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Inactivation of thermogenic UCP1 as a historical contingency in multiple placental mammal clades

机译:灭活产热UCP1作为多个胎盘哺乳动物进化中的历史偶然性。

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摘要

Mitochondrial uncoupling protein 1 (UCP1) is essential for nonshivering thermogenesis in brown adipose tissue and is widely accepted to have played a key thermoregulatory role in small-bodied and neonatal placental mammals that enabled the exploitation of cold environments. We map ucp1 sequences from 133 mammals onto a species tree constructed from a ~51-kb sequence alignment and show that inactivating mutations have occurred in at least 8 of the 18 traditional placental orders, thereby challenging the physiological importance of UCP1 across Placentalia. Selection and timetree analyses further reveal that ucp1 inactivations temporally correspond with strong secondary reductions in metabolic intensity in xenarthrans and pangolins, or in six other lineages coincided with a ~30 million–year episode of global cooling in the Paleogene that promoted sharp increases in body mass and cladogenesis evident in the fossil record. Our findings also demonstrate that members of various lineages (for example, cetaceans, horses, woolly mammoths, Steller’s sea cows) evolved extreme cold hardiness in the absence of UCP1-mediated thermogenesis. Finally, we identify ucp1 inactivation as a historical contingency that is linked to the current low species diversity of clades lacking functional UCP1, thus providing the first evidence for species selection related to the presence or absence of a single gene product.
机译:线粒体解偶联蛋白1(UCP1)对于棕色脂肪组织中不发抖的生热作用至关重要,被广泛接受,在小体和新生儿胎盘哺乳动物中发挥了关键的温度调节作用,从而能够利用寒冷的环境。我们将来自133个哺乳动物的ucp1序列映射到由〜51-kb序列比对构建的物种树上,并显示灭活突变已发生在18个传统胎盘中的至少8个中,从而挑战了整个胎盘中UCP1的生理重要性。选择和时间树分析进一步揭示,ucp1失活在时间上对应于木炭疽和穿山甲或其他六个谱系中代谢强度的强烈继发性降低,与古基因中约3000万年的全球冷却事件相伴,促使体重急剧增加。化石记录中清楚地表明了其成岩作用。我们的发现还表明,在没有UCP1介导的生热作用的情况下,各种谱系(例如,鲸类,马,毛猛ma象,斯特勒的海牛)的成员都具有极强的耐寒性。最后,我们将ucp1灭活确定为历史偶然事件,这与缺乏功能性UCP1的进化枝目前低物种多样性有关,从而为与单个基因产物存在或不存在相关的物种选择提供了第一个证据。

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