk.

When we think about reducing cancer risk, we usually think of lifestyle factors: smoking, alcohol consumption, exercise.

But a new study by a team of cancer epidemiologists, published in The Lancet Oncology, highlights just how much infections actually contribute to your cancer risk.

Based on global data, infections were linked to 12 percent of all cancers that were diagnosed in 2024. That's 2.3 million new cancer cases.

Five key pathogens were responsible for nearly all of those infection-linked cases.

The most common offender was a stomach bacterium, Helicobacter pylori, which was involved in 4 percent of the total cancers diagnosed in 2024 – that's 760,000 cases.

H. pylori is a really common bug: statistically speaking, every second person in the world is infected with it. For most people, infection with H. pylori causes no symptoms, but certain strains can cause gastric ulcers and ultimately stomach cancers.

The human papillomavirus (HPV) was also linked to 4 percent of the total new cancers diagnosed in 2024, which is 750,000 cases.

https://www.youtube.com/watch?v=xNJgf9Z5v4M

Hepatitis B virus (HBV) was linked to 2 percent of new cases, Epstein-Barr virus (EBV) was linked to 1 percent, and hepatitis C virus (HCV) was linked to less than 1 percent.

EBV is a newcomer to this list. Since previous global estimates were published, the evidence that EBV causes cancer has grown substantially.

It's pretty freaky to think that these infections, which can already make us very sick in their own right, could also lead to cancer, but these findings also give us an opportunity.

They suggest proper treatment and prevention of these infections could make a really big difference to cancer rates across the world.

"Our updated estimates highlight the continued importance of infection control in global cancer prevention strategies," lead author Harriet Rumgay and her colleagues note.

"Many carcinogenic infectious agents have existing or potential preventive interventions, including vaccines, diagnostics, treatments, and safe injection practices."

For many of these pathogens, it's a matter of actually getting those public health interventions to people.

"Despite progress in vaccination and screening, infection-related cancers remain a major challenge globally, with persistent inequities especially impacting low-income and middle-income countries," the authors add.

Three-quarters of infection-related cancers came from low-income and middle-income countries, predominantly in eastern Asia, African nations south of the Sahara, and southeastern Asia.

The bulk of infection-linked cancer diagnoses in 2024 were made in eastern Asia, making up 42 percent of the global total. The infections linked to those diagnoses were mainly H. pylori and HBV.

Getting more people vaccinated for HPV (especially men, who have often not been targeted for HPV vaccines) and HBV should make a huge dent in global cancer rates, but for H. pylori, the answer is not so simple.

"So far, there has been little progress in developing H. pylori vaccines or highly effective H. pylori therapies that can minimize ineffective antibiotic exposure, which would be highly impactful for controlling gastric cancer globally," the authors write.

We also have no vaccine or any other methods to control the spread of EBV (which infects about 95 percent of adults), though several clinical trials for vaccines are underway.

"Although investment in the development of new preventive vaccinations for EBV, H. pylori, and Kaposi's sarcoma [another cancer linked to viruses] is key, many prevention strategies are known to be cost-effective," the authors write.

"Unfortunately, such strategies are often underused due to societal, financial, and political barriers, often in the settings that need them most.

"Considering the overwhelming economic and social costs of cancer, investment in prevention is crucial."


The Life of Earth
https://chuckincardinal.blogspot.com/

Monday, 28 September 2026

Dogs Can Pick Out Word Patterns in Speech, a Trick Once Thought Uniquely Human

28 Sept. 2026, By E. Öz

(Mary Swift/iStock/Getty Images Plus)

Your dog may prick up its ears at its name or run to the door when it hears "walk." But can its brain separate unfamiliar words when it hears them without a pause?

In a new experiment, dogs listened to a continuous recording of invented words.

No pause indicated where one word ended and the next began.

Yet their brains responded to recurring consonants, a clue to which syllables belonged together.

The same clear word-level response did not appear when vowels defined the words.

The study published in Science does not show that dogs learned what the words meant.

It reveals a preference previously demonstrated only in humans: when dividing continuous speech into parts, the brain can prioritize consonant patterns over the louder vowels.

At first, that preference sounds odd. Vowels carry more acoustic energy and stand out more clearly than consonants. Why would a listener favor quieter sounds?

Across many human languages, consonants often provide more information about which word is being spoken.

The researchers wanted to know whether dogs, who spend their lives hearing us talk, might pick up on that usefulness too.

Boglárka Morvai and colleagues at Eötvös Loránd University in Hungary devised a way to ask without relying on dogs to follow commands.

They played recordings of meaningless, three-syllable words to 20 adult dogs while electrodes resting on their heads measured electrical brain activity.

Twenty adults heard the same recordings.

The speech flowed continuously. No silence announced the next word. In one recording, recurring consonant patterns grouped syllables into invented words. In another, vowel patterns did that job.

A third scrambled the syllables, leaving no recurring word pattern to discover.


Zeila wears electrodes used to record dogs' brain activity while they listen to speech.
 (Sarolta Szilágyi)



The vowels were acoustically stronger. If dogs' brains merely followed the most prominent sounds, vowels had the advantage. If the animals tracked the patterns useful for dividing up the stream, consonants might win despite being quieter.

The researchers measured whether brain signals lined up with the invented words' rhythm despite the absence of audible boundaries. They also compared responses to the different streams.

The result was clear.

When consonants repeated, dogs' brain signals synchronized with the rhythm of the three-syllable invented words, indicating that they followed the recurring units in the stream.

With vowel-defined words, the word-level response was not significantly stronger than in the scrambled recording. Humans also favored consonants, but their brains tracked the vowel-defined pattern more strongly than the scrambled stream too.

"What made the result especially interesting was that this bias had not previously been demonstrated in other species, not even in non-human primates, yet we found it in dogs," Morvai and study co-author Dorottya Rácz told ScienceAlert in a joint response.

They considered two possibilities: Perhaps consonant preference requires the specialized language abilities of a human brain. Or perhaps repeated experience with speech can help an animal learn which sounds provide useful clues.

"This suggests that at least some aspects of speech processing do not require a brain that is specifically pre-wired for language; regular experience with speech may be enough for them to develop," Morvai and Rácz said.

The experiment cannot establish what caused the dogs' preference. Nor does finding the same bias mean dogs process speech exactly as humans do.

Both species' brains followed the rhythm of syllables, but only humans showed clear tracking of individual speech sounds. "For us, each speech sound is a separate unit, whereas for dogs, syllables form the smallest units of processing," Morvai and Rácz explained.


Researcher Attila Andics prepares an EEG recording with Zeila. The electrodes on her head measure brain activity. 
(Sarolta Szilágyi)



That does not mean dogs cannot distinguish individual sounds. Previous research from the team indicates that they can, although they may give small sound changes less attention when processing familiar words. The invented words in this experiment had no assigned meanings, so the results reveal pattern tracking, not comprehension.

The researchers also examined whether dogs needed to hear human speech from early puppyhood. Eleven dogs were thought to have entered a speech-rich home before 12 weeks of age, while nine were thought to have done so later. Both groups showed a consonant bias.

"Although the sample was small, we were still able to detect a consonant bias in dogs that had not lived in a speech-rich home during their first weeks of life," Morvai and Rácz said.

Intensive early exposure may therefore not be essential, though the dogs' histories before adoption were not always complete.

Dogs whose early lives are better documented could help answer when the preference develops. Comparing dogs with wolves could address a different mystery: whether the underlying capacity predates domestication or emerged during dogs' long association with humans.

Your dog might know what follows the word "walk." The surprising finding here is that even when the sounds carry no meaning, its brain can follow a pattern in the uninterrupted flow of speech.


The Life of Earth
https://chuckincardinal.blogspot.com/

Scientists Blasted Water With Light 10 Billion Times Brighter Than Sunlight. It Still Didn't Evaporate Faster.

28 Sept. 2026, By I. Farkas

(Digital Art/The Image Bank RF/Getty Images)

One of science's defining aspects is that its findings and ideas are open to empirical debate.

But with plate tectonics and feathered dinosaurs firmly entrenched, the next point of debate may hinge upon the possibly revolutionary suggestion that light can evaporate water – but not by heating it.

Discovering a new type of evaporation after all this time would be startling. Yet scientists have reported multiple lines of evidence for this "photomolecular effect", with ostensibly major applications in climate forecasting and water desalination.

However, a new paper in the journal PNAS suggests these findings may stem from the methods used in those studies, rather than an innate physical property of light and water.

Molecular physicists from the Max Planck Institute for Polymer Research in Mainz, Germany, recreated some of the conditions of past studies and directly quantified the results at both the macroscopic and microscopic levels to explore what interfacial water – the boundary between the water's surface and the air – really does when it's bombarded with light.

First, the researchers subjected a pure water sample to blue, green, and red visible light, using a confocal displacement sensor to track the water's surface height under "light on" and "light off" conditions across two humidity environments.


The experimental setup. 
(Chen et al., PNAS, 2026)



By measuring how far the water's surface receded, they could directly determine its evaporation rate. In contrast, past experiments may have used more indirect measurements.

These wavelengths of light, and the angle at which the diode lasers impacted the water sample, were consistent with such photomolecular experiments.

Surprisingly, they found no change.

"Taken together, these measurements show that visible illumination at intensities comparable to solar flux does not measurably enhance evaporation at a flat air–water interface," the researchers say.

With these macroscopic evaporation measurements in hand, they turned their observations to the microscopic level to see what was happening to water molecules at the air-water interface; would this match the macroscopic evaporation observations?

To find out, they used the same illumination conditions as above and observed the effects via a surface-specific vibrational probe.

This technique is sensitive to the vibrations of oxygen-hydrogen bonds in water molecules at depths of just a few angstroms (a few ten-billionths of a meter, or around a hundred-millionths of an inch), comprising the uppermost two or three layers of water.

Because this technique is sensitive to the orientation, bonding strength, and local field environment of oxygen-hydrogen groups, it probes the very essence of the photomolecular effect.

Intriguingly, the spectra (light signatures) from this experiment again showed no measurable changes, suggesting that visible light left the hydrogen bonding of water molecules at the surface untouched, consistent with the unchanged evaporation rate.


The vibrational probe revealed no measurable change in the structure of interfacial water under visible light. (Chen et al., PNAS, 2026)



Importantly, the experiments showed no modifications at 532 nanometers, the wavelength of green light that facilitated the strongest response in previous studies, the researchers note.

"Within the experimentally accessible regime investigated here, no evidence is found for a nonthermal visible light–driven modification of interfacial water or evaporation dynamics," they add.

But wait, what would happen if one ratchets up the power? The resulting buffed-up electric field may still produce the sought-after photomolecular effect, which is thought to be field-dependent.

So, the researchers performed a "we're not playing around anymore" experiment in which they increased the peak intensities by more than ten orders of magnitude for short periods.

They blasted the water surface with visible and near-infrared light pulses lasting one to a few trillionths of a second (about 1 to 3 picoseconds); after all, they wanted to maximize peak power, not boil spaghetti.


Even intense ultrafast pulses of light produced no change in the structure of interfacial water.
 (Chen et al., PNAS, 2026)



But even these extreme photon fluxes could not measurably perturb the hydrogen bonds at the air-water interface.

To contextualize these findings with those of past studies, one may consider the medium used.

Previous research may have utilized hydrogels, porous matrices, water droplets, or other potentially mechanically sensitive configurations.

As a result, the signals associated with these experiments could have been influenced by the absorption and scattering of light, heat transport within the materials, the concentration of vapor near the surface, or the physical push exerted by the photons – solar sails, anyone?

These processes can also affect indirect measurements tracked in previous studies, including changes in mass, light spectra recorded above the water, or droplet shape.

So, for one, this work highlights the stability of hydrogen bonds at the air-water interface, providing a reference for testing other chemical or environmental scenarios.

Finally, the researchers explain that, across the wavelength, intensity, humidity, and time ranges explored here, visible light does not alter evaporation or molecular kinetics as would be expected of the photomolecular effect.

"Beyond resolving a specific controversy, these findings provide a robust benchmark for light–water interactions at interfaces and supply clear physical constraints for the design and interpretation of light-driven evaporation and water-harvesting technologies," the researchers conclude.

"They show that substantial visible-light-induced evaporation enhancements must arise from photothermal or geometric effects in complex, absorbing materials rather than from a new photophysical pathway intrinsic to liquid water."


The Life of Earth
https://chuckincardinal.blogspot.com/

3-Million-Year-Old Bones Reveal an Unexpected Chapter in Human Evolution

By Keck School of Medicine of USC, Sept. 27, 2026

On the right is a depiction of an early Homo human ancestor characterized by relatively greater bone strength of the femur in the thigh compared to the humerus in the arm. To the left is a depiction of an older human ancestor, Australopithecus, characterized by more equivalent strength in the bones of the arm and thigh. 
Credit: Cullen Townsend

By comparing the strength of fossilized limb bones, a research team led by the Keck School of Medicine of USC found new evidence about how early human ancestors moved.

For Australopithecus, an early human ancestor that lived roughly 2 million to 4 million years ago, walking upright did not necessarily mean leaving the trees behind. A new analysis of fossilized limb bones suggests these ancestors combined substantial time in trees with a way of using their legs that resembled our own.

The findings help address a question about bipedalism, or walking on two legs, a defining feature of humans compared with other apes. When did our ancestors shift from moving both through trees and across the ground to living almost entirely on the ground?

An international team led by the Keck School of Medicine of USC investigated that transition using fossils from seven individuals belonging to Australopithecus and its descendants, early Homo. The fossils ranged from about 1.5 million to 3.7 million years old. Published in Science Advances, the study points to a major change in movement around the transition between these two groups.

Bones preserve evidence of everyday movement

Bones can reveal something about an individual’s life because they adapt to the forces placed on them. Animals that regularly move through trees tend to have relatively strong arm bones, while humans who walk upright on the ground tend to have stronger thigh bones. Comparing those strengths offers evidence of how an individual used its limbs, complementing studies of skeletal features that evolved over many generations.

To examine that evidence, the researchers used computed tomography, or CT, scans. These scans use X-rays to produce detailed images of bones and their internal structure. The team measured the thickness and structure of the bone shafts, estimated their resistance to bending and twisting, and compared the upper arm, thigh, and shin bones within each individual.

The early Homo individuals, which lived about 1.8 million to 2.3 million years ago, showed a pattern resembling modern humans. Their thigh bones were relatively strong compared with their arm bones, suggesting a greater reliance on walking on the ground. The results support the idea that a substantial behavioral shift had occurred by roughly 2 million years ago.

“We’re proposing that relative limb strength is a ‘threshold trait’—a difference that marks an important and fundamental shift in behavior between Australopithecus and Homo,” said Kristian J. Carlson, PhD, the study’s lead author and a professor of clinical medical education at the Keck School of Medicine.

Australopithecus combined walking with tree travel

The Australopithecus bones showed a different combination. Their arms were strong relative to their thighs, much like those of modern apes. Within the legs, however, the relationship between thigh and shin strength followed a more human-like pattern. Together, those comparisons suggest that the upper limbs remained important for moving through trees while the lower limbs supported upright walking.

“Australopithecus combined an ape-like upper limb strength with a human-like pattern in the legs, suggesting they had a unique movement strategy that has no modern comparison,” Carlson said.

That combination bears directly on a longstanding disagreement about how much time Australopithecus spent in each environment. Some researchers have argued that these ancestors mostly walked upright on the ground. According to Carlson, the new evidence instead suggests that movement in trees remained a substantial part of their lives.

Did walking farther help brains grow?

The shift in limb use also roughly coincides with the beginning of a dramatic increase in brain size. Scientists have proposed explanations for that growth involving language, tool use, and changes in how human ancestors found food. Carlson and his colleagues suggest that walking greater distances on the ground may help connect the changes in limb strength and brain size.

“We speculate that the shift toward more walking may have placed new demands on the body and brain, which could help explain why these changes happened around the same time,” Carlson said.


The birth of Modern Man
https://chuckincardinal.blogspot.com/


Sunday, 27 September 2026

Scientists Discover a “Fire Amoeba” That Defies Life’s Heat Limit

By Cell Press, Sept. 26, 2026

A sulfur pool at Lassen National Park. 
Credit: Shutterstock

A newly identified amoeba from a volcanic region of California is challenging long-held assumptions about how much heat complex cells can withstand.

Heat can quickly become destructive to complex cells. As temperatures rise, proteins can lose their shape, DNA can sustain damage, and essential cellular processes can begin to fail. This has made extreme heat largely the domain of bacteria and archaea.

A newly discovered amoeba is now pushing that boundary higher. Researchers found that the microscopic organism can actively grow and reproduce at 63°C (145°F), hotter than the long-accepted growth limit for eukaryotes. It was discovered in the geothermal waters of California’s Lassen Volcanic National Park and is described in a study published in the journal Cell.

The amoeba can survive even hotter conditions. When exposed to temperatures as high as 70°C (158°F), it changes form and develops a protective outer layer, allowing it to recover once temperatures fall.

“This finding pushes the bounds of what we thought was possible, which is incredibly exciting,” says corresponding author Angela Oliverio of Syracuse University. “There could be more eukaryotes that can survive at even higher temperatures than we know of.”

Why Extreme Heat Is Such a Challenge

Some microorganisms thrive at temperatures far beyond anything humans could tolerate. The known growth record belongs to Methanopyrus kandleri, an archaeon found around deep-sea hydrothermal vents that can grow at 122°C (252°F).


Incendiamoeba cell undergoing mitosis at 63ºC. DNA is colored blue, tubulin is pink, and membrane is gray.
 Credit: Felix Mikus



Archaea and bacteria have different cellular organization from eukaryotes. Eukaryotic organisms, including animals, plants, fungi, amoebae, and many other microorganisms, contain a nucleus and other specialized cellular structures.

For decades, roughly 60°C (140°F) was considered the upper growth limit for eukaryotes. Only a small number of species were known to approach it.

A Search Through Volcanic Waters

Scientists had previously detected amoebae near geothermal springs where temperatures can exceed 140°F. But detecting an organism in such an environment does not prove that it can actively grow and reproduce there. Cells can be carried in from cooler areas, while some organisms may survive brief exposure without thriving.

Oliverio and her colleagues wanted to determine whether amoebae associated with geothermal habitats were truly adapted to extreme heat.

From 2023 through 2025, the researchers collected microorganisms from geothermal streams in Lassen Volcanic National Park in California’s Cascade Range. Temperatures at the sampling sites ranged from about 47°C to 64°C (117°F to 147°F).

One previously unknown amoeba stood out. In laboratory experiments, it grew vigorously at 57°C (135°F), reaching the highest temperature previously documented for amoeba growth. The researchers then continued raising the temperature.

At 63°C (145°F), they observed the amoeba undergoing mitosis, the process eukaryotic cells use to divide. This showed that the organism was not simply surviving the heat. It was still able to grow and reproduce.

Meet the “Fire Amoeba”

The researchers named the species Incendiamoeba cascadensis, roughly translated as “fire amoeba from the Cascades.”

Above 63°C (145°F), the amoeba changed shape and produced a protective outer layer instead of continuing to grow normally.


Incendiamoeba cascadensis cell at 55ºC, scale bar 5µm. 
Credit: Beryl Rappaport



Even after exposure to 70°C (158°F), the amoebae could recover when researchers returned them to cooler conditions. The organism was shown to grow and divide at 63°C (145°F), while 70°C (158°F) represents a survival temperature rather than an active growth temperature.

How Its Cells Cope With Heat

Sequencing the amoeba’s genome revealed possible explanations for its unusual heat tolerance. Compared with amoebae adapted to milder environments, I. cascadensis carries additional genes associated with maintaining proteins and repairing DNA.

Proteins depend on precise three-dimensional structures to function, and high temperatures can cause them to unfold or clump together. Heat can also damage other cellular components, increasing the importance of repair and maintenance systems.

The fire amoeba’s proteins also contain more positively charged amino acids on their surfaces, a characteristic found in some highly heat-tolerant bacteria and archaea. These properties may help proteins remain stable at temperatures that would disrupt similar molecules in less heat-adapted organisms.

“Even though these organisms are so different, there’s convergence in how protein properties are selected for stability under high temperatures,” says first author H. Beryl Rappaport, a doctoral student at Syracuse University.

A Small Record With Bigger Implications

The new record extends the known temperature range for eukaryotic growth by only a few degrees. But biological limits often reflect the organisms scientists have found and tested rather than an absolute boundary that has been proven impossible to cross.

The discovery raises the possibility that other organisms may also survive or reproduce beyond currently accepted environmental limits.

Oliverio says the findings could encourage researchers to test environmental tolerances without allowing previous records to determine where experiments should stop.

“Every time we set a new world record in sports, it’s amazing and celebrated, even if it’s by milliseconds,” Oliverio says. “We should do the same for amoebae. These very small changes expand our understanding of what we think is possible.”


The Life of Earth
https://chuckincardinal.blogspot.com/

Mutant Sperm Are Waging a Fierce Survival-of-the-Fittest Battle Inside Men's Testicles

25 Sept. 2026, By M. Starr


A cross-section of a seminiferous tubule, where sperm cells are produced. 
(Steve Gschmeissner/Science Photo Library RF/Getty Images)



The competition for dominance starts long before sperm make their last mad dash to reach the egg.

Deep inside the testicles, the jostle for genetic survival can start before the sperm themselves are even formed.

Mutations that arise in the stem cells that produce sperm can give those cells an advantage, allowing them to proliferate in a survival-of-the-fittest battle against their unmutated housemates.

There's just one problem. What's 'fittest' in the testicles isn't necessarily beneficial to the offspring that those sperm may eventually help create.

A sweeping analysis of mutations in human sperm has revealed that this hidden evolutionary contest is far more extensive than scientists realized.

And the consequences could be significant.

Many of the mutations identified are associated with developmental disorders – and as men age, these mutations become increasingly common in their sperm, raising the chances of passing them on to their progeny.

https://www.youtube.com/watch?v=JaNmph3LmqQ

The sperm production line never sleeps. Every day, the testes of an adult man can churn out somewhere between 150 and 275 million gametes.

Powering that factory are spermatogonial stem cells, which sit along the seminiferous tubules and continually divide, both renewing their own population and producing cells that will go on to develop into sperm.

Every time a cell divides, though, there's a chance that a mutation will arise from slightly janky replication of the DNA. Many of these mutations will be nothingburgers… but every now and then, one pops up that gives the new stem cell some sort of advantage.

That mutant stem-cell lineage can then proliferate at the expense of the surrounding cells, spreading along the tubule and producing more sperm that carry the mutation.

Scientists already knew this could happen. Previous research identified mutations in 13 genes that appear to give sperm-producing stem cells this competitive edge – all of which are associated with severe developmental disorders.

But no one fully understood the extent of the phenomenon – so a team led by computational biologist Matthew Neville of the Wellcome Sanger Institute in the UK embarked on a quest to find out.

Using an ultra-accurate DNA sequencing technique called NanoSeq, the researchers analyzed sperm samples from men aged 24 to 75.

They were looking for something very specific – signs that mutations were being positively selected in the male germline. That means mutations present in higher numbers than you would expect from random chance – suggesting that they had a competitive edge.

And boy howdy did they find it.

Their search turned up more than 35,000 germline coding mutations. From these, the researchers identified 40 genes showing signs of significant positive selection.

Thirty-one of those genes had never before been implicated in this strange evolutionary battle. The other nine were among the 13 already known.

Researchers identified 40 genes showing signs of positive selection in the male germline, 31 of which had not previously been identified. 
(Neville et al., Nature, 2025)

Many of them have troubling implications for the offspring that inherit them. Of the 31 newly identified genes, 27 are linked to genetic disorders, while 16 are also known cancer genes.

Those aren't just abstract findings. Mutations previously seen repeatedly in children with developmental disorders were 66 times more common in the sperm dataset than expected from the underlying mutation rate.

Age added another facet to the findings. Across the sperm genomes they analyzed, the researchers found that mutations accumulated at a steady rate of around 1.67 per year.

Between that accumulation and the positive selection for advantageous mutations, the mutation load climbed much higher as men aged.

The researchers estimated that, at age 30, around 2 percent of a man's sperm carried a likely disease-causing mutation. By age 70, that figure had risen to around 4.5 percent.

Without positive selection, their model predicted much lower rates: around 0.73 percent at age 30 and 1.6 percent at age 70.


The proportion of sperm carrying known driver mutations (top)
 and likely disease-causing mutations (bottom)
 increased with age. The bottom panel shows how much higher the observed rate was than expected from mutation alone. (Neville et al., Nature, 2025)

That suggests that the evolutionary battle royale taking place inside the testes appeared to increase the prevalence of potentially disease-causing mutations by roughly two- to threefold.

Crucially, though, that doesn't mean a 4.5 percent chance of passing a genetic disorder to a child.

A mutation detected in sperm still has a long way to go before it ends up in a living baby.

Some affected sperm may be less likely to fertilize an egg, while some mutations may result in an embryo that doesn't survive or a pregnancy that ends in loss.

The researchers caution that the relationship between mutations in sperm and the prevalence of disorders at birth remains uncertain.

And, interestingly, evolution itself seems to provide another filter.

When the researchers looked at genetic variation across the wider human population, they found evidence that many of the mutations favored during sperm production are selected against over successive generations.

So the testicles create the problem, and the world cleans up their mess.

Sounds about right, really.


The Life of Earth
https://chuckincardinal.blogspot.com/

Over 70% of US Coastal Areas Are Sinking Faster Than 1 Millimeter a Year

26 Sept. 2026, By D .Nield

(Art Wager/iStockphoto/Getty Images)

It's not just rising sea levels that we need to worry about: In many parts of the world, the ground is subsiding beneath our feet too.

Sinking land can happen just about anywhere, both naturally and due to human interference with ecosystems and landscapes.

However, it has the potential to be particularly damaging around the coasts, where drops in the ground level increase the risk of flooding and infrastructure damage.

To get a more comprehensive idea of this problem along the United States coastline, researchers from Tufts University and Virginia Tech analyzed more than 190 million data points measuring vertical land motion (the rising or falling of Earth's surface over time).

These measurements were mostly taken via satellites in orbit, bouncing radar signals up and down to gauge the level of the land. Across the period 2007 to 2020, the data showed widespread coastal subsidence.


The Gulf Coast was where the sinking was most pronounced. 
(Azhar et al., Commun. Earth Environ., 2026)



"Nationally, 71.5 percent of coastal areas subside faster than 0.1 centimeters (0.04 inches) per year, with the Gulf Coast experiencing the highest rates," write the researchers in their published paper.

"These findings offer a foundation for resilient coastal planning and equitable adaptation of infrastructure systems."

Close to half of the US coast (43 percent) was found to be sinking by 0.2 centimeters (0.08 inches) or more a year, while almost a quarter (23.3 percent) registered subsidence of at least 0.3 centimeters (0.12 inches) a year.

While sinking was most pronounced on the Gulf Coast to the south of the US, it was "near-ubiquitous" along the East Coast too, the researchers found. Some uplift was recorded, but mostly along the West Coast.

The researchers highlight several key implications of land subsidence, from water resource management to risk assessment. 
(Azhar et al., Commun. Earth Environ., 2026)

That means there's not a one-size-fits-all solution to tackling the problem: What needs fixing and how depends on regional factors.

"Land subsidence does not occur in isolation," write the researchers. "It often interacts with climate extremes and human land use, creating feedback loops that can amplify both hazards and vulnerabilities.

"Although subsidence typically occurs slowly, its cumulative effects can be devastating over time."

The study points to several reasons for the coastal subsidence. Some are natural geological processes: the natural compaction of soft sediment in areas such as deltas and wetlands, and even ongoing geological settling from the last Ice Age (technically 'glacial isostatic adjustment'), for example.

Other reasons are very much to do with our influence, like the excessive pumping out of groundwater to supply populations, industries, and agriculture. However, this wasn't something the researchers assessed directly here.

The researchers also looked at how many people it could potentially affect. The estimates are around 67.1 million in low-subsidence areas, 14 million in moderate-subsidence areas, and 3.2 million in high-subsidence areas.

"The exposure analysis reveals that approximately 84.3 million people across US coastal census tracts live in areas affected by varying levels of land subsidence," write the researchers.

Citing Hurricane Katrina as a recent example, the researchers note that sinking land can reduce the effectiveness of levees, sea walls, and drainage systems, and put extra stress on infrastructure – roads, bridges, buildings, and pipelines.

What's more, those facing the greatest risk and potential losses are often also those least able to adapt. People at the margins of society are often hit hardest, and are less able to recover from events like flooding – meaning the effects are compounded over time.

The researchers want to see further scientific study of the subsidence problem, as well as subsidence data incorporated into coastal planning and infrastructure investment decisions so communities are better able to cope with it.

"This study establishes the first national-scale, statistically grounded assessment of coastal land-subsidence hazards and inequities in the US, providing a scalable foundation that can be updated as new data become available," write the researchers.


The Life of Earth
https://chuckincardinal.blogspot.com/

Saturday, 26 September 2026

One Critical Factor Predicts Longevity Better Than Diet or Exercise, Study Reveals

22 Sept. 2026, By D. Nield

(rattanakun/Canva)

Diet and exercise can both influence how long you live, but research suggests they're not the single greatest predictor of longevity.

According to a study published in Sleep Advances, something else might have a bigger effect on your lifespan.

While poor sleep has been previously linked to a host of health issues, this investigation found that getting enough shut-eye had a stronger connection to living longer than diet and exercise – factors that are known to add years to your life.

Researchers from Oregon Health & Science University (OHSU) crunched the numbers on county-level survey data from across the US, from 2019 to 2025.

They compared measures of life expectancy with self-reported sleep duration, using less than seven hours per night as the threshold for insufficient sleep.

They then factored in other variables that can affect life expectancy, including physical inactivity, employment status, and educational level.

The association between insufficient sleep and lower life expectancy remained statistically significant after including those factors.

In the first model, only smoking had a stronger association with life expectancy. In a second model that added obesity and diabetes, obesity also ranked above insufficient sleep.

"I didn't expect [insufficient sleep] to be so strongly correlated to life expectancy," said OHSU sleep physiologist Andrew McHill.

"We've always thought sleep is important, but this research really drives that point home: People really should strive to get seven to nine hours of sleep if at all possible."

As a purely observational study, the research, published in 2025, can't prove that less sleep knocks months or years off your life.

A study like this also can't untangle the complex interactions between sleep, diet, and exercise. The results do suggest the amount of sleep you get each night is a significant indicator of long-term health.

Adequate sleep is vital to almost every aspect of our well-being: missing a single night of slumber can impact brain circuitry and the body's immune system, for example.

It's reasonable to suggest that these health issues may contribute to mortality in the long run. In particular, the researchers highlight obesity and diabetes as two conditions linked with poor sleep that could reduce life expectancy.

"It's intuitive and makes a lot of sense, but it was still striking to see it materialize so strongly in all of these models," said McHill.

"I'm a sleep physiologist who understands the health benefits of sleep, but the strength of the association between sleep sufficiency and life expectancy was remarkable to me."

The good news is that our sleep routines are, at least to some extent, modifiable within the limits of our caregiving and work commitments.

Life expectancy's association with sleep is stronger than with many other factors, including diet and exercise. Although, as this graph shows, physical activity and social connections also influence life expectancy. 
(McAuliffe et al., Sleep Adv., 2025)

It might be worth quitting that habit of doomscrolling in bed, or squeezing in a session of yoga or tai chi now and then.

Both the American Academy of Sleep Medicine and the Sleep Research Society recommend getting at least seven hours of sleep a night, although some evidence suggests you might be able to catch up on the weekends if you need to.

"This research shows that we need to prioritize sleep at least as much as we do what we eat or how we exercise," said McHill.

"Getting a good night's sleep will improve how you feel but also how long you live."


The Life of Earth
https://chuckincardinal.blogspot.com/

Scavengers Stay Healthy By Not Eating Their Own Kind, New Science Suggests

26 Sept. 2026, By I. Farkas

(Annette Shaff/Canva)

Nature is a cycle in which nothing is wasted and death leads to life.

When an animal dies, it becomes carrion, a source of nutriment that upholds ecosystems.

For example, a "whale fall" settling on the seafloor creates a thriving mini-environment for decades.

However, these hotspots also pose dangers to the opportunists that feed here, including the risk of pathogen transmission and predation.

Accordingly, it has long been suggested that scavengers avoid eating carcasses that are more closely related to them to reduce the risk of infection.

But the evidence to explore that idea is scarce and limited in scale.

So researchers recently expanded that scale, examining an essential gap in the ecology of some of nature's most derided denizens: those who scavenge.

In a study published in the journal Ecology Letters, a quartet of Spanish biologists, ecologists, and zoologists used camera traps, phylogenetic analyses, and computational modeling to see what kind of carcasses these consumers choose to chow down upon.

"Here, we provide the first empirical evidence from a diverse vertebrate scavenger assemblage that phylogenetic distance is a key driver of selective carrion consumption," the researchers say.

From February 2020 through May 2021, they placed nearly 200 fish, bird, and small mammal carcasses across El Hondo Natural Park in Alicante, in southeastern Spain, along with two cameras at each spot to capture images and video of the resultant feeding frenzies.

These animals – including carp, quails, ducks, rodents, and rabbits from sources like roadkill and invasive-carp-reducing efforts – are present in the park and were strategically placed where each would naturally die; the researchers did not, say, airlift a whale carcass into a swamp.

They chose El Hondo because it's a highly productive wetland featuring extensive reedbeds, marshes, and even salt flats.

It's abundant in resources and hosts many species in a relatively small area, creating frequent opportunities for carrion.

Interestingly, despite its diversity, it does not host large predators or the world's most famous obligate scavengers: vultures.

They also consulted a species-level phylogenetic tree to ascertain the genetic distance between carrion and its scavenger, gauged by the millions of years of independent evolution between different taxa.

The phylogenetic tree employed in this work.
 (Pessano-Serrat et al., Ecol. Lett., 2026)

They observed that animals often consumed carrion that was more distantly related to them than would be expected through random occurrence.

"We found a consistent pattern across the assemblage: scavengers generally avoided consuming carcasses of phylogenetically related species," the researchers explain.

"This trend held for both the probability of consuming a given carcass species and the total number of carcasses consumed, although the strength of the relationship varied between taxonomic classes (birds vs. mammals)."

At the extreme ends of the observed trends, the brown rat (Rattus norvegicus) – notoriously and erroneously blamed for the 'Chicago rat hole' – proved the main consumer, chomping on 38 carcasses, mostly fish.


A box plot showing random and real values (observed) for feeding choices among scavengers.
 (Pessano-Serrat et al., Ecol. Lett., 2026)



Among the few species that fed on more closely related carrion was a bird, the Iberian grey shrike (Lanius meridionalis), observed to feed only on bird carcasses.

Incidentally, shrikes further belie their birdly cuteness by impaling their prey on spikes.

Animals that didn't seem to care about what they ate included the Eurasian magpie (Pica pica) and the globally ubiquitous red fox (Vulpes vulpes).

The latter has also established itself as the land mammal with the largest distribution, second only to humans, according to the National Park Service.

The researchers suggest that avoiding closely related carrion may serve as a first line of defense, helping animals avert infections and the energy costs of immune responses.

Since more closely related animals are more likely to share physiological traits, they are also more likely to share pathogens and transmit diseases among each other.

Scavenging probability 
(A) and number of carcasses eaten 
(B) both rose with evolutionary distance, more sharply for mammals. (Pessano-Serrat et al., Ecol. Lett., 2026)

Study limitations include the absence of fish as scavengers.

And since some of the scavenging animals in this study only exhibited a few feeding events, more evidence is necessary to explore specific factors, such as how their feeding behaviors are affected by their health, life stages, sociability, or environmental food scarcity.

Importantly, this work highlights that scavengers are essential parts of their ecosystems, cycling nutrients and shaping food webs. They also help boost public health by reducing zoonotic disease potential.

As an example, a crash in vulture populations in India has been linked to the deaths of more than half a million people.


"Recognizing and preserving healthy scavenger communities may therefore provide both ecosystem-­level benefits and contribute to mitigating zoonotic risks," the researchers conclude.

"These insights highlight the importance of integrating scavenger species into broader wildlife management and conservation frameworks."


The Life of Earth
https://chuckincardinal.blogspot.com/