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苯并恶嗪类物质选择性影响与玉米根系相关的线虫分类群。

Benzoxazinoids selectively affect maize root-associated nematode taxa.

机构信息

Department of Agroecology, Faculty of Technical Sciences, Aarhus University, 4200 Slagelse, Denmark.

Department of Botany, Faculty of Biological Sciences, Jahangirnagar University, 1342 Savar, Dhaka, Bangladesh.

出版信息

J Exp Bot. 2021 May 4;72(10):3835-3845. doi: 10.1093/jxb/erab104.

Abstract

Although the effects of plant secondary metabolites on plant defence have been studied for decades, the exact roles of secondary metabolites in shaping plant-associated microbial and nematode communities remain elusive. We evaluated the effects of benzoxazinoids, a group of secondary metabolites present in several cereals, on root-associated nematodes. We employed 18S rRNA metabarcoding to compare maize root-associated nematode communities in a bx1 knockout maize line impaired in benzoxazinoid synthesis and in its parental wild type. Both genotype and plant age affected the composition of the nematode community in the roots, and the effects of benzoxazinoids on nematode communities were stronger in the roots than in the rhizosphere. Differential abundance analysis and quantitative PCR showed that the root lesion nematode Pratylenchus neglectus was enriched in the bx1 mutant line, while another root lesion nematode, Pratylenchus crenatus, was reduced. Correlation analysis showed that benzoxazinoid concentrations in maize roots mostly correlated negatively with the relative abundance of nematode sequence reads. However, positive correlations between benzoxazinoids and nematode taxa, including several plant-parasitic nematodes, were also identified. Our detailed nematode community analysis suggests differential and selective effects of benzoxazinoids on soil nematodes depending on both the nematode species and the benzoxazinoid compound.

摘要

尽管植物次生代谢物对植物防御的影响已经研究了几十年,但次生代谢物在塑造与植物相关的微生物和线虫群落中的确切作用仍然难以捉摸。我们评估了苯并恶嗪类化合物(存在于几种谷物中的一组次生代谢物)对根相关线虫的影响。我们采用 18S rRNA 代谢组学比较了在苯并恶嗪类化合物合成受损的 bx1 敲除玉米系及其亲本野生型玉米中,根相关线虫群落的差异。基因型和植物年龄都影响了根系中线虫群落的组成,并且苯并恶嗪类化合物对根系中线虫群落的影响强于根际。差异丰度分析和定量 PCR 显示,根结线虫 Pratylenchus neglectus 在 bx1 突变体系中富集,而另一种根结线虫 Pratylenchus crenatus 则减少。相关性分析表明,玉米根中苯并恶嗪类化合物的浓度与线虫序列读长的相对丰度大多呈负相关。然而,也发现了苯并恶嗪类化合物与线虫分类群之间的正相关关系,包括几种植物寄生线虫。我们详细的线虫群落分析表明,苯并恶嗪类化合物对土壤线虫的影响具有差异和选择性,这取决于线虫物种和苯并恶嗪类化合物的化合物。

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