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Integrative Activity of Mating Loci, Environmentally Responsive Genes, and Secondary Metabolism Pathways during Sexual Development of Chaetomium globosum

机译:球毛壳有性发育过程中的交配基因,环境响应基因和次级代谢途径的整合活动。

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The origins and maintenance of the rich fungal diversity have been longstanding issues in evolutionary biology. To investigate how differences in expression regulation contribute to divergences in development and ecology among closely related species, transcriptomes were compared between Chaetomium globosum , a homothallic pathogenic fungus thriving in highly humid ecologies, and Neurospora crassa , a heterothallic postfire saprotroph. Gene expression was quantified in perithecia at nine distinct morphological stages during nearly synchronous sexual development. Unlike N. crassa , expression of all mating loci in C. globosum was highly correlated. Key regulators of the initiation of sexual development in response to light stimuli—including orthologs of N. crassa sub-1 , sub-1 -dependent gene NCU00309, and asl-1 —showed regulatory dynamics matching between C. globosum and N. crassa . Among 24 secondary metabolism gene clusters in C. globosum , 11—including the cochliodones biosynthesis cluster—exhibited highly coordinated expression across perithecial development. C. globosum exhibited coordinately upregulated expression of histidine kinases in hyperosmotic response pathways—consistent with gene expression responses to high humidity we identified in fellow pathogen Fusarium graminearum . Bayesian networks indicated that gene interactions during sexual development have diverged in concert with the capacities both to reproduce asexually and to live a self-compatible versus self-incompatible life cycle, shifting the hierarchical roles of genes associated with conidiation and heterokaryon incompatibility in N. crassa and C. globosum . This divergence supports an evolutionary history of loss of conidiation due to unfavorable combinations of heterokaryon incompatibility in homothallic species.
机译:丰富的真菌多样性的起源和维持一直是进化生物学中的长期问题。为了研究表达调控的差异如何导致密切相关物种之间的发育和生态差异,比较了在高度潮湿的生态环境中蓬勃发展的同型致病真菌球壳龟(Chaetomium globosum)和异火后腐烂的腐生腐殖层神经孢菌(Neurospora crassa)的转录组。在近乎同步的性发育过程中,在皮层组织的9个不同形态学阶段对基因表达进行了定量。不像N. crassa,球孢梭菌中所有交配基因座的表达都高度相关。响应光刺激而启动性发育的关键调控因子(包括克鲁萨猪笼草sub-1直系同源基因,sub-1依赖基因NCU00309和asl-1)显示了球形梭菌和克鲁萨猪笼草的调控动力学匹配。在球孢梭菌的24个次级代谢基因簇中,包括耳蜗生物合成簇在内的11个簇在整个内皮发育中表现出高度协调的表达。球孢梭菌在高渗反应途径中显示出组氨酸激酶的协同上调表达,这与我们在病原体禾谷镰刀菌中鉴定的对高湿度的基因表达反应一致。贝叶斯网络表明,性发育过程中的基因相互作用与无性繁殖能力和自相容性与非相容性生命周期的能力不一致,从而改变了与N. crassa的成胎和异核体不相容相关的基因的分层作用。和C. globosum。这种差异支持了由于同核物种中异核体不相容性的不利组合而导致丧失子位的进化史。

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