Suppr超能文献

荷兰甜椒温室中的蚜虫是否携带可遗传的元素来保护它们抵御生物防治寄生蜂?

Do aphids in Dutch sweet pepper greenhouses carry heritable elements that protect them against biocontrol parasitoids?

作者信息

Beekman Mariska M, Donner Suzanne H, Litjens Jordy J H, Dicke Marcel, Zwaan Bas J, Verhulst Eveline C, Pannebakker Bart A

机构信息

Laboratory of Genetics Wageningen University & Research Wageningen The Netherlands.

Laboratory of Entomology Wageningen University & Research Wageningen The Netherlands.

出版信息

Evol Appl. 2022 Feb 15;15(10):1580-1593. doi: 10.1111/eva.13347. eCollection 2022 Oct.

Abstract

Biological control (biocontrol) of crop pests is a sustainable alternative to the use of biodiversity and organismal health-harming chemical pesticides. Aphids can be biologically controlled with parasitoid wasps; however, variable results of parasitoid-based aphid biocontrol in greenhouses are reported. Aphids may display genetically encoded (endogenous) defences that increase aphid resistance against parasitoids as under high parasitoid pressure there will be selection for parasitoid-resistant aphids, potentially affecting the success of parasitoid-based aphid biocontrol in greenhouses. Additionally, aphids may carry secondary bacterial endosymbionts that protect them against parasitoids. We studied whether there is variation in either of these heritable elements in aphids in greenhouses of sweet pepper, an agro-economically important crop in the Netherlands that is prone to aphid pests and where pest management heavily relies on biocontrol. We sampled aphid populations in organic (biocontrol only) and conventional (biocontrol and pesticides) sweet pepper greenhouses in the Netherlands during the 2019 crop growth season. We assessed the aphid microbiome through both diagnostic PCR and 16S rRNA sequencing and did not detect any secondary endosymbionts in the two most encountered aphid species, and . We also compared multiple aphid lines collected from different greenhouses for variation in levels of endogenous-based resistance against the parasitoids commonly used as biocontrol agents. We found no differences in the levels of endogenous-based resistance between different aphid lines. This study does not support the hypothesis that protective endosymbionts or the presence of endogenous resistant aphid lines affects the success of parasitoid-based biocontrol of aphids in Dutch greenhouses. Future investigations will need to address what is causing the variable successes of aphid biocontrol and what (biological and management-related) lessons can be learned for aphid control in other crops, and biocontrol in general.

摘要

作物害虫的生物防治是一种可持续的替代方法,可替代使用危害生物多样性和生物体健康的化学农药。蚜虫可用寄生蜂进行生物防治;然而,据报道,温室中基于寄生蜂的蚜虫生物防治效果参差不齐。蚜虫可能表现出基因编码(内源性)防御机制,这种机制会增强蚜虫对寄生蜂的抵抗力,因为在高寄生蜂压力下,会选择出抗寄生蜂的蚜虫,这可能会影响温室中基于寄生蜂的蚜虫生物防治的成功率。此外,蚜虫可能携带次生细菌内共生体,这些内共生体可保护它们免受寄生蜂侵害。我们研究了荷兰一种具有重要农业经济价值且易受蚜虫侵害、害虫管理严重依赖生物防治的甜椒温室中的蚜虫,这些可遗传因素是否存在差异。在2019年作物生长季节,我们对荷兰有机(仅生物防治)和传统(生物防治和农药)甜椒温室中的蚜虫种群进行了采样。我们通过诊断性PCR和16S rRNA测序评估了蚜虫微生物组,在两种最常见的蚜虫物种 和 中未检测到任何次生内共生体。我们还比较了从不同温室收集的多个蚜虫品系对常用作生物防治剂的寄生蜂的内源性抗性水平的差异。我们发现不同蚜虫品系之间的内源性抗性水平没有差异。这项研究不支持以下假设:保护性内共生体或内源性抗性蚜虫品系的存在会影响荷兰温室中基于寄生蜂的蚜虫生物防治的成功率。未来的研究需要解决导致蚜虫生物防治成败不一的原因,以及在其他作物的蚜虫防治和一般生物防治中可以吸取哪些(生物学和管理相关)经验教训。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/780a/9624084/99c49b2d5dfe/EVA-15-1580-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验