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Back to the Salt Mines: Genome and Transcriptome Comparisons of the Halophilic Fungus Aspergillus salisburgensis and Its Halotolerant Relative Aspergillus sclerotialis

机译:回到盐矿:嗜盐真菌salisburgensis和其耐盐性相对菌巩膜曲霉的基因组和转录组比较。

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摘要

Salt mines are among the most extreme environments as they combine darkness, low nutrient availability, and hypersaline conditions. Based on comparative genomics and transcriptomics, we describe in this work the adaptive strategies of the true halophilic fungus Aspergillus salisburgensis, found in a salt mine in Austria, and compare this strain to the ex-type halotolerant fungal strain Aspergillus sclerotialis. On a genomic level, A. salisburgensis exhibits a reduced genome size compared to A. sclerotialis, as well as a contraction of genes involved in transport processes. The proteome of A. sclerotialis exhibits an increased proportion of alanine, glycine, and proline compared to the proteome of non-halophilic species. Transcriptome analyses of both strains growing at 5% and 20% NaCl show that A. salisburgensis regulates three-times fewer genes than A. sclerotialis in order to adapt to the higher salt concentration. In A. sclerotialis, the increased osmotic stress impacted processes related to translation, transcription, transport, and energy. In contrast, membrane-related and lignolytic proteins were significantly affected in A. salisburgensis.
机译:盐矿是最极端的环境之一,因为它们结合了黑暗,低养分利用率和高盐度条件。基于比较的基因组学和转录组学,我们在这项工作中描述了在奥地利的一个盐矿中发现的真正嗜盐真菌salisburgensis的适应性策略,并将该菌株与前类型的耐盐真菌菌株巩膜曲霉进行了比较。在基因组水平上,与巩膜曲霉相比,拟南芥显示出减小的基因组大小,以及与运输过程有关的基因收缩。与非嗜盐菌种的蛋白质组相比,巩膜曲霉的蛋白质组显示出增加的丙氨酸,甘氨酸和脯氨酸比例。两种菌株分别在5%和20%NaCl浓度下进行的转录组分析表明,为了适应更高的盐浓度,拟南芥A. salisburgensis调控的基因比巩膜拟南芥少三倍。在巩膜曲霉中,渗透胁迫的增加影响了与翻译,转录,转运和能量相关的过程。相比之下,膜相关蛋白和木质素分解蛋白在salisburgensis中受到显着影响。

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