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Viral Lysis, Flagellate Grazing Potential, and Bacterial Production in Lake Pavin

机译:帕文湖的病毒裂解,鞭毛放牧潜力和细菌生产

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摘要

Abundances of different compartments of the microbial loop (i.e., viruses, heterotrophic bacteria, nonpigmented nanoflagellates, and pigmented nanoflagellates), bacterial heterotrophic production (BHP), viral lysis, and potential flagellate grazing impacts on the bacterial assemblages were estimated during a short-term study (24 h) conducted in June 1998 in the epilimnion (5 m) and metalimnion (10 m) of a moderate-altitude oligomesotrophic lake (Lake Pavin, France). Viral and bacterial abundances were higher in the metalimnion than in the epilimnion, whereas pigmented and nonpigmented nanoflagellates were more numerous in the epilimnion. The control of the BHP due to viral lysis (determined by examination of viral-containing bacteria using a transmission electron microscope) was significantly higher in the meta- (range = 6.0–33.7%, mean = 15.6%) than in the epilimnion (3.5–10.3%, 6.4%). The same was for the losses of BHP from the potential predation by nanoflagellates which ranged from 0.5 to 115.4% (mean = 38.7%) in the epilimnion, and from 0.7 to 97.5% (mean = 66.7%) in the metalimnion. Finally, estimated viral mediated mortality rates from the percentage of visibly infected cells and potential nanoflagellate grazing rates based on assumed clearance rates suggest that flagellates consumed a larger proportion of bacterial production than was lost to viral lysis.
机译:在短期内,估计了微生物环的不同区室(即病毒,异养细菌,无色素的纳米鞭毛虫和色素化的纳米鞭毛虫)的丰度,细菌异养菌产量(BHP),病毒裂解以及潜在的鞭毛放牧对细菌的影响。这项研究(24小时)于1998年6月在一个中等高度的中低营养型湖泊(法国帕文湖)的上层(5 m)和金属酰亚胺(10 m)中进行。在金属酰亚胺中病毒和细菌的丰度高于在上表皮中,而有色素的和无色素的纳米鞭毛在上表皮中的数量更多。 meta-(范围= 6.0–33.7%,平均值= 15.6%)比上lim虫(3.5)中由于病毒裂解引起的BHP控制(通过使用透射电子显微镜检查含病毒细菌确定)明显更高–10.3%,6.4%)。纳米鞭毛虫捕食潜在的必和必拓所造成的损失也是如此,上鞭毛虫的损失率为0.5%至115.4%(平均值= 38.7%),而在金属硝子虫的损失率为0.7%至97.5%(平均值= 66.7%)。最后,根据假定的清除率,根据可见感染细胞的百分比和潜在的纳米鞭毛放牧率估算的病毒介导的死亡率表明,鞭毛消耗的细菌产生的比例要比病毒裂解所损失的要大。

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  • 来源
    《Microbial Ecology 》 |2003年第2期| 119-127| 共9页
  • 作者单位

    Laboratoire de Biologie des Protistes UMR CNRS 6023 Université Blaise Pascal (Clermont-Ferrand II) F-63177 Aubière Cedex France;

    Laboratoire de Biologie des Protistes UMR CNRS 6023 Université Blaise Pascal (Clermont-Ferrand II) F-63177 Aubière Cedex France;

    Laboratoire de Biologie des Protistes UMR CNRS 6023 Université Blaise Pascal (Clermont-Ferrand II) F-63177 Aubière Cedex France;

    Laboratoire de Biologie des Protistes UMR CNRS 6023 Université Blaise Pascal (Clermont-Ferrand II) F-63177 Aubière Cedex France;

    Laboratoire de Biologie des Protistes UMR CNRS 6023 Université Blaise Pascal (Clermont-Ferrand II) F-63177 Aubière Cedex France;

    Centre d'Ecologie des Sytèmes Aquatiques Continentaux Université Paul Sabatier F-31062 Toulouse Cedex 4 France;

    Centre d'Ecologie des Sytèmes Aquatiques Continentaux Université Paul Sabatier F-31062 Toulouse Cedex 4 France;

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