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Consistent host and organ occupancy of phyllosphere bacteria in a community of wild herbaceous plant species.叶际细菌在野生草本植物群落中的宿主和器官定殖一致性。
ISME J. 2020 Jan;14(1):245-258. doi: 10.1038/s41396-019-0531-8. Epub 2019 Oct 17.
2
Phytobiomes are compositionally nested from the ground up.植物群落从底层开始在组成上相互嵌套。
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3
Simple statistical identification and removal of contaminant sequences in marker-gene and metagenomics data.简单的统计鉴定和去除标记基因和宏基因组数据中的污染物序列。
Microbiome. 2018 Dec 17;6(1):226. doi: 10.1186/s40168-018-0605-2.
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ITSxpress: Software to rapidly trim internally transcribed spacer sequences with quality scores for marker gene analysis.ITSxpress:用于快速修剪内部转录间隔区序列并带有用于标记基因分析的质量分数的软件。
F1000Res. 2018 Sep 6;7:1418. doi: 10.12688/f1000research.15704.1. eCollection 2018.
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Embracing Community Ecology in Plant Microbiome Research.在植物微生物组研究中采用群落生态学。
Trends Plant Sci. 2018 Jun;23(6):467-469. doi: 10.1016/j.tplants.2018.03.013. Epub 2018 Apr 11.
6
Assembly and ecological function of the root microbiome across angiosperm plant species.被子植物物种根微生物组的组装和生态功能。
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Nature. 2017 Nov 23;551(7681):457-463. doi: 10.1038/nature24621. Epub 2017 Nov 1.
8
Algorithm for post-clustering curation of DNA amplicon data yields reliable biodiversity estimates.基于聚类后分析的 DNA 扩增子数据校正算法可得出可靠的生物多样性估计值。
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Exact sequence variants should replace operational taxonomic units in marker-gene data analysis.在标记基因数据分析中,精确序列变体应取代操作分类单元。
ISME J. 2017 Dec;11(12):2639-2643. doi: 10.1038/ismej.2017.119. Epub 2017 Jul 21.
10
Distance decay relationships in foliar fungal endophytes are driven by rare taxa.叶部真菌内生菌的距离衰减关系由稀有类群驱动。
Environ Microbiol. 2017 Jul;19(7):2794-2805. doi: 10.1111/1462-2920.13799. Epub 2017 Jun 22.

植物部位和陡峭的环境梯度预测了热带流域中植物微生物的组成。

Plant part and a steep environmental gradient predict plant microbial composition in a tropical watershed.

机构信息

Department of Plant and Environmental Protection Sciences, University of Hawai'i-Mānoa, 3050 Maile Way, Honolulu, HI, 96822, USA.

Hawai'i Institute of Marine Biology, University of Hawai'i-Mānoa, 46-007 Lilipuna Road, Kāne'ohe, HI, 96744, USA.

出版信息

ISME J. 2021 Apr;15(4):999-1009. doi: 10.1038/s41396-020-00826-5. Epub 2020 Nov 13.

DOI:10.1038/s41396-020-00826-5
PMID:33188299
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8115680/
Abstract

Plant microbiomes are shaped by forces working at different spatial scales. Environmental factors determine a pool of potential symbionts while host physiochemical factors influence how those microbes associate with distinct plant tissues. These scales are seldom considered simultaneously, despite their potential to interact. Here, we analyze epiphytic microbes from nine Hibiscus tiliaceus trees across a steep, but short, environmental gradient within a single Hawaiian watershed. At each location, we sampled eight microhabitats: leaves, petioles, axils, stems, roots, and litter from the plant, as well as surrounding air and soil. The composition of bacterial communities is better explained by microhabitat, while location better predicted compositional variance for fungi. Fungal community compositional dissimilarity increased more rapidly along the gradient than did bacterial composition. Additionally, the rates of fungal community compositional dissimilarity along the gradient differed among plant parts, and these differences influenced the distribution patterns and range size of individual taxa. Within plants, microbes were compositionally nested such that aboveground communities contained a subset of the diversity found belowground. Our findings indicate that both environmental context and microhabitat contribute to microbial compositional variance in our study, but that these contributions are influenced by the domain of microbe and the specific microhabitat in question, suggesting a complicated and potentially interacting dynamic.

摘要

植物微生物组是由在不同空间尺度上起作用的力量塑造的。环境因素决定了潜在共生体的池,而宿主生理化学因素则影响这些微生物与不同植物组织的关联方式。尽管它们有可能相互作用,但这些尺度很少被同时考虑。在这里,我们分析了夏威夷一个单一流域内一个陡峭但短暂的环境梯度上的九棵黄槿树上的附生微生物。在每个地点,我们从植物的叶子、叶柄、腋部、茎、根和凋落物以及周围的空气和土壤中采样了八个微生境。细菌群落的组成更多地由微生境来解释,而位置更好地预测了真菌的组成方差。真菌群落组成的不相似性沿着梯度增加的速度比细菌组成的速度快。此外,真菌群落组成不相似性的速率沿着梯度在植物各部分之间存在差异,这些差异影响了个别分类群的分布模式和范围大小。在植物内部,微生物在组成上是嵌套的,即地上群落包含了地下群落中发现的一部分多样性。我们的研究结果表明,环境背景和微生境都对我们研究中的微生物组成方差有贡献,但这些贡献受到微生物领域和具体微生境的影响,这表明存在一种复杂且可能相互作用的动态。