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高表达基因优先被共适应用于 C4 光合作用。

Highly Expressed Genes Are Preferentially Co-Opted for C4 Photosynthesis.

机构信息

Animal and Plant Sciences, University of Sheffield, Sheffield, United Kingdom.

出版信息

Mol Biol Evol. 2018 Jan 1;35(1):94-106. doi: 10.1093/molbev/msx269.

Abstract

Novel adaptations are generally assembled by co-opting pre-existing genetic components, but the factors dictating the suitability of genes for new functions remain poorly known. In this work, we used comparative transcriptomics to determine the attributes that increased the likelihood of some genes being co-opted for C4 photosynthesis, a convergent complex trait that boosts productivity in tropical conditions. We show that independent lineages of grasses repeatedly co-opted the gene lineages that were the most highly expressed in non-C4 ancestors to produce their C4 pathway. Although ancestral abundance in leaves explains which genes were used for the emergence of a C4 pathway, the tissue specificity has surprisingly no effect. Our results suggest that levels of key genes were elevated during the early diversification of grasses and subsequently repeatedly used to trigger a weak C4 cycle via relatively few mutations. The abundance of C4-suitable transcripts therefore facilitated physiological innovation, but the transition to a strong C4 pathway still involved consequent changes in expression levels, leaf specificity, and coding sequences. The direction and amount of changes required for the strong C4 pathway depended on the identity of the genes co-opted, so that ancestral gene expression both facilitates adaptive transitions and constrains subsequent evolutionary trajectories.

摘要

新的适应通常是通过借用现有的遗传成分来组装的,但决定基因适合新功能的因素仍知之甚少。在这项工作中,我们使用比较转录组学来确定增加某些基因被共同用于 C4 光合作用的可能性的属性,C4 光合作用是一种趋同的复杂特征,可以提高热带条件下的生产力。我们表明,草类的独立谱系反复采用了在非 C4 祖先中表达水平最高的基因谱系来产生它们的 C4 途径。尽管叶片中祖先的丰度解释了哪些基因被用于 C4 途径的出现,但组织特异性却没有影响。我们的研究结果表明,关键基因的水平在草类早期多样化时升高,随后通过相对较少的突变多次被用来引发弱 C4 循环。因此,C4 合适的转录本的丰度促进了生理创新,但向强 C4 途径的转变仍然涉及表达水平、叶片特异性和编码序列的后续变化。强 C4 途径所需的变化方向和幅度取决于共同采用的基因的身份,因此,祖先基因的表达既促进了适应性转变,又限制了随后的进化轨迹。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60c7/5850498/5f350f5515e5/msx269f1.jpg

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