Sunday, July 3, 2022
No Result
View All Result
Medical Finance
  • Home
  • News
  • Interviews
  • Mediknowledge
  • Insights From Industry
  • Thought Leaders
  • Coronavirus
  • Whitepapers
  • Home
  • News
  • Interviews
  • Mediknowledge
  • Insights From Industry
  • Thought Leaders
  • Coronavirus
  • Whitepapers
No Result
View All Result
Medical Finance
No Result
View All Result
Home News

Largest study on longevity reveals secrets of reptile and amphibian aging

by Medical Finance
in News
Nutritional components hold promise for improving the health and well-being of adults
9
SHARES
100
VIEWS
Share on FacebookShare on Twitter

At 190 years old, Jonathan the Seychelles giant tortoise recently made news for being the “oldest living land animal in the world.” Although, anecdotal evidence like this exists that some species of turtles and other ectotherms -; or ‘cold-blooded’ animals -; live a long time, evidence is spotty and mostly focused on animals living in zoos or a few individuals living in the wild. Now, an international team of 114 scientists, led by Penn State and Northeastern Illinois University, reports the most comprehensive study of aging and longevity to date comprising data collected in the wild from 107 populations of 77 species of reptiles and amphibians worldwide.

Among their many findings, which they report today (June 23) in the journal Science, the researchers documented for the first time that turtles, crocodilians and salamanders have particularly low aging rates and extended lifespans for their sizes. The team also found that protective phenotypes, such as the hard shells of most turtle species, contribute to slower aging, and in some cases even ‘negligible aging’ -; or lack of biological aging.

Anecdotal evidence exists that some reptiles and amphibians age slowly and have long lifespans, but until now no one has actually studied this on a large scale across numerous species in the wild. If we can understand what allows some animals to age more slowly, we can better understand aging in humans, and we can also inform conservation strategies for reptiles and amphibians, many of which are threatened or endangered.”


David Miller, senior author and associate professor of wildlife population ecology, Penn State

In their study, the researchers applied comparative phylogenetic methods -; which enable investigation of organisms’ evolution -; to mark-recapture data -; in which animals are captured, tagged, released back into the wild and observed. Their goal was to analyze variation in ectotherm aging and longevity in the wild compared to endotherms (warm-blooded animals) and explore previous hypotheses related to aging -; including mode of body temperature regulation and presence or absence of protective physical traits.

Miller explained that the ‘thermoregulatory mode hypothesis’ suggests that ectotherms -; because they require external temperatures to regulate their body temperatures and, therefore, often have lower metabolisms -; age more slowly than endotherms, which internally generate their own heat and have higher metabolisms.

“People tend to think, for example, that mice age quickly because they have high metabolisms, whereas turtles age slowly because they have low metabolisms,” said Miller.

The team’s findings, however, reveal that ectotherms’ aging rates and lifespans range both well above and below the known aging rates for similar-sized endotherms, suggesting that the way an animal regulates its temperature -; cold-blooded versus warm-blooded -; is not necessarily indicative of its aging rate or lifespan.

“We didn’t find support for the idea that a lower metabolic rate means ectotherms are aging slower,” said Miller. “That relationship was only true for turtles, which suggests that turtles are unique among ectotherms.”

The protective phenotypes hypothesis suggests that animals with physical or chemical traits that confer protection -; such as armor, spines, shells or venom -; have slower aging and greater longevity. The team documented that these protective traits do, indeed, enable animals to age more slowly and, in the case of physical protection, live much longer for their size than those without protective phenotypes.

“It could be that their altered morphology with hard shells provides protection and has contributed to the evolution of their life histories, including negligible aging – or lack of demographic aging – and exceptional longevity,” said Anne Bronikowski, co-senior author and professor of integrative biology, Michigan State.

Beth Reinke, first author and assistant professor of biology, Northeastern Illinois University, further explained, “These various protective mechanisms can reduce animals’ mortality rates because they’re not getting eaten by other animals. Thus, they’re more likely to live longer, and that exerts pressure to age more slowly. We found the biggest support for the protective phenotype hypothesis in turtles. Again, this demonstrates that turtles, as a group, are unique.”

Interestingly, the team observed negligible aging in at least one species in each of the ectotherm groups, including in frogs and toads, crocodilians and turtles.

“It sounds dramatic to say that they don’t age at all, but basically their likelihood of dying does not change with age once they’re past reproduction,” said Reinke.

Miller added, “Negligible aging means that if an animal’s chance of dying in a year is 1% at age 10, if it is alive at 100 years, it’s chance of dying is still 1% (1). By contrast, in adult females in the U.S., the risk of dying in a year is about 1 in 2,500 at age 10 and 1 in 24 at age 80. When a species exhibits negligible senescence (deterioration), aging just doesn’t happen.”

Reinke noted that the team’s novel study was only possible because of the contributions of a large number of collaborators from across the world studying a wide variety of species.

“Being able to bring these authors together who have all done years and years of work studying their individual species is what made it possible for us to get these more reliable estimates of aging rate and longevity that are based on population data instead of just individual animals,” she said.

Bronikowski added, “Understanding the comparative landscape of aging across animals can reveal flexible traits that may prove worthy targets for biomedical study related to human aging.”

Source:

Journal reference:

DOI: 10.1126/science.abm0151

Total
0
Shares
Share 0
Tweet 0
Pin it 0
Share 0
Medical Finance

Medical Finance

Related Posts

PhoreMost and POLARISqb announce a multi-target collaboration to investigate next-generation cancer therapies

Novel strategy can shrink tumors and prolong survival in mice

by Medical Finance
July 2, 2022
0

A research team based at the University of Ottawa and The Ottawa Hospital has developed a virus that infects and...

Common member of the gut microbiome found to have specific preference for blood group A antigens

Researchers model a complex childhood disease on-a-chip

by Medical Finance
July 2, 2022
0

Millions of children in low- and middle-income nations suffer from environmental enteric dysfunction (EED), a chronic inflammatory disease of the...

Macrophages in the arteries can “sniff” out their surroundings and cause inflammation

Study provides new understanding of caffeine’s protective effects on the cardiovascular system

by Medical Finance
July 2, 2022
0

Scientists have a new understanding of the protective effects of caffeine on the cardiovascular system. While its stimulant effects have...

Surveying communities may be a useful tool for predicting COVID-19 case trajectories

Study reports accumulation of SARS-CoV-2 RNA in sewer biofilms

by Medical Finance
July 3, 2022
0

During the COVID-19 pandemic, monitoring the levels of SARS-CoV-2 RNA in wastewater entering treatment plants has been one way that...

Researchers create a DNA-based fluorescent nanoantenna to monitor the motions of proteins

Novel immune-profiling method offers a powerful alternative to conventional flow cytometry

by Medical Finance
July 2, 2022
0

Flow cytometry is a powerful and complex technology used to count, sort or measure characteristics of cells and to detect...

Sample management of Covid-19 cryobox tube racks

Sample management of Covid-19 cryobox tube racks

by Medical Finance
July 2, 2022
0

From Ziath LtdFeb 10 2022Reviewed by Maria Osipova Ziath reports on the widespread adoption of its DataPaq™ Cube rack reader...

Next Post
Scientists discover a division of labor between genetic switches

"Founder events" that reduced genetic diversity found to be common throughout human history

Timeline from SARS-CoV-2 infection to immunity generation

A brief overview of immunologic testing for COVID-19

0 0 votes
Article Rating
Subscribe
Login
Notify of
guest
guest
0 Comments
Inline Feedbacks
View all comments

Support

  • Contact
  • Disclaimer
  • Home
  • Privacy Policy
  • Terms And Conditions

Categories

  • Coronavirus
  • Insights From Industry
  • Interviews
  • Mediknowledge
  • News
  • Thought Leaders
  • Whitepapers

More News

  • Study: Symptom prevalence, duration, and risk of hospital admission in individuals infected with SARS-CoV-2 during periods of omicron and delta variant dominance: a prospective observational study from the ZOE COVID Study. Image Credit: FOTOGRIN/Shutterstock
    Differences in symptoms and risk of hospitalization following infection with Omicron or Delta SARS-CoV-2 variants among vaccinated people
  • Study: CNBP restricts SARS-CoV2 by regulating IFN and disrupting RNA-protein condensates. Image Credit: NIAID
    SARS-CoV-2 inhibition mediated by cellular nucleic acid-binding protein
  • Home
  • Privacy Policy
  • Contact
  • Disclaimer
  • Terms And Conditions

© 2022 Medical Finance - Latest Financial and Business News

No Result
View All Result
  • Interviews
  • Mediknowledge
  • News
  • Insights From Industry
  • Coronavirus
  • Thought Leaders
  • Whitepapers
wpDiscuz
0
0
Would love your thoughts, please comment.x
()
x
| Reply