Kosolapov D B, Kosolapova N G, Rumiantseva E V
Izv Akad Nauk Ser Biol. 2014 Jul-Aug(4):355-64.
The active fraction, production, and respiration of heterotrophic bacteria are determined to assess their growth efficiency and their role in the carbon cycle in the pelagic zone of Rybinsk Reservoir in summer. The greater part of organic substances assimilated by bacteria is mineralized to CO2. It has been established that the essential part of the constructive and energy metabolism of bacteria is supported by the input of allochthonous substances. Bacterioplankton, producing the biomass at their expense, performs functions similar to the functions of phytoplankton, and substantially supports the structural and functional organization of the planktonic food web in the reservoir.
测定了异养细菌的活性组分、产量和呼吸作用,以评估其生长效率及其在夏季雷宾斯克水库浮游区碳循环中的作用。细菌同化的大部分有机物质被矿化为二氧化碳。已经确定,细菌的建设性和能量代谢的重要部分由外源物质的输入来支持。浮游细菌以这些物质为代价产生生物量,其执行的功能类似于浮游植物的功能,并在很大程度上支持了水库中浮游食物网的结构和功能组织。