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首页> 外文期刊>Plant Molecular Biology >Comparative analysis of selection mode reveals different evolutionary rate and expression pattern in Arachis duranensis and Arachis ipaensis duplicated genes
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Comparative analysis of selection mode reveals different evolutionary rate and expression pattern in Arachis duranensis and Arachis ipaensis duplicated genes

机译:选择模式的比较分析揭示了阿拉氏杜兰森斯和阿拉氏素Ipaensis重复基因的不同进化率和表达模式

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Key messageOur results reveal that K-s is a determining factor affecting selective pressure and different evolution and expression patterns are detected between PSGs and NSGs in wild Arachis duplicates.AbstractSelective pressure, including purifying (negative) and positive selection, can be detected in organisms. However, studies on comparative evolutionary rates, gene expression patterns and gene features between negatively selected genes (NSGs) and positively selected genes (PSGs) are lagging in paralogs of plants. Arachis duranensis and Arachis ipaensis are ancestors of the cultivated peanut, an important oil and protein crop. Here, we carried out a series of systematic analyses, comparing NSG and PSG in paralogs, using genome sequences and transcriptome datasets in A. duranensis and A. ipaensis. We found that synonymous substitution rate (K-s) is a determining factor affecting selective pressure in A. duranensis and A. ipaensis duplicated genes. Lower expression level, lower gene expression breadth, higher codon bias and shorter polypeptide length were found in PSGs and not in NSGs. The correlation analyses showed that gene expression breadth was positively correlated with polypeptide length and GC content at the first codon site (GC1) in PSGs and NSGs, respectively. There was a negative correlation between expression level and polypeptide length in PSGs. In NSGs, the K-s was positively correlated with expression level, gene expression breadth, GC1, and GC content at the third codon site (GC3), but selective pressure was negatively correlated with expression level, gene expression breadth, polypeptide length, GC1, and GC3 content. The function of most duplicated gene pairs was divergent under drought and nematode stress. Taken together, our results show that different evolution and expression patterns occur between PSGs and NSGs in paralogs of two wild Arachis species.
机译:关键令人兴趣的结果表明,K-S是影响选择性压力的确定因素,并且在野生甘蔗渣中的PSG和NSG之间检测不同的演化和表达模式。在生物体中可以检测到包括净化(阴性)和阳性选择。然而,对比较进化速率,基因表达模式和基因特征在带负选生的基因(NSG)和正面选择的基因(PSG)之间的研究在植物的常见型中滞后。 Arachis Duranensis和Arachis iPaensis是栽培花生的祖先,重要的油和蛋白质作物。在这里,我们使用在A.Duranensis和A. iPaensis中的基因组序列和转录组数据集进行了一系列系统分析,比较了NSG和PSG。我们发现同义替代率(K-S)是影响A.Duranensis和A.Ipaensis重复基因的选择性压力的决定因素。在PSG中发现较低的表达水平,降低基因表达宽度,更高的密码子偏置和更短的多肽长度,而不是在NSG中。相关性分析表明,基因表达宽度分别与PSG和NSG的第一密码子位点(GC1)的多肽长度和GC含量呈正相关。表达水平与PSG中的多肽长度之间存在负相关性。在NSG中,KS与第三密码子位点(GC3)的表达水平,基因表达宽度,GC1和GC含量呈正相关,但是选择性压力与表达水平,基因表达宽度,多肽长度,GC1和GC3内容。大多数重复基因对的功能在干旱和线虫应力下发散。我们的结果表明,两种野生植物种类的PSGS和NSG之间发生了不同的演化和表达模式。

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