On the diversity of nematode antagonists in an agricultural soil, and their steerability by root-knot nematode density and cover crops

IF 9.8 1区 农林科学 Q1 SOIL SCIENCE Soil Biology & Biochemistry Pub Date : 2024-12-15 DOI:10.1016/j.soilbio.2024.109693
Sara G. Cazzaniga, Philippe Belliard, Joris van Steenbrugge, Sven van den Elsen, Carin Lombaers, Johnny Visser, Leendert Molendijk, Jose G. Macia-Vicente, Joeke Postma, Liesje Mommer, Johannes Helder
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Abstract

Plant-parasitic nematodes are harmful pathogens for many agricultural crops. Within this category, root-knot nematodes (RKN, Meloidogyne spp.) are worldwide regarded as the most impactful because of their wide geographical distribution and their polyphagous nature. Host plant resistances against RKN have been successfully introduced in a few crops only. As the use of nematicides is becoming increasingly restricted because of environmental and human health concerns, there is a need for alternative strategies to control RKN. One such approach is the stimulation of local nematode antagonists. We investigated this in an experimental field setting with two main variables: density of the Columbia root-knot nematode Meloidogyne chitwoodi, and the type of cover crop. For each of the three M. chitwoodi densities, the effects of ten cover crop treatments were tested on both the resident (DNA) and the active (RNA) fractions of the bacterial and fungal communities. In our analyses, we focused on changes in the abundance of plant-parasitic nematode antagonists. From the eight bacterial and 26 fungal genera known from global literature to harbour potential antagonists of plant-parasitic nematodes, we detected respectively five and 14 genera in our agricultural field. Among the bacterial genera, four genera were shown to comprise bacterial species for which nematode antagonism has been documented. The fungal genera included facultative nematode parasites (e.g., Arthrobotrys spp.), endophytes strengthening host defences (e.g., Acremonium spp.), as well as multiple obligatory nematophagous species. This study revealed that conventionally managed arable fields may harbour an unexpectedly high diversity of nematode antagonists. Multiple antagonists were stimulated by cover crops in a cover crop-specific manner, and, to a lesser extent, by increased RKN densities. The richness in putative nematode antagonists did not translate into M. chitwoodi suppression, and we currently investigating whether this relates to the facultative nematophagous lifestyle of most of these antagonists.
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农业土壤中线虫拮抗剂的多样性及其受根结线虫密度和覆盖作物影响的方向性
植物寄生线虫是许多农作物的有害病原体。在这一类别中,根结线虫(RKN, Meloidogyne spp.)由于其广泛的地理分布和多食性,在世界范围内被认为是最具影响力的。寄主植物对RKN的抗性仅在少数作物中成功引入。由于环境和人类健康方面的考虑,杀线虫剂的使用日益受到限制,因此有必要制定控制RKN的替代战略。其中一种方法是刺激局部的线虫拮抗剂。本研究以哥伦比亚根结线虫(Meloidogyne chitwoodi)密度和覆盖作物类型为主要变量,在田间进行了研究。针对3种不同密度的chitwoodi,测试了10种覆盖作物处理对细菌和真菌群落的常驻(DNA)和活性(RNA)组分的影响。在我们的分析中,我们关注的是植物寄生线虫拮抗剂丰度的变化。从全球文献中已知的8个细菌属和26个真菌属中,我们在农田中分别检测到5个和14个潜在的植物寄生线虫拮抗剂。在细菌属中,有4属被证明包含有线虫拮抗作用的细菌物种。真菌属包括兼性线虫寄生虫(如节肢线虫),加强宿主防御的内生真菌(如Acremonium),以及多种强制性食线虫物种。这项研究表明,传统管理的耕地可能蕴藏着意想不到的高多样性的线虫拮抗剂。覆盖作物以覆盖作物特有的方式刺激了多种拮抗剂,RKN密度的增加在较小程度上刺激了多种拮抗剂。假设的线虫拮抗剂的丰富度并没有转化为chitwoodi抑制,我们目前正在研究这是否与大多数这些拮抗剂的兼性噬线虫生活方式有关。
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来源期刊
Soil Biology & Biochemistry
Soil Biology & Biochemistry 农林科学-土壤科学
CiteScore
16.90
自引率
9.30%
发文量
312
审稿时长
49 days
期刊介绍: Soil Biology & Biochemistry publishes original research articles of international significance focusing on biological processes in soil and their applications to soil and environmental quality. Major topics include the ecology and biochemical processes of soil organisms, their effects on the environment, and interactions with plants. The journal also welcomes state-of-the-art reviews and discussions on contemporary research in soil biology and biochemistry.
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