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以十三种天敌对烟粉虱的田间种群控制潜力的综合评价指标——致死率为评价标准。

The pest kill rate of thirteen natural enemies as aggregate evaluation criterion of their biological control potential of Tuta absoluta.

机构信息

Laboratory of Entomology, Wageningen University, P.O. Box 16, 6700AA, Wageningen, The Netherlands.

Department of Agricultural and Food Sciences, University of Bologna, Viale Fanin, 42, 40127, Bologna, Italy.

出版信息

Sci Rep. 2021 May 24;11(1):10756. doi: 10.1038/s41598-021-90034-8.

Abstract

Ecologists study how populations are regulated, while scientists studying biological pest control apply population regulation processes to reduce numbers of harmful organisms: an organism (a natural enemy) is used to reduce the population density of another organism (a pest). Finding an effective biological control agent among the tens to hundreds of natural enemies of a pest is a daunting task. Evaluation criteria help in a first selection to remove clearly ineffective or risky species from the list of candidates. Next, we propose to use an aggregate evaluation criterion, the pest kill rate, to compare the pest population reduction capacity of species not eliminated during the first selection. The pest kill rate is the average daily lifetime killing of the pest by the natural enemy under consideration. Pest kill rates of six species of predators and seven species of parasitoids of Tuta absoluta were calculated and compared. Several natural enemies had pest kill rates that were too low to be able to theoretically reduce the pest population below crop damaging densities. Other species showed a high pest reduction capacity and their potential for practical application can now be tested under commercial crop production conditions.

摘要

生态学家研究种群是如何受到调节的,而研究生物防治的科学家则应用种群调节过程来减少有害生物的数量:利用一种生物(天敌)来降低另一种生物(害虫)的种群密度。在害虫的数十种到数百种天敌中找到一种有效的生物防治剂是一项艰巨的任务。评估标准有助于在初步选择中首先从候选名单中剔除明显无效或有风险的物种。接下来,我们建议使用综合评估标准,即害虫死亡率,来比较在第一次选择中未被淘汰的物种对害虫种群减少能力。害虫死亡率是指所研究的天敌在平均每天的寿命内杀死害虫的数量。计算并比较了桃蛀果蛾的 6 种捕食性天敌和 7 种寄生性天敌的害虫死亡率。有几种天敌的害虫死亡率太低,理论上无法将害虫种群密度降低到低于作物受损害的密度。其他物种显示出了很强的害虫减少能力,现在可以在商业作物生产条件下测试它们的实际应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a32a/8144571/1f9887ed922e/41598_2021_90034_Fig1_HTML.jpg

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