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国家自然科学基金(30700414)

作品数:2 被引量:4H指数:2
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不同pH值条件下铜绿微囊藻与附生假单胞菌磷代谢研究被引量:2
2010年
[目的]探讨pH值对铜绿微囊藻的生长代谢及其与附生假单胞菌磷代谢关系的影响。[方法]通过不同pH值条件下(8~10)铜绿微囊藻的吸磷试验和不同pH值(7.0~9.0)对铜绿微囊藻与假单胞菌磷代谢的影响试验,测定了短时间内铜绿微囊藻的吸磷情况,以及较长时间内微囊藻的生长曲线、水中磷浓度的变化和微囊藻中总磷含量的变化。[结果]短时间内,pH值对铜绿微囊藻的吸磷能力有影响,随着pH值的升高,吸磷能力增强。在较长一段时间内,pH值越高,藻的生长速率越快,生长情况越好。铜绿微囊藻有自我调节pH的能力,能很好地利用假单胞菌释放到水体中的磷。在藻、菌、水的系统中,菌中的磷起缓释磷源的作用,尽管浓度很低,但有利于藻的生长。[结论]pH值是影响藻-菌-水系统中磷元素循环的因素。
彭宇科邹迪陆琦肖琳杨柳燕
关键词:铜绿微囊藻假单胞菌PH
Study on the Phosphorus Metabolism of Microcystis aeruginosa and Adnascent Pseudomonas under Different pH Conditions被引量:2
2010年
[Objective] The study aimed to discuss the effects of pH value on the growth metabolism of Microcystis aeruginosa and the phosphorus metabolism relationship with adnascent Pseudomonas.[Method] By the phosphorus uptake experiment of M.aeruginosa under different pH conditions(8.0-10.0) and the effect experiment on the phosphorus metabolism of M.aeruginosa and adnascent Pseudomonas under different pH conditions(7.0-9.0),the phosphorus uptake of M.aeruginosa in the short time and the growth curve of M.aeruginosa,the change of phosphorus concentration in the water,the change of total phosphorus content in M.aeruginosa in the longer time were measured.[Results] In the short time,pH value had the effects on the absorption phosphorus ability of M.aeruginosa.As pH value rose,the absorption phosphorus ability enhanced.During the longer time,the higher pH value was,the quicker the growth speed of M.aeruginosa was,and the better the growth situation was.M.aeruginosa had the ability of self regulation pH value and could use the phosphorus well in the water which was released from Pseudomonas.In the system of the algae,bacteria and water,the phosphorus in the bacteria played the role of phosphorus source which was released slowly.Though the phosphorus concentration was lower,it was favorable to the growth of algae.[Conclusions] pH value was the factor that affected the circle of the phosphorus element in the system of algae-bacteria-water.
彭宇科邹迪陆琦肖琳杨柳燕
关键词:PSEUDOMONASPHOSPHORUSPH
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