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Ssu72 调控 在真菌发育、黄曲霉毒素生物合成和致病性中的作用。

Ssu72 Regulates Fungal Development, Aflatoxin Biosynthesis and Pathogenicity in .

机构信息

Key Laboratory of Pathogenic Fungi and Mycotoxins of Fujian Province, Key Laboratory of Biopesticide and Chemical Biology of Education Ministry, School of Life Sciences, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

出版信息

Toxins (Basel). 2020 Nov 13;12(11):717. doi: 10.3390/toxins12110717.

Abstract

The RNA polymerase II (Pol II) transcription process is coordinated by the reversible phosphorylation of its largest subunit-carboxy terminal domain (CTD). Ssu72 is identified as a CTD phosphatase with specificity for phosphorylation of Ser5 and Ser7 and plays critical roles in regulation of transcription cycle in eukaryotes. However, the biofunction of Ssu72 is still unknown in , which is a plant pathogenic fungus and produces one of the most toxic mycotoxins-aflatoxin. Here, we identified a putative phosphatase Ssu72 and investigated the function of Ssu72 in . Deletion of resulted in severe defects in vegetative growth, conidiation and sclerotia formation. Additionally, we found that phosphatase Ssu72 positively regulates aflatoxin production through regulating expression of aflatoxin biosynthesis cluster genes. Notably, seeds infection assays indicated that phosphatase Ssu72 is crucial for pathogenicity of . Furthermore, the Δ mutant exhibited more sensitivity to osmotic and oxidative stresses. Taken together, our study suggests that the putative phosphatase Ssu72 is involved in fungal development, aflatoxin production and pathogenicity in , and may provide a novel strategy to prevent the contamination of this pathogenic fungus.

摘要

RNA 聚合酶 II(Pol II)转录过程通过其最大亚基羧基末端结构域(CTD)的可逆磷酸化来协调。Ssu72 被鉴定为一种 CTD 磷酸酶,对 Ser5 和 Ser7 的磷酸化具有特异性,在真核生物转录周期的调节中发挥着关键作用。然而,在 中,Ssu72 的生物功能仍然未知。 是一种植物病原真菌,产生最毒的霉菌毒素之一——黄曲霉毒素。在这里,我们鉴定了一个假定的磷酸酶 Ssu72,并研究了 Ssu72 在 中的功能。 的缺失导致营养生长、分生孢子形成和产黑色素体形成严重缺陷。此外,我们发现磷酸酶 Ssu72 通过调节黄曲霉生物合成基因簇的表达正向调节黄曲霉毒素的产生。值得注意的是,种子感染实验表明,磷酸酶 Ssu72 对 的致病性至关重要。此外,Δ突变体对渗透压和氧化应激更敏感。总之,我们的研究表明,假定的磷酸酶 Ssu72 参与了真菌发育、黄曲霉毒素产生和致病性 ,并可能为防止这种致病真菌的污染提供一种新的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b27b/7696088/4170971d6e3b/toxins-12-00717-g001.jpg

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