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Microbial Community Structure and Dynamics in the Largest Natural French Lake (Lake Bourget)

机译:最大的天然法国湖(布尔吉湖)中的微生物群落结构和动力学

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摘要

We investigated the dynamics and diversity of heterotrophic bacteria, autotrophic and heterotrophic flagellates, and ciliates from March to July 2002 in the surface waters (0–50 m) of Lake Bourget. The heterotrophic bacteria consisted mainly of “small” cocci, but filaments (>2 μm), commonly considered to be grazing-resistant forms under increased nanoflagellate grazing, were also detected. These elongated cells mainly belonged to the Cytophaga-Flavobacterium (CF) cluster, and were most abundant during spring and early summer, when mixotrophic or heterotrophic flagellates were the main bacterial predators. The CF group strongly dominated fluorescent in situ hybridization–detected cells from March to June, whereas clear changes were observed in early summer when Beta-proteobacteria and Alpha-proteobacteria increased concomitantly with maximal protist grazing pressures. The analysis of protist community structure revealed that the flagellates consisted mainly of cryptomonad forms. The dynamics of Cryptomonas sp. and Dinobryon sp. suggested the potential importance of mixotrophs as consumers of bacteria. This point was verified by an experimental approach based on fluorescent microbeads to assess the potential grazing impact of all protist taxa in the epilimnion. From the results, three distinct periods in the functioning of the epilimnetic microbial loop were identified. In early spring, mixotrophic and heterotrophic flagellates constituted the main bacterivores, and were regulated by the availability of their resources mainly during April (phase 1). Once the “clear water phase” was established, the predation pressure of metazooplankton represented a strong top-down force on all microbial compartments. During this period only mixotrophic flagellates occasionally exerted a significant bacterivory pressure (phase 2). Finally, the early summer was characterized by the highest protozoan grazing impact and by a rapid shift in the carbon pathway transfer, with a fast change-over of the main predators contribution, i.e., mixotrophic, heterotrophic flagellates and ciliates in bacterial mortality. The high abundance of ciliates during this period was consistent with the high densities of resources (heterotrophic nanoflagellates, algae, bacteria) in deep layers containing the most chlorophyll. Bacteria, as ciliates, responded clearly to increasing phytoplankton abundance, and although bacterial grazing impact could vary largely, bacterial abundance seemed to be primarily bottom-up regulated (phase 3).
机译:我们调查了2002年3月至7月在布尔热湖表层水域(0-50 m)的异养细菌,自养和异养鞭毛以及纤毛虫的动态和多样性。异养细菌主要由“小的”球菌组成,但也检测到细丝(> 2μm),通常被认为是在纳米鞭毛增加放牧的情况下具有抗放牧性的形式。这些拉长的细胞主要属于噬菌丝-黄杆菌(CF)簇,并且在春季和初夏时最丰富,而杂养或异养鞭毛是主要的细菌捕食者。 CF组从3月到6月强烈主导着荧光原位杂交检测细胞,而夏初观察到明显变化,当时β-变形细菌和α-变形细菌伴随最大的原生动物放牧压力增加。对原生生物群落结构的分析表明,鞭毛虫主要由隐孢子虫形式组成。隐孢子虫的动力学。和Dinobryon sp。暗示了混合营养菌作为细菌消费者的潜在重要性。通过基于荧光微珠的实验方法来评估这一点,以评估上生动物中所有原生生物类群的潜在放牧影响。从结果中,确定了上表层微生物环功能的三个不同时期。早春,混合营养和异养鞭毛虫是主要的噬菌体,主要在4月(第1阶段)受到其资源可用性的调节。一旦建立了“净水相”,水生浮游动物的捕食压力就代表了所有微生物区室的强大的自上而下的作用力。在此期间,仅混合营养的鞭毛偶尔会施加显着的细菌压力(第2阶段)。最后,初夏的特点是原生动物放牧影响最大,碳途径转移迅速变化,主要掠食者的贡献,即混合营养,异养鞭毛和纤毛虫的死亡率迅速变化。在此期间,纤毛虫的丰度很高,这与叶绿素含量最高的深层资源(异养纳米鞭毛虫,藻类,细菌)的密度高有关。细菌作为纤毛虫,对浮游植物丰度的增加有明显的反应,尽管细菌放牧的影响可能相差很大,但细菌丰度似乎主要是自下而上调节的(第3阶段)。

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  • 来源
    《Microbial Ecology》 |2006年第1期|72-89|共18页
  • 作者单位

    UMR CARRTEL Université de Savoie Equipe de Microbiologie Aquatique;

    UMR CARRTEL Station INRA d’Hydrobiologie Lacustre Equipe de Microbiologie Aquatique;

    UMR CARRTEL Université de Savoie Equipe de Microbiologie Aquatique;

    UMR CARRTEL Université de Savoie Equipe de Microbiologie Aquatique;

    UMR CARRTEL Université de Savoie Equipe de Microbiologie Aquatique;

    Cellule Technique de l’Aquarium du Bourget;

    UMR CARRTEL Université de Savoie Equipe de Microbiologie Aquatique;

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