首页> 美国卫生研究院文献>Studies in Mycology >Duplications and losses of genes encoding known elements of the stress defence system of the Aspergilli contribute to the evolution of these filamentous fungi but do not directly influence their environmental stress tolerance
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Duplications and losses of genes encoding known elements of the stress defence system of the Aspergilli contribute to the evolution of these filamentous fungi but do not directly influence their environmental stress tolerance

机译:编码曲霉胁迫防御系统已知元件的基因的重复和丢失有助于这些丝状真菌的进化但并不直接影响其环境胁迫耐受性

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摘要

The contribution of stress protein duplication and deletion events to the evolution of the Aspergilli was studied. We performed a large-scale homology analysis of stress proteins and generated and analysed three stress defence system models based on Saccharomyces cerevisiae, Schizosaccharomyces pombe and Aspergillus nidulans. Although both yeast-based and A. nidulans-based models were suitable to trace evolutionary changes, the A. nidulans-based model performed better in mapping stress protein radiations. The strong Mantel correlation found between the positions of species in the phylogenetic tree on the one hand and either in the A. nidulans-based or S. cerevisiae-based models on the other hand demonstrated that stress protein expansions and reductions contributed significantly to the evolution of the Aspergilli. Interestingly, stress tolerance attributes correlated well with the number of orthologs only for a few stress proteins. Notable examples are Ftr1 iron permease and Fet3 ferro-O2-oxidoreductase, elements of the reductive iron assimilation pathway, in the S. cerevisiae-based model, as well as MpkC, a HogA-like mitogen activated protein kinase in the A. nidulans-based model. In the case of the iron assimilation proteins, the number of orthologs showed a positive correlation with H2O2-induced stress tolerance while the number of MpkC orthologs correlated positively with Congo Red induced cell wall stress, sorbitol induced osmotic stress and H2O2 induced oxidative stress tolerances. For most stress proteins, changes in the number of orthologs did not correlate well with any stress tolerance attributes. As a consequence, stress tolerance patterns of the studied Aspergilli did not correlate with either the sets of stress response proteins in general or with the phylogeny of the species studied. These observations suggest that stress protein duplication and deletion events significantly contributed to the evolution of stress tolerance attributes of Aspergilli. In contrast, there are other processes, which may counterbalance the effects of stress gene duplications or deletions including (i) alterations in the structures of stress proteins leading to changes in their biological activities, (ii) varying biosynthesis of stress proteins, (iii) rewiring stress response regulatory networks or even (iv) acquiring new stress response genes by horizontal gene transfer. All these multilevel changes are indispensable for the successful adaptation of filamentous fungi to altering environmental conditions, especially when these organisms are entering new ecological niches.
机译:研究了应激蛋白的复制和缺失事件对曲霉进化的贡献。我们对应激蛋白进行了大规模的同源性分析,并生成和分析了基于酿酒酵母,裂殖酵母和构巢曲霉的三种应激防御系统模型。尽管基于酵母和基于构巢曲霉的模型都适合追踪进化变化,但基于构巢曲霉的模型在绘制应激蛋白辐射方面表现更好。一方面在系统发育树中的物种位置与另一方面在基于构巢曲霉或基于酿酒酵母的模型中的物种位置之间发现了强烈的Mantel相关性,这表明应激蛋白的扩增和减少显着促进了进化黑曲霉的。有趣的是,仅少数几种应激蛋白的耐性属性与直系同源物的数量相关性很好。值得注意的例子是基于S.cerevisiae的模型中还原铁同化途径的元素Ftr1铁渗透酶和Fet3铁-O2-氧化还原酶,以及A.nidulans-中的HogA样丝裂原活化蛋白激酶MpkC。基于模型。就铁同化蛋白而言,直系同源物的数量与H2O2诱导的胁迫耐受性呈正相关,而MpkC直系同源物的数量与刚果红诱导的细胞壁胁迫,山梨醇诱导的渗透压和H2O2诱导的氧化胁迫耐受性呈正相关。对于大多数应激蛋白,直系同源物数量的变化与任何应激耐受性属性均不具有良好的相关性。结果,所研究的曲霉的胁迫耐性模式与总体上的胁迫应答蛋白集或所研究物种的系统发育均不相关。这些观察结果表明,应激蛋白的复制和缺失事件极大地促进了曲霉的应激耐受性属性的演变。相反,还有其他过程可能会抵消应激基因重复或缺失的影响,包括(i)应激蛋白结构的改变导致其生物学活性的改变,(ii)应激蛋白生物合成的变化,(iii)重新建立压力反应调控网络,甚至(iv)通过水平基因转移获得新的压力反应基因。所有这些多层次的变化对于成功地使丝状真菌适应环境条件的改变是必不可少的,尤其是当这些生物体进入新的生态位时。

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