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芽生孢子在田间控制幼虫的潜力。

The Potential of Blastospores to Control Larvae in the Field.

作者信息

Gomes Simone Azevedo, Carolino Aline Teixeira, Teodoro Thais Berçot Pontes, Silva Gerson Adriano, Bitencourt Ricardo de Oliveira Barbosa, Silva Carlos Peres, Alkhaibari Abeer M, Butt Tariq M, Samuels Richard Ian

机构信息

Laboratório de Entomologia e Fitopatologia, Universidade Estadual do Norte Fluminense Darcy Ribeiro, Campos dos Goytacazes, Rio de Janeiro 28013-602, Brazil.

Departamento de Bioquímica, Universidade Federal de Santa Catarina, Florianópolis 88040-900, Brazil.

出版信息

J Fungi (Basel). 2023 Jul 18;9(7):759. doi: 10.3390/jof9070759.

Abstract

Entomopathogenic fungi are promising as an environmentally benign alternative to chemical pesticides for mosquito control. The current study investigated the virulence of blastospores against under both laboratory and field conditions. Virulence bioassays of conidia and blastospores were conducted in the laboratory, while field simulation bioassays were conducted under two conditions: totally shaded (TS) or partially shaded (PS). In the first bioassay (zero h), the larvae were added to the cups shortly after the preparation of the blastospores, and in the subsequent assays, larvae were added to the cups 3, 6, 9, and 12 days later. The survival of the larvae exposed to blastospores in the laboratory was zero on day two, as was the case for the larvae exposed to conidia on the sixth day. Under TS conditions, zero survival was seen on the third day of the bioassay. Under PS conditions, low survival rates were recorded on day 7. For the persistence bioassay under PS conditions, low survival rates were also observed. blastospores were more virulent to larvae than conidia in the laboratory. Blastospores remained virulent under field simulation conditions. However, virulence rapidly declined from the third day of field bioassays. Formulating blastospores in vegetable oil could protect these propagules when applied under adverse conditions. This is the first time that blastospores have been tested against mosquito larvae under simulated field conditions, and the current study could be the basis for the development of a new biological control agent.

摘要

昆虫病原真菌有望成为一种环境友好型的化学杀虫剂替代品,用于控制蚊子。当前的研究在实验室和野外条件下,调查了芽生孢子对[蚊子幼虫]的毒力。在实验室中进行了分生孢子和芽生孢子的毒力生物测定,而野外模拟生物测定在两种条件下进行:完全遮荫(TS)或部分遮荫(PS)。在第一次生物测定(0小时)中,在制备芽生孢子后不久将幼虫添加到杯中,在随后的测定中,分别在3、6、9和12天后将幼虫添加到杯中。在实验室中,暴露于芽生孢子的幼虫在第二天的存活率为零,暴露于分生孢子的幼虫在第六天也是如此。在TS条件下,生物测定的第三天观察到零存活率。在PS条件下,第7天记录到低存活率。对于PS条件下的持久性生物测定,也观察到低存活率。在实验室中,芽生孢子对[蚊子幼虫]的毒力比分生孢子更强。在野外模拟条件下,芽生孢子仍具有毒力。然而,从野外生物测定的第三天起,毒力迅速下降。在不利条件下施用时,将芽生孢子制成植物油制剂可以保护这些繁殖体。这是首次在模拟野外条件下对芽生孢子进行针对蚊子幼虫的测试,当前的研究可能成为开发新型生物防治剂的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5de/10381131/b9a9a7cfffb3/jof-09-00759-g001.jpg

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