首页> 外文期刊>Evolution: International Journal of Organic Evolution >LIVE-BIRTH IN VIPERS (VIPERIDAE) IS A KEY INNOVATION AND ADAPTATION TO GLOBAL COOLING DURING THE CENOZOIC
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LIVE-BIRTH IN VIPERS (VIPERIDAE) IS A KEY INNOVATION AND ADAPTATION TO GLOBAL COOLING DURING THE CENOZOIC

机译:VIPERS(VIPERIDAE)的活产是新生代全球冷却的关键创新和适应

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The identification of adaptations and key innovations has long interested biologists because they confer on organisms the ability to exploit previously unavailable ecological resources and respond to novel selective pressures. Although it can be extremely difficult to test for the effects of a character on the rate of lineage diversification, the convergent evolution of a character in multiple lineages provides an excellent opportunity to test for the effect of that character on lineage diversification. Here, I examine the effect of parity mode on the diversification of vipers, which have independently evolved viviparity in at least 13 lineages. I find strong statistical evidence that viviparous species diversify at a greater rate than oviparous species and correlate major decreases in the diversification rate of oviparous species with periods of global cooling, such as the Oligocene. These results suggest that the evolution of viviparity buffered live-bearing species against the negative effects of global climate change during the Cenozoic, and was a key innovation in the evolution and diversification of live-bearing vipers.
机译:适应性和关键创新的识别一直引起生物学家的兴趣,因为它们赋予有机体开发先前无法获得的生态资源并应对新的选择压力的能力。尽管测试字符对谱系多样化速率的影响可能极其困难,但是字符在多个谱系中的趋同进化为测试该字符对谱系多样化的效果提供了极好的机会。在这里,我研究了奇偶校验模式对vi蛇多样化的影响,vi蛇在至少13个谱系中独立地进化了卵胎。我发现有力的统计证据表明,卵生种比卵生种具有更大的分化速度,并且卵生种的多样化速率的大幅下降与渐新世等全球冷却时期相关。这些结果表明,胎生动物的进化缓冲了新生动物免受新生代全球气候变化的负面影响,并且是生蛇生物进化和多样化的关键创新。

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