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参与玉米籽粒与轮枝镰孢菌互作中转录水平基因调控的 microRNAs。

MicroRNAs involved in the trans-kingdom gene regulation in the interaction of maize kernels and Fusarium verticillioides.

机构信息

Plant Pathogenic Mycotoxin and Molecular Plant Pathology Laboratory, Hebei Key Laboratory of Plant Physiology and Molecular Pathology, Hebei Agriculture University, Baoding 071001, China; State Key Laboratory of North China Crop Improvement and Regulation, Hebei Agriculture University, Baoding 071001, China.

Jilin Academy of Agricultural Sciences, Jilin 130033, China.

出版信息

Int J Biol Macromol. 2023 Jul 1;242(Pt 4):125046. doi: 10.1016/j.ijbiomac.2023.125046. Epub 2023 May 26.

Abstract

Maize ear rot is a widespread disease and the main pathogen is Fusarium verticillioides. Plant microRNAs (miRNAs) have great effects on disease resistance and it has been reported that maize miRNA participates in defense responses in maize ear rot. However, the trans-kingdom regulation of miRNAs between maize and F. verticillioides remains uncharacterized. In this study, the relationship between miRNA-like RNAs (milRNAs) of F. verticillioides and pathogenicity was investigated, followed by sRNA analysis and degradome sequencing of miRNA profiles and the target genes of maize and F. verticillioides after inoculation. It was found that the milRNA biogenesis positively regulated the pathogenicity of F. verticillioides by knocking out the gene FvDicer2-encoded Dicer-like protein in F. verticillioides. Following inoculation with F. verticillioides, 284 known and 6571 novel miRNAs were obtained in maize, including 28 miRNAs differentially expressed at multiple time points. The target genes of maize differentially expressed miRNAs in F. verticillioides mediated multiple pathways, including autophagy and MAPK signaling pathway. Fifty-one novel F. verticillioides milRNAs were predicted to target 333 genes in maize involved in MAPK signaling pathways, plant hormone signaling transduction and plant-pathogen interaction pathways. Additionally, the miR528b-5p in maize targeted the mRNA of FvTTP which encoded a twice transmembrane protein in F. verticillioides. The FvTTP-knockout mutants displayed decreased pathogenicity and reduced synthesis of fumonisins. Thus, by interfering with the translation of FvTTP, the miR528b-5p inhibited F. verticillioides infection. These findings suggested a novel function of miR528 in resisting F. verticillioides infection. The miRNAs identified in this research and their putative target genes can be used to further elucidate the trans-kingdom functions of microRNAs in plant pathogen interaction.

摘要

玉米穗腐病是一种广泛发生的病害,主要病原菌是轮枝镰孢菌。植物 microRNAs(miRNAs)对抗病性有很大的影响,已有报道称玉米 miRNA 参与了玉米穗腐病的防御反应。然而,miRNAs 在玉米和轮枝镰孢菌之间的跨界调控仍未被描述。本研究通过敲除轮枝镰孢菌 FvDicer2 编码的 Dicer-like 蛋白基因,研究了 F. verticillioides 的 miRNA 样 RNA(milRNAs)与致病性的关系,随后进行了接种后玉米和 F. verticillioides 的 sRNA 分析和 miRNA 谱的降解组测序及其靶基因分析。结果发现,milRNA 生物发生通过敲除 F. verticillioides 中的基因 FvDicer2 编码的 Dicer-like 蛋白,正向调节了 F. verticillioides 的致病性。接种轮枝镰孢菌后,在玉米中获得了 284 个已知和 6571 个新的 miRNAs,包括 28 个在多个时间点差异表达的 miRNAs。玉米中差异表达 miRNA 的靶基因在 F. verticillioides 中介导了多条途径,包括自噬和 MAPK 信号通路。预测 51 个新的 F. verticillioides milRNAs 可靶向参与 MAPK 信号通路、植物激素信号转导和植物-病原体相互作用途径的 333 个玉米基因。此外,玉米中的 miR528b-5p 靶向 F. verticillioides 中编码两次跨膜蛋白的 FvTTP 的 mRNA。FvTTP 敲除突变体表现出致病性降低和伏马菌素合成减少。因此,miR528b-5p 通过干扰 FvTTP 的翻译抑制了 F. verticillioides 的感染。这些发现表明 miR528 在抵抗 F. verticillioides 感染方面具有新的功能。本研究中鉴定的 miRNAs 及其潜在靶基因可用于进一步阐明 microRNAs 在植物-病原体相互作用中的跨界功能。

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