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首页> 外文期刊>In silico biology: An international on computational biology >Positive Darwinian selection on crustacean hyperglycemic hormone (CHH) of the green shore crab, Carcinus maenas
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Positive Darwinian selection on crustacean hyperglycemic hormone (CHH) of the green shore crab, Carcinus maenas

机译:绿岸蟹Carcinus maenas的甲壳类高血糖激素(CHH)的达尔文正选择

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摘要

The tissue-specific expression and differential function of the crustacean hyperglycemic hormone (CHH) in Carcinus maenas indicate an interesting evolutionary history. Previous studies have shown that CHH from the sinus gland X-organ (XO-type) has hyperglycemic activity, whereas the CHH from the pericardial organ (PO-type) neither shows hyperglycemic activity nor it inhibits Y-organ ecdysteroid synthesis. Here we examined the types of selective pressures operating on the variants of CHH in Carcinus maenas. Maximum likelihood-based codon substitution analyses revealed that the variants of this neuropeptide in C. maenas have been subjected to positive Darwinian selection indicating adaptive evolution and functional divergence among the CHH variants leading to two unique groups (PO and XO-type). Although the average ratio of nonsynonymous to synonymous substitution (ω) for the entire coding region is 0.5096, few codon sites showed significantly higher ω (10.95). Comparison of models that incorporate positive selection (ω > 1) with models not incorporating positive selection (ω < 1) at certain codon sites failed to reject (p = 0) evidence of positive Darwinian selection.
机译:梅花甲壳动物高血糖激素(CHH)的组织特异性表达和差异功能表明了有趣的进化史。先前的研究表明,来自窦腺X器官(XO型)的CHH具有高血糖活性,而来自心包器官(PO型)的CHH既不显示高血糖活性,也不抑制Y器官蜕皮类固醇的合成。在这里,我们研究了在梅氏肉鸡CHH变异体上运行的选择性压力的类型。基于最大似然性的密码子替代分析显示,该神经肽在美人鱼中已进行了正向达尔文选择,表明CHH变异体之间的适应性进化和功能差异导致了两个独特的群体(PO和XO型)。尽管整个编码区的非同义替换与同义替换(ω)的平均比率为0.5096,但很少有密码子位点显示出明显更高的ω(10.95)。在某些密码子位点,采用正选择(ω> 1)的模型与未采用正选择(ω<1)的模型的比较未能拒绝(p = 0)达尔文选择为正的证据。

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