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Parallel Evolution of the Glycogen Synthase 1 (Muscle) Gene Gys1 Between Old World and New World Fruit Bats (Order: Chiroptera)

机译:旧世界糖原合成酶1(肌肉)基因Gys1的平行演变和新世界水果蝙蝠(命令:chiroptera)

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摘要

Glycogen synthase, which catalyzes the synthesis of glycogen, is especially important for Old World (Pteropodidae) and New World (Phyllostomidae) fruit bats that ingest high-carbohydrate diets. Glycogen synthase 1, encoded by the Gys1 gene, is the glycogen synthase isozyme that functions in muscles. To determine whether Gys1 has undergone adaptive evolution in bats with carbohydrate-rich diets, in comparison to insect-eating sister bat taxa, we sequenced the coding region of the Gys1 gene from 10 species of bats, including two Old World fruit bats (Pteropodidae) and a New World fruit bat (Phyllostomidae). Our results show no evidence for positive selection in the Gys1 coding sequence on the ancestral Old World and the New World Artibeus lituratus branches. Tests for convergent evolution indicated convergence of the sequences and one parallel amino acid substitution (T395A) was detected on these branches, which was likely driven by natural selection.
机译:催化糖原合成的糖原合成酶对旧世界(Pteropodidae)和新世界(Phyllostomidae)果蝙蝠来说尤为重要,可摄取高碳水化合物饮食。 由Gys1基因编码的糖原合成酶1是肌肉中起作用的糖原合成酶同工酶。 为了确定Gys1是否经过蝙蝠的适应性演变,与富含甘露水的饮食的饮食相比,我们从10种蝙蝠中测序了Gys1基因的编码区,包括两个旧世界果子蝙蝠(Pteropodidae) 和一个新的世界果棒(Phyllostomidae)。 我们的结果显示,祖先旧世界的Gys1编码序列和新世界Artibeus Lituratus分支机构没有证据。 收敛演化的测试表明序列的收敛性和一种并联氨基酸取代(T395A)在这些分支上检测到,这可能由自然选择驱动。

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