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草甘膦毒性对蓝藻多变鱼腥藻生长、色素及碱性磷酸酶活性的影响:无机磷酸盐在草甘膦耐受性中的作用

Effect of glyphosate toxicity on growth, pigment and alkaline phosphatase activity in cyanobacterium Anabaena doliolum: a role of inorganic phosphate in glyphosate tolerance.

作者信息

Singh D P, Darmwal N S

机构信息

Department of Microbiology, Dr. RML Avadh University, Faizabad 224 001, India.

出版信息

Indian J Exp Biol. 2004 Feb;42(2):208-13.

Abstract

Response of glyphosate toxicity on photoautotrophic cyanobacterium A. doliolum and its mutant strain was investigated. Chlorophyll a content of both the wild type and mutant strain in the presence of glyphosate (N-phosphonomethyl glycine) initially showed an increasing trend when supplemented with Pi and a declining tendency under the Pi-starved condition. The results suggested that both the wild type and mutant strains were more sensitive to glyphosate in the absence of phosphate. Alkaline phosphatase activity of wild type strain in the presence of Pi, enhanced in response to addition of glyphosate (40 microg/ml), but the activity remained unaltered by addition of glyphosate in the Pi-starved cells, whereas the alkaline phosphatase activity in the mutant strain under both Pi-starved as well as unstarved conditions was stimulated (approximately 5.4 and 3.1-fold, respectively) by addition of glyphosate. The results on alkaline phosphatase activity indicated a glyphosate-induced depletion in the phosphate content of the cells, particularly in the mutant strain, as evident from the stimulated activity of alkaline phosphatase. It is suggested that enzyme activity in the Pi-starved wild type cells may not be influenced any further by glyphosate, as cellular phosphate reserve might not be available for further depletion.

摘要

研究了草甘膦毒性对光合自养蓝藻阿氏颤藻及其突变株的影响。在添加草甘膦(N-膦酰基甲基甘氨酸)的情况下,野生型和突变株的叶绿素a含量在添加磷时最初呈上升趋势,而在缺磷条件下呈下降趋势。结果表明,野生型和突变株在无磷时对草甘膦更敏感。在有磷存在的情况下,野生型菌株的碱性磷酸酶活性在添加草甘膦(40微克/毫升)时增强,但在缺磷细胞中添加草甘膦时活性保持不变,而在缺磷和不缺磷条件下,突变株中的碱性磷酸酶活性在添加草甘膦后均受到刺激(分别约为5.4倍和3.1倍)。碱性磷酸酶活性的结果表明,草甘膦会导致细胞内磷含量减少,特别是在突变株中,碱性磷酸酶活性的刺激就明显证明了这一点。有人认为,缺磷的野生型细胞中的酶活性可能不会再受到草甘膦的影响,因为细胞内的磷储备可能无法进一步耗尽。

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