数字农科院2.0

Protein elicitor AMEP412 suppressed rice blast caused by Magnaporthe oryzae through triggering plant immunity

文献类型: 外文期刊

作者: Yazhi Qin;Meijun Guo;Junyan Yang;Jiayi Zheng;Quan Wang;Quan Liu

作者机构:

关键词: (1-2-2)AMEP412;Magnaporthe oryzae;Plant immunity;Protein elicitor;Rice blast

期刊名称: Physiological and Molecular Plant Pathology

ISSN: 0885-5765

年卷期: 2025 年 140 卷

页码:

收录情况: SCIE(2025版)

摘要: AMEP412 is a protein elicitor secreted by Bacillus subtilis, exhibiting the ability to trigger plant immunity. In this study, we assessed how AMEP412 induced disease resistance in rice seedlings against rice blast caused by Magnaporthe oryzae. First, the pathogen inoculation assay confirmed that pre-treatment with AMEP412 significantly reduced the lesion areas on rice leaves. Subsequently, the inner response of rice seedlings to protein-eliciting and pathogen infection were analysed, respectively. At 12 h post treatment (hpt) with AMEP412, early defense response was successfully triggered in rice leaves, including obvious accumulation of reactive oxygen species and activity increase of antioxidant enzymes (superoxide dismutase, catalase, and peroxidase). Real-time quantitative polymerase chain reaction analysis also verified the upregulation of antioxidant related genes. After M. oryzae infection, rice leaves pre-treated with AMEP412 exhibited a quicker and stronger defense reaction than those in the control. At 6 h post infection (hpi), a series of early defense response pathways were activated, including phenylpropanoid biosynthesis, ascorbate and aldarate metabolism, and cutin, suberine, and wax biosynthesis. At 12 hpi, the downstream defense response pathways began to dominate, such as plant hormone signal transduction, mitogen-activated protein kinase signaling, and plant-pathogen interaction. Further RT-qPCR verification of key genes in these pathways showed that the plant immunity system was successfully activated. We confirmed that AMEP412 could rapidly and effectively trigger the rice immunity system, resulting in reduced disease symptoms in M. oryzae-infected leaves, thereby providing a novel option for the biocontrol of rice blast.

分类号:

  • 相关文献

[1]Molecular mapping of four blast resistance genes using recombinant inbred lines of 93-11 and nipponbare. Sun, Chuanqing,Jia, Melissa H.,Jia, Yulin,Venu, R-C,Xing, Junjie,Yuan, Longping,Yang, Hongmei,Bellizzi, Maria,Wang, Guo-Liang,Wang, Zhilong,Wang, Guo-Liang. 2013

[2]Characterization of 47 Cys(2)-His(2) zinc finger proteins required for the development and pathogenicity of the rice blast fungus Magnaporthe oryzae. Cao, Huijuan,Huang, Pengyun,Zhang, Lilin,Shi, Yongkai,Sun, Dandan,Yan, Yuxin,Lu, Jianping,Cao, Huijuan,Liu, Xiaohong,Lin, Fucheng,Dong, Bo,Chen, Guoqing,Snyder, John Hugh.

[3]Multiprotein-bridging factor 1 regulates vegetative growth, osmotic stress, and virulence in Magnaporthe oryzae. Huang, Hao,Zhang, Heng,Zhao, Ao,Chen, Libin,Chen, Ruiqi,Wang, Zonghua,Lu, Guo-dong,Zhang, Kai,Li, Guangpu.

[4]Identification of SSR markers for a broad-spectrum blast resistance gene Pi20(t) for marker-assisted breeding. Wan, Jianmin,Li, Wei,Jia, Yulin. 2008

[5]Structure-function analyses of the Pth11 receptor reveal an important role for CFEM motif and redox regulation in rice blast. Kou, Yanjun,Ramanujam, Ravikrishna,Naqvi, Naweed I.,Kou, Yanjun,Ramanujam, Ravikrishna,Naqvi, Naweed I.,Kou, Yanjun,Tan, Yi Han,Naqvi, Naweed I..

[6]OsCERK1 Contributes to Cupric Oxide Nanoparticles Induced Phytotoxicity and Basal Resistance against Blast by Regulating the Anti-Oxidant System in Rice. Ya Chen,Zhiquan Liu,Shuai Meng,Zhenan Shen,Huanbin Shi,Jiehua Qiu,Fucheng Lin,Shu Zhang,Yanjun Kou. 2023

[7]The application of zinc oxide nanoparticles: An effective strategy to protect rice from rice blast and abiotic stresses. Jiehua Qiu,Ya Chen,Zhiquan Liu,Hui Wen,Nan Jiang,Huanbin Shi,Yanjun Kou. 2023

[8]The F-box protein OsFBX156 positively regulates rice defence against the blast fungus Magnaporthe oryzae by mediating ubiquitination-dependent degradation of OsHSP71.1. Yudan Zhao,Xionghui Zhong,Guojuan Xu,Xiaoying Zhu,Yanlong Shi,Minghao Liu,Ruyi Wang,Houxiang Kang,Xiaoman You,Yuese Ning,Guo Liang Wang,Xuli Wang. 2024

[9]AMEP412 as a potent antifungal agent against rice blast fungus Magnaporthe oryzae in vivo and in vitro. Junyan Yang,Meijun Guo,Quan Wang,Quan Liu. 2024

[10]Warm temperature compromises JA-regulated basal resistance to enhance Magnaporthe oryzae infection in rice. Jiehua Qiu,Junhui Xie,Ya Chen,Zhenan Shen,Huanbin Shi,Naweed I. Naqvi,Qian Qian,Yan Liang,Yanjun Kou. 2022

[11]Plant innate immunity in rice: a defense against pathogen infection. Wang, Guo-Liang,Wang, Guo-Liang. 2016

[12]A VQ-motif-containing protein fine-tunes rice immunity and growth by a hierarchical regulatory mechanism. Hao Z.,Tian J.,Fang H.,Fang L.,Xu X.,He F.,Li S.,Xie W.,Du Q.,You X.,Wang D.,Chen Q.,Wang R.,Zuo S.,Yuan M.,Wang G.-L.,Xia L.,Ning Y.. 2022

[13]Two Magnaporthe appressoria-specific (MAS) proteins, MoMas3 and MoMas5, are required for suppressing host innate immunity and promoting biotrophic growth in rice cells. Gong, Ziwen,Ning, Na,Li, Zhiqiang,Xie, Xin,Wilson, Richard A.,Liu, Wende. 2022

[14]麦瘟病研究进展与展望. 何心尧,郝元峰,周益林,何中虎. 2017

[15]Inducible and constitutive expression of an elicitor gene Hrip1 from Alternaria tenuissima enhances stress tolerance in Arabidopsis. Qiu, De-Wen,Zeng, Hong-Mei,Guo, Li-Hua,Yang, Xiu-Fen,Liu, Zheng.

[16]Purification and expression of a protein elicitor from Alternaria tenuissima and elicitor-mediated defence responses in tobacco. Liu, Q.,Yang, X.,Long, C.,Zhao, M.,Zeng, H.,Liu, H.,Yuan, J.,Qiu, D..

[17]Stable isotope labelled mass spectrometry for quantification of the relative abundances for expressed proteins induced by PeaT1. Yang XiuFen,Zeng HongMei,Mao JianJun,Liu Hua,Zhang YunHua,Qiu DeWen. 2010

[18]Fungal elicitor protein PebC1 from Botrytis cinerea improves disease resistance in Arabidopsis thaliana. Yang, Xiufen,Zeng, Hongmei,Guo, Lihua,Yuan, Jingjing,Qiu, Dewen. 2014

[19]A B-lectin receptor kinase gene conferring rice blast resistance. Chen, Xuewei,Shang, Junjun,Chen, Dexi,Lei, Cailin,Zou, Yan,Zhai, Wenxue,Liu, Guozhen,Xu, Jichen,Ling, Zhongzhuan,Cao, Gang,Ma, Bingtian,Wang, Yuping,Zhao, Xianfeng,Li, Shigui,Zhu, Lihuang. 2006

[20]Transcriptomic analyses of space-induced rice mutants with enhanced susceptibility to rice blast. Cheng, Zhenlong,Zhang, Meng,Sun, Yeqing,Cheng, Zhenlong,Liu, Ming,Hang, Xiaoming,Sun, Yeqing,Lei, Cailin.

作者其他论文 更多>>