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14-3-3 proteins are involved in growth, hyphal branching, ganoderic acid biosynthesis, and response to abiotic stress in Ganoderma lucidum

机译:14-3-3蛋白涉及生长,亚酚菌分支,加霉酸生物合成,以及对灵芝的反应对非生物胁迫的反应

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Ganoderma lucidum, which contains many pharmacologically active compounds, is regarded as a traditional medicinal fungus. Nevertheless, the scarcity of basic research limits the commercial value and utilization of G. lucidum. As a class of highly conserved, phosphopeptide-binding proteins present in all eukaryotes, 14-3-3 proteins play vital roles in controlling multiple physiological processes, including signal transduction, primary metabolism, and stress responses. However, knowledge of the roles of 14-3-3 proteins in Basidiomycetes is sparse. In this article, two homologs of 14-3-3 proteins, encoded by the two distinct genes GlBmh1 and GlBmh2, were distinguished in G. lucidum. We found that GlBmh1 and GlBmh2 were expressed at various developmental stages, including in vegetative mycelium cultivated on solid medium and in primordia and fruiting bodies. Moreover, we constructed GlBmh1 single-silenced strains, GlBmh2 single-silenced strains, and 14-3-3 double-silenced mutants for further study. When GlBmh1 and GlBmh2 were inhibited by RNA interference, the growth rate of mycelia was decreased, and the distance between the aerial hyphal branches was reduced; responses to various abiotic stresses such as oxidants and cell wall and osmotic stressors were also changed. Furthermore, the contents of secondary metabolite ganoderic acids (GAs) were increased after GlBmh1 and GlBmh2 were simultaneously silenced. Taken together, we provide evidence that implicates potential roles for the two 14-3-3 proteins in affecting growth and GA biosynthesis, thereby providing new insights into the basic functions of 14-3-3 proteins in G. lucidum.
机译:含有许多药理学活性化合物的灵芝被认为是传统的药用真菌。然而,基础研究的稀缺限制了G. lucidum的商业价值和利用率。作为一类高度保守的磷酸肽结合蛋白,存在于所有真核生物中,14-3-3蛋白在控制多种生理过程中起重要作用,包括信号转导,初级代谢和应力反应。然而,了解底漆中14-3-3蛋白的作用的知识是稀疏的。在本文中,由两个不同基因GLBMH1和GLBMH2编码的两个11-3-3个蛋白质的同源物中被区别在G. lucidum中。我们发现GLBMH1和GLBMH2在各种发育阶段表达,包括在固体培养基和原始培养基和原果体上培养的植物菌丝体。此外,我们构建了GLBMH1单沉默的菌株,GLBMH2单沉默的菌株和14-3-3个双静音突变体进行进一步研究。当通过RNA干扰抑制GLBMH1和GLBMH2时,菌丝体的生长速率降低,并且空中悬垂分支之间的距离减少了;还改变了对各种非生物应激等氧化剂和细胞壁和渗透压源的反应。此外,在GLBMH1和GLBMH 2同时沉默后,次级代谢物环酰酸(气体)的含量增加。我们一起携带了证据,这意味着两种14-3-3蛋白在影响生长和GA生物合成时暗示潜在的作用,从而为G. lucidum中的14-3-3蛋白的基本功能提供了新的见解。

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