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Novel de Novo Genome of Cynopterus brachyotis Reveals Evolutionarily Abrupt Shifts in Gene Family Composition across Fruit Bats

机译:新型短吻鳄皮的新基因组揭示了跨越果蝠的基因家族组成的进化突变。

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摘要

Major novel physiological or phenotypic adaptations often require accompanying modifications at the genic level. Conversely, the detection of considerable contractions and/or expansions of gene families can be an indicator of fundamental but unrecognized physiological change. We sequenced a novel fruit bat genome ( ) and adopted a comparative approach to reconstruct the evolution of fruit bats, mapping contractions and expansions of gene families along their evolutionary history. Despite a radical change in life history as compared with other bats (e.g., loss of echolocation, large size, and frugivory), fruit bats have undergone surprisingly limited change in their genic composition, perhaps apart from a potentially novel gene family expansion relating to telomere protection and longevity. In sharp contrast, within fruit bats, the new genome bears the signal of unusual gene loss and gene family contraction, despite its similar morphology and lifestyle to two other major fruit bat lineages. Most missing genes are regulatory, immune-related, and olfactory in nature, illustrating the diversity of genomic strategies employed by bats to contend with responses to viral infection and olfactory requirements. Our results underscore that significant fluctuations in gene family composition are not always associated with obvious examples of novel physiological and phenotypic adaptations but may often relate to less-obvious shifts in immune strategies.
机译:主要的新的生理或表型适应通常需要在基因水平上进行伴随修饰。相反,检测到基因家族的显着收缩和/或扩增可以指示基本但未被识别的生理变化。我们对新的果蝠基因组()进行了测序,并采用了一种比较方法来重建果蝠的进化,绘制了其家族进化过程中基因家族的收缩和扩增。尽管与其他蝙蝠相比,生活史发生了根本性的变化(例如,回声丢失,大尺寸和节食),但果蝠的基因组成发生了令人惊讶的有限变化,也许除了与端粒有关的潜在的新基因家族扩展之外保护和长寿。与之形成鲜明对比的是,尽管其形态和生活方式与其他两个主要的果蝠谱系相似,但在果蝠中,新基因组仍具有异常基因丢失和基因家族收缩的信号。大多数缺失的基因本质上是调节性的,免疫相关的和嗅觉的,说明蝙蝠用来应对病毒感染和嗅觉要求的基因组策略的多样性。我们的结果强调,基因家族组成的显着波动并不总是与新颖的生理学和表型适应的明显例子相关,但通常可能与免疫策略中不太明显的变化有关。

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