Habash Samer S, Könen Philipp P, Loeschcke Anita, Wüst Matthias, Jaeger Karl-Erich, Drepper Thomas, Grundler Florian M W, Schleker A Sylvia S
Molecular Phytomedicine, Faculty of Agriculture, University of Bonn, Karlrobert-Kreiten-Straße 13, 53115 Bonn, Germany.
Bioeconomy Science Center (BioSC), Forschungszentrum Jülich, 52425 Jülich, Germany.
Int J Mol Sci. 2020 Dec 17;21(24):9627. doi: 10.3390/ijms21249627.
Plant parasitic nematodes, including the beet cyst nematode , constitute a devastating problem for crops worldwide. The limited availability of sustainable management options illustrates the need for new eco-friendly control means. Plant metabolites represent an invaluable source of active compounds for the discovery of such novel antagonistic agents. Here, we evaluated the impact of eight plant terpenoids on the parasitism of . None of the metabolites affected the plant development (5 or 10 ppm). Nootkatone decreased the number of adult nematodes on to 50%, with the female nematodes being smaller compared to the control. In contrast, three other terpenoids increased the parasitism and/or female size. We discovered that nootkatone considerably decreased the number of nematodes that penetrated roots, but neither affected the nematode viability or attraction to plant roots, nor triggered the production of plant reactive oxygen species or changed the plant's sesquiterpene profile. However, we demonstrated that nootkatone led to a significant upregulation of defense-related genes involved in salicylic and jasmonic acid pathways. Our results indicate that nootkatone is a promising candidate to be developed into a novel plant protection agent acting as a stimulator of plant immunity against parasitic nematodes.
植物寄生线虫,包括甜菜孢囊线虫,对全球农作物构成了毁灭性问题。可持续管理方案的有限可用性表明需要新的生态友好型控制手段。植物代谢产物是发现此类新型拮抗剂的活性化合物的宝贵来源。在此,我们评估了八种植物萜类化合物对[具体线虫名称未给出]寄生的影响。没有一种代谢产物影响植物发育(5或10 ppm)。诺卡酮使[具体植物名称未给出]上的成年线虫数量减少到50%,与对照相比,雌线虫更小。相比之下,其他三种萜类化合物增加了寄生率和/或雌虫大小。我们发现诺卡酮显著减少了穿透[具体植物名称未给出]根系的线虫数量,但既不影响线虫的活力或对植物根系的吸引力,也不触发植物活性氧的产生或改变植物的倍半萜谱。然而,我们证明诺卡酮导致参与水杨酸和茉莉酸途径的防御相关基因显著上调。我们的结果表明,诺卡酮是一种有前途的候选物,可开发成一种新型植物保护剂,作为植物对寄生线虫免疫的刺激剂。