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Planctomycetes in Lakes: Poor or Strong Competitors for Phosphorus?

机译:湖泊中的扁平菌:磷的竞争者是弱者还是强者?

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Experiments were conducted with water samples from two perialpine lakes with differing eutrophication status in order to examine the effects of inorganic-nutrient amendments (nitrogen as NO3? or NH4+ and phosphorus as PO43?) on the dynamics, structure, and composition of Planctomycetes and to test the hypothesis that the community structure of Planctomycetes members and that of the other bacteria (without Planctomycetes, here referred to as bacteria-wP, the most represented groups within the community) would be similarly impacted by nutrient additions. Initial samples were characterized by high total nitrogen-to-total phosphorus ratios (range, 39 to 55), suggesting P rather than N was the limiting nutrient for microbial communities. Consistent with this, P additions stimulated phytoplankton growth and affected the community structure of bacteria-wP but, surprisingly, not that of Planctomycetes. N additions did not significantly affect the community structures of bacteria-wP and Planctomycetes or the Planctomycetes phylotype composition. The estimated generation time of Planctomycetes was 123 h. These findings could suggest that the generally well-accepted statement that bacteria (as a whole) are superior to phytoplankton in the ability to obtain phosphorus under P limitation might actually not hold for Planctomycetes. Planctomycetes might be poor competitors for P that do not respond quickly to the nutrient supply, which may help explain why their abundance is low in aquatic systems. The alternative view that Planctomycetes could be strong competitors for P (storing it) is also discussed. Our findings highlight the need for further studies examining Planctomycetes-phosphorus relationships in aquatic ecosystems.
机译:为了研究富营养化状态不同的两个高山湖泊的水样,进行了实验,以研究无机营养物(氮元素为NO3?或NH4 +和磷元素为PO43?)对浮萍菌的动力学,结构和组成的影响。检验以下假设:营养素的添加会类似地影响到浮萍菌成员和其他细菌(没有浮萍菌,这里称为细菌-wP,是社区中最具代表性的群体)的群落结构。初始样品的特征在于总氮与总磷的比率很高(范围为39至55),这表明磷而不是氮是微生物群落的限制性营养素。与此相一致的是,磷的添加刺激了浮游植物的生长并影响了细菌-wP的群落结构,但令人惊讶的是,并未影响浮游菌。氮的添加没有显着影响细菌-wP和浮游菌的群落结构或浮游菌的系统型组成。浮游菌的估计产生时间为123小时。这些发现可能表明,一般认为,细菌(整体上)在磷限制下获得磷的能力要优于浮游植物,这实际上对于浮游菌并不成立。菌丝体可能是磷的不良竞争者,它们对养分供应的反应并不迅速,这可能有助于解释为什么其在水生系统中的丰度低。还讨论了另一种观点,即扁平菌可以成为P的强大竞争者(存储它)。我们的发现强调了进一步研究水生生态系统中浮游菌与磷之间关系的必要性。

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