Liu Kai-Hui, Ding Xiao-Wei, Narsing Rao Manik Prabhu, Zhang Bo, Zhang Yong-Gui, Liu Fei-Hu, Liu Bing-Bing, Xiao Min, Li Wen-Jun
School of Biological Science and Engineering, Shaanxi University of TechnologyHanzhong, China.
State Key Laboratory of Biocontrol and Guangdong Provincial Key Laboratory of Plant Resources, School of Life Sciences, Sun Yat-Sen UniversityGuangzhou, China.
Front Microbiol. 2017 Sep 21;8:1789. doi: 10.3389/fmicb.2017.01789. eCollection 2017.
Halophilic fungi have evolved unique osmoadaptive strategies, enabling them to thrive in hypersaline habitats. Here, we conduct morphological and transcriptomic response of endophytic fungus ( ZYD4) in both the presence and absence of salt stress. Under salt stress, the colony morphology of the ZYD4 changed drastically and exhibited decreased colony pigmentation. Extensive conidiophores development was observed under salt stress; conidiophores rarely developed in the absence of salt stress. Under salt stress, yellow cleistothecium formation was inhibited, while glycerol and compatible sugars continued to accumulate. Among differentially expressed unigenes (DEGs), 733 of them were up-regulated while 1,619 unigenes were down-regulated. We discovered that genes involved in the accumulation of glycerol, the storage of compatible sugars, organic acids, pigment production, and asexual sporulation were differentially regulated under salt stress. These results provide further understanding of the molecular basis of osmoadaptive mechanisms of halophilic endophytic fungi.
嗜盐真菌已经进化出独特的渗透适应策略,使它们能够在高盐环境中茁壮成长。在此,我们对内生真菌(ZYD4)在有盐胁迫和无盐胁迫情况下的形态和转录组反应进行了研究。在盐胁迫下,ZYD4的菌落形态发生了巨大变化,菌落色素沉着减少。在盐胁迫下观察到大量分生孢子梗的发育;在无盐胁迫时很少有分生孢子梗发育。在盐胁迫下,黄色闭囊壳的形成受到抑制,而甘油和相容性糖类持续积累。在差异表达的单基因(DEG)中,有733个上调,1619个下调。我们发现,参与甘油积累、相容性糖类储存、有机酸、色素产生和无性孢子形成的基因在盐胁迫下受到差异调节。这些结果为进一步了解嗜盐内生真菌渗透适应机制的分子基础提供了依据。