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植食性昆虫唾液效应子和激发子的研究进展
引用本文:董玉妹,张美倩,沈慧,黄兴革,杨玉霞,李继芬,张文丹,沈丹宇,景茂峰,窦道龙,夏爱. 植食性昆虫唾液效应子和激发子的研究进展[J]. 昆虫学报, 2021, 64(8): 982-997. DOI: 10.16380/j.kcxb.2021.08.010
作者姓名:董玉妹  张美倩  沈慧  黄兴革  杨玉霞  李继芬  张文丹  沈丹宇  景茂峰  窦道龙  夏爱
作者单位:(南京农业大学植物保护学院, 南京 210095)
摘    要:
植食性昆虫与寄主植物通过协同进化形成了复杂的防御和反防御机制.本文系统综述了昆虫唾液效应子和激发子在植物与昆虫互作中的作用及机理.昆虫取食中释放的唾液激发子被植物识别而激活植物早期免疫反应,昆虫也能从口腔分泌效应子到植物体内抑制免疫;抗性植物则利用抗性(R)蛋白识别昆虫无毒效应子,启动效应子诱导的免疫反应,而昆虫又进化...

关 键 词:昆虫效应子  昆虫激发子  植物免疫防御反应  刺吸式昆虫  咀嚼式昆虫

Research advances of salivary effectors and elicitors in herbivorous insects
DONG Yu-Mei,ZHANG Mei-Qian,SHEN Hui,HUANG Xing-Ge,YANG Yu-Xia,LI Ji-Fen,ZHANG Wen-Dan,SHEN Dan-Yu,JING Mao-Feng,DOU Dao-Long,XIA Ai. Research advances of salivary effectors and elicitors in herbivorous insects[J]. Acta Entomologica Sinica, 2021, 64(8): 982-997. DOI: 10.16380/j.kcxb.2021.08.010
Authors:DONG Yu-Mei  ZHANG Mei-Qian  SHEN Hui  HUANG Xing-Ge  YANG Yu-Xia  LI Ji-Fen  ZHANG Wen-Dan  SHEN Dan-Yu  JING Mao-Feng  DOU Dao-Long  XIA Ai
Affiliation: (College of Plant Protection, Nanjing Agricultural University, Nanjing 210095, China)
Abstract:
Herbivorous insects and host plants have developed complicated defense and counter defense mechanisms through co-evolution. In this article, we systematically reviewed the roles of insect saliva effectors and elicitors in the interactions between insects and plants and their mechanisms. The salivary elicitors secreted by insects during feeding can be recognized by plants to trigger early plant immunity, while insect effectors released from oral secretion can inhibit plant immune defenses. Resistant plants further evolved R proteins to recognize insect avirulence effectors and initiate effector-triggered immunity. Phytophagous insects can avoid the recognition by plant R proteins through different strategies. Therefore, in this arms race, insect saliva determines whether insects can succeed to feed on plants. During feeding process, chewing insects secrete a large number of enzymes into plants, and piercing-sucking insects secrete sheath saliva and water saliva into plants, but both of them utilize effectors and elicitors to manipulate plant immune responses. By analyzing the reported insect effectors, it was found that the molecular mechanisms of insect effectors are different. They affect plant early defense signals, regulate plant hormone pathways or others, or target small RNA pathways. Recent advances in insect elicitors were also reviewed in this article, revealing that elicitors can induce the release of plant secondary metabolites, and regulate hormone levels, Ca2+ influx and reactive oxygen species (ROS) burst to enhance plant resistance. Finally, we analyzed the secretory characteristics, host specificity and multifunctionality of insect effectors, and discussed research prospects on avirulence effectors and their plant R genes as well as pattern recognition receptors of elicitors.
Keywords:Insect effectors  insect elicitors  plant immune defense responses  piercing-sucking insects  chewing insects  
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