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Naked but Not Hairless: The Pitfalls of Analyses of Molecular Adaptation Based on Few Genome Sequence Comparisons

机译:赤裸但并非无毛:基于少数基因组序列比较的分子适应性分析的陷阱

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摘要

The naked mole-rat (Heterocephalus glaber) is the only rodent species that naturally lacks fur. Genome sequencing of this atypical rodent species recently shed light on a number of its morphological and physiological adaptations. More specifically, its hairless phenotype has been traced back to a single amino acid change (C397W) in the hair growth associated (HR) protein (or Hairless). By considering the available species diversity, we show that this specific position is in fact variable across mammals, including in the horse that was misleadingly reported to have the ancestral Cysteine. Moreover, by sequencing the corresponding HR exon in additional rodent species, we demonstrate that the C397W substitution is actually not a peculiarity of the naked mole-rat. Instead, this specific amino acid substitution is present in all hystricognath rodents investigated, which are all fully furred, including the naked mole-rat closest relative, the Damaraland mole-rat (Fukomys damarensis). Overall, we found no statistical correlation between amino acid changes at position 397 of the HR protein and reduced pilosity across the mammalian phylogeny. This demonstrates that this single amino acid change does not explain the naked mole-rat hairless phenotype. Our case study calls for caution before making strong claims regarding the molecular basis of phenotypic adaptation based on the screening of specific amino acid substitutions using only few model species in genome sequence comparisons. It also exposes the more general problem of the dilution of essential information in the supplementary material of genome papers thereby increasing the probability that misleading results will escape the scrutiny of editors, reviewers, and ultimately readers.
机译:裸mole鼠(Heterocephalus glaber)是唯一自然缺乏皮毛的啮齿动物。这种非典型啮齿动物物种的基因组测序最近揭示了其许多形态和生理适应性。更具体地说,其无毛表型可追溯到与毛发生长相关(HR)蛋白质(或无毛)中的单个氨基酸变化(C397W)。通过考虑可用的物种多样性,我们表明该特定位置实际上在整个哺乳动物中都是可变的,包括在误导性地报告具有祖先半胱氨酸的马中。此外,通过对其他啮齿动物物种中相应的HR外显子进行测序,我们证明了C397W取代实际上并不是裸鼠的独特之处。取而代之的是,这种特定的氨基酸取代存在于所研究的所有棘齿啮齿动物中,这些啮齿动物全都繁殖,包括裸the鼠近亲,Damaraland-鼠(Fukomys damarensis)。总体而言,我们没有发现HR蛋白397位置的氨基酸变化与哺乳动物系统发育过程中的菌毛减少之间存在统计相关性。这表明该单个氨基酸变化不能解释裸鼠-大鼠无毛表型。我们的案例研究在基于基因组序列比较中仅使用很少的模型物种筛选特定氨基酸取代的表型适应分子基础提出强有力的主张之前,需要谨慎行事。它还暴露了基因组论文补充材料中基本信息稀释的更普遍的问题,从而增加了误导性结果逃脱编辑,审稿人和最终读者审查的可能性。

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