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首页> 外文期刊>Microbial Ecology: An International Journal >Food web structure in the recently flooded Sep Reservoir as inferred from phytoplankton population dynamics and living microbial biomass
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Food web structure in the recently flooded Sep Reservoir as inferred from phytoplankton population dynamics and living microbial biomass

机译:从浮游植物种群动态和微生物活生物量推断,最近洪水泛滥的9月水库的食物网结构

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Phytoplankton dynamics, bacterial standing stocks and living microbial biomass (derived from ATP measurements, 0.7-200 mum size class) were examined in 1996 in the newly flooded (1995) Sep Reservoir (`Massif Central,' France), for evidence of the importance of the microbial food web relative to the traditional food chain. Phosphate concentrations were low, N:P ratios were high, and phosphate losses converted into carbon accounted for <50% of phytoplankton biomass and production, indicating that P was limiting phytoplankton development during the study. The observed low availability of P contrasts with the high release of "directly" assimilable P often reported in newly flooded reservoirs, suggesting that factors determining nutrient dynamics in such ecosystems are complex. The phosphate availability, but also the water column stability, seemed to be among the major factors determining phytoplankton dynamics, as (i) large-size phytoplankton species were prominent during the period of increasing water column stability, whereas small-size species dominated phytoplankton assemblages during the period of decreasing stability, and (ii) a Dinobryon divergens bloom occurred during a period when inorganic P was undetectable, coinciding with the lowest values of bacterial standing stocks. Indication of grazing limitation of bacterial populations by the mixotrophic chrysophyte D. divergens (in late spring) and by other potential grazers (mainly rotifers in summer) seemed to be confirmed by the Model II or functional slopes of the bacterial vs phytoplankton regressions, which were always <0.63. Phytoplankton biomass was not correlated with phosphorus sources and its contribution was remarkably low relative to the living microbial biomass which, in contrast, was positively correlated with total phosphorus in summer. We conclude that planktonic microheterotrophs are strongly implicated in the phosphorus dynamics in the Sep Reservoir, and thus support the idea that an important amount of matter and energy flows through the "microbial loop" and food web, shortly after the flooding of a reservoir.
机译:1996年,在新近泛滥的1995年9月水库(法国马西夫中央)对浮游植物的动力学,细菌种群和活的微生物生物量(根据ATP测量结果,0.7-200微米大小分类)进行了研究,以证明其重要性。相对于传统食物链的微生物食物网。磷酸盐浓度低,N:P比高,磷酸盐转化成碳的损失占浮游生物量和产量的<50%,表明在研究过程中磷限制了浮游植物的发育。观测到的磷的低可用性与经常在新淹没的水库中报告的“直接”可吸收磷的高释放形成对比,这表明决定此类生态系统养分动态的因素很复杂。磷酸盐的有效性以及水柱的稳定性似乎是决定浮游植物动力学的主要因素之一,因为(i)在水柱稳定性提高期间,大型浮游植物种类突出,而小型浮游植物则占主导地位。在稳定性下降的时期,以及(ii)在检测不到无机磷的时期发生了Dinobryon divergens绽放,这与最低的细菌种群数量相吻合。混合营养型金绿藻(D. divergens)(春季晚)和其他潜在的放牧者(夏季主要是轮虫)指示了细菌种群的放牧限制似乎已通过模型II或细菌与浮游植物回归的函数斜率得到了证实。始终<0.63。浮游植物的生物量与磷源无关,相对于活的微生物生物量,其贡献显着较低,相比之下,夏季与总磷呈正相关。我们得出的结论是,浮游微异养菌与Sep水库中的磷动力学密切相关,因此支持了这样的想法,即在水库充水后不久,大量的物质和能量就会通过“微生物环”和食物网流动。

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