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Imeta. 2022 May 4;1(2):e21. doi: 10.1002/imt2.21. eCollection 2022 Jun.
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Metabolite profiling of human-originated Lachnospiraceae at the strain level.人类源毛螺菌科菌株水平的代谢物谱分析。
Imeta. 2022 Oct 13;1(4):e58. doi: 10.1002/imt2.58. eCollection 2022 Dec.
3
The person-to-person transmission landscape of the gut and oral microbiomes.肠道和口腔微生物组的人际传播景观。
Nature. 2023 Feb;614(7946):125-135. doi: 10.1038/s41586-022-05620-1. Epub 2023 Jan 18.
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Dynamics of rice microbiomes reveal core vertically transmitted seed endophytes.水稻微生物组动态揭示核心垂直传播的种子内生菌。
Microbiome. 2022 Dec 9;10(1):216. doi: 10.1186/s40168-022-01422-9.
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From seed to seed: the role of microbial inheritance in the assembly of the plant microbiome.从种子到种子:微生物遗传在植物微生物组组装中的作用
Trends Microbiol. 2023 Apr;31(4):346-355. doi: 10.1016/j.tim.2022.10.009. Epub 2022 Dec 5.
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微生物组在各种环境中的相互关联对健康人群和健康星球具有重大影响。

Microbiome Interconnectedness throughout Environments with Major Consequences for Healthy People and a Healthy Planet.

机构信息

AIT Austrian Institute of Technology GmbH, Tulln, Austria.

Scion, Christchurch, New Zealand.

出版信息

Microbiol Mol Biol Rev. 2023 Sep 26;87(3):e0021222. doi: 10.1128/mmbr.00212-22. Epub 2023 Jun 27.

DOI:10.1128/mmbr.00212-22
PMID:37367231
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10521359/
Abstract

Microbiomes have highly important roles for ecosystem functioning and carry out key functions that support planetary health, including nutrient cycling, climate regulation, and water filtration. Microbiomes are also intimately associated with complex multicellular organisms such as humans, other animals, plants, and insects and perform crucial roles for the health of their hosts. Although we are starting to understand that microbiomes in different systems are interconnected, there is still a poor understanding of microbiome transfer and connectivity. In this review we show how microbiomes are connected within and transferred between different habitats and discuss the functional consequences of these connections. Microbiome transfer occurs between and within abiotic (e.g., air, soil, and water) and biotic environments, and can either be mediated through different vectors (e.g., insects or food) or direct interactions. Such transfer processes may also include the transmission of pathogens or antibiotic resistance genes. However, here, we highlight the fact that microbiome transmission can have positive effects on planetary and human health, where transmitted microorganisms potentially providing novel functions may be important for the adaptation of ecosystems.

摘要

微生物组在生态系统功能中具有非常重要的作用,它们执行着支持行星健康的关键功能,包括营养循环、气候调节和水过滤。微生物组还与复杂的多细胞生物(如人类、其他动物、植物和昆虫)密切相关,并为其宿主的健康发挥着至关重要的作用。尽管我们开始了解到不同系统中的微生物组是相互关联的,但对于微生物组的转移和连通性仍然缺乏了解。在这篇综述中,我们展示了微生物组如何在不同的栖息地内部和之间相互连接,并讨论了这些连接的功能后果。微生物组的转移发生在生物和非生物(如空气、土壤和水)环境之间以及内部,可以通过不同的媒介(如昆虫或食物)或直接相互作用来介导。这种转移过程还可能包括病原体或抗生素耐药性基因的传播。然而,在这里,我们强调了这样一个事实,即微生物组的传播可以对行星和人类健康产生积极影响,因为传播的微生物可能提供新的功能,这对于生态系统的适应是很重要的。