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旧金山真菌内生菌的城市生物地理学。

Urban biogeography of fungal endophytes across San Francisco.

机构信息

Department of Biology, University of San Francisco, San Francisco, CA, United States of America.

出版信息

PeerJ. 2023 Jul 31;11:e15454. doi: 10.7717/peerj.15454. eCollection 2023.

Abstract

In natural and agricultural systems, the plant microbiome-the microbial organisms associated with plant tissues and rhizosphere soils-has been shown to have important effects on host physiology and ecology, yet we know little about how these plant-microbe relationships play out in urban environments. Here we characterize the composition of fungal communities associated with living leaves of one of the most common sidewalk trees in the city of San Francisco, California. We focus our efforts on endophytic fungi (asymptomatic microfungi that live inside healthy leaves), which have been shown in other systems to have large ecological effects on the health of their plant hosts. Specifically, we characterized the foliar fungal microbiome of (Myrtaceae) trees growing in a variety of urban environmental conditions. We used high-throughput culturing, PCR, and Sanger sequencing of the internal transcribed spacer nuclear ribosomal DNA (ITS nrDNA) region to quantify the composition and structure of fungal communities growing within healthy leaves of 30 trees from six distinct sites, which were selected to capture the range of environmental conditions found within city limits. Sequencing resulted in 854 high-quality ITS sequences. These sequences clustered into 85 Operational Taxonomic Units (97% OTUs). We found that these communities encompass relatively high alpha (within) and beta (between-site) diversity. Because the communities are all from the same host tree species, and located in relatively close geographical proximity to one another, these analyses suggest that urban environmental factors such as heat islands or differences in vegetation or traffic density (and associated air quality) may potentially be influencing the composition of these fungal communities. These biogeographic patterns provide evidence that plant microbiomes in urban environments can be as dynamic and complex as their natural counterparts. As human populations continue to transition out of rural areas and into cities, understanding the factors that shape environmental microbial communities in urban ecosystems stands to become increasingly important.

摘要

在自然和农业系统中,与植物组织和根际土壤相关的植物微生物组——微生物群落——已被证明对宿主生理学和生态学有重要影响,但我们对这些植物-微生物关系如何在城市环境中发挥作用知之甚少。在这里,我们描述了与加利福尼亚州旧金山市最常见的人行道树之一的活体叶片相关的真菌群落的组成。我们专注于内生真菌(无症状的生活在健康叶片内部的微生物),在其他系统中,内生真菌对其植物宿主的健康有很大的生态影响。具体来说,我们描述了在各种城市环境条件下生长的 (桃金娘科)树的叶内真菌微生物组。我们使用高通量培养、PCR 和内部转录间隔区核核糖体 DNA(ITS nrDNA)区域的 Sanger 测序来量化来自六个不同地点的 30 棵树的健康叶片内真菌群落的组成和结构,这些地点的选择是为了捕捉到城市范围内发现的环境条件范围。测序产生了 854 条高质量的 ITS 序列。这些序列聚类为 85 个操作分类单元(97%OTUs)。我们发现这些群落包含相对较高的 alpha(内部)和 beta(站点间)多样性。由于这些群落均来自同一宿主树种,并且彼此地理位置相对接近,这些分析表明,城市环境因素(如热岛效应)或植被或交通密度(及相关空气质量)的差异可能潜在地影响这些真菌群落的组成。这些生物地理模式表明,城市环境中的植物微生物组可以像自然环境中的微生物组一样具有动态和复杂性。随着人口继续从农村向城市转移,了解塑造城市生态系统环境微生物群落的因素将变得越来越重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e363/10399560/28895c3ef44b/peerj-11-15454-g001.jpg

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