Suppr超能文献

聚球藻6308指数生长期和平稳期培养物中无机碳固定短期产物的变化

Variations in short term products of inorganic carbon fixation in exponential and stationary phase cultures of Aphanocapsa 6308.

作者信息

Weathers P J, Allen M M

出版信息

Arch Microbiol. 1978 Mar;116(3):231-4. doi: 10.1007/BF00417844.

Abstract

Aphanocapsa 6308 metabolizes both NaHCO3 and Na2CO3. The short term incorporation (5-s) metabolic pattern and the patterns of incorporation of bicarbonate for exponential versus stationary phase cultures differ, however. Cells were equilibrated for 10 min in air and distilled water prior to injection of either NaH14CO3 at pH 8.0, or Na214CO3 at pH 11.0. Hot ethanol extracts were analyzed via paper chromatography and autoradiography for products of CO2 fixation. At 5 s, malate (51.5%) predominates slightly as a primary bicarbonate fixation product over 3-phosphoglycerate (40.3%); 3-phosphoglycerate is the primary product of carbonate fixation. At 60 s, the carbonate and bicarbonate labelling patterns are similar. Cells in stationary phase fix in 5 s a greater proportion of bicarbonate into malate (36% vs. 14% for 3-phosphoglycerate) than do cells in exponential growth. Likewise, 60 s incorporations show a large amount of bicarbonate fixed into aspartate (30.9%) in stationary phase cells over that of exponential phase (11.6%). These data suggest an operative C4 pathway for purposes not related to carbohydrate synthesis but rather as compensation for the incomplete tricarboxylic acid cycle in cyanobacteria. The enhancement of both aspartate fixation and CO2 fixation into citrulline in stationary phase correlates with an increase in cyanophycin granule production which requires both aspartate and arginine.

摘要

隐球藻6308能代谢碳酸氢钠和碳酸钠。然而,短期掺入(5秒)代谢模式以及指数生长期与稳定期培养物中碳酸氢盐的掺入模式有所不同。在注入pH 8.0的NaH¹⁴CO₃或pH 11.0的Na₂¹⁴CO₃之前,细胞在空气和蒸馏水中平衡10分钟。通过纸色谱法和放射自显影分析热乙醇提取物中二氧化碳固定的产物。在5秒时,苹果酸(51.5%)作为主要的碳酸氢盐固定产物略占优势,超过3-磷酸甘油酸(40.3%);3-磷酸甘油酸是碳酸盐固定的主要产物。在60秒时,碳酸盐和碳酸氢盐的标记模式相似。与指数生长期的细胞相比,稳定期的细胞在5秒内将更大比例的碳酸氢盐固定到苹果酸中(36%对3-磷酸甘油酸的14%)。同样,60秒的掺入显示,稳定期细胞中大量的碳酸氢盐固定到天冬氨酸中(30.9%),高于指数期(11.6%)。这些数据表明存在一种有效的C4途径,其目的并非与碳水化合物合成相关,而是作为对蓝细菌中三羧酸循环不完整的一种补偿。稳定期天冬氨酸固定以及二氧化碳固定到瓜氨酸中的增强与蓝藻颗粒产量的增加相关,而蓝藻颗粒的产生需要天冬氨酸和精氨酸。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验