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食草动物的细菌共生体对其性能及诱导植物防御的独立影响

Independent Effects of a Herbivore's Bacterial Symbionts on Its Performance and Induced Plant Defences.

作者信息

Staudacher Heike, Schimmel Bernardus C J, Lamers Mart M, Wybouw Nicky, Groot Astrid T, Kant Merijn R

机构信息

Institute for Biodiversity and Ecosystem Dynamics, University of Amsterdam, Science Park 904, 1098 XH Amsterdam, The Netherlands.

Max Planck Institute for Chemical Ecology, Hans-Knöll-Straβe 8, 07745 Jena, Germany.

出版信息

Int J Mol Sci. 2017 Jan 18;18(1):182. doi: 10.3390/ijms18010182.

Abstract

It is well known that microbial pathogens and herbivores elicit defence responses in plants. Moreover, microorganisms associated with herbivores, such as bacteria or viruses, can modulate the plant's response to herbivores. Herbivorous spider mites can harbour different species of bacterial symbionts and exert a broad range of effects on host-plant defences. Hence, we tested the extent to which such symbionts affect the plant's defences induced by their mite host and assessed if this translates into changes in plant resistance. We assessed the bacterial communities of two strains of the common mite pest . We found that these strains harboured distinct symbiotic bacteria and removed these using antibiotics. Subsequently, we tested to which extent mites with and without symbiotic bacteria induce plant defences in terms of phytohormone accumulation and defence gene expression, and assessed mite oviposition and survival as a measure for plant resistance. We observed that the absence/presence of these bacteria altered distinct plant defence parameters and affected mite performance but we did not find indications for a causal link between the two. We argue that although bacteria-related effects on host-induced plant defences may occur, these do not necessarily affect plant resistance concomitantly.

摘要

众所周知,微生物病原体和食草动物会引发植物的防御反应。此外,与食草动物相关的微生物,如细菌或病毒,可调节植物对食草动物的反应。植食性叶螨可携带不同种类的细菌共生体,并对宿主植物防御产生广泛影响。因此,我们测试了此类共生体在多大程度上影响其螨宿主诱导的植物防御,并评估这是否转化为植物抗性的变化。我们评估了两种常见螨类害虫菌株的细菌群落。我们发现这些菌株携带不同的共生细菌,并使用抗生素将其清除。随后,我们测试了有无共生细菌的螨类在植物激素积累和防御基因表达方面诱导植物防御的程度,并评估螨类产卵和存活情况作为植物抗性的指标。我们观察到这些细菌的有无改变了不同的植物防御参数并影响螨类表现,但未发现两者之间存在因果关系的迹象。我们认为,尽管可能会出现细菌对宿主诱导的植物防御的影响,但这些不一定会同时影响植物抗性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b86/5297814/6c67dd9d2821/ijms-18-00182-g001.jpg

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