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Effects of turbulence on alkaline phosphatase activity of phytoplankton and bacterioplankton in Lake Taihu

机译:湍流对太湖浮游植物和浮游细菌碱性磷酸酶活性的影响

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摘要

Alkaline phosphatase (AP), an inducible and hydrolytic enzyme, plays a key role in the biogeochemical cycle of phosphorus (P) in lakes. Activity and regulation of AP has been suggested to be affected by hydrodynamic turbulence. However, many aspects of the coupling of the AP activity (APA) and turbulence are still to be investigated and understood. In this study, mesocosm experiments were carried out to further understand the effects of turbulence on APA and the relative contribution of the different microbial groups to the total APA (TAPA). Specifically, we focused on evaluating the APA of phytoplankton (2-112 A mu m) and bacterioplankton (0.2-2 A mu m) and its relationship with P fractions under four turbulence levels. Results showed that turbulent conditions enhanced planktonic APA (PAPA) which dominated TAPA by comprising 66-93% of the total fraction. In particular, PAPA was almost two times higher in the turbulence treatments than in still-water control. On the other hand, bacterioplanktonic APA (BAPA) decreased which could be associated with the competitive advantage of bacteria in nutrient-limited conditions due to surface-to-volume ratio. The results suggest that turbulence can accelerate the biogeochemical cycle of P and plays an important role in P strategies of plankton.
机译:碱性磷酸酶(AP)是一种可诱导的水解酶,在湖泊中磷(P)的生物地球化学循环中起着关键作用。已经建议AP的活性和调节受流体动力湍流的影响。但是,AP活性(APA)和湍流耦合的许多方面仍有待研究和理解。在这项研究中,进行了介观实验以进一步了解湍流对APA的影响以及不同微生物组对总APA(TAPA)的相对贡献。具体而言,我们重点评估了在四个湍流水平下浮游植物(2-112 Aμm)和浮游植物(0.2-2 Aμm)的APA及其与P组分的关系。结果表明,湍流条件增强了浮游性APA(PAPA),占APA的66-93%。特别是,在湍流处理中,PAPA几乎比静止水控制系统高出两倍。另一方面,由于表面积与体积之比,浮游细菌APA(BAPA)降低,这可能与细菌在营养有限的条件下的竞争优势有关。结果表明,湍流可以加速磷的生物地球化学循环,并在浮游生物的磷策略中发挥重要作用。

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