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不同pH和盐度下海洋细菌对赤潮藻生长和产毒的影响
引用本文:苏建强,郑天凌,胡忠,徐金森,俞志明,宋秀贤. 不同pH和盐度下海洋细菌对赤潮藻生长和产毒的影响[J]. 应用生态学报, 2003, 14(7): 1161-1164
作者姓名:苏建强  郑天凌  胡忠  徐金森  俞志明  宋秀贤
作者单位:1. 厦门大学生命科学学院,厦门,361005
2. 中国科学院海洋研究所,青岛,266071
基金项目:国家重点基础研究发展规划项目 ( 2 0 0 1CB40 9710 ),国家自然科学基金资助项目 ( 4 96763 0 2,3 0 2 0 0 0 41) .
摘    要:研究了在可控生态条件下。一株分离自厦门西海域沉积物的海洋细菌S10在不同pH和盐度条件下对赤潮原因种塔玛亚历山大藻(Alexandrium tamarense)生长和产毒的影响.结果表明。实验用藻株适宜生长pH为6~8,适宜盐度为20~34;该藻株在不同pH及不同盐度条件下,藻细胞毒力差异显著,且随着pH升高而下降。随着盐度增加而加大,到盐度为30时达到最高值。然后逐渐下降;菌株Sl0(1.02×10^l0cells·ml^-1)在pH7~9和盐度15~34下均能有效抑藻生长和产毒。且在pH7、盐度34时其抑藻生长作用最强;在pH7时抑藻产毒效果较好,且其抑藻产毒作用强度不随盐度变化而异.

关 键 词:海洋细菌 塔玛亚历山大藻 麻痹性贝毒
文章编号:1001-9332(2003)07-1161-04
修稿时间:2002-12-18

Effects of marine bacteria on the growth and toxin production of red-tide algae under different pH and salinities
SU Jianqiang ,ZHENG Tianling ,HU Zhong ,XU Jingsen ,YU Zhiming ,SONG Xiuxian. Effects of marine bacteria on the growth and toxin production of red-tide algae under different pH and salinities[J]. The journal of applied ecology, 2003, 14(7): 1161-1164
Authors:SU Jianqiang   ZHENG Tianling   HU Zhong   XU Jingsen   YU Zhiming   SONG Xiuxian
Affiliation:School of Life Sciences, Xiamen University, Xiamen 361005, China. ironicsjq@sina.com
Abstract:The effects of strain S10 isolated from sediments of Xiamen Western Sea Area on the growth and paralytic shellfish poison (PSP) production of Alexandrium tamarense at different pH and salinities were studied. The results showed that the alga grew well at pH 6-8 and at salinity of 20-34. The toxicity of A. tamarense varied markedly at different pH and salinities: it decreased with increasing pH, while increased with salinity and reached its peak value at the salinity of 30, and then declined. The strain S10 inhibited the growth and the PSP production of A. tamarense at different pH and salinities. It had the best inhibitory function on the growth of A. tamarense at pH 7 and salinity of 34. The best inhibitory function on the PSP production of A. tamarense was at pH 7, but this inhibitory function was not related to salinity.
Keywords:Marine bacteria   Alexandrium tamarense   Paralytic shellfish poison
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