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DO, pH, and Eh microprofiles in cyanobacterial granules from Lake Taihu under different environmental conditions

机译:在不同环境条件下太湖蓝藻颗粒中的DO,pH和Eh微观谱

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摘要

To understand characteristics of cyanobacterial granules from Lake Taihu, dissolved oxygen (DO), pH, and redox potential (Eh) microelectrodes were used to investigate physiological responses within these granules under different irradiance, temperature, and external pH levels. DO and pH levels increased with rising irradiance, while the Eh had an opposite trend. High light combined with high temperature decreased photosynthesis of the cyanobacterial granules. DO diffused from the surrounding water to the granules at low irradiance; however, DO began to diffuse from the granules to the water at high irradiance owing to increased photosynthesis. Dynamic changes of DO, pH, and Eh levels existed within the cyanobacterial granules under light-dark cycles. High DO levels within intercellular space of the cyanobacterial granules are another important buoyancy regulation mechanism. An external initial pH affected photosynthesis of the cyanobacteria in the granules. DO and pH levels of the granules in slightly alkaline solution (pH 8-9) were higher than those in highly alkaline solution (pH 10). Such physical and chemical characteristics within cyanobacterial granules in eutrophic water allowed them to outcompete other aquatic algae. The characterization of the physiological microenvironment within these cyanobacterial granules provides a new research approach to a better bloom management
机译:为了了解太湖蓝细菌颗粒的特性,使用溶氧(DO),pH和氧化还原电势(Eh)微电极研究了这些颗粒在不同辐照度,温度和外部pH值下的生理反应。 DO和pH值随辐照度的增加而增加,而Eh则相反。高光与高温相结合会降低蓝细菌颗粒的光合作用。 DO在低辐照度下从周围的水扩散到颗粒中;然而,由于光合作用的增强,DO在高辐照度下开始从颗粒扩散到水中。在明暗循环下,蓝细菌颗粒内存在DO,pH和Eh水平的动态变化。蓝细菌颗粒的细胞间空间内的高溶解氧水平是另一个重要的浮力调节机制。外部初始pH影响颗粒中蓝细菌的光合作用。在弱碱性溶液(pH 8-9)中颗粒的DO和pH值高于强碱性溶液(pH 10)中的颗粒。富营养化水中的蓝细菌颗粒内的这种物理和化学特性使其可以胜过其他水藻。这些蓝细菌颗粒中的生理微环境的表征为更好的水华管理提供了一种新的研究方法。

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