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首页> 外文期刊>Genes >Distinct Roles of Velvet Complex in the Development, Stress Tolerance, and Secondary Metabolism in Pestalotiopsis microspora , a Taxol Producer
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Distinct Roles of Velvet Complex in the Development, Stress Tolerance, and Secondary Metabolism in Pestalotiopsis microspora , a Taxol Producer

机译:天鹅绒复合物在小菜蛾生产中的发展,抗逆性和次生代谢中的不同作用

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The velvet family proteins have been shown to play critical roles in fungal secondary metabolism and development. However, variations of the roles have been observed in different fungi. We report here the observation on the role of three velvet complex components VeA, VelB, and LaeA in Pestalotiopsis microspora , a formerly reported taxol-producing fungus. Deletion of individual members led to the retardation of vegetative growth and sporulation and pigmentation, suggesting critical roles in these processes. The mutant strain △velB appeared hypersensitive to osmotic stress and the dye Congo red, whereas △veA and △laeA were little affected by the pressures, suggesting only velB was required for the integrity of the cell wall. Importantly, we found that the genes played distinct roles in the biosynthesis of secondary metabolites in P. microspora . For instance, the production of pestalotiollide B, a previously characterized polyketide, required velB and laeA . In contrast, the veA gene appeared to inhibit the pestalotiollide B (PB) role in its biosynthesis. This study suggests that the three components of the velvet complex are important global regulators, but with distinct roles in hyphal growth, asexual production, and secondary metabolism in P. microspora . This work provides information for further understanding the biosynthesis of secondary metabolism in the fungus.
机译:天鹅绒家族蛋白已被证明在真菌的次级代谢和发育中起关键作用。但是,已经在不同的真菌中观察到了作用的变化。我们在此报告对三个天鹅绒复合成分VeA,VelB和LaeA在Pestalotiopsis microspora(一种以前报道过的产生紫杉醇的真菌)中的作用的观察。单个成员的删除导致营养生长,孢子形成和色素沉着的延迟,表明在这些过程中的关键作用。突变株△velB表现出对渗透压和刚果红染料高度敏感,而△veA和△laeA受压力的影响很小,表明仅velB才需要细胞壁的完整性。重要的是,我们发现该基因在小孢子菌次生代谢产物的生物合成中起着不同的作用。例如,先前表征为聚酮的杀虫藻酸酯B的生产需要velB和laeA。相比之下,veA基因似乎在其生物合成中抑制了鼠瘟脂B(PB)的作用。这项研究表明,天鹅绒复合物的三个成分是重要的全球调节剂,但在小孢子菌的菌丝生长,无性繁殖和次级代谢中具有独特的作用。这项工作为进一步了解真菌中次级代谢的生物合成提供了信息。

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