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Overview of Oxidative Stress Response Genes in Selected Halophilic Fungi

机译:嗜盐真菌中氧化应激反应基因的概述

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Exposure of microorganisms to stress, including to high concentrations of salt, can lead to increased production of reactive oxygen species in the cell. To limit the resulting damage, cells have evolved a variety of antioxidant defenses. The role of these defenses in halotolerance has been proposed before. Whole genome sequencing for some of the most halotolerant and halophilic fungal species has enabled us to investigate the possible links between oxidative and salt stress tolerance on the genomic level. We identified genes involved in oxidative stress response in the halophilic basidiomycete Wallemia ichthyophaga , and halotolerant ascomycetous black yeasts Hortaea werneckii and Aureobasidium pullulans , and compared them to genes from 16 other fungi, both asco- and basidiomycetes. According to our results, W. ichthyophaga can survive salinities detrimental to most other organisms with only a moderate number of oxidative stress response genes. In other investigated species, however, the maximum tolerated salinity correlated with the number of genes encoding three major enzymes of the cellular oxidative stress response: superoxide dismutases, catalases, and peroxiredoxins. This observation supports the hypothetical link between the antioxidant capacity of cells and their halotolerance.
机译:微生物暴露于压力,包括高浓度的盐,可以导致细胞中的活性氧物质的产生增加。为了限制所产生的损伤,细胞已经进化了各种抗氧化防御。之前提出了这些防御在Halotolerance中的作用。对于一些最吸烟剂和嗜嗜盐的真菌物种的全基因组测序使我们能够研究氧化和盐胁迫耐受性对基因组水平之间的可能链接。我们鉴定了嗜嗜盐盆磷酸盐血瘤ICHthyophaga中氧化应激反应的基因,并且Halotolerant ascorcete黑色酵母Hortaea Werneccii和Aurebasidium pullulans,并将它们与来自16种其他真菌,asco-和ZhiDiomycetes的基因进行了比较。根据我们的结果,W.ichthyophaga可以存活对大多数其他生物有害的盐度,只有氧化应激反应基因。然而,在其他研究中,最大耐受性盐度与编码细胞氧化应激反应的三个主要酶的基因数量相关:超氧化物脱粉酶,过症酶和过氧氧化嗪。该观察结果支持细胞的抗氧化能力与其黑烟体之间的假设联系。

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