College of Resources and Environmental Sciences, National Academy of Agriculture Green Development, State Key Laboratory of Nutrient Use and Management (SKL-NUM), China Agricultural University, 100193 Beijing, China.
J Agric Food Chem. 2023 Jul 12;71(27):10269-10276. doi: 10.1021/acs.jafc.3c00661. Epub 2023 Jun 29.
Tomato () plants are susceptible to infection by root-knot nematodes, which cause severe economic losses. Planting resistant tomato plants can reduce nematode damage; however, the effects of resistant tomato root exudates in suppressing remain insufficiently understood. Here, we determined that the resistant tomato plant cv. Xianke-8 (XK8) alleviates nematode damage by downregulating the expression of the essential parasitic nematode gene to reduce the infection and reproduction of . Using gas chromatography-mass spectrometry, we identified vanillin as a unique compound (compared to susceptible tomato cultivars) in XK8 root exudates that acts as a lethal trap and inhibitor of egg hatching. Moreover, the soil application of 0.4-4.0 mmol/kg vanillin significantly reduced galls and egg masses. The parasite gene was downregulated upon treatment with vanillin, both and in pot experiments. Collectively, our results reveal an effective nematicidal compound that can use in feasible and economical strategies to control RKNs.
番茄植株容易受到根结线虫的感染,这会导致严重的经济损失。种植抗番茄植物可以减少线虫的损害;然而,抗番茄根分泌物在抑制根结线虫方面的作用还不够了解。在这里,我们确定抗番茄品种 cv. Xianke-8(XK8)通过下调必需寄生线虫基因的表达来减轻线虫的损害,从而减少 的侵染和繁殖。使用气相色谱-质谱联用技术,我们发现香草醛是 XK8 根分泌物中的一种独特化合物(与感病番茄品种相比),它作为一种致死陷阱和卵孵化抑制剂发挥作用。此外,土壤中添加 0.4-4.0 mmol/kg 的香草醛可显著减少根结和卵块。香草醛处理后,寄生虫基因 和 在盆栽实验中均下调。总之,我们的结果揭示了一种有效的杀线虫化合物,可以在可行和经济的策略中用于控制 RKNs。