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对缺失编码捕光复合体1(B870)多肽的pufA和pufB基因的嗜硫红假单胞菌突变株的表征。

Characterization of a mutant strain of Rhodovulum sulfidophilum lacking the pufA and pufB genes encoding the polypeptides for the light-harvesting complex 1 (B 870).

作者信息

Raiger-Iustman Laura J, Kerber Norma L, Pucheu Norma L, Bornmann Marc J, Kohler Simon, Labahn Andreas, Tadros Monier, Drews Gerhart, García Augusto F

机构信息

Cátedra de Microbiología, Facultad de Agronomía, UBA and Instituto de Investigaciones Bioquímicas y Fisiológicas (IByF-CONICET), Av. San Martín 4453, 1417, Capital Federal, Argentina.

出版信息

Arch Microbiol. 2006 Jun;185(6):407-15. doi: 10.1007/s00203-006-0108-6. Epub 2006 Apr 14.

Abstract

Contradictory results on the effectiveness of energy transfer from the light harvesting complex 2 (LH2) directly to the reaction center (RC) in mutant strains lacking the core light-harvesting complex 1 (LH1) have been obtained with cells of Rhodobacter capsulatus and Rhodobacter sphaeroides. A LH1(-) mutant of Rhodovulum sulfidophilum, named rsLRI, was constructed by deletion of the pufBA genes, resulting in a kanamycin resistant photosynthetically positive clone. To restore the wild type phenotype, a complemented strain C2 was constructed by inserting in trans a DNA segment containing the pufBA genes. Light-induced FTIR difference spectra indicate that the RC in the rsLRI mutant and in the C2 complemented strains are functionally and structurally identical with those in the wild type strain, demonstrating that the assembly and the function of the RC is not impaired by the LH1 deletion. The photosynthetic growth rate of the rsLRI strain increased with decreasing light intensity. At 50 W m(-2 )no photosynthetic growth was observed. These results indicate that the light energy harvested by the LH2 complex was not or inefficiently transferred to the RC; thus most of the energy necessary for photosynthetic growth is in the LH1(-) strain directly absorbed by the RC. It is supposed that in the mutant strain, RC and LH2 cannot interact in an efficient way.

摘要

对于缺乏核心光捕获复合物1(LH1)的突变菌株,从光捕获复合物2(LH2)直接向反应中心(RC)进行能量转移的有效性,在荚膜红杆菌和球形红杆菌的细胞中得到了相互矛盾的结果。通过缺失pufBA基因构建了嗜硫小红卵菌的LH1(-)突变体,命名为rsLRI,从而得到一个对卡那霉素具有抗性的光合阳性克隆。为了恢复野生型表型,通过反式插入含有pufBA基因的DNA片段构建了互补菌株C2。光诱导傅里叶变换红外差谱表明,rsLRI突变体和C2互补菌株中的反应中心在功能和结构上与野生型菌株中的反应中心相同,这表明反应中心的组装和功能不会因LH1的缺失而受损。rsLRI菌株的光合生长速率随着光强的降低而增加。在50 W m(-2)时未观察到光合生长。这些结果表明,LH2复合物捕获的光能没有或没有有效地转移到反应中心;因此,光合生长所需的大部分能量在LH1(-)菌株中直接被反应中心吸收。据推测,在突变菌株中,反应中心和LH2不能以有效的方式相互作用。

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