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减数分裂特异性 APC 激活因子 FgAMA1 对于减数分裂不是必需的,但对于禾谷镰刀菌的子囊孢子发生是重要的。

The meiosis-specific APC activator FgAMA1 is dispensable for meiosis but important for ascosporogenesis in Fusarium graminearum.

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas and NWAFU-Purdue Joint Research Center, College of Plant Protection, Northwest A&F University, Yangling, Shaanxi, 712100, China.

Department of Botany and Plant Pathology, Purdue University, West Lafayette, IN, 47907, USA.

出版信息

Mol Microbiol. 2019 May;111(5):1245-1262. doi: 10.1111/mmi.14219. Epub 2019 Mar 18.

Abstract

Ascospores are the primary inoculum in Fusarium graminearum. Interestingly, 70 of its genes have premature stop codons (PSC) and require A-to-I editing during sexual reproduction to encode full-length proteins, including the ortholog of yeast Ama1, a meiosis-specific activator of APC/C. In this study, we characterized the function of FgAMA1 and its PSC editing. FgAMA1 was specifically expressed during sexual reproduction. The Fgama1 mutant was normal in growth and perithecium formation but defective in ascospogenesis. Instead of forming four-celled, uninucleate ascospores, Fgama1 mutant produced oval, single-celled, binucleated ascospores by selfing. Some mutant ascospores began to bud and underwent additional mitosis inside asci. Expression of the wild-type or edited FgAMA1 but not the uneditable allele complemented Fgama1. In the Fgama1 x mat-1-1 outcross, over 60% of the asci had eight Fgama1 or intermediate (elongated but single-celled) ascospores, suggesting efficient meiotic silencing of unpaired FgAMA1. Deletion of FgPAL1, one of the genes upregulated in Fgama1 also resulted in defects in ascospore morphology and budding. Overall, our results showed that FgAMA1 is dispensable for meiosis but important for ascospore formation and discharge. In F. graminearum, whereas some of its targets are functional during meiosis, FgAma1 may target other proteins that function after spore delimitation.

摘要

分生孢子是镰刀菌禾谷种的主要接种体。有趣的是,其 70 个基因具有过早终止密码子(PSC),并在有性生殖过程中需要 A 到 I 的编辑才能编码全长蛋白质,包括酵母 Ama1 的同源物,这是 APC/C 的减数分裂特异性激活因子。在这项研究中,我们对 FgAMA1 及其 PSC 编辑功能进行了表征。FgAMA1 在有性生殖过程中特异性表达。Fgama1 突变体在生长和产囊体形成方面正常,但在减数分裂孢子发生过程中存在缺陷。Fgama1 突变体不是形成四细胞、单核的分生孢子,而是通过自交产生椭圆形、单细胞、双核的分生孢子。一些突变体分生孢子开始发芽,并在减数分裂的子囊内进行额外的有丝分裂。野生型或编辑的 FgAMA1 的表达,但不是不可编辑的等位基因,能够互补 Fgama1。在 Fgama1 x mat-1-1 杂交中,超过 60%的子囊中有 8 个 Fgama1 或中间(拉长但单细胞)分生孢子,这表明未配对的 FgAMA1 有效地进行了减数分裂沉默。FgPAL1 的缺失,一个在 Fgama1 中上调的基因之一,也导致了分生孢子形态和发芽的缺陷。总的来说,我们的结果表明,FgAMA1 对于减数分裂不是必需的,但对于分生孢子的形成和释放是重要的。在禾谷镰刀菌中,虽然其一些靶标在减数分裂过程中具有功能,但 FgAma1 可能针对其他在孢子分隔后起作用的蛋白质。

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