首页> 美国卫生研究院文献>Journal of Bacteriology >Influence of pH O2 and temperature on the absorption properties of the secondary light-harvesting antenna in members of the family Rhodospirillaceae.
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Influence of pH O2 and temperature on the absorption properties of the secondary light-harvesting antenna in members of the family Rhodospirillaceae.

机译:pHO2和温度对红螺旋藻科成员次生采光天线吸收特性的影响。

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摘要

In some Rhodospirillaceae, the primary light-harvesting (LH I) antenna absorbs near-infrared light around 870 nm, whereas LH II (holochrome B800-860) has a major absorption band between 850 and 860 nm (B860) and a minor absorbancy around 800 nm (B800). Results show that, unlike LH I, holochrome B800-860 (LH II) exhibits unstable light absorption properties in whole cells. This was observed in Rhodopseudomonas capsulata grown anaerobically in light in weakly buffered carbohydrate medium; cultures lost both carotenoid-dependent brown-yellow pigmentation and LH II absorbancy. The whole cell spectrophotometric changes were attributed to mild acid conditions generated during sugar metabolism. LH II absorbancy was also destroyed in both R. capsulata and Rhodopseudomonas gelatinosa when cultures growing at neutral pH were acidified to a pH value around 5.0 with HCl. In contrast, during the same time period of exposure to pH 5.0, only a 50% decrease in Rhodopseudomonas sphaeroides LH II B800 absorbancy was measured. At neutral pH, LH II absorbancy in suspensions of nongrowing Rhodopseudomonas spp. was also sensitive to O2 exposure and to incubation at 30 to 40 degrees C. During treatment with O2, the rate of LH II B800 absorption decrease in R. gelatinosa and R. sphaeroides was 60 and 40% per h, respectively, compared with their absorbancy maximum around 860 nm. Both 860-nm absorbancy and the total bacteriochlorophyll content of the cells remained unchanged. On the other hand, no significant decrease in B800 if LH II in R. capsulata occurred during O2 exposure, but a 20% absorption decay rate per h of B800 was observed in cells incubated anaerobically at 40 degrees C. These B800 LH II spectral changes Rhodopseudomonas spp. were prevented by maintaining cells at neutral pH and at 10 degrees C. The near-infrared absorption spectrum of Rhodospirillum rubrum, which does not form LH II, was not significantly influenced by these different pH, aerobic, or temperature conditions.
机译:在某些红螺旋藻科中,主要的光收集(LH I)天线吸收870 nm附近的近红外光,而LH II(全息B800-860)的主要吸收带在850至860 nm(B860)之间,吸收率较小。 800 nm(B800)。结果表明,与LH I不同,holochrome B800-860(LH II)在整个细胞中均表现出不稳定的光吸收特性。在弱缓冲的碳水化合物培养基中,无氧生长的荚膜红假单胞菌中观察到了这种现象。培养物失去了类胡萝卜素依赖性棕黄色色素沉着和LH II吸收能力。全细胞分光光度法的变化归因于糖代谢过程中产生的弱酸条件。当在中性pH值下生长的培养物用HCl酸化至pH值约为5.0时,在荚膜红螺菌和明胶红假单胞菌中,LH II的吸收性也会被破坏。相反,在暴露于pH 5.0的同一时间段内,球形球形红假单胞菌LH II B800的吸收率仅降低了50%。在中性pH值下,非生长红假单胞菌spp悬浮液中的LH II吸收度。对O2暴露以及在30至40摄氏度的温育下也很敏感。与O2处理相比,在R. gelatinosa和s。sphaeroides中,LH II B800的吸收率下降分别为每小时60%和40%最大吸光度约为860 nm。细胞的860 nm吸收率和总细菌叶绿素含量均保持不变。另一方面,如果在氧气暴露期间荚膜红球菌中的LH II发生,则B800不会显着降低,但是在40摄氏度厌氧培养的细胞中,每小时B800的吸收衰减率为20%。这些B800 LH II光谱变化红假单胞菌通过将细胞保持在中性pH值和10摄氏度下,可以防止这种情况。不形成LH II的红红螺螺旋藻的近红外吸收光谱不受这些不同的pH,有氧或温度条件的影响。

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