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首页> 外文期刊>Photosynthesis Research: An International Journal >Role of SulP, a nuclear-encoded chloroplast sulfate permease, in sulfate transport and H-2 evolution in Chlamydomonas reinhardtii
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Role of SulP, a nuclear-encoded chloroplast sulfate permease, in sulfate transport and H-2 evolution in Chlamydomonas reinhardtii

机译:SulP,一种核编码的叶绿体硫酸盐渗透酶,在莱茵衣藻的硫酸盐转运和H-2进化中的作用

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Antisense technology was applied to the green alga Chlamydomonas reinhardtiito probe the function of a novel nuclear gene encoding a chloroplast-envelope localized sulfate permease (SulP; GenBank Accession Numbers AF467891 and AF481828). Analysis showed that antiSulP transformants are impaired in sulfate uptake, a consequence of repression in the SulP gene expression. Antisense antiSulP transformants exhibited a sulfur-deprivation phenotype, strong induction of arylsulfatase activity, and global induction of sulfate assimilation gene expression. In sealed cultures, opposite to the wild-type control, antiSulP strains photo-evolved H-2, underlining the notion of sulfate uptake limitation by the chloroplast, a slow-down in the rate of oxygen evolution, establishment of anaerobiosis due to internal respiration and spontaneous expression of the [Fe]-hydrogenase in these strains. It is concluded that antiSulP strains are promising as tools to limit the supply of sulfates to the chloroplast, leading to a down-regulation of H2O-oxidation and O-2-evolution activity, to the constitutive expression of the [Fe]-hydrogenase and continuous H-2-photoproduction in Chlamydomonas reinhardtii.Thus, antisulPstrains might permit a study of the biochemistry of H-2 metabolism in this green alga under constitutive anaerobic oxygenic photosynthesis conditions.
机译:反义技术应用于绿藻衣藻衣藻探针,其编码编码叶绿体-包膜局部硫酸盐渗透酶(SulP; GenBank登录号AF467891和AF481828)的新型核基因的功能。分析表明抗SulP转化子的硫酸盐吸收受到损害,这是SulP基因表达受阻的结果。反义抗SulP转化子表现出硫剥夺表型,芳基硫酸酯酶活性的强诱导和硫酸盐同化基因表达的整体诱导。在密封培养中,与野生型对照相反,antiSulP菌株可光进化H-2,强调了叶绿体限制硫酸盐吸收的概念,即氧气释放速度减慢,由于内部呼吸导致厌氧菌的建立和在这些菌株中自发表达[Fe]-氢化酶。结论是,抗SulP菌株有望作为限制硫酸盐向叶绿体供应的工具,从而导致H2O氧化和O-2-进化活性的下调,[Fe]-加氢酶的组成型表达和在莱茵衣藻中连续进行H-2的光生产。因此,抗sulP菌株可能允许在组成性厌氧氧光合作用条件下研究该绿藻中H-2代谢的生物化学。

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