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CmpacC regulates mycoparasitism, oxalate degradation and antifungal activity in the mycoparasitic fungus Coniothyrium minitans

机译:CmpacC调节真菌寄生真菌小孢子菌(Coniothyrium minitans)中的真菌寄生虫,草酸盐降解和抗真菌活性。

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摘要

The PacC/Rim101 pH-responsive transcription factor is an important pathogenicity element for many plant-pathogenic fungi. In this study, we investigated the roles of a PacC homologue, CmpacC, in the mycoparasitic fungus Coniothyrium minitans. CmpacC was confirmed to have the transcriptional activation activity by the transcriptional activation test in Saccharomyces cerevisiae. Disruption of CmpacC resulted in impaired fungal responses to ambient pH. Compared to the wild-type, the CmpacC-disruption mutant CmpacC-29 was significantly suppressed for activities of chitinase and -1,3-glucanase at pH 5 and 7, consistent with reduced expression levels of Cmch1 and Cmg1 coding for the two enzymes respectively. However, the mutant displayed acidity-mimicking phenotypes such as improved oxalate degradation and increased antifungal activity at pH 6 or higher. Improved efficacy in oxalate degradation by CmpacC-29 was consistent with the enhanced expression level of Cmoxdc1 coding for oxalate decarboxylase. CmpacC transcriptional activation of Cmch1 and Cmg1 and repression of Cmoxdc1 were verified by the presence of the PacC/Rim101 consensus binding-motifs in gene promoter regions and by the promoter DNA-binding assays. This study suggests that CmpacC plays an activator role in regulation of C. minitans mycoparasitism, whereas plays a repressor role in regulation of oxalate degradation and possibly antifungal activity of C. minitans.
机译:PacC / Rim101 pH响应转录因子是许多植物致病真菌的重要致病因素。在这项研究中,我们调查了PacC同源物CmpacC在真菌寄生真菌小锥虫(Coniothyrium minitans)中的作用。通过酿酒酵母中的转录激活试验,证实了CmpacC具有转录激活活性。 CmpacC的破坏导致真菌对环境pH的反应减弱。与野生型相比,在pH 5和7下,CmpacC破坏突变体CmpacC-29的几丁质酶和-1,3-葡聚糖酶的活性被显着抑制,这与分别编码这两种酶的Cmch1和Cmg1的表达水平降低相一致。 。然而,该突变体表现出类似酸度的表型,例如在pH 6或更高的条件下草酸盐的降解得到改善,抗真菌活性增强。 CmpacC-29改善草酸盐降解的功效与编码草酸盐脱羧酶的Cmoxdc1的表达水平提高是一致的。通过基因启动子区域中PacC / Rim101共有结合基序的存在和启动子DNA结合测定,验证了CmpacC和Cmg1的CmpacC转录激活和Cmoxdc1的抑制。这项研究表明,CmpacC在调节小隐孢子虫的真菌副寄生虫中起活化剂的作用,而在抑制草酸盐降解和可能对小曲霉的抗真菌活性起抑制作用。

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