国产一级片一区二区三区Iav黄色免费看I久久久久国产成人免费精品免费I人成午夜视频I97福利在线I国产麻豆剧传媒免费观看I久久爱www.I一区二区三区视频在线I久久免费高清I麻豆国产精品永久免费视频I91尤物国产尤物福利在线播放

 
A gene loss makes human into long-distance runners: study
                 Source: Xinhua | 2018-09-13 02:42:36 | Editor: huaxia

File Photo: Kenyan athlete Paul Lonyangata passes the finishing line and wins the men's champion with 2 hours 6 minutes and 25 seconds in Paris, France on April 8, 2018. (Xinhua/Jean-Marie Hervio)

WASHINGTON, Sept. 12 (Xinhua) -- American researchers found that two to three million years ago, the functional loss of a single gene made humanity into best long-distance runners in the animal kingdom.

In a paper to be published on Wednesday in the Proceedings of the Royal Society B, researchers at University of California (UC) San Diego School of Medicine reported on studies of mice engineered to lack the same gene, called CMAH, and this lost gene triggered a series of significant changes in what would eventually become the modern human species.

At roughly the same time as the CMAH mutation took hold, human ancestors were transitioning from forest dwellers to life primarily upon the arid savannahs of Africa, according to the study.

While they were already walking upright, the bodies and abilities of these early hominids were evolving dramatically, in particular major changes in skeletal biomechanics and physiology that resulted in long, springy legs, big feet, powerful gluteal muscles and an expansive system of sweat glands that were able to dissipate heat much more effectively than other larger mammals.

Such changes helped fuel the emergence of the human ability to run long distances relatively tirelessly, allowing ancestors to hunt in the heat of the day when other carnivores were resting and to pursue prey to their point of exhaustion, a technique called persistence hunting.

"We discovered this first clear genetic difference between humans and our closest living evolutionary relatives, the chimpanzees, more than 20 years ago," said the paper's senior author Ajit Varki, Distinguished Professor of Medicine and Cellular and Molecular Medicine at UC San Diego School of Medicine.

Given the approximate timing of the mutation and its documented impact on fertility in a mouse model with the same mutation, Varki's team began investigating how the genetic difference might have contributed to the origin of Homo, the genus that includes modern Homo sapiens and extinct species like Homo habilis and Homo erectus.

"We evaluated the exercise capacity (of mice lacking the CMAH gene), and noted an increased performance during treadmill testing and after 15 days of voluntary wheel running," said Jon Okerblom, the study's first author.

They also found that the mice displayed greater resistance to fatigue, increased mitochondrial respiration and hind-limb muscle, with more capillaries to increase blood and oxygen supply.

Those observations suggested that CMAH loss contributed to improved skeletal muscle capacity for oxygen utilization.

"If the findings translate to humans, they may have provided early hominids with a selective advantage in their move from trees to becoming permanent hunter-gatherers on the open range," Varki said.

When the CMAH gene mutated in the genus Homo two to three million years ago, perhaps in response to evolutionary pressures caused by an ancient pathogen, it altered how subsequent hominids and modern humans used sialic acids, a family of sugar molecules that coat the surfaces of all animal cells, where they serve as vital contact points for interaction with other cells and with the surrounding environment.

The human mutation caused loss of a sialic acid called Neu5Gc and accumulation of its precursor called Neu5Ac, which differs by only a single oxygen atom. This seemingly minor difference affects almost every cell type in the human body.

The researchers have linked the loss of the CMAH gene and sialic acids to not just improved long-distance running ability, but also enhanced innate immunity in early hominids.

However, they have also reported that certain sialic acids were associated with increased risk of type 2 diabetes and they might contribute to elevated cancer risk associated with red meat consumption.

"They are a double-edged sword," said Varki. "The consequence of a single lost gene and a small molecular change that appears to have profoundly altered human biology and abilities going back to our origins."

Back to Top Close
Xinhuanet

A gene loss makes human into long-distance runners: study

Source: Xinhua 2018-09-13 02:42:36

File Photo: Kenyan athlete Paul Lonyangata passes the finishing line and wins the men's champion with 2 hours 6 minutes and 25 seconds in Paris, France on April 8, 2018. (Xinhua/Jean-Marie Hervio)

WASHINGTON, Sept. 12 (Xinhua) -- American researchers found that two to three million years ago, the functional loss of a single gene made humanity into best long-distance runners in the animal kingdom.

In a paper to be published on Wednesday in the Proceedings of the Royal Society B, researchers at University of California (UC) San Diego School of Medicine reported on studies of mice engineered to lack the same gene, called CMAH, and this lost gene triggered a series of significant changes in what would eventually become the modern human species.

At roughly the same time as the CMAH mutation took hold, human ancestors were transitioning from forest dwellers to life primarily upon the arid savannahs of Africa, according to the study.

While they were already walking upright, the bodies and abilities of these early hominids were evolving dramatically, in particular major changes in skeletal biomechanics and physiology that resulted in long, springy legs, big feet, powerful gluteal muscles and an expansive system of sweat glands that were able to dissipate heat much more effectively than other larger mammals.

Such changes helped fuel the emergence of the human ability to run long distances relatively tirelessly, allowing ancestors to hunt in the heat of the day when other carnivores were resting and to pursue prey to their point of exhaustion, a technique called persistence hunting.

"We discovered this first clear genetic difference between humans and our closest living evolutionary relatives, the chimpanzees, more than 20 years ago," said the paper's senior author Ajit Varki, Distinguished Professor of Medicine and Cellular and Molecular Medicine at UC San Diego School of Medicine.

Given the approximate timing of the mutation and its documented impact on fertility in a mouse model with the same mutation, Varki's team began investigating how the genetic difference might have contributed to the origin of Homo, the genus that includes modern Homo sapiens and extinct species like Homo habilis and Homo erectus.

"We evaluated the exercise capacity (of mice lacking the CMAH gene), and noted an increased performance during treadmill testing and after 15 days of voluntary wheel running," said Jon Okerblom, the study's first author.

They also found that the mice displayed greater resistance to fatigue, increased mitochondrial respiration and hind-limb muscle, with more capillaries to increase blood and oxygen supply.

Those observations suggested that CMAH loss contributed to improved skeletal muscle capacity for oxygen utilization.

"If the findings translate to humans, they may have provided early hominids with a selective advantage in their move from trees to becoming permanent hunter-gatherers on the open range," Varki said.

When the CMAH gene mutated in the genus Homo two to three million years ago, perhaps in response to evolutionary pressures caused by an ancient pathogen, it altered how subsequent hominids and modern humans used sialic acids, a family of sugar molecules that coat the surfaces of all animal cells, where they serve as vital contact points for interaction with other cells and with the surrounding environment.

The human mutation caused loss of a sialic acid called Neu5Gc and accumulation of its precursor called Neu5Ac, which differs by only a single oxygen atom. This seemingly minor difference affects almost every cell type in the human body.

The researchers have linked the loss of the CMAH gene and sialic acids to not just improved long-distance running ability, but also enhanced innate immunity in early hominids.

However, they have also reported that certain sialic acids were associated with increased risk of type 2 diabetes and they might contribute to elevated cancer risk associated with red meat consumption.

"They are a double-edged sword," said Varki. "The consequence of a single lost gene and a small molecular change that appears to have profoundly altered human biology and abilities going back to our origins."

010020070750000000000000011100001374638361
主站蜘蛛池模板: 中文字幕人成乱码在线观看| 中文字幕无码久久一区| 国精产品一区一区三区mba下载| 一个人看的www片免费高清视频 | 在线亚洲+欧美+日本专区| 粗壮挺进邻居人妻无码| 亚洲殴美国产日韩av| 少妇又紧又色又爽又刺激视频| 东京热男人av天堂| 午夜在线不卡精品国产| 欧美 亚洲 国产 另类| 午夜成人1000部免费视频| 又色又爽又黄还免费毛片96下载| 性色av免费网站| 国产精品久久久久久久久久免费看 | 亚洲综合一区无码精品| 欧美熟妇xxxxx欧美老妇不卡| 国产精品992tv在线观看| 又硬又粗进去好爽免费| 午夜三级a三级三点在线观看| 国产精品看高国产精品不卡| 麻豆国产av穿旗袍强迫女佣人| 精品人妻系列无码人妻在线不卡| 精品国产你懂的在线观看| 亚洲色成人影院在线观看| 无码av一区二区三区不卡| 毛片无码国产| 国产网红主播无码精品| 九九99热久久精品离线6| 麻豆国产尤物av尤物在线观看| 妺妺跟我一起洗澡没忍住| 中国人与黑人牲交free欧美| 超碰伊人久久大香线蕉综合| 无码免费午夜福利片在线| 亚洲国产精品无码中文在线| 国产成人精品午夜2022| 亚洲乱码国产乱码精华| 国产喷水福利在线视频| 黑人巨大videos极度另类| 麻豆果冻传媒精品一区| 伴郎粗大的内捧猛烈进出视频观看|