Sikder Md Maniruzzaman, Vestergård Mette
Department of Agroecology, AU-Flakkebjerg, Aarhus University, Slagelse, Denmark.
Mycology and Plant Pathology, Department of Botany, Jahangirnagar University, Dhaka, Bangladesh.
Front Plant Sci. 2020 Jan 31;10:1792. doi: 10.3389/fpls.2019.01792. eCollection 2019.
Plant parasitic nematodes cause significant crop damage globally. Currently, many nematicides have been banned or are being phased out in Europe and other parts of the world because of environmental and human health concerns. Therefore, we need to focus on sustainable and alternative methods of nematode control to protect crops. Plant roots contain and release a wide range of bioactive secondary metabolites, many of which are known defense compounds. Hence, profound understanding of the root mediated interactions between plants and plant parasitic nematodes may contribute to efficient control and management of pest nematodes. In this review, we have compiled literature that documents effects of root metabolites on plant parasitic nematodes. These chemical compounds act as either nematode attractants, repellents, hatching stimulants or inhibitors. We have summarized the few studies that describe how root metabolites regulate the expression of nematode genes. As non-herbivorous nematodes contribute to decomposition, nutrient mineralization, microbial community structuring and control of herbivorous insect larvae, we also review the impact of plant metabolites on these non-target organisms.
植物寄生线虫在全球范围内对农作物造成严重损害。目前,由于环境和人类健康问题,许多杀线虫剂在欧洲和世界其他地区已被禁止或正在逐步淘汰。因此,我们需要专注于可持续和替代的线虫控制方法来保护作物。植物根系含有并释放多种生物活性次生代谢产物,其中许多是已知的防御化合物。因此,深入了解植物与植物寄生线虫之间由根系介导的相互作用可能有助于有效控制和管理有害线虫。在这篇综述中,我们汇编了记录根系代谢产物对植物寄生线虫影响的文献。这些化合物可作为线虫引诱剂、驱避剂、孵化刺激剂或抑制剂。我们总结了少数描述根系代谢产物如何调节线虫基因表达的研究。由于非植食性线虫有助于分解、养分矿化、微生物群落构建以及控制植食性昆虫幼虫,我们还综述了植物代谢产物对这些非靶标生物的影响。