首页> 外文期刊>Frontiers in Microbiology >Histone H3 Lysine 9 Methyltransferase DIM5 Is Required for the Development and Virulence of Botrytis cinerea
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Histone H3 Lysine 9 Methyltransferase DIM5 Is Required for the Development and Virulence of Botrytis cinerea

机译:组蛋白H3赖氨酸9甲基转移酶DIM5是 cinetry cinerea 的发育和毒力所必需的

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摘要

Histone methylation is widely present in animals, plants and fungi, and the methylation modification of histone H3 has important biological functions. Methylation of Lys9 of histone H3 (H3K9) has been proven to regulate chromatin structure, gene silencing, transcriptional activation, plant metabolism, and other processes. In this work, we investigated the functions of a H3K9 methyltransferase gene BcDIM5 in Botrytis cinerea , which contains a PreSET domain, a SET domain and a PostSET domain. Characterization of BcDIM5 knockout transformants showed that the hyphal growth rate and production of conidiophores and sclerotia were significantly reduced, while complementary transformation of BcDIM5 could restore the phenotypes to the levels of wild type. Pathogenicity assays revealed that BcDIM5 was essential for full virulence of B. cinerea. BcDIM5 knockout transformants exhibited decreased virulence, down-regulated expression of some pathogenic genes and drastically decreased H3K9 trimethylation level. However, knockout transformants of other two genes heterochromatin protein 1 (HP1) BcHP1 and DNA methyltransferase (DIM2) BcDIM2 did not exhibit significant change in the growth phenotype and virulence compared with the wild type. Our results indicate that H3K9 methyltransferase BcDIM5 is required for H3K9 trimethylation to regulate the development and virulence of B. cinerea .
机译:组蛋白甲基化广泛存在于动植物和真菌中,组蛋白H3的甲基化修饰具有重要的生物学功能。组蛋白H3(H3K9)的Lys9的甲基化已被证明可调节染色质结构,基因沉默,转录激活,植物代谢和其他过程。在这项工作中,我们调查了灰葡萄孢中H3K9甲基转移酶基因BcDIM5的功能,该基因包含一个PreSET域,一个SET域和一个PostSET域。 BcDIM5基因敲除转化子的表征表明,菌丝的生长速度和分生孢子和菌核的产生显着降低,而BcDIM5的互补转化可以将表型恢复到野生型。致病性分析表明,BcDIM5对灰葡萄孢的完全毒力至关重要。 BcDIM5基因敲除转化体表现出降低的毒力,下调一些致病基因的表达,并显着降低H3K9三甲基化水平。但是,与野生型相比,其他两个基因的异染色质蛋白1(HP1)BcHP1和DNA甲基转移酶(DIM2)BcDIM2的敲除转化体在生长表型和毒力上均未表现出显着变化。我们的结果表明,H3K9三甲基化需要H3K9甲基转移酶BcDIM5来调节灰葡萄球菌的发育和毒力。

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