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NO_3 ~- nutrition and salt tolerance in the cyanobacterium Anabaena sp. PCC 7120 and mutant strains

机译:蓝藻鱼腥藻中NO_3〜-的营养和耐盐性。 PCC 7120和突变株

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Growth of the cyanobacterium Anabaena sp. PCC 7120 and its nitrate assimilation-defective mutants was inversely proportional to the NaCl concentration in the medium. Presence of nitrate in the saline medium protected the growth of the parent but not of the mutant strains from salt toxicity. On the other hand, ammonium nitrogen protected the growth of all the strains from salt toxicity. However, the effect was less than that of nitrate. An altered sodium transport system was evident in the mutant strains and was most marked in mutant SP9. The cellular sodium concentration in parent and mutant strains also varied. Although mutant SP9 exhibited the lowest level of cellular sodium, it was as sensitive to salt toxicity as other strains. It is assumed that merely the presence of a toxic level of NaCl in the ambient environment is sufficient to damage the structural and functional components of the plasma membrane.
机译:蓝藻鱼腥藻的生长。 PCC 7120及其硝酸盐同化缺陷型突变体与培养基中NaCl浓度成反比。盐溶液中硝酸盐的存在可保护亲本的生长,但不能保护突变菌株免受盐的毒性。另一方面,铵态氮可保护所有菌株的生长免受盐毒的影响。但是,其作用小于硝酸盐。在突变菌株中,钠转运系统发生了变化,在突变SP9中最明显。亲本和突变菌株中的细胞钠浓度也不同。尽管突变体SP9表现出最低的细胞钠水平,但它对盐毒性的敏感性与其他菌株一样。假定仅在周围环境中存在有毒的NaCl足以破坏质膜的结构和功能组件。

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