在多产的海岸上升流系统中与胶状物有关的微生物

IF 3.8 1区 地球科学 Q1 LIMNOLOGY Limnology and Oceanography Pub Date : 2024-12-06 DOI:10.1002/lno.12748
Melissa Steinman, Moritz S. Schmid, Robert K. Cowen, Su Sponaugle, Kelly R. Sutherland, Anne W. Thompson
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引用次数: 0

摘要

珊瑚虫具有通过水华事件和滤食影响海洋微生物群落的独特能力。它们捕食大型真核微生物的证据已经确立,捕食较小的原核微生物的证据也开始出现。我们研究了北加州洋流系统中微生物与野生捕获的水母之间的关系。在三个不同的陆架位置,在不同的上升流强度的水华事件中收集了水花。研究人员发现,胶粒与一系列原核微生物功能群有关,其中包括自由生活的远洋古生菌、SAR11和picocyanobacteria。研究结果表明,石斛可能以微生物群落中最小的成员为食,从而扩大了我们对石斛取食和微生物死亡率的理解。考虑到水母通过过滤清除大部分海水的能力以及它们在该系统中的高丰度,我们认为水母可能是塑造北加州洋流系统微生物群落结构的重要参与者。
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The microorganisms associated with doliolids in a productive coastal upwelling system
Doliolids have a unique ability to impact the marine microbial community through bloom events and filter feeding. Their predation on large eukaryotic microorganisms is established and evidence of predation on smaller prokaryotic microorganisms is beginning to emerge. We studied the association between microorganisms and wild‐caught doliolids in the Northern California Current system. Doliolids were collected during bloom events identified at three different shelf locations with variable upwelling intensity. We discovered doliolids were associated with a range of prokaryotic microbial functional groups, which included free‐living pelagic Archaea, SAR11, and picocyanobacteria. The results suggest the possibility that doliolids could feed on the smallest members of the microbial community, expanding our understanding of doliolid feeding and microbial mortality. Given the ability of doliolids to clear large portions of seawater by filtration and their high abundance in this system, we suggest that doliolids could be an important player in shaping the microbial community structure of the Northern California Current system.
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来源期刊
Limnology and Oceanography
Limnology and Oceanography 地学-海洋学
CiteScore
8.80
自引率
6.70%
发文量
254
审稿时长
3 months
期刊介绍: Limnology and Oceanography (L&O; print ISSN 0024-3590, online ISSN 1939-5590) publishes original articles, including scholarly reviews, about all aspects of limnology and oceanography. The journal''s unifying theme is the understanding of aquatic systems. Submissions are judged on the originality of their data, interpretations, and ideas, and on the degree to which they can be generalized beyond the particular aquatic system examined. Laboratory and modeling studies must demonstrate relevance to field environments; typically this means that they are bolstered by substantial "real-world" data. Few purely theoretical or purely empirical papers are accepted for review.
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