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贝加尔湖沿海地区冰下水体的细菌和浮游植物群落与水化学参数的相互关系。

Interconnection of bacterial and phytoplanktonic communities with hydrochemical parameters from ice and under-ice water in coastal zone of Lake Baikal.

机构信息

Limnological Institute SB RAS, Irkutsk, 664033, Russia.

Irkutsk State University, Irkutsk, 664003, Russia.

出版信息

Sci Rep. 2020 Jul 6;10(1):11087. doi: 10.1038/s41598-020-66519-3.

Abstract

We analysed the relationship between the chemical complex (concentration of dissolved ions, nutrients, pH) and biological parameters (primary production, biomass of phytoplankton, abundance and activity of bacterial communities) at estuaries of rivers and coastal waters of Southern Baikal during the under-ice period. Correlation network analysis revealed CO to be the main limiting factor for the development of algae and microbial communities in the coastal zone of Lake Baikal. This study indicates that primarily reverse synthesis of bicarbonate and carbonate ions associated with the development of phytoplankton and accumulation of dissolved CO during photosynthesis regulates pH in the Baikal water. We did not detect the anthropogenic factors that influence the change in pH and acidification. Near the Listvyanka settlement (Lake Baikal, Listvennichnaya Bay), there was a great number of organotrophs and thermotolerant bacteria with low bacterioplankton activity and high concentration of organic carbon. This evidences eutrophication due to the influx of organic matter having an anthropogenic source. Nutrients produced during the bacterial destruction of this matter may explain the changes in bottom phytocenoses of Listvennichnaya Bay.

摘要

我们分析了南贝加尔河河口和沿海水域在冰期下的化学复合物(溶解离子、营养物、pH 值的浓度)与生物参数(初级生产力、浮游植物生物量、细菌群落的丰度和活性)之间的关系。相关网络分析表明,CO 是贝加尔湖沿海地区藻类和微生物群落发展的主要限制因素。本研究表明,主要是与浮游植物的发育和光合作用过程中溶解 CO 的积累相关的碳酸氢盐和碳酸盐离子的反向合成调节了贝加尔湖水中的 pH 值。我们没有检测到影响 pH 值变化和酸化的人为因素。在利斯特维扬卡定居点(贝加尔湖,利斯特维扬卡湾)附近,有大量的有机营养物和耐热细菌,其细菌浮游生物活性低,有机碳浓度高。这表明由于有人类来源的有机物的涌入,发生了富营养化。在这种物质被细菌破坏的过程中产生的营养物质可能解释了利斯特维扬卡湾底部植物群的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8605/7338516/fa013f7705cd/41598_2020_66519_Fig1_HTML.jpg

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