Biel A J
J Bacteriol. 1986 Nov;168(2):655-9. doi: 10.1128/jb.168.2.655-659.1986.
The accumulation of bacteriochlorophyll in Rhodobacter capsulatus grown either anaerobically or under low aeration is repressed by bright light. It has been proposed that an intact photosynthetic membrane system is required for light-mediated regulation. This was tested by measuring bacteriochlorophyll accumulation in various mutant strains grown under 3% oxygen. Mutants lacking either the reaction center and B875 complexes or the B800-850 complex exhibited normal regulation of bacteriochlorophyll accumulation by light, suggesting that neither photosynthesis nor the photosynthetic membrane system is involved in light-mediated regulation. Bright light did not reduce transcription from the bchA, bchC, bchE, or bchF gene. Neither a bch+ strain nor bchG or bchH mutants accumulated greater than normal amounts of any bacteriochlorophyll precursor when grown in bright light, indicating that carbon flow over the bacteriochlorophyll biosynthetic pathway was not being regulated by light intensity. When exposed to bright light, R. capsulatus converted aminolevulinate into a colorless compound with Rf values very similar to those of bacteriochlorophyll. These results suggest that in strains grown under low aeration, light intensity controls bacteriochlorophyll accumulation, but does not control bacteriochlorophyll synthesis.
在厌氧或低通气条件下生长的荚膜红细菌中,细菌叶绿素的积累会受到强光抑制。有人提出,光介导的调节需要完整的光合膜系统。通过测量在3%氧气条件下生长的各种突变株中细菌叶绿素的积累来对此进行测试。缺乏反应中心和B875复合物或B800 - 850复合物的突变株表现出正常的光介导细菌叶绿素积累调节,这表明光合作用和光合膜系统均不参与光介导的调节。强光并未降低bchA、bchC、bchE或bchF基因的转录。当在强光下生长时,bch +菌株以及bchG或bchH突变株积累的任何细菌叶绿素前体都不会超过正常量,这表明细菌叶绿素生物合成途径中的碳流不受光强度调节。当暴露于强光下时,荚膜红细菌将氨基乙酰丙酸转化为一种无色化合物,其Rf值与细菌叶绿素的Rf值非常相似。这些结果表明,在低通气条件下生长的菌株中,光强度控制细菌叶绿素的积累,但不控制细菌叶绿素的合成。