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Genome-wide analysis reveals diverged patterns of codon bias, gene expression, and rates of sequence evolution in Picea gene families

机译:全基因组分析揭示了picea基因家族中密码子偏倚,基因表达和序列进化速率的不同模式

摘要

The recent sequencing of several gymnosperm genomes has greatly facilitated studying the evolution of their genes and gene families. In this study, we examine the evidence for expression-mediated selection in the first two fully sequenced representatives of the gymnosperm plant clade (Picea abies and Picea glauca). We use genome-wide estimates of gene expression (> 50,000 expressed genes) to study the relationship between gene expression, codon bias, rates of sequence divergence, protein length, and gene duplication. We found that gene expression is correlated with rates of sequence divergence and codon bias, suggesting that natural selection is acting on Picea protein-coding genes for translational efficiency. Gene expression, rates of sequence divergence, and codon bias are correlated with the size of gene families, with large multicopy gene families having, on average, a lower expression level and breadth, lower codon bias, and higher rates of sequence divergence than single-copy gene families. Tissue-specific patterns of gene expression were more common in large gene families with large gene expression divergence than in single-copy families. Recent family expansions combined with large gene expression variation in paralogs and increased rates of sequence evolution suggest that some Picea gene families are rapidly evolving to cope with biotic and abiotic stress. Our study highlights the importance of gene expression and natural selection in shaping the evolution of protein-coding genes in Picea species, and sets the ground for further studies investigating the evolution of individual gene families in gymnosperms.
机译:几种裸子植物基因组的最新测序极大地促进了其基因和基因家族的进化研究。在这项研究中,我们检查了裸子植物植物进化枝(Picea abies和Picea glauca)的前两个完全测序代表中表达介导选择的证据。我们使用全基因组估计的基因表达(> 50,000个表达的基因)来研究基因表达,密码子偏倚,序列差异发生率,蛋白质长度和基因重复之间的关系。我们发现基因表达与序列差异和密码子偏倚率相关,这表明自然选择作用于Picea蛋白编码基因以提高翻译效率。基因表达,序列差异的速率和密码子偏倚与基因家族的大小相关,与多单拷贝基因家族相比,平均而言,其表达水平和广度更低,密码子偏倚更低,序列差异的比率高于单基因组。复制基因家族。在具有较大基因表达差异的大基因家族中,基因表达的组织特异性模式比在单拷贝家族中更为常见。最近的家族扩展与旁系同源物的大基因表达变化以及序列进化速率的提高相结合,表明一些云杉属基因家族正在迅速发展以应对生物和非生物胁迫。我们的研究突出了基因表达和自然选择在塑造云杉属蛋白质编码基因进化中的重要性,并为进一步研究裸子植物单个基因家族的进化奠定了基础。

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