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单细胞海洋和淡水藻类的离子组成,特别提及在不同渗透强度培养基中培养的亚心形扁藻。

Ion composition of unicellular marine and fresh-water algae, with special reference to Platymonas subcordiformis cultivated in media with different osmotic strengths.

作者信息

Kirst G O

机构信息

Fachbereich Biologie, Institut für Botanik der Technischen Hochschule, Schnittspahnstr. 10, D-6100, Darmstadt, Germany.

出版信息

Oecologia. 1977 Jun;28(2):177-189. doi: 10.1007/BF00345253.

Abstract

Ion compositions (K, Na Mg, Ca, Cl, phosphate) of the euryhaline algae, Platymonas subcordiformis, Chlorella salina, grown in media with a salinity range from 0.1 to 0.6 M NaCl and of the fresh-water algae, Ankistrodesmus braunii and Scenedesmus obliquus, were compared. Enhancement of ion concentrations with increasing salinity in Platymonas was attributed largely to decreasing cell volume. In both the euryhaline algae, Na and - partially - Cl content per cell increased significantly with rising salinity. The contents per cell of the other ions were not affected. Considering the relevance of ions and mannitol (Platymonas) and proline (Chlorella) as osmotically active particles, it was found that the ions alone maintained osmotic balance with low external salinity. With increasing salinity the organic compounds contributed up to 20-30% of the cellular solute potential. The main cation, K, was the main contributor to the osmotic balance; the accumulation of organic compounds as well as of Na and Cl contributes further to the ability of the algae to adapt to high salinity. The results confirm the hypothesis of low Cl concentrations in nonvacuolate cells in comparison to vacuolate cells.

摘要

对广盐性藻类亚心形扁藻(Platymonas subcordiformis)、盐生小球藻(Chlorella salina)在盐度范围为0.1至0.6 M NaCl的培养基中生长时以及淡水藻类布朗栅藻(Ankistrodesmus braunii)和斜生栅藻(Scenedesmus obliquus)的离子组成(钾、钠、镁、钙、氯、磷酸盐)进行了比较。亚心形扁藻中离子浓度随盐度增加而升高主要归因于细胞体积减小。在这两种广盐性藻类中,每个细胞的钠和部分氯含量随盐度升高而显著增加。其他离子的细胞含量未受影响。考虑到离子以及甘露醇(亚心形扁藻)和脯氨酸(盐生小球藻)作为渗透活性颗粒的相关性,发现仅离子就能在低盐度外部环境下维持渗透平衡。随着盐度增加,有机化合物对细胞溶质势的贡献高达20 - 30%。主要阳离子钾是渗透平衡的主要贡献者;有机化合物以及钠和氯的积累进一步有助于藻类适应高盐度的能力。结果证实了与液泡化细胞相比非液泡化细胞中氯浓度较低的假设。

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