Unidad Asociada IPAB (UA-CSIC), Instituto Universitario de Investigación CIBIO, University of Alicante. Ctra. San Vicente del Raspeig s/n, E-03690, Alicante, Spain.
Laboratory of Entomology, University of Wageningen, P.O. Box 16, 6700 AA, Wageningen, The Netherlands.
Sci Rep. 2018 Sep 26;8(1):14424. doi: 10.1038/s41598-018-32131-9.
Herbivory affects subsequent herbivores, mainly regulated by the phytohormones jasmonic (JA) and salicylic acid (SA). Additionally, organisms such as soil microbes belowground or parasitoids that develop inside their herbivorous hosts aboveground, can change plant responses to herbivory. However, it is not yet well known how organisms of trophic levels other than herbivores, below- and above-ground, alter the interactions between insect species sharing a host plant. Here, we investigated whether the parasitoid Aphidius colemani and different soil microbial communities (created through plant-soil feedbacks) affect the JA and SA signalling pathways in response to the aphid Myzus persicae and the thrips Frankliniella occidentalis, as well as subsequent thrips performance. Our results show that the expression of the JA-responsive gene CaPINII in sweet pepper was more suppressed by aphids than by parasitised aphids. However, parasitism did not affect the expression of CaPAL1, a biosynthetic gene of SA. Furthermore, aphid feeding enhanced thrips performance compared with uninfested plants, but this was not observed when aphids were parasitised. Soils where different plant species were previously grown, did not affect plant responses or the interaction between herbivores. Our study shows that members of the third trophic level can modify herbivore interactions by altering plant physiology.
食草动物的取食会影响后续的食草动物,主要受茉莉酸(JA)和水杨酸(SA)等植物激素调节。此外,地下的土壤微生物或在其食草性宿主内发育的寄生蜂等生物,也可以改变植物对食草动物取食的反应。然而,目前还不清楚除食草动物以外的其他营养级生物,包括地上和地下的生物,如何改变共享宿主植物的昆虫物种之间的相互作用。在这里,我们研究了寄生蜂蚜茧蜂和不同的土壤微生物群落(通过植物-土壤反馈产生)是否会影响对蚜虫桃蚜和蓟马西方盲走蓟马的 JA 和 SA 信号通路的反应,以及随后的蓟马表现。我们的结果表明,在甜椒中,JA 反应基因 CaPINII 的表达受蚜虫的抑制作用大于受寄生蚜虫的抑制作用。然而,寄生作用并不影响 SA 生物合成基因 CaPAL1 的表达。此外,与未受侵扰的植物相比,蚜虫的取食会增强蓟马的表现,但当蚜虫被寄生时,这种情况就不会发生。先前种植不同植物的土壤不会影响植物的反应或食草动物之间的相互作用。我们的研究表明,第三营养级的成员可以通过改变植物生理学来调节食草动物的相互作用。