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多形鱼腥藻的野生型和非固氮突变体对不同氨基酸的反应。

Response of a wild type and a non-nitrogen-fixing mutant of Anabaena doliolum towards different amino acids.

作者信息

Kumar A, Kumar H D

出版信息

Z Allg Mikrobiol. 1981;21(5):353-9. doi: 10.1002/jobm.3630210502.

Abstract

The effects of various amino acids on growth and heterocyst differentiation have been studied on wild type and a heterocystous, non-nitrogen-fixing (het+ nif-) mutant of Anabaena doliolum. Glutamine, arginine and asparagine showed maximum stimulation of growth. Serine, proline and alanine elicited slight stimulation of growth of wild type but failed to show any stimulatory effect on mutant strain. Valine, glutamic acid, iso-leucine and leucine at a concentration of as low as 0.1 mM were inhibitory to growth of parent type. Methionine, aspartic acid, threonine, cysteine, and tryptophan did not affect growth at concentrations lower than 0.5 mM. But at 1 mM, these amino acids were inhibitory. In addition to the stimulatory effects of glutamine, arginine and asparagine, the heterocyst frequency was also repressed by these amino acids. Glutamine and arginine at 2 mM completely repressed heterocyst differentiation in the mutant strain; however, other amino acids failed to repress the differentiation of heterocysts. Our results suggest that glutamine and arginine are utilized as nitrogen sources. This is strongly supported from the data of growth and heterocyst differentiation of mutant strain, where at least with glutamine there is good growth without heterocyst formation. Studies with glutamine and arginine on other N2-fixing blue-green algae may reveal the regulation of the heterocyst-nitrogenase sub-system.

摘要

已在野生型及多形鱼腥藻的一个异形胞、非固氮(het+ nif-)突变体上研究了各种氨基酸对生长和异形胞分化的影响。谷氨酰胺、精氨酸和天冬酰胺对生长表现出最大刺激作用。丝氨酸、脯氨酸和丙氨酸对野生型生长有轻微刺激,但对突变菌株未表现出任何刺激作用。缬氨酸、谷氨酸、异亮氨酸和亮氨酸浓度低至0.1 mM时对亲本型生长有抑制作用。甲硫氨酸、天冬氨酸、苏氨酸、半胱氨酸和色氨酸在浓度低于0.5 mM时不影响生长。但在1 mM时,这些氨基酸有抑制作用。除了谷氨酰胺、精氨酸和天冬酰胺的刺激作用外,这些氨基酸还抑制异形胞频率。2 mM的谷氨酰胺和精氨酸完全抑制突变菌株中的异形胞分化;然而,其他氨基酸未能抑制异形胞分化。我们的结果表明,谷氨酰胺和精氨酸被用作氮源。突变菌株生长和异形胞分化的数据有力支持了这一点,其中至少谷氨酰胺存在时生长良好且无异形胞形成。对其他固氮蓝藻进行谷氨酰胺和精氨酸的研究可能会揭示异形胞-固氮酶子系统的调控机制。

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