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浒苔提取物对4种赤潮微藻生长的抑制作用
摘要点击 2073  全文点击 2205  投稿时间:2009-07-26  修订日期:2009-09-17
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中文关键词  赤潮微藻  浒苔  抑制作用  抑藻物质  提取
英文关键词  red tide microalgae  Enteromorpha prolifera  growth inhibition  antialgal substances  extract
作者单位
孙颖颖 淮海工学院海洋学院连云港222005 
刘筱潇 淮海工学院海洋学院连云港222005 
王长海 烟台大学海洋学院烟台264005 
中文摘要
      通过测定藻细胞密度和细胞体积,观察藻细胞形态,分析藻细胞内叶绿素、蛋白质和多糖含量等生理指标的变化,研究了浒苔5种溶剂(甲醇、丙酮、乙酸乙酯、氯仿和石油醚)提取物对前沟藻(Amphidinium hoefleri)、米氏凯伦藻(Karenia mikimitoi)、塔玛亚历山大藻(Alexandrium tamarense)和中肋骨条藻(Skeletonema costatum)生长的抑制作用.结果表明,5种溶剂提取物中,甲醇提取物的抑藻作用最为显著.第10 d,其对前沟藻、米氏凯伦藻、塔玛亚历山大藻和中肋骨条藻的生长抑制率依次为54.0%、 48.1%、 44.0%和37.5%.同时发现,各溶剂提取物均能降低藻细胞运动能力.其中,甲醇、丙酮和乙酸乙酯提取物致使大部分藻细胞出现空洞、破碎和细胞色素明显减褪现象;而添加丙酮和乙酸乙酯提取物的部分藻细胞出现抱团现象.此外,乙酸乙酯、氯仿和石油醚提取物明显降低了藻细胞的体积.进一步研究发现,甲醇提取物明显降低了4种微藻细胞内叶绿素、蛋白质和多糖的含量,致使添加甲醇提取物的前沟藻、米氏凯伦藻、塔玛亚历山大藻和中肋骨条藻的叶绿素、蛋白质和多糖含量比对照组的相应含量低约51%.其余溶剂提取物同样改变了4种微藻细胞内此3种生理指标的含量,但影响并不显著.在此基础上,采用石油醚、乙酸乙酯和正丁醇对甲醇提取物进一步分离,获得4种提取物(石油醚相、乙酸乙酯相、正丁醇相和水相).其中,石油醚相和乙酸乙酯相的抑制作用较强,对4种微藻的生长抑制率超过25%.结果表明,利用甲醇浸泡浒苔可以获得具有明显抑藻活性的粗提物;此粗提物通过进一步的液液分离萃取后,获得2个能抑制4种测试微藻生长的组分.
英文摘要
      To study the effects of extracts of Enteromorpha prolifera on the growth of the four species of red tide microalgae (Amphidinium hoefleri, Karenia mikimitoi, Alexandrium tamarense and Skeletonema costatum), the extracts were extracted with five solvents (methanol, acetone, ethyl acetate, chloroform and petroleum ether), respectively. Based on the observation of algal morphology and the measurement of algal density, cell size and the contents of physiological indicators (chlorophyll, protein and polysaccharide), the results showed methanol extracts of E. proliferahad the strongest action. The inhibitory effects of A. hoefleri,K. mikimitoi,A. tamarense and S. costatum by the methanol extracts were 54.0%, 48.1%, 44.0% and 37.5% in day 10, respectively. The extracts of E. prolifera extracted with methanol, acetone and ethyl acetate caused cavities, pieces and pigment reduction in cells, and those with chloroform and petroleum ether caused goffers on cells. The extracts of E. prolifera extracted with all the five solvents decreased athletic ability of the cells, among which those extracted with ethyl acetate, chloroform and petroleum ether decreased cell size of test microalgae. The further investigation found that the methanol extracts significantly decreased contents of chlorophyll, protein and polysaccharide in the cells of those microalgae. The inhibitory effect of chlorophyll, protein and polysaccharide contents of four species of microalgae by the methanol extracts was about 51%. On the basis of the above experiments, dry powed of E. proliferawere extracts with methanol, and extracts were obtained. The methanol extracts were partitioned to petroleum ether phase, ethyl acetate phase, n-butanol phase and distilled water phase by liquid-liquid fractionaction, and those with petroleum ether and ethyl acetate significantly inhibited the growth of all test microalgae, and the inhibitory effect of four species of microalgae by those two extracts was above 25% in day 10.Our researches expressed that antialgal substances in E. proliferaextracted with methanol were obtained. And two fractions (petroleum ether phase and ethyl acetate phase) that inhibited the growth of all test microalgae were obtained when the methanol extracts was fractionated by liquid-liquid fractionaction.

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