海洋沉积物作为农业基质对土壤微生物多样性的影响:扩增子测序研究。

IF 6.2 2区 环境科学与生态学 Q1 GENETICS & HEREDITY
Dámaris Núñez-Gómez, Pablo Melgarejo, Juan José Martínez-Nicolás, Francisca Hernández, Rafael Martínez-Font, Vicente Lidón, Pilar Legua
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引用次数: 1

摘要

背景:土壤微生物群直接影响植物发育和其他代谢系统,如有机质降解、微量元素和代谢物的有效性。在农业土壤中,微生物活动对维持土壤健康和生产力至关重要。因此,本研究旨在鉴定、表征和量化四种类型基质中不同比例的海洋港口沉积物用于柠檬种植的微生物群落。通过研究微生物多样性和相对丰度,本研究旨在强调在使用替代培养基时土壤微生物群落在农业中的重要性。结果:通过对16s rRNA基因v3 ~ v4可变区进行扩增和测序,评估了样品微生物群落的组成和结构。结果表明,所有底物样品微生物群落组成多样,共鉴定出41门113纲266目405科715属1513种。其中,Proteobacteria、Bacteroidota、Planctomycetota、Patescibacteria、Chloroflexi、Actinobacteriota、Acidobacteriota、Verrucomicrobiota和Gemmatimonadota占细菌reads的90%以上,表明它们在底物中的优势地位。结论:确定了底物来源对菌群多样性和相对丰度的影响。泥炭中对植物发育有益的细菌群落含量较高,这可以解释为什么泥炭被认为是理想的农业基质。在替代农业基质中开发“对植物有益”的细菌群落,无论其土壤特征如何,都为研究这些旨在成为农业理想的培养基的强制和特定接种提供了可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effects of marine sediment as agricultural substrate on soil microbial diversity: an amplicon sequencing study.

Effects of marine sediment as agricultural substrate on soil microbial diversity: an amplicon sequencing study.

Effects of marine sediment as agricultural substrate on soil microbial diversity: an amplicon sequencing study.

Effects of marine sediment as agricultural substrate on soil microbial diversity: an amplicon sequencing study.

Background: The soil microbiota has a direct impact on plant development and other metabolic systems, such as the degradation of organic matter and the availability of microelements and metabolites. In the context of agricultural soils, microbial activity is crucial for maintaining soil health and productivity. Thus, the present study aimed to identify, characterize, and quantify the microbial communities of four types of substrates with varying proportions of marine port sediment used for cultivating lemons. By investigating microbial diversity and relative abundance, the work aimed to highlight the importance of soil microbial communities in agriculture when alternative culture media was used.

Results: The composition and structure of the sampled microbial communities were assessed through the amplification and sequencing of the V3-V4 variable regions of the 16 S rRNA gene The results revealed a diverse microbial community composition in all substrate samples, with a total of 41 phyla, 113 classes, 266 orders, 405 families, 715 genera, and 1513 species identified. Among these, Proteobacteria, Bacteroidota, Planctomycetota, Patescibacteria, Chloroflexi, Actinobacteriota, Acidobacteriota, Verrucomicrobiota, and Gemmatimonadota accounted for over 90% of the bacterial reads, indicating their dominance in the substrates.

Conclusions: The impact of the substrate origin on the diversity and relative abundace of the microbiota was confirmed. The higher content of beneficial bacterial communities for plant development identified in peat could explain why is considered an ideal agricultural substrate. Development of "beneficial for plants" bacterial communities in alternative agricultural substrates, regardless of the edaphic characteristics, opens the possibility of studying the forced and specific inoculation of these culture media aiming to be agriculturally ideals.

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来源期刊
Environmental Microbiome
Environmental Microbiome Immunology and Microbiology-Microbiology
CiteScore
7.40
自引率
2.50%
发文量
55
审稿时长
13 weeks
期刊介绍: Microorganisms, omnipresent across Earth's diverse environments, play a crucial role in adapting to external changes, influencing Earth's systems and cycles, and contributing significantly to agricultural practices. Through applied microbiology, they offer solutions to various everyday needs. Environmental Microbiome recognizes the universal presence and significance of microorganisms, inviting submissions that explore the diverse facets of environmental and applied microbiological research.
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