首页> 外文期刊>Journal of Molecular Evolution >The Glycogen Synthase 2 Gene (Gys2) Displays Parallel Evolution Between Old World and New World Fruit Bats
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The Glycogen Synthase 2 Gene (Gys2) Displays Parallel Evolution Between Old World and New World Fruit Bats

机译:糖原合酶2基因(Gys2)显示旧世界和新世界果蝠之间的平行进化。

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Frugivorous and nectarivorous bats rely largely on hepatic glycogenesis and glycogenolysis for postprandial blood glucose disposal and maintenance of glucose homeostasis during short time starvation, respectively. The glycogen synthase 2 encoded by the Gys2 gene plays a critical role in liver glycogen synthesis. To test whether the Gys2 gene has undergone adaptive evolution in bats with carbohydrate-rich diets in relation to their insect-eating sister taxa, we sequenced the coding region of the Gys2 gene in a number of bat species, including three Old World fruit bats (OWFBs) (Pteropodidae) and two New World fruit bats (NWFBs) (Phyllostomidae). Our results showed that the Gys2 coding sequences are highly conserved across all bat species we examined, and no evidence of positive selection was detected in the ancestral branches leading to OWFBs and NWFBs. Our explicit convergence test showed that posterior probabilities of convergence between several branches of OWFBs, and the NWFBs were markedly higher than that of divergence. Three parallel amino acid substitutions (Q72H, K371Q, and E666D) were detected among branches of OWFBs and NWFBs. Tests for parallel evolution showed that two parallel substitutions (Q72H and E666D) were driven by natural selection, while the K371Q was more likely to be fixed randomly. Thus, our results suggested that the Gys2 gene has undergone parallel evolution on amino acid level between OWFBs and NWFBs in relation to their carbohydrate metabolism.
机译:食肉蝙蝠和食肉蝙蝠分别主要依靠肝脏的糖原分解和糖原分解作用来分别在短时间饥饿时进行餐后血糖处置和维持葡萄糖稳态。 Gys2基因编码的糖原合酶2在肝糖原合成中起关键作用。为了测试Gys2基因在富含碳水化合物饮食的蝙蝠中是否已与其食虫姊妹类群发生适应性进化,我们在许多蝙蝠物种中对Gys2基因的编码区进行了测序,其中包括三只旧世界果蝠( OWFBs(翼足科)和两个新世界果蝠(NWFBs)(Phyllostomidae)。我们的结果表明,在我们研究的所有蝙蝠物种中,Gys2编码序列高度保守,并且在导致OWFB和NWFB的祖先分支中未检测到阳性选择的证据。我们的显式收敛检验表明,OWFB的多个分支与NWFB之间的收敛的后验概率明显高于发散的概率。在OWFB和NWFB的分支之间检测到三个平行的氨基酸取代(Q72H,K371Q和E666D)。并行进化的测试表明,两个并行替换(Q72H和E666D)是由自然选择驱动的,而K371Q更有可能是随机固定的。因此,我们的研究结果表明,Gys2基因在OWFB和NWFB之间就其糖类代谢而言在氨基酸水平上经历了平行进化。

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