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集胞藻(聚球藻)中二氧化碳的固定及其调控

CO2 fixation and its regulation in Anacystis nidulans (Synechococcus).

作者信息

Ihlenfeldt M J, Gibson J

出版信息

Arch Microbiol. 1975;102(1):13-21. doi: 10.1007/BF00428339.

Abstract

Anacystis nidulans (Synechococcus) had a minimal doubling time of 5 hrs at 30 degrees C at saturating light intensity and carbon dioxide concentration. Half maximal growth rates in saturating CO2 occured at a light intensity of 0.54 mW per cm2, and there was an apparent threshold intensity of 0.13 mW per cm2 below which no growth occurred. Growth rate in saturating light was dependent on the concentration of CO2+H2CO3 in the medium, rather than on total dissolved CO2; half maximal rates were estimated at 0.1 mM CO2+H2CO3. Under saturating conditions of light and CO2, 14CO2 was fixed primarily into 3-PGA, and subsequently moved into sugar phosphates and amino acids. Incorporation into aspartate was relatively slow. CO2 fixation was strictly light-dependent. The changes in adenylate and pyridine nucleotide pools were followed in light/dark and dark/light transitions. Whereas adenylates relaxed slowly over 15-20 min to the concentrations characteristic of illuminated cells following the abrupt changes induced by darkening, the sharp drop in intracellular NADPH showed little dark recovery although rapid restoration occurred on reillumination. Other pyridine nucleotides showed no changes during these transitions. The nucleotide specificity and Km of partially purfied GAP dehydrogenase suggest a role for this enzyme in the regulation of CO2 fixation.

摘要

聚球藻(集胞藻)在30摄氏度、饱和光照强度和二氧化碳浓度条件下,最短倍增时间为5小时。在饱和二氧化碳条件下,当光照强度为每平方厘米0.54毫瓦时,生长速率达到最大值的一半,且存在一个明显的阈值强度,即每平方厘米0.13毫瓦,低于此强度则不生长。在饱和光照下,生长速率取决于培养基中二氧化碳+碳酸的浓度,而非总溶解二氧化碳浓度;生长速率达到最大值的一半时,二氧化碳+碳酸的浓度估计为0.1毫摩尔。在光照和二氧化碳饱和条件下,14二氧化碳主要固定为3 - 磷酸甘油酸,随后进入磷酸糖和氨基酸。进入天冬氨酸的过程相对较慢。二氧化碳固定严格依赖光照。在光/暗和暗/光转换过程中,跟踪了腺苷酸和吡啶核苷酸库的变化。尽管在重新光照时细胞内NADPH迅速恢复,但在暗化诱导的突然变化后,腺苷酸在15 - 20分钟内缓慢松弛至光照细胞特有的浓度,细胞内NADPH的急剧下降几乎没有暗恢复。在这些转换过程中,其他吡啶核苷酸没有变化。部分纯化的甘油醛-3-磷酸脱氢酶的核苷酸特异性和米氏常数表明该酶在二氧化碳固定调节中起作用。

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