春季硅藻大量繁殖期间的海洋颗粒微生物群含有活跃的硫酸盐还原菌。

IF 3.5 3区 生物学 Q2 MICROBIOLOGY FEMS microbiology ecology Pub Date : 2024-04-10 DOI:10.1093/femsec/fiae037
Robin Siebers, Doreen Schultz, Mohamed S Farza, Anne Brauer, Daniela Zühlke, Pierre A Mücke, Fengqing Wang, Jörg Bernhardt, Hanno Teeling, Dörte Becher, Katharina Riedel, Inga V Kirstein, Karen H Wiltshire, Katharina J Hoff, Thomas Schweder, Tim Urich, Mia M Bengtsson
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引用次数: 0

摘要

浮游植物的大量繁殖为海洋食物网提供了可溶解的碳,并形成了由活的和死的藻类细胞组成的颗粒有机物。这些颗粒有助于碳固存,是藻类与细菌激烈互动的场所,为微生物的繁衍提供了多样化的龛位。我们分析了北海浅海地区(6-10 米深)春季浮游植物大量繁殖期间从 51 个时间点获得的 16S 和 18S 核糖体 RNA 基因扩增片段序列以及从 3 个时间点获得的元蛋白组。在 2018 年 3 月初至 5 月下旬期间,几乎每天收集一次直径大于 10 µm 的微粒馏分。网络分析确定了两个主要模块,分别代表与硅藻共生的细菌和与甲藻共生的细菌。硅藻网络模块包括已知的硫酸盐还原型脱硫菌群(Desulfobacterota)以及潜在的硫氧化型Ectothiorhodospiraceae。元蛋白组分析证实了参与硫酸盐异纤毛还原的关键酶的存在,已知这一过程发生在更深的下沉颗粒和沉积物中。我们的研究结果表明,在活跃的浮游植物藻华的颗粒部分存在足够的缺氧壁龛,以维持硫酸盐还原作用,而且底栖-浮游耦合对浅海环境中的微生物组具有重要作用。我们的发现可能对理解浅水沿海地区藻类与细菌的相互作用以及藻华期间的碳输出有影响。
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Marine particle microbiomes during a spring diatom bloom contain active sulfate-reducing bacteria.

Phytoplankton blooms fuel marine food webs with labile dissolved carbon and also lead to the formation of particulate organic matter composed of living and dead algal cells. These particles contribute to carbon sequestration and are sites of intense algal-bacterial interactions, providing diverse niches for microbes to thrive. We analyzed 16S and 18S ribosomal RNA gene amplicon sequences obtained from 51 time points and metaproteomes from 3 time points during a spring phytoplankton bloom in a shallow location (6-10 m depth) in the North Sea. Particulate fractions larger than 10 µm diameter were collected at near daily intervals between early March and late May in 2018. Network analysis identified two major modules representing bacteria co-occurring with diatoms and with dinoflagellates, respectively. The diatom network module included known sulfate-reducing Desulfobacterota as well as potentially sulfur-oxidizing Ectothiorhodospiraceae. Metaproteome analyses confirmed presence of key enzymes involved in dissimilatory sulfate reduction, a process known to occur in sinking particles at greater depths and in sediments. Our results indicate the presence of sufficiently anoxic niches in the particle fraction of an active phytoplankton bloom to sustain sulfate reduction, and an important role of benthic-pelagic coupling for microbiomes in shallow environments. Our findings may have implications for the understanding of algal-bacterial interactions and carbon export during blooms in shallow-water coastal areas.

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来源期刊
FEMS microbiology ecology
FEMS microbiology ecology 生物-微生物学
CiteScore
7.50
自引率
2.40%
发文量
132
审稿时长
3 months
期刊介绍: FEMS Microbiology Ecology aims to ensure efficient publication of high-quality papers that are original and provide a significant contribution to the understanding of microbial ecology. The journal contains Research Articles and MiniReviews on fundamental aspects of the ecology of microorganisms in natural soil, aquatic and atmospheric habitats, including extreme environments, and in artificial or managed environments. Research papers on pure cultures and in the areas of plant pathology and medical, food or veterinary microbiology will be published where they provide valuable generic information on microbial ecology. Papers can deal with culturable and non-culturable forms of any type of microorganism: bacteria, archaea, filamentous fungi, yeasts, protozoa, cyanobacteria, algae or viruses. In addition, the journal will publish Perspectives, Current Opinion and Controversy Articles, Commentaries and Letters to the Editor on topical issues in microbial ecology. - Application of ecological theory to microbial ecology - Interactions and signalling between microorganisms and with plants and animals - Interactions between microorganisms and their physicochemical enviornment - Microbial aspects of biogeochemical cycles and processes - Microbial community ecology - Phylogenetic and functional diversity of microbial communities - Evolutionary biology of microorganisms
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