激发子
生物
胼胝质
过敏反应
植物抗病性
烟草
程序性细胞死亡
细胞壁
植物对草食的防御
微生物学
菌核病
活性氧
系统获得性抵抗
硫氧还蛋白
细胞生物学
植物
生物化学
拟南芥
氧化应激
细胞凋亡
基因
突变体
作者
Shuai Zhang,Ruolan Li,Wei Fan,Xuefei Chen,C. Tao,Shuman Liu,Panpan Zhu,Shuchang Wang,Aichun Zhao
摘要
Abstract Ciboria shiraiana is a necrotrophic fungus that causes mulberry sclerotinia disease resulting in huge economic losses in agriculture. During infection, the fungus uses immunity elicitors to induce plant tissue necrosis that could facilitate its colonization on plants. However, the key elicitors and immune mechanisms remain unclear in C. shiraiana . Herein, a novel elicitor Cs08297 secreted by C. shiraiana was identified, and it was found to target the apoplast in plants to induce cell death. Cs08297 is a cysteine‐rich protein unique to C. shiraiana , and cysteine residues in Cs08297 were crucial for its ability to induce cell death. Cs08297 induced a series of defence responses in Nicotiana benthamiana , including the burst of reactive oxygen species (ROS), callose deposition, and activation of defence‐related genes. Cs08297 induced‐cell death was mediated by leucine‐rich repeat (LRR) receptor‐like kinases BAK1 and SOBIR1. Purified His‐tagged Cs08297‐thioredoxin fusion protein triggered cell death in different plants and enhanced plant resistance to diseases. Cs08297 was necessary for sclerotial development, oxidative‐stress adaptation, and cell wall integrity but negatively regulated virulence of C. shiraiana . In conclusion, our results revealed that Cs08297 is a novel fungal elicitor in fungi inducing plant immunity. Furthermore, its potential to enhance plant resistance provides a new target to control agricultural diseases biologically.
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