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对植物-细菌在其自然栖息地中的相互作用进行分析:与野生烟草相关的细菌群落独立于内源性茉莉酸水平和发育阶段。

Analysis of plant-bacteria interactions in their native habitat: bacterial communities associated with wild tobacco are independent of endogenous jasmonic acid levels and developmental stages.

作者信息

Santhanam Rakesh, Groten Karin, Meldau Dorothea G, Baldwin Ian T

机构信息

Department of Molecular Ecology, Max-Planck-Institute for Chemical Ecology, Jena, Germany.

出版信息

PLoS One. 2014 Apr 11;9(4):e94710. doi: 10.1371/journal.pone.0094710. eCollection 2014.

Abstract

Jasmonic acid (JA) mediates defense responses against herbivores and necrotrophic pathogens but does it influence the recruitment of bacterial communities in the field? We conducted field and laboratory experiments with transformed Nicotiana attenuata plants deficient in jasmonate biosynthesis (irAOC) and empty vector controls (EV) to answer this question. Using both culture-dependent and independent techniques, we characterized root and leaf-associated bacterial communities over five developmental stages, from rosette through flowering of plants grown in their natural habitat. Based on the pyrosequencing results, alpha and beta diversity did not differ among EV and irAOC plants or over ontogeny, but some genera were more abundant in one of the genotypes. Furthermore, bacterial communities were significantly different among leaves and roots. Taxa isolated only from one or both plant genotypes and hence classified as 'specialists' and 'generalists' were used in laboratory tests to further evaluate the patterns observed from the field. The putative specialist taxa did not preferentially colonize the jasmonate-deficient genotype, or alter the plant's elicited phytohormone signaling. We conclude that in N. attenuata, JA signaling does not have a major effect on structuring the bacterial communities and infer that colonization of plant tissues is mainly shaped by the local soil community in which the plant grows.

摘要

茉莉酸(JA)介导植物对食草动物和坏死营养型病原体的防御反应,但它会影响田间细菌群落的招募吗?我们用茉莉酸生物合成缺陷的转基因烟草(irAOC)和空载体对照(EV)进行了田间和实验室实验,以回答这个问题。我们使用依赖培养和不依赖培养的技术,对在自然栖息地生长的植物从莲座期到开花期的五个发育阶段的根际和叶际细菌群落进行了表征。基于焦磷酸测序结果,EV和irAOC植株之间或在个体发育过程中,α多样性和β多样性没有差异,但某些属在其中一种基因型中更为丰富。此外,叶际和根际的细菌群落存在显著差异。在实验室测试中,我们使用仅从一种或两种植物基因型中分离出来的分类群(因此被归类为“专性菌”和“兼性菌”),以进一步评估从田间观察到的模式。假定的专性分类群不会优先定殖于茉莉酸缺陷型基因型,也不会改变植物引发的植物激素信号传导。我们得出结论,在烟草中,JA信号传导对细菌群落结构没有主要影响,并推断植物组织的定殖主要由植物生长的当地土壤群落塑造。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d54a/3984252/474d9edda3a5/pone.0094710.g001.jpg

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