被子植物花蜜微生物群落的季节聚集:评估气候和植物性状的贡献

IF 7.6 1区 环境科学与生态学 Q1 ECOLOGY
Ecology Letters Pub Date : 2024-12-31 DOI:10.1111/ele.70045
Jacob M. Cecala, Leta Landucci, Rachel L. Vannette
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引用次数: 0

摘要

植物与微生物的关联是普遍存在的,但分析扩散、寄主过滤、竞争和温度对微生物群落组成的贡献具有挑战性。寄生在花蜜中的微生物可以影响开花植物的健康和授粉,为解开群落组装过程提供了一个易于处理的系统。我们将酵母和细菌的合成群落接种到31种植物的花蜜中,而不包括传粉者。我们监测天气,并在24小时后收集和培养群落。我们发现植物物种在微生物丰度和群落组成上有很强的特征,这在一定程度上与植物系统发育和花蜜过氧化氢含量有关,但与花的形态无关。温度升高会降低微生物多样性,而最低温度升高则会促进微生物生长,这表明温度具有复杂的生态效应。植物物种内一致的花蜜微生物群落可以使植物或传粉者适应。我们的工作支持宿主身份,性状和温度在微生物群落组装中的作用,并表明宿主相关微生物组的多样性-生产力关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Seasonal Assembly of Nectar Microbial Communities Across Angiosperm Plant Species: Assessing Contributions of Climate and Plant Traits

Seasonal Assembly of Nectar Microbial Communities Across Angiosperm Plant Species: Assessing Contributions of Climate and Plant Traits

Seasonal Assembly of Nectar Microbial Communities Across Angiosperm Plant Species: Assessing Contributions of Climate and Plant Traits

Plant–microbe associations are ubiquitous, but parsing contributions of dispersal, host filtering, competition and temperature on microbial community composition is challenging. Floral nectar-inhabiting microbes, which can influence flowering plant health and pollination, offer a tractable system to disentangle community assembly processes. We inoculated a synthetic community of yeasts and bacteria into nectars of 31 plant species while excluding pollinators. We monitored weather and, after 24 h, collected and cultured communities. We found a strong signature of plant species on resulting microbial abundance and community composition, in part explained by plant phylogeny and nectar peroxide content, but not floral morphology. Increasing temperature reduced microbial diversity, while higher minimum temperatures increased growth, suggesting complex ecological effects of temperature. Consistent nectar microbial communities within plant species could enable plant or pollinator adaptation. Our work supports the roles of host identity, traits and temperature in microbial community assembly, and indicates diversity–productivity relationships within host-associated microbiomes.

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来源期刊
Ecology Letters
Ecology Letters 环境科学-生态学
CiteScore
17.60
自引率
3.40%
发文量
201
审稿时长
1.8 months
期刊介绍: Ecology Letters serves as a platform for the rapid publication of innovative research in ecology. It considers manuscripts across all taxa, biomes, and geographic regions, prioritizing papers that investigate clearly stated hypotheses. The journal publishes concise papers of high originality and general interest, contributing to new developments in ecology. Purely descriptive papers and those that only confirm or extend previous results are discouraged.
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