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根际细菌共生对多食性捕食者植物招募的负面影响。

Negative Effects of Rhizobacteria Association on Plant Recruitment of Generalist Predators.

作者信息

Löser Tobias B, Lucas-Barbosa Dani, Maurhofer Monika, Mescher Mark C, De Moraes Consuelo M

机构信息

Department of Environmental System Sciences, ETH Zürich, 8092 Zürich, Switzerland.

Vector Entomology Group, Institute of Parasitology, Vetsuisse Faculty, University of Zürich, 8057 Zürich, Switzerland.

出版信息

Plants (Basel). 2022 Mar 29;11(7):920. doi: 10.3390/plants11070920.

Abstract

Plant-associated microbes can influence above- and belowground interactions between plants and other organisms and thus have significant potential for use in the management of agricultural ecosystems. However, fully realizing this potential will require improved understanding of the specific ways in which microbes influence plant ecology, which are both more complex and less well studied than the direct effects of microbes on host-plant physiology. Microbial effects on mutualistic and antagonistic interactions between plants and insects are of particular interest in this regard. This study examines the effects of two strains of rhizobacteria on the direct and indirect (predator-mediated) resistance of tomato plants to a generalist herbivore () and associated changes in levels of defense compounds. We observed no significant effects of rhizobacteria inoculation on caterpillar weight, suggesting that rhizobacteria did not influence direct resistance. However, the generalist predator avoided plants inoculated with one of our rhizobacteria strains, . Consistent with these results, we found that inoculation with influenced plant volatile emissions, but not levels of defense-related compounds. These findings show that rhizobacteria can negatively affect the attraction of generalist predators, while highlighting the complexity and context dependence of microbial effects on plant-insect interactions.

摘要

与植物相关的微生物可以影响植物与其他生物之间的地上和地下相互作用,因此在农业生态系统管理中具有巨大的应用潜力。然而,要充分实现这一潜力,需要更好地理解微生物影响植物生态学的具体方式,这些方式比微生物对宿主植物生理学的直接影响更为复杂且研究较少。在这方面,微生物对植物与昆虫之间互利和拮抗相互作用的影响尤为令人关注。本研究考察了两种根际细菌菌株对番茄植株对多食性食草动物( )的直接和间接(捕食者介导)抗性的影响,以及防御化合物水平的相关变化。我们观察到接种根际细菌对毛虫体重没有显著影响,这表明根际细菌没有影响直接抗性。然而,多食性捕食者 避开了接种了我们其中一种根际细菌菌株 的植物。与这些结果一致,我们发现接种 会影响植物挥发性物质的释放,但不会影响与防御相关的化合物水平。这些发现表明,根际细菌会对多食性捕食者的吸引力产生负面影响,同时凸显了微生物对植物 - 昆虫相互作用影响的复杂性和背景依赖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2147/9003080/75950f3ab33f/plants-11-00920-g001.jpg

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