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瓢虫(鞘翅目:瓢虫科)对蚜虫(半翅目:蚜科)的功能反应和数值反应及其生物防治潜力

Functional and Numerical Responses of (Coleoptera: Coccinellidae) to (Hemiptera: Aphididae) and Their Potential for Biological Control.

作者信息

Li Chong, Yu Jingya, Mao Runping, Kang Kaili, Xu Letian, Wu Mengting

机构信息

Anhui Province Key Laboratory of Forest Resources and Silviculture, Anhui Province Laboratory of Microbial Control, Engineering Research Center of Fungal Biotechnology, Ministry of Education, School of Forestry & Landscape Architecture, Anhui Agricultural University, Hefei 230036, China.

State Key Laboratory of Biocatalysis and Enzyme Engineering, School of Life Sciences, Hubei University, Wuhan 430062, China.

出版信息

Insects. 2024 Aug 23;15(9):633. doi: 10.3390/insects15090633.

Abstract

The water lily aphid () is a highly polyphagous herbivore that causes severe damage to many terrestrial and aquatic plants, especially lotus. Due to environmental concerns about water pollution and other issues caused by chemical control methods, there is an urgent need to develop effective and sustainable control methods. The harlequin ladybird () is a well-known aphid predator and may pose a potential threat to . To study the predation ability of at different developmental stages on , we assessed the functional response, attack rate, and search effect of larvae and adults preying on . The numerical response of this process was also evaluated under a constant ladybird-to-aphid ratio and constant aphid density conditions, respectively. Our results showed that all predator stages exhibited type II functional responses. The predation rate of individual on nymphs significantly increased as prey density increased. In contrast, the search effect of gradually decreased with an increase in prey density. Meanwhile, at different developmental stages possess varying predation abilities; fourth instar and adult were found to be highly efficient predators of . adults exhibited the highest predation ability and predation rate, while both the adult and fourth-instar larvae exhibited the highest attack rate. Moreover, fourth-instar larvae exhibited the highest search effect value at initially lower prey densities, although adults surpassed them at higher prey densities. Our results also indicated that exhibited varying degrees of intraspecific interference and self-interference influence as predator density increases. These results strongly support as an effective biocontrol agent for .

摘要

睡莲蚜是一种多食性食草动物,会对许多陆生和水生植物造成严重损害,尤其是莲花。由于对化学防治方法导致的水污染和其他环境问题的担忧,迫切需要开发有效且可持续的防治方法。异色瓢虫是一种著名的蚜虫捕食者,可能对睡莲蚜构成潜在威胁。为了研究异色瓢虫不同发育阶段对睡莲蚜的捕食能力,我们评估了异色瓢虫幼虫和成虫捕食睡莲蚜的功能反应、攻击率和搜寻效应。还分别在瓢虫与蚜虫比例恒定和蚜虫密度恒定的条件下评估了这一过程的数量反应。我们的结果表明,所有捕食者阶段均表现出II型功能反应。随着猎物密度增加,单个异色瓢虫对睡莲蚜若虫的捕食率显著提高。相反,异色瓢虫的搜寻效应随着猎物密度的增加而逐渐降低。同时,异色瓢虫不同发育阶段具有不同的捕食能力;发现四龄幼虫和成虫是睡莲蚜的高效捕食者。异色瓢虫成虫表现出最高的捕食能力和捕食率,而成虫和四龄幼虫均表现出最高的攻击率。此外,四龄幼虫在最初较低的猎物密度下表现出最高的搜寻效应值,尽管在较高猎物密度下成虫超过了它们。我们的结果还表明,随着捕食者密度的增加,异色瓢虫表现出不同程度的种内干扰和自我干扰影响。这些结果有力地支持了异色瓢虫作为睡莲蚜有效生物防治剂的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b0e/11432611/1c48031226fa/insects-15-00633-g001.jpg

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