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关键铁吸收基因 ClFTR1、ClNPS6 通过启动新月弯孢霉的附着胞形成和毒力因子对其毒力至关重要。

The key iron assimilation genes ClFTR1, ClNPS6 were crucial for virulence of Curvularia lunata via initiating its appressorium formation and virulence factors.

机构信息

College of Plant Protection, Shenyang Agricultural University, Shenyang, 110161, China.

出版信息

Environ Microbiol. 2021 Feb;23(2):613-627. doi: 10.1111/1462-2920.15101. Epub 2020 Jun 25.

Abstract

Iron is virtually an essential nutrient for all organisms, to understand how iron contributes to virulence of plant pathogenic fungi, we identified ClFTR1 and ClNPS6 in maize pathogen Curvularia lunata (Cochliobolus lunatus) in this study. Disruption of ClNPS6 significantly impaired siderophore biosynthesis. ClFTR1 and ClNPS6 did mediate oxidative stress but had no significant impact on vegetative growth, conidiation, cell wall integrity and sexual reproduction. Conidial germination delayed and appressoria formation reduced in ΔClftr1 comparing with wild type (WT) CX-3. Genes responsible for conidial germination, appressoria formation, non-host selective toxin biosynthesis and cell wall degrading enzymes were also downregulated in the transcriptome of ΔClftr1 and ΔClnps6 compared with WT. The conidial development, toxin biosynthesis and polygalacturonase activity were impaired in the mutant strains with ClFTR1 and ClNPS6 deletion during their infection to maize. ClFTR1 and ClNPS6 were upregulated expression at 12-24 and 48-120 hpi in WT respectively. ClFTR1 positively regulated conidial germination, appressoria formation in the biotrophy-specific phase. ClNPS6 positively regulates non-host selective toxin biosynthesis and cell wall degrading enzyme activity in the necrotrophy-specific phase. Our results indicated that ClFTR1 and ClNPS6 were key genes of pathogen known to conidia development and virulence factors.

摘要

铁几乎是所有生物体必需的营养物质,为了了解铁如何促进植物病原真菌的毒力,我们在本研究中鉴定了玉米病原体旋孢腔菌(Cochliobolus lunatus)中的 ClFTR1 和 ClNPS6。ClNPS6 的破坏显著削弱了铁载体的生物合成。ClFTR1 和 ClNPS6 确实介导了氧化应激,但对营养生长、产孢、细胞壁完整性和有性生殖没有显著影响。与野生型(WT)CX-3 相比,ΔClftr1 的分生孢子萌发延迟,附着胞形成减少。与 WT 相比,ΔClftr1 和 ΔClnps6 的转录组中负责分生孢子萌发、附着胞形成、非寄主选择毒素生物合成和细胞壁降解酶的基因也下调。在感染玉米过程中,突变菌株的分生孢子发育、毒素生物合成和多聚半乳糖醛酸酶活性受损。ClFTR1 和 ClNPS6 在 WT 中分别在 12-24 和 48-120 hpi 时上调表达。ClFTR1 正向调控生物营养阶段的分生孢子萌发和附着胞形成。ClNPS6 正向调节非寄主选择毒素生物合成和坏死营养阶段的细胞壁降解酶活性。我们的结果表明,ClFTR1 和 ClNPS6 是与分生孢子发育和毒力因子相关的病原菌的关键基因。

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