Inactivation of thermogenic UCP1 as a historical contingency in multiple placental mammal clades
نویسندگان
چکیده
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.
منابع مشابه
The molecular and biochemical basis of nonshivering thermogenesis in an African endemic mammal, Elephantulus myurus.
Uncoupling protein 1 (UCP1) mediated nonshivering thermogenesis (NST) in brown adipose tissue (BAT) is an important avenue of thermoregulatory heat production in many mammalian species. Until recently, UCP1 was thought to occur exclusively in eutherians. In the light of the recent finding that UCP1 is already present in fish, it is of interest to investigate when UCP1 gained a thermogenic funct...
متن کاملRunning head: Basis of nonshivering thermogenesis in E. myurus
The molecular and biochemical basis of non-shivering thermogenesis in an African 1 endemic mammal, Elephantulus myurus 2 3 Nomakwezi Mzilikazi*, Martin Jastroch, Carola W Meyer and Martin Klingenspor 4 *To whom correspondence should be addressed 5 Department of Zoology, Nelson Mandela Metropolitan University, P.O. Box 77000, Port 6 Elizabeth, 6031, SOUTH AFRICA 7 Email: nomakwezi.mzilikazi@nmmu...
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