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The ancestral levels of transcription and the evolution of sexual phenotypes in filamentous fungi

机译:丝状真菌的祖先转录水平和性表型的演变

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Changes in gene expression have been hypothesized to play an important role in the evolution of divergent morphologies. To test this hypothesis in a model system, we examined differences in fruiting body morphology of five filamentous fungi in the Sordariomycetes, culturing them in a common garden environment and profiling genome-wide gene expression at five developmental stages. We reconstructed ancestral gene expression phenotypes, identifying genes with the largest evolved increases in gene expression across development. Conducting knockouts and performing phenotypic analysis in two divergent species typically demonstrated altered fruiting body development in the species that had evolved increased expression. Our evolutionary approach to finding relevant genes proved far more efficient than other gene deletion studies targeting whole genomes or gene families. Combining gene expression measurements with knockout phenotypes facilitated the refinement of Bayesian networks of the genes underlying fruiting body development, regulation of which is one of the least understood processes of multicellular development.
机译:假设基因表达的变化在不同形态的进化中起重要作用。为了在模型系统中检验该假设,我们检查了Sordariomycetes中五种丝状真菌在子实体形态上的差异,在普通的花园环境中对其进行培养,并在五个发育阶段对全基因组基因表达进行了分析。我们重建了祖先的基因表达表型,确定了在整个开发过程中基因表达的最大进化增加的基因。在两个趋异物种中进行基因敲除并进行表型分析通常表明,在进化表达增加的物种中,子实体的发育发生了改变。我们发现相关基因的进化方法远比针对整个基因组或基因家族的其他基因删除研究有效得多。将基因表达测量值与敲除表型结合起来,有助于完善子实体发育基础基因的贝叶斯网络,其调控是多细胞发育过程中鲜为人知的过程之一。

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