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Expression-Linked Patterns of Codon Usage Amino Acid Frequency and Protein Length in the Basally Branching Arthropod Parasteatoda tepidariorum

机译:基底节肢节肢动物节肢拟蝇中的密码子使用氨基酸频率和蛋白质长度的表达连锁模式

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摘要

Spiders belong to the Chelicerata, the most basally branching arthropod subphylum. The common house spider, Parasteatoda tepidariorum, is an emerging model and provides a valuable system to address key questions in molecular evolution in an arthropod system that is distinct from traditionally studied insects. Here, we provide evidence suggesting that codon usage, amino acid frequency, and protein lengths are each influenced by expression-mediated selection in P. tepidariorum. First, highly expressed genes exhibited preferential usage of T3 codons in this spider, suggestive of selection. Second, genes with elevated transcription favored amino acids with low or intermediate size/complexity (S/C) scores (glycine and alanine) and disfavored those with large S/C scores (such as cysteine), consistent with the minimization of biosynthesis costs of abundant proteins. Third, we observed a negative correlation between expression level and coding sequence length. Together, we conclude that protein-coding genes exhibit signals of expression-related selection in this emerging, noninsect, arthropod model.
机译:蜘蛛属于Chelicerata,是最基本分支的节肢动物亚门。普通蜘蛛蜘蛛(Parasteatoda tepidariorum)是一种新兴模型,为解决节肢动物系统中分子进化中的关键问题提供了有价值的系统,该系统不同于传统研究的昆虫。在这里,我们提供的证据表明,密码子的使用,氨基酸频率和蛋白质长度均受te。pidpidariorum中表达介导的选择的影响。首先,高表达基因在该蜘蛛中表现出T3密码子的优先使用,提示选择。其次,转录水平较高的基因有利于氨基酸的低或中等大小/复杂度(S / C)分数(甘氨酸和丙氨酸),而不利于那些具有较大S / C分数的氨基酸(例如半胱氨酸),这与最大限度地降低生物合成成本相一致。丰富的蛋白质。第三,我们观察到表达水平和编码序列长度之间的负相关。在一起,我们得出结论,在这种新兴的非昆虫节肢动物模型中,蛋白质编码基因表现出与表达相关的选择信号。

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