Saga Yoshitaka, Oh-oka Hirozo, Hayashi Takashi, Tamiaki Hitoshi
Department of Bioscience and Biotechnology, Faculty of Science and Engineering, Ritsumeikan University, Kusatsu, Shiga 525-8577, Japan.
Anal Sci. 2003 Dec;19(12):1575-9. doi: 10.2116/analsci.19.1575.
The light-dependent composition change of light harvesting bacteriochlorophyll(BChl)s in the present culture of a green sulfur photosynthetic bacterium Chlorobium (Chl.) vibrioforme f. sp. thiosulfatophilum strain NCIB 8327 was investigated by visible absorption spectroscopy and HPLC analyses. When the culture was repeatedly grown in liquid media under a low light condition, both the Soret and Qy absorption bands of the in vivo spectrum were shifted to longer wavelengths. Analysis of the extracted pigments by HPLC revealed that the ratio of the amount of BChl-c to that of BChl-d molecules gradually increased during repeated cultivation. In contrast, when the culture grown under a low light intensity was transferred to a high light condition and continued to be grown, the absorption bands were shifted to shorter wavelengths and the ratio of BChls-c/d decreased finally to the almost original value. Colonies were prepared on solid agar media from the liquid culture containing both BChls-c and d, which was grown under a low light intensity. Each colony obtained was found to contain either BChl-c or d, but not both of them. Two types of cells isolated in this study were derived from the same clone, judged from their genetic analyses. The variation of pigment composition in our liquid culture observed here could be ascribed to the difference of growth rates between two substrains containing BChl-c and BChl-d, respectively, depending on light conditions.
通过可见吸收光谱和高效液相色谱(HPLC)分析,研究了绿色硫光合细菌嗜硫代硫酸盐绿菌(Chlorobium (Chl.) vibrioforme f. sp. thiosulfatophilum)菌株NCIB 8327当前培养物中光捕获细菌叶绿素(BChl)的光依赖性组成变化。当培养物在低光照条件下在液体培养基中反复培养时,体内光谱的Soret和Qy吸收带均向更长波长移动。通过HPLC对提取的色素进行分析表明,在反复培养过程中,BChl-c与BChl-d分子的量之比逐渐增加。相反,当在低光照强度下生长的培养物转移到高光照条件下并继续生长时,吸收带向更短波长移动,并且BChls-c/d的比例最终降低到几乎原始值。从在低光照强度下生长的同时含有BChls-c和d的液体培养物在固体琼脂培养基上制备菌落。发现获得的每个菌落只含有BChl-c或d,而不是两者都有。根据遗传分析判断,本研究中分离出的两种细胞类型源自同一克隆。这里观察到的我们液体培养物中色素组成的变化可归因于分别含有BChl-c和BChl-d的两个亚菌株在光照条件下生长速率的差异。