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中国青海湖水位上升引起新淹没土壤中磷的释放和底栖藻类营养限制的变化。

Phosphorus release from newly inundated soils and variation in benthic algal nutrient limitation induced by rising water levels of Qinghai Lake, China.

机构信息

State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, 430072, China.

University of Chinese Academy of Sciences, Beijing, 100039, China.

出版信息

Environ Sci Pollut Res Int. 2024 Apr;31(20):29218-29231. doi: 10.1007/s11356-024-33116-0. Epub 2024 Apr 3.

Abstract

The mobilization of internal phosphorus (P) plays a crucial role in transitioning nutrient limitations within lake ecosystems. While previous research has extensively examined P release in littoral zones influenced by fluctuating water levels, there is a paucity of studies addressing the implications of sustained water level rise in this context, particularly as it pertains to nutrient limitations in benthic algae. To address this gap, we conducted an integrated study in Qinghai Lake. In the field sampling and microcosm experiment, we found that P concentrations are elevated in areas subjected to short-term inundation compared to those enduring prolonged inundation, primarily due to the dissolution of sedimentary P fractions. The results of nutrient diffusing substrata (NDS) bioassays indicated that benthic algae in Qinghai Lake displayed either P limitation or NP co-limitation. The transition from P limitation to NP co-limitation suggested that internal P release may serve to ameliorate nutrient limitations in benthic algae. This phenomenon could potentially contribute to the proliferation of Cladophora in the littoral zones of Qinghai Lake, thereby posing long-term implications for the lake's aquatic ecosystem, particularly under conditions of sustained water level rise.

摘要

内部磷(P)的迁移在湖泊生态系统中营养限制的转变中起着至关重要的作用。虽然之前的研究已经广泛研究了受水位波动影响的湖滨带中 P 的释放,但在这方面,对于持续水位上升对底栖藻类中营养限制的影响的研究很少,特别是在这方面。为了解决这一差距,我们在青海湖进行了一项综合研究。在野外采样和微宇宙实验中,我们发现与长期淹没的区域相比,短期淹没的区域中 P 浓度升高,这主要是由于沉积 P 分数的溶解。养分扩散基质(NDS)生物测定的结果表明,青海湖的底栖藻类表现出 P 限制或 NP 共限制。从 P 限制到 NP 共限制的转变表明,内部 P 的释放可能有助于缓解底栖藻类的营养限制。这种现象可能有助于 Cladophora 在青海湖的湖滨带中大量繁殖,从而对湖泊的水生生态系统产生长期影响,特别是在持续水位上升的情况下。

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