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橙色绿屈挠菌中细菌叶绿素合成的半厌氧诱导

Semiaerobic induction of bacteriochlorophyll synthesis in the green bacterium Chloroflexus aurantiacus.

作者信息

Sprague S G, Staehelin L A, Fuller R C

出版信息

J Bacteriol. 1981 Sep;147(3):1032-9. doi: 10.1128/jb.147.3.1032-1039.1981.

Abstract

Comparison of Chloroflexus aurantiacus J-10-fl cells by freeze-fracture electron microscopy showed that cell shape and dimensions did not depend on oxygen tension or light intensity during growth. The major morphological difference between cells cultured anaerobically in the light and aerobically in the dark was the absence of chlorosomes in aerobically grown cells. C. aurantiacus cells cultured aerobically in the dark began bacteriochlorophyll synthesis immediately when shifted to either phototrophic or semiaerobic conditions. Cells adapting to phototrophic conditions grew to the same density and synthesized as much bacteriochlorophyll as nonadapting phototrophic cultures grown at the same light intensity. Cells adapting to reduced oxygen tension (semiaerobic conditions) in the dark entered an 8- to 12-h growth lag during which the bacteriochlorophyll content increased significantly. Despite variations in the initial bacteriochlorophyll content and in the length of the growth lag, the amounts of bacteriochlorophyll a and c were constant at the end of the semiaerobic growth lag. At later times during adaptation to semiaerobic conditions, after growth resumed, variations in the ratio of bacteriochlorophyll c/bacteriochlorophyll a were observed and suggested independent regulation of the two bacteriochlorophylls.

摘要

通过冷冻蚀刻电子显微镜对橙色绿弯菌J-10-fl细胞进行比较,结果表明,细胞形状和尺寸在生长过程中不依赖于氧气张力或光照强度。在光照下厌氧培养的细胞与在黑暗中需氧培养的细胞之间的主要形态学差异在于,需氧生长的细胞中不存在叶绿体。在黑暗中需氧培养的橙色绿弯菌细胞,当转移到光养或半需氧条件下时,立即开始细菌叶绿素的合成。适应光养条件的细胞生长到相同密度,并合成与在相同光照强度下生长的未适应光养培养物一样多的细菌叶绿素。在黑暗中适应降低的氧气张力(半需氧条件)的细胞进入8至12小时的生长滞后期,在此期间细菌叶绿素含量显著增加。尽管初始细菌叶绿素含量和生长滞后期长度存在差异,但在半需氧生长滞后期结束时,细菌叶绿素a和c的量是恒定的。在适应半需氧条件的后期,生长恢复后,观察到细菌叶绿素c/细菌叶绿素a比值的变化,这表明这两种细菌叶绿素受到独立调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a79e/216143/d1ebfbe37a2d/jbacter00268-0333-a.jpg

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