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Effect of illumination intensity and inhibition of carotenoid biosynthesis on assembly of peripheral light-harvesting complexes in purple sulfur bacteria Allochromatium vinosum ATCC 17899

机译:光照强度和类胡萝卜素生物合成的抑制作用对紫色硫细菌异色菌ATCC 17899周围集光复合体组装的影响

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摘要

Effect of illumination intensity and inhibition of carotenoid biosynthesis on assemblage of different spectral types of LH2 complexes in a purple sulfur bacterium Allochromatium (Alc.) vinosum ATCC 17899 was studied. Under illumination of 1200 and 500 lx, the complexes B800-850 and B800-840 and B800-820 were assembled. While rhodopine was the major carotenoid in all spectral types of the LH2 complex, a certain increase in the content of carotenoids with higher numbers of conjugated double bonds (anhydrorhodovibrin and didehydrorhodopin) was observed in the B800-820 complex. At 1200 lx, the cells grew slowly at diphenylamine (DPA) concentrations not exceeding 53 mu M, while at illumination intensity decreased to 500 lx they could grow at 71 mu M DPA (DPA cells). Independent on illumination level, the inhibitor is supposed to impair the functioning of phytoene synthetase (resulting in a decrease in the total carotenoid content) and of phytoene desaturase, which results in formation of neurosporene hydroxy derivatives and zeta-carotene. In the cells grown at 500 lx, small amounts of spheroidene and OH-spheroidene were detected. These carotenoids were originally found under conditions of carotenoid synthesis inhibition in bacteria with spirilloxanthin as the major carotenoid. Carotenoid content in the LH2 complexes isolated from the DPA cells was 15% of the control (without inhibition) for the B800-850 and 20% of the control for the B800-820 and B800-840 DPA complexes. Compared to the DPA pigment-containing membranes, the DPA complexes were enriched with carotenoids due to disintegration of some carotenoidless complexes in the course of isolation. These results support the supposition that some of the B800-820, B800-840, and B800-850 complexes may be assembled in the cells of Alc. vinosum ATCC 17899 without carotenoids. Comparison of the characteristics obtained for Alc. vinosum ATCC 17899 and the literature data on strain D of the same bacteria shows that they belong to two different strains, rather than to one as was previously supposed.
机译:研究了光照强度和类胡萝卜素生物合成的抑制作用对紫色硫细菌异色染色体ATCC 17899中不同光谱类型的LH2配合物组装的影响。在1200和500lx的光照下,组装了复合物B800-850和B800-840以及B800-820。尽管在所有光谱类型的LH2络合物中,类胡萝卜素是主要的类胡萝卜素,但在B800-820络合物中观察到具有更高数量的共轭双键的类胡萝卜素(无水紫红蛋白和双水红多平)的含量有所增加。在1200 lx下,细胞在二苯胺(DPA)浓度不超过53μM时生长缓慢,而在光照强度降至500 lx时,它们可以在71μM DPA(DPA细胞)下生长。与光照水平无关,该抑制剂被认为会损害八氢番茄红素合成酶(导致总类胡萝卜素含量降低)和八氢番茄红素去饱和酶的功能,从而导致神经孢子羟基衍生物和ζ-胡萝卜素的形成。在以500 lx生长的细胞中,检测到少量的椭球和OH椭球。这些类胡萝卜素最初是在螺旋藻黄质作为主要类胡萝卜素的细菌中,在类胡萝卜素合成抑制的条件下发现的。从DPA细胞分离的LH2复合物中的类胡萝卜素含量对于B800-850为对照的15%(无抑制),而对于B800-820和B800-840 DPA复合物则为对照的20%。与含DPA颜料的膜相比,由于分离过程中某些无类胡萝卜素的复合物崩解,DPA复合物富含类胡萝卜素。这些结果支持以下假设:某些B800-820,B800-840和B800-850配合物可以在Alc的细胞中组装。不含类胡萝卜素的vinosum ATCC 17899。 Alc获得的特性比较。 vinosum ATCC 17899和同一细菌的菌株D的文献数据表明,它们属于两种不同的菌株,而不是以前所认为的一种。

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