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首页> 外文期刊>Molecular Plant-Microbe Interactions >ELP3 Is Involved in Sexual and Asexual Development, Virulence, and the Oxidative Stress Response in Fusarium graminearum
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ELP3 Is Involved in Sexual and Asexual Development, Virulence, and the Oxidative Stress Response in Fusarium graminearum

机译:ELP3参与镰刀镰刀菌的性和无性发育,毒力和氧化应激反应

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Fusarium graminearum is an important fungal plant pathogen that causes serious losses in cereal crop yields and mycotoxicoses in humans and livestock. In this study, we characterized an insertion mutant, Z39R9282, with pleiotropic defects in sexual development and virulence. We determined that the insertion occurred in a gene encoding an ortholog of yeast elongator complex protein 3 (ELP3). Deletion of elp3 led to significant defects in sexual and asexual development in F. graminearum. In the elp3 deletion mutant, the number of perithecia formed was reduced and maturation of perithecia was delayed. This mutant also produced morphologically abnormal ascospores and conidia. Histone acetylation in the elp3 deletion mutant was reduced compared with the wild type, which likely caused the developmental defects. Trichothecenes were not produced at detectable levels, and expression of trichothecene biosynthesis genes were significantly reduced in the elp3 deletion mutant. Infection of wheat heads revealed that the elp3 deletion mutant was unable to spread from inoculated florets to neighboring spikelets. Furthermore, the elp3 deletion mutant was more sensitive to oxidative stress than the wild type, and the expression of putative catalase genes was reduced. We demonstrate that elp3 functions in sexual and asexual development, virulence, and the oxidative stress response of F. graminearum by regulating the expression of genes involved in these various developmental processes.
机译:禾谷镰孢(Fusarium graminearum)是一种重要的真菌植物病原体,会严重破坏谷物作物的产量以及人畜的霉菌毒素。在这项研究中,我们表征了插入突变体Z39R9282,在性发育和毒力方面具有多效缺陷。我们确定插入发生在编码酵母延伸复合蛋白3(ELP3)直系同源基因的基因中。 elp3的删除导致禾谷镰刀菌有性和无性发育的重大缺陷。在elp3缺失突变体中,皮膜形成的数目减少,并且皮膜的成熟被延迟。该突变体还产生形态异常的子囊孢子和分生孢子。与野生型相比,elp3缺失突变体中的组蛋白乙酰化降低,这可能导致发育缺陷。不能产生可检测水平的单端孢菌烯,并且在elp3缺失突变体中,单端孢菌烯生物合成基因的表达显着降低。小麦头的感染表明,elp3缺失突变体无法从接种的小花传播到邻近的小穗。此外,elp3缺失突变体对氧化应激比野生型更敏感,假定的过氧化氢酶基因的表达减少。我们证明了elp3在性和无性发育,毒力和F.禾本科氧化应激反应中的功能通过调节参与这些不同的发育过程的基因的表达。

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