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农业实践和传粉者会调节花际微生物群落。

Agricultural practices and pollinators modulate the anthosphere microbiome.

作者信息

Temmermans Jari, Legein Marie, Checchia Ilaria, Felis Giovanna E, Smets Wenke, Karise Reet, Lebeer Sarah

机构信息

Laboratory of Applied Microbiology & Biotechnology, Department of Bioscience Engineering, Antwerp University, Groenenborgerlaan 171, Antwerp 2020, Belgium.

Department of Biotechnology, University of Verona, Villa Lebrecht, Via della Pieve 70, San Pietro in Cariano 37029, Italy.

出版信息

ISME Commun. 2025 Feb 12;5(1):ycaf026. doi: 10.1093/ismeco/ycaf026. eCollection 2025 Jan.

Abstract

The flower microbiome is pivotal in plant health, influencing reproductive success, fruit quality, and pathogen vulnerability. However, the impact of intensified agricultural practices on these microbial communities remains to be understood. This study examines how specific agricultural practices influence the bacterial composition of the strawberry anthosphere, focusing on cultivation intensification. Intensified systems were defined by practices such as indoor glasshouse substrate-based cultivation, increased use of plant protection products, larger cultivation areas, and reliance on managed pollinators. Using citizen science and V4 16S rRNA gene sequencing, we found that flowers in these more intensively managed systems had lower bacterial diversity, more variable microbiomes, and loss of core taxa such as and . To determine if pollinators could help mitigate these effects, we conducted exclusion experiments. In a tunnel system, we observed that foraging pollinators facilitated the dispersal of specific bacteria, such as and , and increased flower bacterial richness. However, in an open field, foraging pollinators had no significant impact. Our findings highlight the significant impact of cultivation intensification on the anthosphere microbiome and suggest that pollinators may play a role in restoring microbiome diversity. This research fills a critical gap in understanding how agricultural practices shape plant microbiomes and underscores the potential for microbe-based strategies to improve plant health in intensively managed systems.

摘要

花卉微生物群对植物健康至关重要,影响着繁殖成功率、果实品质和病原体易感性。然而,强化农业实践对这些微生物群落的影响仍有待了解。本研究考察了特定农业实践如何影响草莓花围的细菌组成,重点关注种植集约化。集约化系统的定义包括室内温室基质栽培、植物保护产品使用增加、种植面积扩大以及对人工授粉的依赖等实践。通过公民科学和V4 16S rRNA基因测序,我们发现,在这些管理更集约化的系统中,花朵的细菌多样性较低,微生物群更具变异性,并且 和 等核心分类群减少。为了确定传粉者是否有助于减轻这些影响,我们进行了排除实验。在一个隧道系统中,我们观察到觅食的传粉者促进了特定细菌(如 和 )的传播,并增加了花朵细菌丰富度。然而,在露天田地中,觅食的传粉者没有显著影响。我们的研究结果突出了种植集约化对花围微生物群的重大影响,并表明传粉者可能在恢复微生物群多样性方面发挥作用。这项研究填补了理解农业实践如何塑造植物微生物群方面的关键空白,并强调了基于微生物的策略在集约化管理系统中改善植物健康的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f83/12118460/0d05dcdf916a/ycaf026ga1.jpg

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