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甘氨酸对固氮红杆菌细胞生长和色素生物合成的影响。

Effects of glycine on cell growth and pigment biosynthesis in Rhodobacter azotoformans.

机构信息

College of Basic Medical Sciences, Shanxi University of Chinese Medicine, Taiyuan, China.

Department of Bioengineering and Biotechnology, Huaqiao University, Xiamen, China.

出版信息

J Basic Microbiol. 2021 Jan;61(1):63-73. doi: 10.1002/jobm.202000503. Epub 2020 Nov 23.

Abstract

The effect of exogenous glycine (a precursor for the biosynthesis of bacteriochlorophyll) on the cell growth and photopigment accumulation was investigated in phototrophic growing Rhodobacter azotoformans 134K20. The growth rate and the biomass of strain 134K20 were significantly inhibited by glycine addition when ammonium sulfate or glutamate were used as nitrogen sources and acetate or succinate as carbon sources. A characteristic absorption maximum at approximately 423 nm was present in the absorption spectra of glutamate cultures while it was absent by the addition of high-concentration glycine of 15 mM. The component account for the 423 nm peak was eventually identified as magnesium protoporphyrin IX monomethyl ester, a precursor of bacteriochlorophyll a (BChl a). Comparative analysis of pigment composition revealed that the amount of BChl a precursors was significantly decreased by the addition of 15-mM glycine while the BChl a accumulation was increased. Moreover, glycine changed the carotenoid compositions and stimulated the accumulation of spheroidene. The A /A in the growth-inhibited cultures was increased, indicating an increased level of the light-harvesting complex 2 compared to the reaction center. The exogenous glycine possibly played an important regulation role in photosynthesis of purple bacteria.

摘要

外源性甘氨酸(细菌叶绿素生物合成的前体)对光能异养生长的红假单胞菌 134K20 细胞生长和光合色素积累的影响。当以硫酸铵或谷氨酸作为氮源,以乙酸盐或琥珀酸盐作为碳源时,甘氨酸的添加显著抑制了菌株 134K20 的生长速率和生物量。在谷氨酸培养物的吸收光谱中存在约 423nm 的特征吸收最大值,而当添加 15mM 的高浓度甘氨酸时则不存在。该 423nm 峰的组成部分最终被鉴定为细菌叶绿素 a(BChl a)的前体镁原卟啉 IX 单甲酯。色素组成的比较分析表明,添加 15mM 甘氨酸显著降低了 BChl a 前体的量,而 BChl a 的积累却增加了。此外,甘氨酸改变了类胡萝卜素的组成,并刺激了球形菌烯的积累。在生长受抑制的培养物中,A/A 增加,表明与反应中心相比,光捕获复合物 2 的水平增加。外源性甘氨酸可能在紫色细菌的光合作用中发挥了重要的调节作用。

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