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金传荫. 满江红鱼腥藻的异养生理[J]. 水生生物学报, 1984, 8(4): 443-448.
引用本文: 金传荫. 满江红鱼腥藻的异养生理[J]. 水生生物学报, 1984, 8(4): 443-448.
Jin Chuanyin. PHYSIOLOGY OF HETEROTROPHIC GROWTH OF BLUE-GREEN ALGA ANABAENA AZOLLAE[J]. ACTA HYDROBIOLOGICA SINICA, 1984, 8(4): 443-448.
Citation: Jin Chuanyin. PHYSIOLOGY OF HETEROTROPHIC GROWTH OF BLUE-GREEN ALGA ANABAENA AZOLLAE[J]. ACTA HYDROBIOLOGICA SINICA, 1984, 8(4): 443-448.

满江红鱼腥藻的异养生理

PHYSIOLOGY OF HETEROTROPHIC GROWTH OF BLUE-GREEN ALGA ANABAENA AZOLLAE

  • 摘要: 设计了一个经机械处理而获得蓝藻无菌培养物的方法,利用这一方法获得满江红鱼腥藻(Anabaena azollae)的无菌培养物。满江红鱼腥藻的无菌培养物能以果糖、葡萄糖或者蔗糖为底物,在黑暗中进行化能异养生长。将适应了光能自养生长的培养物转移至黑暗中异养生长时,以NaNO3为氮源时的生长速率比以空气中的氮气为氮源时高;然而适应了化能异养生长的培养物以空气中的氮气为氮源时生长更佳。搅拌促进生长。满江红鱼腥藻在黑暗中生长半年后,叶绿素a的含量降至光照下生长时的1/3-1/4。满江红鱼腥藻在5500勒克斯光照下生长时,添加外源果糖或葡萄糖仍能促进生长,提高固氮活性。

     

    Abstract: A method for obtaining axenic culture of blue-green algae was developed. A pure culture of Anabaena azollae was obtained with this method. A. azollae could grow heterotrophically in the dark. Fructose, glucose and sucrose supported the hcterotrophic growth of A. azollae. The culture adapted to photoautotrophic growth grew better in the dark when NaNO3 was used as nitrogen source, but the culture adapted to heterotrophic growth grew better when N2 in air was used as nitrogen source. Stirring stimulated heterotrophic growth of A. azollae. The concentration of chlorophyll a of the culture grown in the dark for half year decreased to 1/3—1/4 of that in the light. When A. azollae grew at 5500 lux, exogenous fructose and glucose still stimulated growth and increased nitrogen fixation.

     

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