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Dicer-Like Proteins Regulate Sexual Development via the Biogenesis of Perithecium-Specific MicroRNAs in a Plant Pathogenic Fungus Fusarium graminearum

机译:Dicer样蛋白通过植物病原性真菌镰刀镰刀菌中的白蚁特异性MicroRNA的生物发生来调节性发育。

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摘要

Ascospores act as the primary inoculum of Fusarium graminearum, which causes the destructive disease Fusarium head blight (FHB), or scab. MicroRNAs (miRNAs) have been reported in the F. graminearum vegetative stage, and Fgdcl2 is involved in microRNA-like RNA (milRNA) biogenesis but has no major impact on vegetative growth, abiotic stress or pathogenesis. In the present study, we found that ascospore discharge was decreased in the Fgdcl1 deletion mutant, and completely blocked in the double-deletion mutant of Fgdcl1 and Fgdcl2. Besides, more immature asci were observed in the double-deletion mutant. Interestingly, the up-regulated differentially expressed genes (DEGs) common to ΔFgdcl1 and ΔFgdcl1/2 were related to ion transmembrane transporter and membrane components. The combination of small RNA and transcriptome sequencing with bioinformatics analysis predicted 143 novel milRNAs in wild-type perithecia, and 138 of these milRNAs partly or absolutely depended on Fgdcl1, while only 5 novel milRNAs were still obtained in the Fgdcl1 and Fgdcl2 double-deletion mutant. Furthermore, 117 potential target genes were predicted. Overall, Fgdcl1 and Fgdcl2 genes were partly functionally redundant in ascospore discharge and perithecium-specific milRNA generation in F. graminearum, and these perithecium-specific milRNAs play potential roles in sexual development.
机译:子囊孢子是禾谷镰刀菌(Fusarium graminearum)的主要接种物,可导致毁灭性镰刀病(Fusarium head blight,FHB)或结sc。 MicroRNA(miRNA)已被报道在禾谷镰刀菌的营养阶段,Fgdcl2参与了类似microRNA的RNA(milRNA)的生物发生,但对营养生长,非生物胁迫或发病机理没有重大影响。在本研究中,我们发现Fgdcl1缺失突变体中的子囊孢子放电减少,而Fgdcl1和Fgdcl2的双缺失突变体中完全被阻断。此外,在双缺失突变体中观察到更多的未成熟asci。有趣的是,ΔFgdcl1和ΔFgdcl1/ 2共有的上调差异表达基因(DEG)与离子跨膜转运蛋白和膜成分有关。小RNA和转录组测序与生物信息学分析的结合预测了野生型皮膜组织中有143个新的milRNA,其中138个部分或完全依赖于Fgdcl1,而在Fgdcl1和Fgdcl2双缺失突变体中仍然仅获得5个新的milRNA。 。此外,预测了117个潜在的靶基因。总体而言,Fgdcl1和Fgdcl2基因在谷子镰刀菌的子囊放电和皮层特异的milRNA生成中部分功能上是多余的,并且这些皮层特异的milRNA在性发育中发挥潜在作用。

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