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首页> 外文期刊>Journal of plankton research >Response of heterotrophic bacteria, autotrophic picoplankton and heterotrophic nanoflagellates to re-oligotrophication
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Response of heterotrophic bacteria, autotrophic picoplankton and heterotrophic nanoflagellates to re-oligotrophication

机译:异养细菌,自养微微浮游生物和异养纳米鞭毛虫对再营养化的反应

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We investigated the response of the microbial components of the pelagic food web to re-oligotrophication of large, deep Lake Constance where total phosphorus concentrations during mixing decreased from a maximum of 2.81 mu mol L-1 in 1979 via 1.87 mu mol L-1 in 1987 to 0.26 mu mol L-1 in 2007. Measurements of heterotrophic bacteria, autotrophic picoplankton (APP) and heterotrophic nanoflagellates (HNF) in 2006 and 2007 were compared to values from 1987 to 1997. We hypothesized that the biomass and seasonal variability of all groups will decrease under more oligotrophic conditions due to reduced resource availability, particularly for APP and HNF but less for the competitively stronger bacteria. Average bacterial biomass between spring and autumn was unrelated to phosphorus, whereas the ratio of bacterial biomass to chlorophyll a concentration increased with decreasing trophy due to declining chlorophyll concentrations. In contrast, a unimodal relationship was found between APP and phosphorus with low biomass at low and high phosphorus concentrations and maximum biomass in between. Average HNF biomass decreased strongly by a factor of 10-30 with decreasing trophy, and chlorophyll-specific HNF biomass was unimodally related to phosphorus. The relative seasonal biomass variability did not change for any group during re-oligotrophication. To conclude, HNF responded much more strongly and bacteria less so than chlorophyll concentrations to oligotrophication, whereas APP exhibited a more complex pattern.
机译:我们调查了中上层食物网中微生物成分对大而深的康斯坦茨湖再富营养化的响应,该湖中混合过程中的总磷浓度从1979年的2.81μmolL-1最高降低到1979年的1.87μmolL-1。 1987年为0.26μmol L-1(2007年)。将2006年和2007年异养细菌,自养微微浮游生物(APP)和异养纳米鞭毛酸盐(HNF)的测量值与1987年至1997年的值进行了比较。我们假设所有生物量和季节变异性由于资源供应减少,特别是对于APP和HNF,由于营养资源减少,此类人群将在更多的贫营养条件下减少,而对于竞争性较强的细菌而言,此类人群将减少。春季和秋季之间的平均细菌生物量与磷无关,而由于叶绿素浓度的下降,细菌生物量与叶绿素a浓度的比率随着奖杯的减少而增加。相反,在低磷和高磷浓度下,APP与磷含量低且生物量最大之间存在单峰关系。随着奖杯的减少,平均HNF生物量强烈下降10-30倍,而叶绿素特异性HNF生物量与磷单峰相关。在再低营养化过程中,任何一组的相对季节性生物量变异性都没有变化。总而言之,HNF对寡营养化的反应强得多,细菌对叶绿素化的反应比叶绿素浓度低,而APP表现出更复杂的模式。

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