北太平洋东部表层至深海原核生物群落的分类与功能特征。

IF 2.7 4区 生物学 Q2 ENVIRONMENTAL SCIENCES
Daniele De Corte, Leon Dlugosch, Abhishek Srivastava, Meinhard Simon, Dennis A. Hansell, Sarah Bercovici, Monica Orellana
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引用次数: 0

摘要

海洋生物地球化学循环受到微生物活动的强烈影响,微生物活动影响着营养物和有机物的循环。这些过程受温度、盐度、密度和无机营养物等因素的影响,推动微生物群落的垂直分层,从而影响不同深度层的化学成分。测序技术扩大了我们对海洋原核生物群落的分类和功能潜力的认识。然而,关于这些群落如何在梯度中变化的信息有限。在这项研究中,我们对北太平洋东部的样本进行了宏基因组分析,这些样本是在北纬45°左右和整个水柱的纵向样带上收集的。我们评估了分类和功能分类,重点讨论了原核群落在生物地球化学循环中的作用。结果表明,表面群落以SAR11支系为主,其次为黄杆菌门和红杆菌门。深层蕴藏着更多样化的群落,其中索古菌占了最大的比例。这种明显的分类分层导致群落在不同深度层的功能能力存在差异。光合作用和异养在表层占主导地位,而深层则表现出代谢特征的混合,允许生物体潜在地利用无机和有机碳源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Taxonomic and Functional Features of Surface to Deep-Sea Prokaryotic Communities in the Eastern North Pacific Ocean

Taxonomic and Functional Features of Surface to Deep-Sea Prokaryotic Communities in the Eastern North Pacific Ocean

Taxonomic and Functional Features of Surface to Deep-Sea Prokaryotic Communities in the Eastern North Pacific Ocean

Taxonomic and Functional Features of Surface to Deep-Sea Prokaryotic Communities in the Eastern North Pacific Ocean

Taxonomic and Functional Features of Surface to Deep-Sea Prokaryotic Communities in the Eastern North Pacific Ocean

Taxonomic and Functional Features of Surface to Deep-Sea Prokaryotic Communities in the Eastern North Pacific Ocean

Biogeochemical cycles in the ocean are strongly influenced by microbial activity, which affects nutrient and organic matter cycling. These processes, influenced by factors such as temperature, salinity, density and inorganic nutrients, drive the vertical stratification of microbial communities, which subsequently influence the chemistry at different depth layers. Sequencing technology has expanded our understanding of oceanic prokaryotic communities' taxonomic and functional potential. However, there is limited information on how these communities vary across gradients. In this study, we conducted metagenomic analyses on samples from the eastern North Pacific, collected across a longitudinal transect around 45°N and throughout the entire water column. We assessed taxonomic and functional classification, focusing on the roles of prokaryotic communities in biogeochemical cycling. Our results revealed that the surface community was dominated by the SAR11 clade, followed by Flavobacterales and Rhodobacterales. The deep layers harboured a more diverse community, where Thaumarchaeota accounted for the most significant proportion. This clear taxonomic stratification led to variations in the communities' functional capabilities across different depth layers. Photosynthesis and heterotrophy dominated the surface layers, whereas the deeper layers exhibited a mix of metabolic features, allowing organisms to potentially utilise both inorganic and organic carbon sources.

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来源期刊
Environmental Microbiology Reports
Environmental Microbiology Reports ENVIRONMENTAL SCIENCES-MICROBIOLOGY
CiteScore
6.00
自引率
3.00%
发文量
91
审稿时长
3.0 months
期刊介绍: The journal is identical in scope to Environmental Microbiology, shares the same editorial team and submission site, and will apply the same high level acceptance criteria. The two journals will be mutually supportive and evolve side-by-side. Environmental Microbiology Reports provides a high profile vehicle for publication of the most innovative, original and rigorous research in the field. The scope of the Journal encompasses the diversity of current research on microbial processes in the environment, microbial communities, interactions and evolution and includes, but is not limited to, the following: the structure, activities and communal behaviour of microbial communities microbial community genetics and evolutionary processes microbial symbioses, microbial interactions and interactions with plants, animals and abiotic factors microbes in the tree of life, microbial diversification and evolution population biology and clonal structure microbial metabolic and structural diversity microbial physiology, growth and survival microbes and surfaces, adhesion and biofouling responses to environmental signals and stress factors modelling and theory development pollution microbiology extremophiles and life in extreme and unusual little-explored habitats element cycles and biogeochemical processes, primary and secondary production microbes in a changing world, microbially-influenced global changes evolution and diversity of archaeal and bacterial viruses new technological developments in microbial ecology and evolution, in particular for the study of activities of microbial communities, non-culturable microorganisms and emerging pathogens.
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