Kenney Eric, Eleftherianos Ioannis
Department of Biological Sciences, The George Washington University, 800 22nd Street NW, Washington DC 20052, United States.
Department of Biological Sciences, The George Washington University, 800 22nd Street NW, Washington DC 20052, United States.
Int J Parasitol. 2016 Jan;46(1):13-9. doi: 10.1016/j.ijpara.2015.09.005. Epub 2015 Oct 23.
Plant-parasitic nematodes are responsible for substantial damages within the agriculture industry every year, which is a challenge that has thus far gone largely unimpeded. Chemical nematicides have been employed with varying degrees of success, but their implementation can be cumbersome, and furthermore they could potentially be neutralising an otherwise positive effect from the entomopathogenic nematodes that coexist with plant-parasitic nematodes in soil environments and provide protection for plants against insect pests. Recent research has explored the potential of employing entomopathogenic nematodes to protect plants from plant-parasitic nematodes, while providing their standard degree of protection against insects. The interactions involved are highly complex, due to both the three-organism system and the assortment of variables present in a soil environment, but a strong collection of evidence has accumulated regarding the suppressive capacity of certain entomopathogenic nematodes and their mutualistic bacteria, in the context of limiting the infectivity of plant-parasitic nematodes. Specific factors produced by certain entomopathogenic nematode complexes during the process of insect infection appear to have a selectively nematicidal, or at least repellant, effect on plant-parasitic nematodes. Using this information, an opportunity has formed to adapt this relationship to large-scale, field conditions and potentially relieve the agricultural industry of one of its most substantial burdens.
植物寄生线虫每年给农业产业造成巨大损失,这是一个迄今为止基本未受阻碍的挑战。化学杀线虫剂的使用取得了不同程度的成功,但其实施可能很麻烦,而且它们可能会抵消土壤环境中与植物寄生线虫共存并为植物提供防虫保护的昆虫病原线虫的积极作用。最近的研究探索了利用昆虫病原线虫保护植物免受植物寄生线虫侵害的潜力,同时提供其对昆虫的标准保护程度。由于三生物系统以及土壤环境中存在的各种变量,所涉及的相互作用非常复杂,但在限制植物寄生线虫感染力方面,已经积累了大量关于某些昆虫病原线虫及其共生细菌抑制能力的证据。某些昆虫病原线虫复合体在感染昆虫过程中产生的特定因素似乎对植物寄生线虫具有选择性杀线虫作用,或至少具有驱避作用。利用这些信息,有机会将这种关系应用于大规模田间条件,并有可能减轻农业产业最沉重的负担之一。