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Effect of lake sediments of different trophic states on alkaline phosphatase activity

机译:营养状态不同的湖泊沉积物对碱性磷酸酶活性的影响

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Samples of sediments, interstitial water and overlying water were collected monthly under temperature-controlled conditions to determine the effects of sediment types on the alkaline phosphatase activity (APA) in lake systems. The relationship between the total alkaline phosphatase activity (TAPA) and soluble reactive phosphorus (SRP) concentration also was examined. The study results indicate the variations of TAPA in the overlying water, and the interstitial water in different layers from different sediments was similar over time. They were influenced not only by the phosphate concentrations, but also were correlated with submerged plant and phytoplankton biomass. The direct effects of the sediment types on the APA were not readily obvious. Although the higher APA in sediment was probably responsible for the enzymatic response to the characteristics of sediments, other factors (e.g. growth of submerged plants and phytoplankton) also should be considered. The peak of the maximum velocity of the enzyme reactions (V_(max)) at deeper sediment layers suggests another stratum in which the enzymatically mediated phosphorus regeneration was active. This finding contributes to our understanding of phosphorus cycling in lake sediments.
机译:每月在温度受控的条件下收集沉积物,间隙水和上覆水的样品,以确定沉积物类型对湖泊系统中碱性磷酸酶活性(APA)的影响。还检查了总碱性磷酸酶活性(TAPA)和可溶性反应性磷(SRP)浓度之间的关系。研究结果表明,上覆水的TAPA变化,不同沉积物不同层间的间隙水随时间变化相似。它们不仅受到磷酸盐浓度的影响,而且还与淹没的植物和浮游生物的生物量有关。沉积物类型对APA的直接影响尚不明显。尽管沉积物中较高的APA可能是对沉积物特征的酶促反应的原因,但也应考虑其他因素(例如,沉水植物的生长和浮游植物)。在较深的沉积层中,酶反应的最大速度的峰值(V_(max))提示了另一层,其中酶介导的磷再生活跃。这一发现有助于我们了解湖泊沉积物中的磷循环。

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