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黑缘红瓢虫种群动态及捕食功能的研究
引用本文:陈国华,陶玫,杨本立,陈福寿.黑缘红瓢虫种群动态及捕食功能的研究[J].云南农业大学学报,2003,18(2):136-139.
作者姓名:陈国华  陶玫  杨本立  陈福寿
作者单位:[1]云南农业大学植物保护学院,云南昆明650201 [2]云南省农业科学院植物保护研究所,云南昆明650205
基金项目:云南省自然基金资助项目(1999C0054M)
摘    要: 采用田间调查和室内试验,对黑缘红瓢虫的种群消长规律和捕食功能进行了研究,研究结果表明,4月中旬和7月中下旬是黑缘红瓢虫发生的盛期。采用Holling-Ⅱ型方程和Holling-Ⅲ型功能反应模型对黑缘红瓢虫3龄、4龄幼虫和成虫捕食朝鲜球坚蚧的作用进行拟合,由模型得出,一头黑缘红瓢虫成虫、4龄幼虫、3龄幼虫对朝鲜球坚蚧的最佳寻找密度分别为76.31,35.61,32.24,其寻找效应均随着猎物密度的增加而降低,且在猎物密度相同的情况下,成虫的寻找效应大于幼虫,4龄幼虫寻找效应大于3龄幼虫。

关 键 词:黑缘红瓢虫  朝鲜球坚蚧  种群动态  捕食功能
文章编号:1004-390X(2003)02-0136-04
收稿时间:2002-9-6

Study on the Population Dynamics and Predacious Function of Chilocorus rubidus Hope
CHEN Guo-hua,TAO Mei,YANG Ben-li,CHEN Fu-shou.Study on the Population Dynamics and Predacious Function of Chilocorus rubidus Hope[J].Journal of Yunnan Agricultural University,2003,18(2):136-139.
Authors:CHEN Guo-hua  TAO Mei  YANG Ben-li  CHEN Fu-shou
Institution:(1.College of Plant Protection, Yunnan Agricultural University, Kunming 650201,China;2.Institute of Plant Protection, Yunnan Academy of Agricultural Sciences, Kunming 650205, China)
Abstract:The population dynamics and predacious function of Chilocorus rubidus Hope were studied by the field survey and laboratory experiments. The results showed that Chilocorus rubidus Hope had the largest population in mid April and mid to late July respectively. The predaceous role of Chilocorus rubidus Hope to Didesmococcus koreamus Borché was simulated with the mathematical models of Holling-Ⅱ and Holling-Ⅲ. The result demonstrated that the best seeking density of adult, the fourth and third instar was about 76.31,35.61 and 32.24 respectively. The seeking effect of the ladybird decreased with the increase population density of its prey. The seeking effect of the adult was bigger than that of the larva, and of the fourth instar was bigger than that of the third instar.
Keywords:Chilocorus rubidus Hope" target="_blank">Chilocorus rubidus Hope')" href="#">Chilocorus rubidus Hope  Didesmococcus koreamus Borché" target="_blank">Didesmococcus koreamus Borché')" href="#">Didesmococcus koreamus Borché  population dynamics  predacious function
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