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水体影响夏季孔斯峡湾的细菌浮游生物群落结构。

Water masses influence bacterioplankton community structure in summer Kongsfjorden.

机构信息

Key Laboratory for Polar Science SOA, Polar Research Institute of China, No. 451 JinQiao Road, Pudong Avenue, Shanghai, 200136, China.

Key Laboratory of Marine Ecosystem and Biogeochemistry, State Oceanic Administration, Second Institute of Oceanography, Ministry of Natural Resources, Hangzhou, 310012, China.

出版信息

Extremophiles. 2020 Jan;24(1):107-120. doi: 10.1007/s00792-019-01139-y. Epub 2019 Nov 2.

Abstract

To ascertain the saying "Everything is everywhere, but the environment selects", it was imperative to find out the main factor influencing bacterioplankton composition at genus level of Kongsfjorden where was influenced both by glacier melting water and Atlantic water. Thus, bacterioplankton diversity was investigated using pyrosequencing. In addition, nutrients, chlorophyll a, in situ temperature and salinity were measured. There were seventeen of 33 identified genera with relative abundance > 0.1%. Redundancy analysis showed that 73.02% of bacterioplankton community variance could be explained by environmental parameters. Furthermore, most of the abundant genera demonstrated significant correlation with environment parameters revealed by correlation analysis. Moreover, phosphate, nitrate and Chl a concentration, and the abundance of top nine identified genera varied with water mass significantly as shown by analysis of variance. Our results supported the notion that environmental factors, especially water mass had significant effect on bacterioplankton distribution at genus level. Considering the high sensitivity to environmental change and low error rate in identification, bacterioplankton at genus level could be potential bio-markers for monitoring environmental changes.

摘要

为了证实“万物尽在,环境择之”的说法,有必要找出影响孔斯峡湾浮游细菌组成的主要因素,因为该峡湾既受到冰川融水的影响,也受到大西洋水的影响。因此,我们使用焦磷酸测序法研究了浮游细菌的多样性。此外,还测量了营养物质、叶绿素 a、原位温度和盐度。在鉴定出的 33 个属中,有 17 个属的相对丰度>0.1%。冗余分析表明,环境参数可以解释浮游细菌群落变异的 73.02%。此外,通过相关性分析发现,大多数丰度较高的属与环境参数显著相关。此外,通过方差分析发现,磷酸盐、硝酸盐和 Chl a 浓度以及前 9 个鉴定属的丰度随水体显著变化。我们的研究结果支持了这样一种观点,即环境因素,特别是水体,对浮游细菌属水平的分布有显著影响。考虑到对环境变化的高度敏感性和鉴定的低错误率,属水平的浮游细菌可以作为监测环境变化的潜在生物标志物。

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