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首页> 外文期刊>Archives of Biochemistry and Biophysics >Roles of xanthophyll carotenoids in protection against photoinhibition and oxidative stress in the cyanobacterium Synechococcus sp. strain PCC 7002
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Roles of xanthophyll carotenoids in protection against photoinhibition and oxidative stress in the cyanobacterium Synechococcus sp. strain PCC 7002

机译:叶黄素类胡萝卜素在防止蓝藻Synechococcus sp。的光抑制和氧化应激中的作用。 PCC 7002株

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摘要

Synechococcus sp. strain PCC 7002 is a robust, genetically tractable cyanobacterium that produces six different xanthophyll carotenoids (zeaxanthin, cryptoxanthin, myxoxanthophyll (myxol-2′-fucoside), echinenone, 3′-hydroxyechinenone, and synechoxanthin) and tolerates many environmental stresses, including high light intensities. Targeted mutations were introduced to block the branches of the carotenoid biosynthetic pathway leading to specific xanthophylls, and a mutant lacking all xanthophylls was constructed. Some of the mutants showed severe growth defects at high light intensities, and multi-locus mutants had somewhat lower chlorophyll contents and lower photosystem I levels. The results suggested that xanthophylls, particularly zeaxanthin and echinenone, might play regulatory roles in thylakoid biogenesis. Measurements of reactive oxygen (ROS) and nitrogen (RNS) species in the mutants showed that all xanthophylls participate in preventing ROS/RNS accumulation and that a mutant lacking all xanthophylls accumulated very high levels of ROS/RNS. Results from transcription profiling showed that mRNA levels for most genes encoding the enzymes of carotenogenesis are significantly more abundant after exposure to high light. These studies indicated that all xanthophylls contribute to protection against photo-oxidative stress.
机译:粘球菌PCC 7002菌株是一种健壮的,遗传上易处理的蓝藻细菌,可产生六种不同的叶黄素类胡萝卜素(玉米黄质,隐黄质,粘氧黄酮(myxol-2'-岩藻糖苷),海胆烯酮,3'-羟基海胆烯酮和Synechoxanthin),并能耐受许多环境胁迫,包括高光照强度。引入靶向突变以阻断类胡萝卜素生物合成途径导致特定叶黄素的分支,并构建了一个缺少所有叶黄素的突变体。一些突变体在高光强度下表现出严重的生长缺陷,多位点突变体的叶绿素含量略低,光系统I水平较低。结果表明,叶黄素,尤其是玉米黄质和海胆烯酮,可能在类囊体生物发生中起调节作用。对突变体中活性氧(ROS)和氮(RNS)种类的测量表明,所有叶黄素都参与了ROS / RNS积累的预防,而缺乏所有叶黄素的突变体积累了非常高水平的ROS / RNS。转录谱分析的结果表明,暴露于强光下后,大多数编码类胡萝卜素生成酶的基因的mRNA水平明显丰富。这些研究表明,所有叶黄素均有助于抵抗光氧化应激。

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