数字农科院2.0

Identification And Functional Analysis Of Aopn, Anacidovorax Citrullieffector That Induces Programmed Cell Death In Plants

文献类型: 外文期刊

作者: Zhang, XX; Zhao, M; Jiang, J; Yang, LL; Yang, YW; Yang, SS; Walcott, R; Qiu, DW; Zhao, TC

作者机构:

关键词: Aopn; Programmed Cell Death; Acidovorax Citrulli; Plant Pathogen; Effector-Triggered Immunity

期刊名称: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES

ISSN:

年卷期: 2020 年 21 卷 17 期

页码:

收录情况: JCR(2021版)

摘要: Bacterial fruit blotch (BFB), caused byAcidovorax citrulli, seriously affects watermelon and other cucurbit crops, resulting in significant economic losses. However, the pathogenicity mechanism ofA. citrulliis not well understood. Plant pathogenic bacteria often suppress the plant immune response by secreting effector proteins. Thus, identifyingA. citrullieffector proteins and determining their functions may improve our understanding of the underlying pathogenetic mechanisms. In this study, a novel effector, AopN, which is localized on the cell membrane ofNicotiana benthamiana,was identified. The functional analysis revealed that AopN significantly inhibited the flg22-induced reactive oxygen species burst. AopN induced a programmed cell death (PCD) response. Unlike its homologous protein, the ability of AopN to induce PCD was dependent on two motifs of unknown functions (including DUP4129 and Cpta_toxin), but was not dependent on LXXLL domain. More importantly, the virulence of theaopNmutant ofA. citrulliinN. benthamianasignificantly decreased, indicating that it was a core effector. Further analysis revealed that AopN interacted with watermelon ClHIPP and ClLTP, which responds toA. citrullistrain Aac5 infection at the transcription level. Collectively, these findings indicate that AopN suppresses plant immunity and activates the effector-triggered immunity pathway.

分类号:

  • 相关文献

[1]Involvement Of Hrpx And Hrpg I.n The Virulence Of A cidovorax Citrulli Strain Aac5, Causal Agent Of Bacterial Fruit Blotch In Cucurbits. Yan, Jianpei,Guan, Wei,Yan, Jianpei,Zhao, Tingchang,Zhao, Mei,Yang, Linlin,Yang, Yuwen,Zhang, Xiaoxiao,Walcott, Ron,Yang, Linlin. 2018

[2]Cytological Study Of Gender Conversion I.n Amur Grape. Wen, Jinghui,Zou, Liren,Shen, Hailin,Shen, Hailin,Yan, Ke,Guo, Yinshan,Guo, Xiuwu,Liu, Zhendong,Li, Kun. 2018

[3]A Novel 'Candidatus Liberibacter Asiaticus'-Encoded Sec-Dependent Secretory Protein Suppresses Programmed Cell Death In Nicotiana Benthamiana. Zhang, C, Wang, XF, Liu, XL, Fan, YY, Zhang, YQ, Zhou, XP, Li, WM. 2019

[4]Itraq Mitoproteome Analysis Reveals Mechanisms O.f Programmed Cell Death I n Arabidopsis Thaliana Induced By Ochratoxin A. Wang, Y, Peng, XL, Yang, ZJ, Zhao, WW, Xu, WT, Hao, JR, Wu, WH, Shen, XL, Luo, YB, Huang, KL. 2017

[5]Sulfated Lentinan Induced Mitochondrial Dysfunction L.eads To Programmed Cell D eath Of Tobacco By-2 Cells. Wang, J, Wang, YF, Shen, LL, Qian, YM, Yang, JG, Wang, FL. 2017

[6]Viral Infection-Induced Endoplasmic Reticulum Stress A.nd A Membrane-Associated Transcription F actor Nbnac089 Are Involved In Resistance To Virus In Nicotiana Benthamiana. Li, FF, Sun, HJ, Jiao, YB, Wang, FL, Yang, JG, Shen, LL. 2018

[7]Identification And Characterization Of A S.potted-Leaf Mutant Spl40 With E nhanced Bacterial Blight Resistance In Rice. Sathe, AP, Su, XN, Chen, Z, Chen, T, Wei, XJ, Tang, SQ, Zhang, XB, Wu, JL. 2019

[8]Comparative Transcriptome Analysis Reveals The Potential Mechanism Of Abortion In Tobacco Sua-Cytoplasmic Male Sterility. Liu, ZW, Liu, YF, Sun, YH, Yang, AG, Li, FX. 2020

[9]Comparative Transcriptomics Provide Insight Into T.he Morphogenesis And Evolution O f Fistular Leaves In Allium. Zhu, SY, Tang, SW, Tan, ZJ, Yu, YT, Dai, QZ, Liu, TM. 2017

[10]Transcriptome and plant hormone analyses provide new insight into the molecular regulatory networks underlying hybrid lethality in cabbage (Brassica oleracea). Xiao Z.,Liu X.,Fang Z.,Yang L.,Zhang Y.,Wang Y.,Zhuang M.,Lv H.. 2021

作者其他论文 更多>>