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Different mitogenomic codon usage patterns between damselflies and dragonflies and nine complete mitogenomes for odonates

机译:豆娘和蜻蜓之间的不同线粒体密码子使用方式以及odonates的9个完整的有丝分裂基因组

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摘要

Damselflies and dragonflies, of the order Odonata, have distinct body plans and predatory abilities. Knowledge of their various evolutionary histories will allow for an understanding of the genetic and phenotypic evolution of insects. Mitogenomes are suitable materials to elucidate this, but the mitogenome of only a few odonates have been annotated. Herein, we report the complete mitogenome of nine odonates, including seven dragonflies and two damselflies, and a comprehensive analysis of the codon usage in 31 Odonata mitogenomes with the aim to estimate their evolutionary characteristics. Overall, a weak codon bias exists among odonate mitogenomes, although this favours AT-ending codons. Damselflies have a weaker codon usage bias than dragonflies, and 37 codons have significantly different usages. Both directional mutation and purifying selection shape damselfly and dragonfly mitogenomes. Although inevitable, directional mutation bias plays a minor role, whereas purifying selection pressure is the dominant evolutionary force. A higher selection pressure is observed in dragonflies than in damselflies, but it mainly acts on codon usage patterns rather than amino acid translation. Our findings suggest that dragonflies might have more efficient mitochondrial gene expression levels than damselflies, producing more proteins that support their locomotion and predatory abilities.
机译:蜻蜓目的蜻蜓和蜻蜓具有独特的身体计划和掠食能力。了解它们的各种进化历史将有助于了解昆虫的遗传和表型进化。丝分裂基因组是阐明这一点的合适材料,但是仅注释了少数卵酸盐的丝分裂基因组。在这里,我们报告了包括7个蜻蜓和两个豆娘在内的9个卵子的完整的有丝分裂基因组,并全面分析了31个Odonata有丝分裂基因组的密码子使用,以估计其进化特征。总体而言,在卵酸盐有丝分裂基因组中存在弱的密码子偏倚,尽管这有利于AT末端密码子。豆娘的密码子使用偏向较蜻蜓弱,而37个密码子的使用有明显不同。定向突变和纯化选择都影响豆娘和蜻蜓的有丝分裂基因组。尽管是不可避免的,但定向突变的偏见作用很小,而消除选择压力是主要的进化力。在蜻蜓中观察到比在豆娘中更高的选择压力,但它主要作用于密码子使用方式而不是氨基酸翻译。我们的发现表明,蜻蜓可能比豆娘具有更有效的线粒体基因表达水平,从而产生更多支持其运动和掠食能力的蛋白质。

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