Pajar Jessil Ann, Otto Pius, Leonar April Lyn, Döll Stefanie, van Dam Nicole M
Leibniz Institute for Vegetable and Ornamental Crops (IGZ) e.V., Großbeeren, Germany.
Max Planck Institute for Chemical Ecology, Jena, Germany.
J Exp Bot. 2024 Dec 4;75(22):7317-7336. doi: 10.1093/jxb/erae364.
Previous studies showed that aphid performance was compromised on Brassica nigra infected by root-lesion nematodes (Pratylenchus penetrans, Pp), but less, or positively influenced by root-knot nematode (Meloidogyne spp.) infection. These experiments were on single-species nematode infections, but roots can be infected naturally with several nematode species simultaneously. We performed greenhouse assays to assess the effects of single [Meloidogyne incognita (Mi) or Pp] and concurrent (MP) nematode infections on aphid performance. Using targeted and untargeted profiling of leaf and phloem metabolomes, we examined how single and concurrent nematode infections affect shoot metabolomes, and elucidated the possible consequences for aphid performance. We found that the metabolic response to double-infection is different from that to single-species infections. Moreover, Mi and Pp infections triggered discrete changes in B. nigra leaf and phloem metabolic profiles. Both Pp and MP infections reduced aphid survival, suggesting that the biological effect could primarily be dominated by Pp-induced changes. This concurred with increased indole glucosinolates and hydroxycinnamic acid levels in the leaves, in particular the putative involvement of salicylic acid-2-O-β-d-glucoside. This study provides evidence that concurrent infection by different nematode species, as is common in natural environments, is associated with distinct changes in aboveground plant metabolomes, which are linked to differences in the survival of an aboveground herbivore.
先前的研究表明,在被根腐线虫(穿刺短体线虫,Pp)感染的黑芥上,蚜虫的生长发育受到影响,但在被根结线虫(南方根结线虫属)感染的黑芥上,蚜虫受到的影响较小或呈正向影响。这些实验针对的是单一物种线虫感染,但根系在自然环境中可能会同时被多种线虫物种感染。我们进行了温室试验,以评估单一(南方根结线虫,Mi,或Pp)和同时(MP)线虫感染对蚜虫生长发育的影响。通过对叶片和韧皮部代谢组进行靶向和非靶向分析,我们研究了单一和同时线虫感染如何影响地上部代谢组,并阐明了对蚜虫生长发育可能产生的后果。我们发现,双重感染的代谢反应与单一物种感染不同。此外,Mi和Pp感染引发了黑芥叶片和韧皮部代谢谱的不同变化。Pp和MP感染均降低了蚜虫的存活率,这表明生物学效应可能主要由Pp诱导的变化主导。这与叶片中吲哚硫代葡萄糖苷和羟基肉桂酸水平的增加一致,特别是水杨酸-2-O-β-D-葡萄糖苷的假定参与。这项研究提供了证据,表明在自然环境中常见的不同线虫物种同时感染,与地上部植物代谢组的明显变化有关,而这些变化与地上部食草动物的存活率差异有关。