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通过铵同化作用与二氧化碳固定作用之间的平衡来调节集胞藻6803中的硝酸盐吸收

Modulation of nitrate uptake in Anacystis nidulans by the balance between ammonium assimilation and CO2 fixation.

作者信息

Romero J M, Coronil T, Lara C, Guerrero M G

出版信息

Arch Biochem Biophys. 1987 Aug 1;256(2):578-84. doi: 10.1016/0003-9861(87)90615-1.

Abstract

Gradual inhibition of ammonium assimilation in Anacystis nidulans cells by increasing concentrations of 5-hydroxylysine resulted in a progressive enhancement of nitrate uptake. For 5-hydroxylysine-treated cells, the magnitude of the inhibition of nitrate uptake promoted by added ammonium was dependent on the ammonium assimilation capacity. In cells with a moderate ammonium assimilation activity, acceleration of CO2 fixation induced by bicarbonate addition antagonized the negative effect of ammonium, allowing full nitrate uptake activity. The results support the contention that nitrate utilization is under the feed-back control exerted by products of its own assimilation via ammonium, the inhibitory effect being potentiated by ammonium addition and alleviated by enhanced CO2 fixation. Results of amino acid analysis in cells exhibiting different capacities to utilize nitrate speak against these compounds as direct effectors of nitrate uptake.

摘要

通过增加5-羟基赖氨酸的浓度逐步抑制集胞藻细胞中的铵同化作用,导致硝酸盐吸收逐渐增强。对于经5-羟基赖氨酸处理的细胞,添加铵促进的硝酸盐吸收抑制程度取决于铵同化能力。在具有中等铵同化活性的细胞中,添加碳酸氢盐诱导的二氧化碳固定加速拮抗了铵的负面影响,使硝酸盐吸收活性完全恢复。这些结果支持了这样的观点,即硝酸盐利用受其自身通过铵同化产物施加的反馈控制,添加铵会增强抑制作用,而增强二氧化碳固定则会减轻这种抑制作用。对具有不同硝酸盐利用能力的细胞进行氨基酸分析的结果表明,这些化合物并非硝酸盐吸收的直接效应物。

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