非洲菊植物防御素(PDF)基因的特征和功能分析揭示了 GhPDF2.4 在防御根腐病病原体隐杆线虫(Phytophthora cryptogea)中的作用

IF 4.6 4区 农林科学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Chunzhen Cheng, Huan Wu, Yongyan Zhang
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引用次数: 0

摘要

非洲菊(Gerbera hybrida)是一种主要的鲜切花作物,极易感染根腐病。虽然植物防御素(PDFs)是植物抗菌肽的一个主要类别,具有广谱抗真菌和抗菌活性,但非洲菊中的 PDF 基因尚未得到系统表征。在此,我们鉴定并克隆了非洲菊中的 9 个 PDF 基因,并根据系统发育分析将其分为两类。大多数 I 类 GhPDF 基因在叶柄中高表达,而所有 II 类 GhPDF 基因在根中高表达。隐杆线虫接种会强烈上调根中所有 II 类 GhPDF 基因,上调叶柄中所有 I 类 GhPDF 基因。瞬时过表达 GhPDF1.5 和 GhPDF2.4 可抑制烟草(Nicotiana benthamiana)叶片中的隐翅虫感染。瞬时过表达GhPDF2.4而非GhPDF1.5能显著上调烟草叶片中ACO和LOX基因的表达,表明过表达GhPDF2.4能激活茉莉酸/乙烯防御途径,两种类型的GhPDF具有不同的作用模式。原核表达的重组 GhPDF2.4 在体外可抑制隐杆线虫的菌丝生长并延缓其芽胀,表明 GhPDF2.4 是一种形态发生防御素。此外,在植物培养基中添加 GhPDF2.4 还能减轻离体生长的非洲菊幼苗的根腐病症状,并在处理初期大大降低隐翅虫接种非洲菊根部的病原体滴度。我们的研究为利用 GhPDFs(尤其是 GhPDF2.4)控制非洲菊根腐病提供了依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization and functional analysis of gerbera plant defensin (PDF) genes reveal the role of GhPDF2.4 in defense against the root rot pathogen Phytophthora cryptogea

Gerbera (Gerbera hybrida), a major fresh cut flower crop, is very susceptible to root rot disease. Although plant defensins (PDFs), a major group of plant antimicrobial peptides, display broad-spectrum antifungal and antibacterial activities, PDF genes in gerbera have not been systematically characterized. Here, we identified and cloned nine PDF genes from gerbera and divided them into two classes based on phylogenetic analysis. Most Class I GhPDF genes were highly expressed in petioles, whereas all Class II GhPDF genes were highly expressed in roots. Phytophthora cryptogea inoculation strongly upregulated all Class II GhPDF genes in roots and upregulated all Class I GhPDF genes in petioles. Transient overexpression of GhPDF1.5 and GhPDF2.4 inhibited P. cryptogea infection in tobacco (Nicotiana benthamiana) leaves. Transient overexpression of GhPDF2.4, but not GhPDF1.5, significantly upregulated ACO and LOX gene expression in tobacco leaves, indicating that overexpressing GhPDF2.4 activated the jasmonic acid/ethylene defense pathway and that the two types of GhPDFs have different modes of action. Prokaryotically expressed recombinant GhPDF2.4 inhibited mycelial growth and delayed the hyphal swelling of P. cryptogea, in vitro, indicating that GhPDF2.4 is a morphogenetic defensin. Moreover, the addition of GhPDF2.4 to plant culture medium alleviated the root rot symptoms of in vitro-grown gerbera seedlings and greatly reduced pathogen titer in P. cryptogea-inoculated gerbera roots in the early stages of treatment. Our study provides a basis for the use of GhPDFs, especially GhPDF2.4, for controlling root rot disease in gerbera.

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CiteScore
7.70
自引率
2.80%
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