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Cyanobacteria in lakes on Yungui Plateau China are assembled via niche processes driven by water physicochemical property lake morphology and watershed land-use

机译:中国云贵高原湖泊中的蓝细菌是通过水物理化学性质湖泊形态和流域土地利用驱动的利基过程组装而成的

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摘要

Plateau lakes are important ecosystems with diverse ecological functions. Cyanobacteria play a key role in plateau lakes as primary producers. However, they are threatening when dense blooms occur. Identifying cyanobacteiral biogeography and the mechanism of assembly processes shaping the distribution of cyanobacteria in plateau lakes is critical for understanding cyanobacterial ecology and applying it to lake management. In the present study, the biogeographic pattern and importance of neutral and niche processes in assembly of cyanobacteria in 21 lakes on Yungui Plateau, China were examined. Results showed that cyanobacteria exhibit unique biogeographic pattern, and most of them have a narrow habitat preference in plateau lakes. They were assembled via niche processes driven by water physicochemical property, lake morphology and watershed land-use, which explained 62.4% of the biological variation. Neutral processes were not at play. Water physicochemical property (key variables - dissolved oxygen, salinity, trophic status and pH) was the most dominant driver shaping its unique biogeographic pattern. Watershed land-use especially urban land, water body and agricultural land also exhibited a strong impact on cyanobacterial distribution, followed by lake morphology. As most of the cyanobacteiral genus detected in these plateau lakes were potential toxin-producers, this study indicated that in order to protect waters from toxic-bloom in the future, reducing nutrient loading and land-use practices are two practical approaches in plateau lake management.
机译:高原湖泊是重要的生态系统,具有多种生态功能。蓝细菌作为主要生产者在高原湖泊中起着关键作用。但是,当密集的花开发生时,它们正在威胁。识别蓝细菌的生物地理学和形成高原湖泊中蓝细菌分布的组装过程机制对于理解蓝细菌生态并将其应用于湖泊管理至关重要。在本研究中,研究了中国云贵高原21个湖泊中蓝藻组装过程的生物地理格局以及中性和小生境过程的重要性。结果表明,蓝细菌表现出独特的生物地理格局,并且大多数在高原湖泊中的生境偏好较窄。它们是由水的理化性质,湖泊形态和流域土地利用所驱动的利基过程组装而成的,这解释了62.4%的生物变异。中立过程没有发挥作用。水的物理化学性质(关键变量-溶解氧,盐度,营养状态和pH)是决定其独特的生物地理格局的最主要驱动因素。流域土地利用,特别是城市土地,水体和农业土地,对蓝细菌的分布也产生了强烈影响,其次是湖泊形态。由于在这些高原湖泊中检测到的大多数蓝藻属都是潜在的毒素产生者,因此该研究表明,为了保护水域免受将来的有毒水华的影响,减少养分含量和土地利用做法是高原湖泊管理中的两种实用方法。

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