数字农科院2.0

Semiochemicals Used by Insect Parasitoids and Hyperparasitoids in Complex Chemical Environments and Their Application in Insect Pest Management

文献类型: 外文期刊

作者: Sun, Yalan;Tian, Caihong;Xu, Pengjun;Dong, Junfeng;Wang, Shaoli

作者机构:

关键词: semiochemicals;behavioral response;chemosensory perception;insect pest management

期刊名称: HORTICULTURAE

ISSN:

年卷期: 2025 年 12 卷 1 期

页码:

收录情况: SCIE(2025版)

摘要: Insect parasitoids are key biological agents within terrestrial ecosystems, offering a promising avenue for controlling insect pests. Hyperparasitoids are a group of insects that lay their eggs in or on the body of parasitoid hosts, which can greatly hamper the effectiveness of parasitoids. To optimize their reproductive success, adult parasitoids/hyperparasitoids must find sufficient food sources and mate partners (when they do not reproduce parthenogenetically) and locate suitable hosts for their offspring. To complete these tasks, parasitoids largely rely on their ability to detect relevant chemical cues (semiochemicals or infochemicals). In the last three decades, the identities of semiochemicals and their ethological significance have been widely characterized, and the possibility of using these chemical cues in insect pest management has received a lot of attention. Insects have evolved a highly sensitive and sophisticated chemosensory system adept at navigating complex and dynamic chemical environments. In this review, we first summarize the semiochemicals used by insect parasitoids, primarily including semiochemicals involved in food location, host foraging, and mate finding, while also addressing semiochemicals employed by hyperparasitoids. Next, we discuss recent progress in elucidating the chemosensory mechanisms underlying parasitoid responses to semiochemicals, with a focus on olfactory and gustatory pathways. Finally, we evaluate the potential applications of semiochemicals in pest management, highlighting the roles of parasitoids and hyperparasitoids. This paper aims to establish a theoretical framework for the effective employment of parasitoids in biological control of insect pests.

分类号:

  • 相关文献

[1]Trypsinized Cry1Fa and Vip3Aa have no detrimental effects on the adult green lacewing Chrysopa pallens (Neuroptera: Chrysopidae). Ali, Intazar,Shuai Zhang,Muhammad Iqbal,Samina Ejaz,Jin‑jie Cui.

[2]Computer-aided rational design of novel EBF analogues with an aromatic ring. Wang, Shanshan,Du, Shaoqing,Qin, Yaoguo,Duan, Hongxia,Yang, Xinling,Sun, Yufeng. 2016

[3]Composition of the volatiles from intact and mechanically pierced tea aphid-tea shoot complexes and their attraction to natural enemies of the tea aphid. Han, BY,Chen, ZM.

[4]Sex pheromone recognition and immunolocalization of three pheromone binding proteins in the black cutworm moth Agrotis ipsilon. Gu, Shao-Hua,Wang, Gui-Rong,Zhang, Yong-Jun,Guo, Yu-Yuan,Zhou, Jing-Jiang.

[5]Prothoracic Gland Semiochemicals of Green Lacewings. Aldrich, Jeffrey Richard,Le, Thanh C.,Chauhan, Kamlesh R.,Zhang, Qing-He,Torres, Jorge,Winterton, Shaun L.,Han, Baoyu,Miller, Gary L..

[6]Identification of Key Headspace Volatile Compounds Signaling Preference for Rice over Corn in Adult Females of the Rice Leaf Folder Cnaphalocrocis medinalis. Chen, Ping,Dai, Changgen,Liu, Huan,Hou, Maolin. 2022

[7]Antenna-Specific TabsOBP45 and TabsOBP46 Mediate Plant Volatile Recognition in Tuta absoluta (Lepidoptera: Gelechiidae). Qingyu Liu,Liuyang Wang,Panjing Liu,Lingrui Li,Jun Ning,Tao Zhang. 2025

[8]Identification and Evaluation of Alfalfa Volatiles for Monitoring and Management of Odontothrips loti and Frankliniella occidentalis. Yingning Luo,Shuhua Wei,Fang Tang,Mark R. McNeill,Xiongbing Tu,Yanqi Liu,Chen Han,Changqing Qu,Xuewei Yin,Liping Ban. 2025

[9]Evaluation of Trap Systems for Monitoring of Odontothrips loti and Frankliniella occidentalis: A Pilot Field Trial. Yingning Luo,Chen Han,Xiongbing Tu,Mark R. McNeill,Xuewei Yin,Liping Ban. 2026

[10]Effect of acclimation on heat-escape temperatures of two aphid species: Implications for estimating behavioral response of insects to climate warming. Ma, Gang,Ma, Chun-Sen.

[11]A Combination of Olfactory and Visual Cues Enhance the Behavioral Responses of Apolygus lucorum. Pan, Hongsheng,Xiu, Chunli,Lu, Yanhui,Pan, Hongsheng.

[12]GOBP1 from the variegated cutworm peridroma saucia (Hübner) (lepidoptera: Noctuidae) displays high binding affinities to the behavioral attractant (Z)-3-hexenyl acetate. Ya Lan Sun,Jun Feng Dong,Yue Qin Song,Shao Li Wang. 2021

[13]Odorant Receptor PxylOR11 Mediates Repellency of Plutella xylostella to Aromatic Volatiles. Yipeng Liu,Sai Zhang,Yang Liu,Guirong Wang. 2022

[14]Odor Perception in the Cotton Bollworm, Helicoverpa armigera, Exposed to Juglans regia, a Marginal Host Plant. Liu, Haining,Xiu, Chunli,Zhang, Tao,Lu, Yanhui. 2022

[15]Buckwheat Flower Volatiles Attract Peristenus spretus and Enhance Its Field-Level Parasitism of Apolygus lucorum. Shike Xia,Tao Zhang,Livy Williams,Yizhong Yang,Yanhui Lu. 2023

[16]Volatiles from Cotton Plants Infested by Agrotis segetum (Lep.: Noctuidae) Attract the Larval Parasitoid Microplitis mediator (Hym.: Braconidae). Mengyu Li,Shike Xia,Tao Zhang,Livy Williams,Haijun Xiao,Yanhui Lu. 2022

[17]Expression and functional analysis of Niemann-Pick C2 gene in Phytoseiulus persimilis. Zhou, Hongxu,Yan, Hong,Wang, Endong,Zhang, Bo,Xu, Xuenong. 2023

[18]Evaluation of Selected Plant Volatiles as Attractants for the Stick Tea Thrip Dendrothrips minowai in the Laboratory and Tea Plantation. Chunli Xiu,Fengge Zhang,Hongsheng Pan,Lei Bian,Zongxiu Luo,Zhaoqun Li,Nanxia Fu,Xiaoming Cai,Zongmao Chen. 2022

[19]Recruitment of Hippodamia variegata by active volatiles from Glycyrrhiza uralensis and Alhagi sparsifolia plants infested with Aphis atrata. Jiang, Yan,Xiu, Chunli,Pan, Hongsheng,Liu, Xiaoning. 2023

[20]Molecular Characterization of Chemosensory Protein (CSP) Genes and the Involvement of AgifCSP5 in the Perception of Host Location in the Aphid Parasitoid Aphidius gifuensis. Jun Jiang,Jiayi Xue,Miaomiao Yu,Xin Jiang,Yumeng Cheng,Huijuan Wang,Yanxia Liu,Wei Dou,Jia Fan,Julian Chen. 2024

作者其他论文 更多>>