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Comparative transcriptome analysis of the lichen-forming fungus Endocarpon pusillum elucidates its drought adaptation mechanisms

机译:地衣形成真菌Endocarpon pusillum的转录组比较分析阐明了其干旱适应机制

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The lichen-forming fungus was isolated from the desert lichen Endocarpon pusillum that is extremely drought resistant. To understand the molecular mechanisms of drought resistance in the fungus, we employed RNA-seq and quantitative real-time PCR to compare and characterize the differentially expressed genes in pure culture at two different water levels and with that in desiccated lichen. The comparative transcriptome analysis indicated that a total of 1781 genes were differentially expressed between samples cultured under normal and PEG-induced drought stress conditions. Similar to those in drought resistance plants and non-lichenized fungi, the common drought-resistant mechanisms were differentially expressed in E. pusillum . However, the expression change of genes involved in osmotic regulation in E. pusillum is different, which might be the evidence for the feature of drought adaptation. Interestingly, different from other organisms, some genes involved in drought adaption mechanisms showed significantly different expression patterns between the presence and absence of drought stress in E. pusillum . The expression of 23 candidate stress responsive genes was further confirmed by quantitative real-time PCR using dehydrated E. pusillum lichen thalli. This study provides a valuable resource for future research on lichen-forming fungi and shall facilitate future functional studies of the specific genes related to drought resistance. Keywords lichen mycobiont dehydration drought adaption drought resistant.
机译:地衣形成真菌是从极耐干旱的沙漠地衣内果皮中分离出来的。为了了解真菌抗旱的分子机制,我们使用了RNA-seq和定量实时PCR来比较和鉴定纯培养物在两种不同水位下以及与干燥地衣中的差异表达基因。比较转录组分析表明,在正常和PEG诱导的干旱胁迫条件下培养的样品之间共有1781个基因差异表达。与抗旱植物和非地衣真菌中的那些相似,常见的抗旱机制在E. pusillum中有差异表达。然而,参与短毛肠菌渗透调节的基因的表达变化是不同的,这可能是干旱适应特征的证据。有趣的是,与其他生物不同,一些参与干旱适应机制的基因在短小肠埃希氏菌中是否存在干旱胁迫,表现出明显不同的表达方式。 23种候选应激反应基因的表达进一步通过定量实时PCR使用脱水大肠埃希氏菌进行证实。这项研究为今后对地衣形成真菌的研究提供了宝贵的资源,并将促进与抗旱性有关的特定基因的未来功能研究。关键词地衣微生物脱水干旱适应性抗旱

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