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ABSTRACT:   The amount of microcystin in Microcystis aeruginosa bloom was investigated during the rainy season of 1999 in Laguna de Bay, the Philippines. Bloom samples taken from the West Bay and East Cove stations of the lake were studied in relation to the characteristics of environmental conditions. Four types of microcystins, microcystin-LR (MC-LR), microcystin-RR (MC-RR), 6(Z)-Adda-microcystin-RR, and 3-desmethylmicrocystin-LR were identified from the natural bloom samples among which MC-LR was the most dominant type of microcystin. Production of microcystin (88.6 µg/100 mg dried cells) was highest during the first sampling week that coincided with high water transparency and high conductivity. The occurrence of a strong typhoon during the second sampling week had changed the environment drastically, which was characterized by low water transparency, high turbidity, low water temperature, and with trace amounts of MC-LR detected at the East Cove station. Thus, toxin production over time as well as the relationship between Microcystis production and toxin concentration could not be fully evaluated.  相似文献   
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Fifty‐four mice were assigned to a control diet group or a KCl diet group to clarify the effects of KCl supplementation on growth rate, water intake and renal function in mice, and 5% of KCl was supplemented in KCl diets for 1–4 weeks. Bodyweights of KCl supplemented mice were significantly lower than those of control mice, and bodyweights of control and KCl supplemented mice at 28 days after treatment were 45.5 and 41.2 g, respectively. Feed intake was not affected by KCl supplementation, but water intake of KCl supplemented mice was significantly higher than that of control mice. Bone weights of KCl supplemented mice at 2 weeks after treatment were significantly lower than those of control mice. Serum urea nitrogen concentration at 4 weeks and serum K and Cl concentrations at 2 weeks were significantly lower in KCl supplemented mice. Histological alteration using hematoxylin–eosin and Sirius red staining was not found in the kidney of each mouse at 1, 2, and 4 weeks after treatment. These results suggest that high KCl supplementation decreases the rate of bodyweight gain and increases water intake in mice.  相似文献   
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