首页> 外文期刊>Polar biology >Autumn to spring microbial community in the northern Baltic Sea: temporal variability in bacterial, viral and nanoflagellate abundance during the cold-water season
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Autumn to spring microbial community in the northern Baltic Sea: temporal variability in bacterial, viral and nanoflagellate abundance during the cold-water season

机译:秋天到春季微生物群落在北波罗的海:在冷水季节中的细菌,病毒和纳米鞭素丰度的时间变异性

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摘要

Marine microbial communities undergo drastic changes during the seasonal cycle in high latitude seas. Despite the dominance of microbial biomass in the oceans, comprehensive studies on the seasonal changes of microbial plankton during the complete winter period are lacking. To study the seasonal variation in abundance of the microbial community, water samples were collected weekly in the Northern Baltic Sea from October to May. During ice cover from mid-January to April, samples from the sea ice and the underlying water were taken in addition to the water column samples. Abundances of bacteria, virus-like particles, nanoflagellates, and chlorophyllaconcentrations were measured from sea ice, under-ice water, and the water column, and examined in relation to environmental conditions. All studied organisms had clear seasonal changes in abundance, and the sea-ice microbial community had an independent wintertime development compared to the water column. Bacteria were observed to have a key role in the biotic interactions in both ice and the water column, and the dormant period during the cold-water months (October-May) was limited to before ice formation. Our results provide the first insights into the temporal dynamics of bacteria and viruses during the whole cold-water season (October-May) in coastal high latitude seas, and demonstrate that changes in the environmental conditions are likely to affect bacterial dynamics and have implications on trophic interactions.
机译:海洋微生物社区在高层海洋季节循环期间经历了剧烈变化。尽管在海洋中微生物生物量的优势,但缺乏关于微生物浮游生物季节性变化的综合研究。为研究微生物群落丰富的季节性变化,从10月到5月,每周在北波罗的海收集水样。在1月中旬至4月的冰盖期间,除了水柱样品之外,还考虑了来自海冰和下层水的样品。从海冰,冰水和水柱中测量细菌,病毒样颗粒,纳米晶粒和叶绿素氯化物的丰度,并与环境条件相关检查。所有研究的生物都有明确的丰富季节性变化,与水柱相比,海冰微生物群落具有独立的冬季发展。观察到细菌在冰和水柱的生物相互作用中具有关键作用,冷水月(10月至5月)期间的休眠期限仅限于冰之前。我们的结果为整个冷水季节(五月至5月)在沿海高层海域(10月至5月)中的细菌和病毒中的第一次见解,并证明了环境条件的变化可能影响细菌动态并对营养互动。

著录项

  • 来源
    《Polar biology》 |2020年第9期|1193-1206|共14页
  • 作者单位

    Univ Helsinki Fac Biol & Environm Sci Ecosyst & Environm Res Programme POB 65 Helsinki 00014 Finland|Univ Helsinki Tvarminne Zool Stn Hango 10900 Finland;

    Univ Helsinki Fac Biol & Environm Sci Ecosyst & Environm Res Programme POB 65 Helsinki 00014 Finland|Univ Helsinki Tvarminne Zool Stn Hango 10900 Finland;

    Univ Helsinki Fac Biol & Environm Sci Ecosyst & Environm Res Programme POB 65 Helsinki 00014 Finland;

    Univ Helsinki Tvarminne Zool Stn Hango 10900 Finland|Finnish Environm Inst Marine Res Ctr Helsinki 00790 Finland|Univ Helsinki Fac Biol & Environm Sci Mol & Integrat Biosci Helsinki Finland;

    Finnish Environm Inst Marine Res Ctr Helsinki 00790 Finland;

    Univ Helsinki Fac Biol & Environm Sci Ecosyst & Environm Res Programme POB 65 Helsinki 00014 Finland|Univ Helsinki Tvarminne Zool Stn Hango 10900 Finland|Univ Helsinki Fac Sci Inst Atmospher & Earth Syst Res INAR POB 64 Helsinki 00014 Finland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bacteria; Baltic Sea; Nanoflagellates; VLP; Sea ice; Time series;

    机译:细菌;波罗的海;纳米漆胶;VLP;海冰;时间序列;
  • 入库时间 2022-08-18 21:10:01

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