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昆虫病原线虫的耐受能力:为精准农业工程卓越线虫。

Stress tolerance in entomopathogenic nematodes: Engineering superior nematodes for precision agriculture.

机构信息

Institute of Plant Sciences, University of Bern, Altenbergrain 21, CH-3013 Bern, Switzerland.

Institute of Biology, University of Neuchâtel, Rue Emile Argand 11, CH-2000 Neuchâtel, Switzerland.

出版信息

J Invertebr Pathol. 2023 Jul;199:107953. doi: 10.1016/j.jip.2023.107953. Epub 2023 Jun 17.

Abstract

Entomopathogenic nematodes (EPNs) are soil-dwelling parasitic roundworms commonly used as biocontrol agents of insect pests in agriculture. EPN dauer juveniles locate and infect a host in which they will grow and multiply until resource depletion. During their free-living stage, EPNs face a series of internal and environmental stresses. Their ability to overcome these challenges is crucial to determine their infection success and survival. In this review, we provide a comprehensive overview of EPN response to stresses associated with starvation, low/elevated temperatures, desiccation, osmotic stress, hypoxia, and ultra-violet light. We further report EPN defense strategies to cope with biotic stressors such as viruses, bacteria, fungi, and predatory insects. By comparing the genetic and biochemical basis of these strategies to the nematode model Caenorhabditis elegans, we provide new avenues and targets to select and engineer precision nematodes adapted to specific field conditions.

摘要

昆虫病原线虫(EPN)是一种生活在土壤中的寄生性圆形线虫,通常被用作农业中昆虫害虫的生物防治剂。EPN 持久幼虫定位并感染宿主,在宿主中生长和繁殖,直到资源耗尽。在自由生活阶段,EPN 面临一系列内部和环境压力。它们克服这些挑战的能力对于确定它们的感染成功率和生存能力至关重要。在这篇综述中,我们全面概述了 EPN 对与饥饿、低温/高温、干旱、渗透胁迫、缺氧和紫外线相关的应激的反应。我们还报告了 EPN 防御策略,以应对病毒、细菌、真菌和捕食性昆虫等生物胁迫源。通过将这些策略的遗传和生化基础与线虫模型秀丽隐杆线虫进行比较,我们为选择和工程化适应特定田间条件的精确线虫提供了新的途径和目标。

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