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Bacterioplankton communities turn unstable and become small under increased temperature and nutrient-enriched conditions

机译:在温度升高和营养丰富的条件下,浮游细菌群落变得不稳定并变小

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The stability of microbial community composition under different environmental conditions is an important part of microbial ecology, but has not been investigated in such depth before. In this study, we investigated the composition of the bacterioplankton community composition (BCC) and its stability under different temperatures (15, 25 and 35°C, respectively) and nutrient conditions (control vs. nitrogen- and phosphorus-enriched) in aquatic microcosms. The BCC was analysed using denaturing gradient gel electrophoresis of the bacterial 16S rRNA gene, followed by cloning and sequence analysis. BCC in the microcosms significantly changed under different temperature and nutrient conditions. Based on the results from clone libraries, ecological diversification were observed within two ubiquitous and dominant genera, Methylophilus and Polynucleobacter, under different temperature and nutrient conditions. Putative ultramicrobacteria, which included Actinobacteria, Polynucleobacter sp., LD12 and LD28 clusters and bacteria affiliated with subcluster I of Methylophilus, were found to dominate in bacterioplankton communities at higher temperatures (25 and 35°C), regardless of nutrient conditions. We also observed that the rate of BCC change increased at higher temperatures and this increase was more pronounced in nutrient-enriched microcosms. These results indicated that bacterioplankton communities become unstable and decrease in size with increased temperature and in nutrient-enriched conditions.
机译:在不同环境条件下,微生物群落组成的稳定性是微生物生态学的重要组成部分,但至今尚未深入研究。在这项研究中,我们研究了浮游生物群落组成(BCC)的组成及其在不同温度(分别为15、25和35°C)和营养条件下(对照相对于富氮和富磷)在水生微观世界中的稳定性。 。使用细菌16S rRNA基因的变性梯度凝胶电泳分析BCC,然后进行克隆和序列分析。在不同温度和营养条件下,微观世界中的BCC发生了显着变化。根据克隆文库的结果,在温度和营养条件不同的情况下,在两个普遍存在的显性属(嗜甲基菌和多核杆菌)中观察到了生态多样化。推定的超微细菌,包括放线菌,多核细菌,LD12和LD28簇以及与嗜甲基菌亚群I相关的细菌,无论营养条件如何,在较高的温度(25和35°C)下,浮游细菌群落中都占主导地位。我们还观察到,在较高温度下,BCC的变化率增加,并且在营养丰富的微观世界中这种增加更为明显。这些结果表明,浮游生物群落变得不稳定,并且随着温度的升高和营养丰富的条件而减小。

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