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What crocodile DNA reveals about the Ice Age

Environmental drivers such as sea level affect genetic evolution and point to where conservation efforts may be focused

Date:
January 25, 2023
Source:
McGill University
Summary:
What drives crocodile evolution? Is climate a major factor or changes in sea levels? Determined to find answers to these questions, researchers discovered that while changing temperatures and rainfall had little impact on the crocodiles' gene flow over the past three million years, changes to sea levels during the Ice Age had a different effect.
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What drives crocodile evolution? Is climate a major factor or changes in sea levels? Determined to find answers to these questions, researchers from McGill University discovered that while changing temperatures and rainfall had little impact on the crocodiles' gene flow over the past three million years, changes to sea levels during the Ice Age had a different effect.

"The American crocodile tolerates huge variations in temperature and rainfall. But about 20,000 years ago - when much of the world's water was frozen, forming the vast ice sheets of the last glacial maximum - sea levels dropped by more than 100 metres. This created a geographical barrier that separated the gene flow of crocodiles in Panama," says postdoctoral fellow José Avila-Cervantes, working under the supervision of McGill professor Hans Larsson.

The researchers point out that the crocodiles are good swimmers, but they can't travel long distances on land. As a result, the Caribbean and Pacific crocodile populations were isolated from each other, and consequently have undergone different genetic mutations.

The team compared the climate tolerance of living populations of American crocodiles (Crocodylus acutus) to the paleoclimate estimates for the region over the past 3 million years - the time span of extreme climate variation during the Ice Age.

“这是第一次冰河时代影响哈ve been found in a tropical species. It's exciting to discover effects of the last Ice Age glaciation still resonate in the genomes of Pacific and Caribbean American crocodiles today," says Larsson, Professor of Biology at the Redpath Museum of McGill University.

"Discovering that these animals would have easily tolerated the climate swings of the Ice Age speaks to their resilience over geological time. Only humans in recent decades of hunting and land development seem to really affect crocodiles," he says. The findings offer new insight into how environmental drivers affect genetic evolution and where conservation efforts of particular crocodile populations in Panama should be focused.

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Materialsprovided byMcGill University.注:内容可以编辑风格and length.


Journal Reference:

  1. José Avila-Cervantes and Hans Larsson.Ice Age effects on genetic divergence of the American crocodile (Crocodylus acutus) in Panama: reconstructing limits of gene flow and environmental ranges: A reply to O’Dea et al.Evolution, 2023 DOI:10.1093/evolut/qpac006

Cite This Page:

McGill University. "What crocodile DNA reveals about the Ice Age: Environmental drivers such as sea level affect genetic evolution and point to where conservation efforts may be focused." ScienceDaily. ScienceDaily, 25 January 2023. /releases/2023/01/230125121539.htm>.
McGill University. (2023, January 25). What crocodile DNA reveals about the Ice Age: Environmental drivers such as sea level affect genetic evolution and point to where conservation efforts may be focused.ScienceDaily. Retrieved August 22, 2023 from www.koonmotors.com/releases/2023/01/230125121539.htm
McGill University. "What crocodile DNA reveals about the Ice Age: Environmental drivers such as sea level affect genetic evolution and point to where conservation efforts may be focused." ScienceDaily. www.koonmotors.com/releases/2023/01/230125121539.htm (accessed August 22, 2023).

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