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首页> 外文期刊>Applied and Environmental Microbiology >Relationship between Bacterial Community Composition and Bottom-Up versus Top-Down Variables in Four Eutrophic Shallow Lakes
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Relationship between Bacterial Community Composition and Bottom-Up versus Top-Down Variables in Four Eutrophic Shallow Lakes

机译:四个富营养化浅水湖泊细菌群落组成与自下而上与自上而下的变量之间的关系

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摘要

Bacterial community composition was monitored in four shallow eutrophic lakes during one year using denaturing gradient gel electrophoresis (DGGE) of PCR-amplified prokaryotic rDNA genes. Of the four lakes investigated, two were of the clearwater type and had dense stands of submerged macrophytes while two others were of the turbid type characterized by the occurrence of phytoplankton blooms. One turbid and one clearwater lake had high nutrient levels (total phosphorus, >100 μg liter?1) while the other lakes had relatively low nutrient levels (total phosphorus, ?1). For each lake, seasonal changes in the bacterial community were related to bottom-up (resources) and top-down (grazers) variables by using canonical correspondence analysis (CCA). Using an artificial model dataset to which potential sources of error associated with the use of relative band intensities in DGGE analysis were added, we found that preferential amplification of certain rDNA genes over others does not obscure the relationship between bacterial community composition and explanatory variables. Besides, using this artificial dataset as well as our own data, we found a better correlation between bacterial community composition and explanatory variables by using relative band intensities compared to using presence/absence data. While bacterial community composition was related to phytoplankton biomass in the high-nutrient lakes no such relation was found in the low-nutrient lakes, where the bacterial community is probably dependent on other organic matter sources. We used variation partitioning to evaluate top-down regulation of bacterial community composition after bottom-up regulation has been accounted for. Using this approach, we found no evidence for top-down regulation of bacterial community composition in the turbid lakes, while grazing by ciliates and daphnids (Daphnia and Ceriodaphnia) was significantly related to changes in the bacterial community in the clearwater lakes. Our results suggest that in eutrophic shallow lakes, seasonality of bacterial community structure is dependent on the dominant substrate source as well as on the food web structure.
机译:使用PCR扩增的原核rDNA基因的变性梯度凝胶电泳(DGGE),在一年中监测了四个浅水富营养化湖泊中的细菌群落组成。在所研究的四个湖泊中,两个是清水类型的,有茂密的淹没植物,而另外两个是浑浊类型的,其特征是浮游植物大量开花。一个混浊的湖泊和一个清水湖泊的养分含量较高(磷总量> 100μg升?1),而其他湖泊的养分含量相对较低(磷总量为?1)。对于每个湖泊,通过使用规范对应分析(CCA),细菌群落的季节性变化与自下而上(资源)和自上而下(放牧者)变量相关。使用一个人工模型数据集,其中添加了与在DGGE分析中使用相对谱带强度相关的潜在错误源,我们发现某些rDNA基因相对于其他基因的优先扩增不会掩盖细菌群落组成与解释变量之间的关系。此外,使用该人工数据集以及我们自己的数据,与使用存在/不存在数据相比,通过使用相对谱带强度,我们发现细菌群落组成与解释变量之间具有更好的相关性。虽然高营养湖泊中细菌群落的组成与浮游植物的生物量有关,但在低营养湖泊中却没有发现这种关系,在低营养湖泊中,细菌群落可能依赖于其他有机物来源。在考虑了自下而上的调节后,我们使用变异分区来评估自上而下的细菌群落组成的调节。使用这种方法,我们没有发现从上至下调节浑浊湖泊中细菌群落组成的证据,而纤毛虫和水蚤(食水蚤和蜡状蚤)的放牧与清水湖泊细菌群落的变化显着相关。我们的结果表明,在富营养化的浅水湖泊中,细菌群落结构的季节性取决于主要的底物来源以及食物网结构。

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