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植物母体效应、化学型和环境对叶片细菌群落的影响。

Influences of plant maternal effects, chemotype, and environment on the leaf bacterial community.

作者信息

Malacrinò A, Jakobs R, Xu S, Müller C

机构信息

Department of Agriculture, Università degli Studi "Mediterranea" di Reggio Calabria, Reggio Calabria, Italy.

Department of Biological Sciences, Clemson University, Clemson, South Carolina, USA.

出版信息

Plant Biol (Stuttg). 2025 Aug;27(5):903-912. doi: 10.1111/plb.13759. Epub 2025 Jan 17.

Abstract

Plant individuals within a species can differ markedly in their leaf chemical composition, forming so-called chemotypes. Little is known about whether such differences impact the microbial communities associated with leaves and how different environmental conditions may shape these relationships. We used Tanacetum vulgare as a model plant to study the impacts of maternal effects, leaf terpenoid chemotype, and the environment on the leaf bacterial community by growing plant clones in the field and a greenhouse. We hypothesized that all three factors affect the bacterial community of the leaves and that terpenoid and bacterial profiles as well as chemodiversity and microbial diversity are correlated. The results revealed that the leaf microbial community was significantly influenced by plant maternal effects and environmental conditions (field vs. greenhouse), but not by the leaf terpenoid profile. There was also no evidence for a correlation between terpenoid profiles and bacterial community composition and diversity. Overall, a higher number of unique amplicon sequence variants were found in the leaves of clones grown under field conditions than in those grown in the greenhouse. We also identified interactions between individual terpenoids and specific members of the leaf bacterial community. Our study suggests that terpenoid chemodiversity has, overall, little effect on the leaf bacterial community, but some terpenoids might affect specific beneficial species. While more studies are needed to investigate the relationship between plant chemodiversity and plant microbiomes, our results highlight the importance of integrating plant maternal effects, chemodiversity, and environment in understanding plant-microbiome interactions.

摘要

同一物种内的植物个体在叶片化学成分上可能存在显著差异,形成所谓的化学型。对于这些差异是否会影响与叶片相关的微生物群落,以及不同的环境条件如何塑造这些关系,我们知之甚少。我们以普通菊蒿为模式植物,通过在田间和温室中种植植物克隆体,研究母体效应、叶片萜类化学型和环境对叶片细菌群落的影响。我们假设这三个因素都会影响叶片的细菌群落,并且萜类和细菌谱以及化学多样性和微生物多样性是相关的。结果表明,叶片微生物群落受到植物母体效应和环境条件(田间与温室)的显著影响,但不受叶片萜类谱的影响。也没有证据表明萜类谱与细菌群落组成和多样性之间存在相关性。总体而言,在田间条件下生长的克隆体叶片中发现的独特扩增子序列变体数量比在温室中生长的克隆体叶片中更多。我们还确定了个别萜类与叶片细菌群落特定成员之间的相互作用。我们的研究表明,总体而言,萜类化学多样性对叶片细菌群落影响不大,但一些萜类可能会影响特定的有益物种。虽然需要更多的研究来调查植物化学多样性与植物微生物群之间的关系,但我们的结果强调了在理解植物 - 微生物群相互作用时整合植物母体效应、化学多样性和环境的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f33/12255285/dad26fe1b77e/PLB-27-903-g002.jpg

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