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溶解有机物来源对湖泊浮游细菌结构和功能的影响——对群落组成季节动态的启示

Influence of dissolved organic matter source on lake bacterioplankton structure and function--implications for seasonal dynamics of community composition.

作者信息

Kritzberg Emma S, Langenheder Silke, Lindström Eva S

机构信息

Department of Ecology/Limnology, Lund University, Lund, Sweden.

出版信息

FEMS Microbiol Ecol. 2006 Jun;56(3):406-17. doi: 10.1111/j.1574-6941.2006.00084.x.

Abstract

It has been suggested that autochthonous (internally produced) organic carbon and allochthonous (externally produced) organic carbon are utilized by phylogenetically different bacterioplankton. We examined the relationship between the source of organic matter and the structure and function of lake bacterial communities. Differences and seasonal changes in bacterial community composition in two lakes differing in their source of organic matter were followed in relation to environmental variables. We also performed batch culture experiments with amendments of various organic substrates, namely fulvic acids, leachates from algae, and birch and maple leaves. Differences in bacterial community composition between the lakes, analysed by terminal restriction fragment length polymorphism, correlated with variables related to the relative loading of autochthonous and allochthonous carbon (water colour, dissolved organic carbon, nutrients, and pH). Seasonal changes correlated with temperature, chlorophyll and dissolved organic carbon in both lakes. The substrate amendments led to differences in both structure and function, i.e. production, respiration and growth yield, of the bacterial community. In conclusion, our results suggest that the source of organic matter influences community composition both within and among lakes and that there may be a coupling between the structure and function of the bacterial community.

摘要

有人提出,本地(内部产生)有机碳和外来(外部产生)有机碳被系统发育不同的浮游细菌利用。我们研究了有机物质来源与湖泊细菌群落结构和功能之间的关系。跟踪了两个有机物质来源不同的湖泊中细菌群落组成的差异和季节变化,并将其与环境变量相关联。我们还进行了批量培养实验,添加了各种有机底物,即富里酸、藻类沥出液以及桦树叶和枫树叶。通过末端限制性片段长度多态性分析,湖泊之间细菌群落组成的差异与本地碳和外来碳的相对负荷相关变量(水色、溶解有机碳、营养物质和pH值)相关。两个湖泊中的季节变化均与温度、叶绿素和溶解有机碳相关。底物添加导致细菌群落的结构和功能(即生产、呼吸和生长产量)出现差异。总之,我们的结果表明,有机物质来源影响湖泊内部和湖泊之间的群落组成,并且细菌群落的结构和功能之间可能存在耦合。

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