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六斑月瓢虫对黄胸蓟马若虫的室内捕食作用研究
The predation of Menochilus sexmaculata (Coleoptera: Coccinellidae) to Thrips hawaiiensis (Thysanoptera: Thripoidae) in the laboratory
李善光;付步礼;邱海燕;杨石有;马晓彤;周世豪; 唐良德;张方平;刘 奎
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DOI:10.7679/j.issn.2095-1353.2020.120
作者单位:中国热带农业科学院环境与植物保护研究所,农业农村部热带作物有害生物综合治理重点实验室,海南省热带作物 病虫害生物防治工程技术研究中心,海口 571101;琼海市博鳌镇农业服务中心,琼海 571434; 海南大学热带农林学院,海口 570228;华中农业大学植物科学技术学院,武汉 430070
中文关键词:六斑月瓢虫;黄胸蓟马;捕食作用;生物防治
英文关键词:Menochilus sexmaculata; Thrips hawaiiensis; predation; biocontrol
中文摘要:
【目的】 为明确六斑月瓢虫Menochilus sexmaculata对黄胸蓟马Thrips hawaiiensis的捕食作用及生物防治潜能。【方法】 室内系统研究六斑月瓢虫不同虫态对黄胸蓟马2龄若虫的捕食功能反应、寻找效应、自身密度和种内干扰反应。【结果】 六斑月瓢虫对黄胸蓟马的捕食功能反应符合HollingⅡ型,六斑月瓢虫4龄幼虫与成虫分别对黄胸蓟马2龄若虫的捕食能力(a′/Th)较强,分别为578.04头和1 852.80头,捕食上限(1/Th)最大,分别为400.00头/d和2 000.00头/d。六斑月瓢虫对黄胸蓟马的捕食量与黄胸蓟马猎物密度呈正相关,但寻找效应与猎物密度呈负相关,六斑月瓢虫高龄若虫与成虫对黄胸蓟马表现出较高的寻找效应。六斑月瓢虫对黄胸蓟马的捕食作用存在种内干扰反应,具体表现为天敌昆虫密度与其对黄胸蓟马的捕食率呈现负相关,该干扰反应符合Hassell模型方程。【结论】 六斑月瓢虫对黄胸蓟马若虫具有较强的的生物防治潜能,所获结果为蓟马类害虫的可持续治理提供了理论依据。
英文摘要:
[Objectives]  This study aims to determine the predation of Menochilus sexmaculata against Thrips hawaiiensis and to evaluate the potential use of the ladybugs in thrips control programs. [Results]  Laboratory experiments were performed to study the functional response, searching efficiency and interfere response of M. sexmaculata to T. hawaiiensis. [Results]  The predation of M. sexmaculata showed the Holling-type II functional responses against the thrips. The 4th-instar larvae and adult of M. sexmaculata showed the highest predation capacity to 2nd-instar nymph of T. hawaiiensis, with a'/Th for 578.04 and 1 852.80 individuals, with 1/Th for 400.00 and 2 000.00 individuals per day, respectively. The predation rate of M. sexmaculata was positively related with prey densities of T. hawaiiensis, while its searching efficiency was negatively associated with prey densities. Furthermore, the elder larvae and adult of M. sexmaculata were more effective in searching for their preys than other predator ages. The predation on T. hawaiiensis was significantly influenced by the predator density of M. sexmaculata, showing that the predation rate decreased with increasing the predator density. This suggests that the interfere response exists in the predation of M. sexmaculata on T. hawaiiensis, and this could be described by Hassell-model equation. [Conclusion]  These findings represent that M. sexmaculata exhibit a great potential for its use in control of this special thrips pest, providing a scientific basis on biological control programs and nature enemy protection.
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