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欧洲大型河漫滩系统(奥地利多瑙河)中细菌生长的有机物质来源与组成

Sources and composition of organic matter for bacterial growth in a large European river floodplain system (Danube, Austria).

作者信息

Besemer Katharina, Luef Birgit, Preiner Stefan, Eichberger Birgit, Agis Martin, Peduzzi Peter

机构信息

Department of Freshwater Ecology, University of Vienna, Althanstraße 14, A-1090 Vienna, Austria.

出版信息

Org Geochem. 2009 Mar;40(3):321-331. doi: 10.1016/j.orggeochem.2008.12.005.

Abstract

Dissolved and particulate organic matter (DOM and POM) distribution, lignin phenol signatures, bulk elemental compositions, fluorescence indices and microbial plankton (algae, bacteria, viruses) in a temperate river floodplain system were monitored from January to November 2003. We aimed to elucidate the sources and compositions of allochthonous and autochthonous organic matter (OM) in the main channel and a representative backwater in relation to the hydrological regime. Additionally, bacterial secondary production was measured to evaluate the impact of organic carbon source on heterotrophic prokaryotic productivity. OM properties in the backwater tended to diverge from those in the main channel during phases without surface water connectivity; this was likely enhanced due to the exceptionally low river discharge in 2003. The terrestrial OM in this river floodplain system was largely derived from angiosperm leaves and grasses, as indicated by the lignin phenol composition. The lignin signatures exhibited significant seasonal changes, comparable to the seasonality of plankton-derived material. Microbially-derived material contributed significantly to POM and DOM, especially during periods of low discharge. High rates of bacterial secondary production (up to 135 μg C L(-1) d(-1)) followed algal blooms and suggested that autochthonous OM significantly supported heterotrophic microbial productivity.

摘要

2003年1月至11月,对温带河流漫滩系统中的溶解态和颗粒态有机物(DOM和POM)分布、木质素酚特征、元素总量组成、荧光指数以及微生物浮游生物(藻类、细菌、病毒)进行了监测。我们旨在阐明主河道和一条代表性回水区域中异源和自源有机物(OM)的来源和组成与水文状况的关系。此外,还测量了细菌二次生产,以评估有机碳源对异养原核生物生产力的影响。在没有地表水连通的阶段,回水区域的OM特性往往与主河道的不同;这可能由于2003年河流流量异常低而加剧。如木质素酚组成所示,该河流漫滩系统中的陆地OM主要来源于被子植物叶片和草本植物。木质素特征呈现出显著的季节性变化,与浮游生物衍生物质的季节性变化相当。微生物衍生物质对POM和DOM有显著贡献,尤其是在低流量时期。藻类大量繁殖后细菌二次生产速率较高(高达135μg C L(-1) d(-1)),这表明自源OM显著支持了异养微生物的生产力。

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