Department of Biological Sciences, Michigan Technology University, Houghton, MI, USA.
Sci Rep. 2019 Apr 17;9(1):6231. doi: 10.1038/s41598-019-42609-9.
Many freshwater environments experience dramatic seasonal changes with some systems remaining ice-covered for most of the winter. Freshwater systems are also highly sensitive to environmental change. However, little is known about changes in microbial abundance and community composition during lake ice formation and times of persistent ice cover. The goal of this study is to characterize temporal dynamics of microbial communities during ice formation and persistent ice cover. Samples were collected in triplicate, five days per week from surface water in the Keweenaw Waterway between November and April. Environmental conditions along with microbial abundance and microbial community composition was determined. Distinct community composition was found between ice-free and ice-covered time periods with significantly different community composition between months. The microbial community underwent dramatic shifts in microbial abundance and diversity during the transitions into and out of ice cover. The richness of the microbial community increased during times of ice cover. Relatives of microbes involved in nitrogen cycling bloomed during times of ice cover as sequences related to known nitrifying taxa were significantly enriched during ice cover. These results help to elucidate how microbial abundance and diversity change over drastic seasonal transitions and how ice cover may affect microbial abundance and diversity.
许多淡水环境经历剧烈的季节性变化,有些系统在整个冬季大部分时间都被冰层覆盖。淡水系统对环境变化也非常敏感。然而,对于湖泊冰形成和持续冰盖期间微生物丰度和群落组成的变化知之甚少。本研究的目的是描述冰形成和持续冰盖期间微生物群落的时间动态。从 11 月到 4 月,每周五次从基瓦尼水道的地表水采集三份重复样本。确定了环境条件以及微生物丰度和微生物群落组成。无冰期和冰盖期之间存在明显不同的群落组成,且不同月份之间的群落组成也存在显著差异。在进入和离开冰盖期间,微生物群落的丰度和多样性发生了剧烈变化。在冰盖期间,微生物群落的丰富度增加。与氮循环有关的微生物的亲缘关系在冰盖期间大量繁殖,因为与已知硝化分类群相关的序列在冰盖期间显著富集。这些结果有助于阐明微生物丰度和多样性如何在剧烈的季节性转变中发生变化,以及冰盖如何影响微生物丰度和多样性。