数字农科院2.0

Genome-wide identification and characterization of putative effectors in Heterodera schachtii that suppress plant immune response

文献类型: 外文期刊

作者: Yao, Ke;Zhang, Menghan;Xu, Jianjun;Peng, Deliang;Huang, Wenkun;Kong, Ling'an;Liu, Shiming;Li, Guangkuo;Peng, Huan

作者机构:

关键词: sugar beet cyst nematode;Heterodera schachtii;effector-triggered immunity;hypersensitive response;effector

期刊名称: JOURNAL OF INTEGRATIVE AGRICULTURE

ISSN: 2095-3119

年卷期: 2025 年 24 卷 1 期

页码:

收录情况: SCIE(2025版) ; ; CSCD(2025-2026年度) ; ; 科技核心(2024版) ; ; 农林核心(2024版)

摘要: The sugar beet cyst nematode (Heterodera schachtii) is one of the most destructive pathogens in sugar beet production, which causes serious economic losses every year. Few molecular details of effectors of H. schachtii parasitism are known. We analyzed the genome and transcriptome data of H. schachtii and identified multiple potential predicted proteins. After filtering out predicted proteins with high homology to other plant-parasitic nematodes, we performed functional validation of the remaining effector proteins. 37 putative effectors of H. schachtii were screened based on the Nicotiana benthamiana system for identifying the effectors that inhibit plant immune response, eventually determines 13 candidate effectors could inhibit cell death caused by Bax. Among the 13 effectors, nine have the ability to inhibit GPA2/RBP1-induced cell death. All 13 effector- triggered immunity (ETI) suppressor genes were analyzed by qRT-PCR and confirmed to result in a significant downregulation of one or more defense genes during infection compared to empty vector. For in situ hybridization, 13 effectors were specifically expressed and located in esophageal gland cells. These data and functional analysis set the stage for further studies on the interaction of H. schachtii with host and H. schachtii parasitic control.

分类号:

  • 相关文献

[1]Identification of Heterodera schachtii on sugar beet in Xinjiang Uygur Autonomous Region of China. Huan PENG,Hui LIU,Li GAO,Ru JIANG,Guang kuo LI,Hai feng GAO,Wei WU,Jun WANG,Yu ZHANG,Wen kun HUANG,Ling an KONG,De liang PENG. 2022

[2]Degradation of AtSRC2 by SKP1/BTB/POZ domain effectors in Heterodera schachtii inhibits RBOHF via ROS and enhances infection. Yao, Ke,Zhang, Xin,Jian, Jinzhuo,Ning, Yuese,Zhang, Chunhui,Zheng, Jingwu,Wu, Duqing,Kong, Lingan,Huang, Wenkun,Liu, Shiming,Peng, Deliang,Peng, Huan. 2025

[3]ModulationofmousemacrophageproteomeinducedbyToxoplasmagondiitachyzoitesinvivo. ZhouDonghui,YuanZiguo,ZhaoFurong,LiHailong,ZhouYang,LinRuiqing,ZouFengcai,SongHuiqun,XuMinjun,andZhuXingquan. 2011

[4]SequencevariationinROP13geneamongToxoplasmagondiiisolatesfromdifferentgeographicallocationsandhosts. WangPeiyuan,ZhouYang,LiJuan,SongHuiqun,ZhouDonghui,XuMinjun,ZhuXingquan. 2011

[5]Three highly conserved hydrophobic residues in the predicted alpha 2-helix of rice NLR protein Pit contribute to its localization and immune induction. Wang, Qiong,Li, Yuying,Kosami, Ken-ichi,Liu, Chaochao,Li, Jing,Zhang, Dan,Miki, Daisuke,Kawano, Yoji. 2022

[6]NLRs derepress MED10b- and MED7-mediated repression of jasmonate-dependent transcription to activate immunity. Qian Wu,Cong Tong,Zhengqiang Chen,Shen Huang,Xiaohui Zhao,Hao Hong,Jia Li,Mingfeng Feng,Huiyuan Wang,Min Xu,Yuling Yan,Hongmin Cui,Danyu Shen,Gan Ai,Yi Xu,Junming Li,Hui Zhang,Changjun Huang,Zhongkai Zhang,Suomeng Dong,Xuan Wang,Min Zhu,Savithramma P. Dinesh-Kumar,Xiaorong Tao. 2023

[7]Insights into the global spread of the sugar beet cyst nematode and its relevance to host breeding. Jiang, Ru,Xu, Bo,Kong, Depeng,Li, Guangkuo,Peng, Deliang,Huang, Wenkun,Kong, Lingan,Liu, Shiming,Peng, Huan. 2025

[8]Ectopic expression of the cotton non-symbiotic hemoglobin gene GhHb1 triggers defense responses and increases disease tolerance in Arabidopsis. Zhong, Nai-Qin,Wang, Hai-Yun,Chen, An-Ping,Jian, Gui-Liang,Xia, Gui-Xian. 2006

[9]Hrip1, a novel protein elicitor from necrotrophic fungus, Alternaria tenuissima, elicits cell death, expression of defence-related genes and systemic acquired resistance in tobacco. Kulye, Mahesh,Liu, Hua,Zhang, Yuliang,Zeng, Hongmei,Yang, Xiufen,Qiu, Dewen. 2012

[10]Reduction of lesion growth rate of late blight plant disease in transgenic potato expressing harpin protein. Li, RG,Fan, YL.

[11]SPL28 encodes a clathrin-associated adaptor protein complex 1, medium subunit mu 1 (AP1M1) and is responsible for spotted leaf and early senescence in rice (Oryza sativa). Qiao, Yongli,Jiang, Wenzhu,Lee, JooHyun,Park, BongSoo,Choi, Min-Seon,Piao, Rihua,Woo, Mi-Ok,Paek, Nam-Chon,Seo, Hak Soo,Koh, Hee-Jong,Qiao, Yongli,Jiang, Wenzhu,Lee, JooHyun,Park, BongSoo,Choi, Min-Seon,Piao, Rihua,Woo, Mi-Ok,Paek, Nam-Chon,Seo, Hak Soo,Koh, Hee-Jong,Roh, Jae-Hwan,Han, Longzhi. 2010

[12]Crystal Structure Analysis and the Identification of Distinctive Functional Regions of the Protein Elicitor Mohrip2. Wang, Meifang,Zeng, Hongmei,Qiu, Dewen,Duan, Liangwei,Liu, Xinqi. 2016

[13]Mutational analysis of the Verticillium dahliae protein elicitor PevD1 identifies distinctive regions responsible for hypersensitive response and systemic acquired resistance in tobacco. Liu, Zhipeng,Liu, Wenxian,Zeng, Hongmei,Yang, Xiufen,Guo, Lihua,Qiu, Dewen. 2014

[14]Isolation and Characteristics of the CN Gene, a Tobacco Mosaic Virus Resistance N Gene Homolog, from Tobacco. Zhang, Gai-Yun,Guo, Jia-Ming,Xu, Tong-Wen,Chen, Xue-Ping,Chen, Ming,Li, Lian-Cheng,Xu, Zhao-Shi,Ma, You-Zhi. 2009

[15]Plant ERD2-like proteins function as endoplasmic reticulum luminal protein receptors and participate in programmed cell death during innate immunity. Li, Sizhun,Xie, Ke,Zhang, Qiang,Wang, Yan,Tang, Yang,Liu, Dong,Liu, Yule,Hong, Yiguo,He, Chenyang. 2012

[16]Elicitation of the hypersensitive responses in tabacco by a 10.6 kD proteinaceous elicitor from Phytophthora palmi. Cai, YY,Chen, J. 1999

[17]The purification and characterization of a novel hypersensitive-like response-inducing elicitor from Verticillium dahliae that induces resistance responses in tobacco. Yang, Xiufen,Zeng, Hongmei,Liu, Hua,Zhou, Tingting,Tan, Beibei,Yuan, Jingjing,Guo, Lihua,Qiu, Dewen.

[18]Identification of phenolic compounds that suppress the virulence of Xanthomonas oryzae on rice via the type III secretion system. Tian, Fang,Li, Jianyu,Chen, Huamin,Yang, Fenghuan,He, Chenyang,Hutchins, William,Yuan, Xiaochen,Yang, Ching-Hong,Cui, Zining.

[19]Molecular Variation and Genomic Function of Citrus Vein Enation Virus. Runqiu Dou,Qingqing Huang,Tao Hu,Fengzhe Yu,Hongxia Hu,Yaqin Wang,Xueping Zhou,Yajuan Qian. 2023

[20]Type III secretion system genes hrcJ and hrpE affect virulence, hypersensitive response and biofilm formation of group II strains of Acidovorax citrulli. Wang T.,Huang Q.,An X.,Yang Y.,Guan W.,Zhao T.. 2022

作者其他论文 更多>>