首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >A unique regulation of the expression of the psbA, psbD, and psbE genes, encoding the D1, D2 and cytochrome b559 subunits of the Photosystem II complex in the chlorophyll d containing cyanobacterium Acaryochloris marina
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A unique regulation of the expression of the psbA, psbD, and psbE genes, encoding the D1, D2 and cytochrome b559 subunits of the Photosystem II complex in the chlorophyll d containing cyanobacterium Acaryochloris marina

机译:psbA,psbD和psbE基因的表达的独特调控,该基因在含有蓝藻Acaryochloris marina的叶绿素d中编码Photosystem II复合物的D1,D2和细胞色素b559亚基

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摘要

Photosynthetic electron transport, chromatic photoacclimation and expression of the genes encoding the D1, D2, and cytochrome b559 subunits of the Photosystem II complex were studied in the chlorophyll d containing cyanobacterium Acaryochloris marina MBIC11017 under various environmental conditions. During oxygen deprivation and inhibition of photosynthetic electron transport by dibromothymoquinone the psbA1 gene encoding a D1′ isoform was induced. All of the three psbA and one of the three psbD (psbD2) genes, encoding two different isoforms of the D1 and the abundant isoform of the D2 proteins, respectively were induced under exposure to UV-B radiation and high intensity visible light. Under far red light the amount of Photosystem II complexes increased, and expression of the psbE2 gene encoding the alpha-subunit of cytochrome b559 was enhanced. However, the psbF and psbE1 genes encoding the beta- and another isoform of alpha-cytochrome b559, respectively remained lowly expressed under all conditions. Far red light also induced the psbD3 gene encoding a D2′ isoform whose primary structure is different from the abundant D2 isoform. psbD3 was also induced under low intensity visible light, when chromatic photoacclimation was indicated by a red-shifted absorption of chlorophyll d. Our results show that differential expression of multigene families encoding different isoforms of D1 and D2 plays an important role in the acclimation of A. marina to contrasting environmental conditions. Moreover, the disproportionate quantity of transcripts of the alpha and beta subunits of cytochrome b559 implies the existence of an alpha-alpha homodimer organization of cytochrome b559 in Photosystem II complexes.
机译:在各种环境条件下,在含有蓝藻Acaryochloris marina MBIC11017的叶绿素d中研究了光系统II复合体的D1,D2和细胞色素b559亚基的光合电子传递,彩色光驯化和基因表达。在缺氧和二溴胸腺醌抑制光合作用电子运输的过程中,诱导了编码D1'同工型的psbA1基因。在暴露于UV-B辐射和高强度可见光下,分别诱导了分别编码D1的两种不同亚型和D2蛋白的丰富亚型的所有三个psbA基因和三个psbD(psbD2)基因之一。在远红光下,Photosystem II复合物的数量增加,编码细胞色素b559α亚基的psbE2基因的表达增强。但是,分别在所有条件下,编码β-和另一种亚型α-细胞色素b559的psbF和psbE1基因仍然保持低表达。远红光还诱导psbD3基因编码的D2'同工型,其主要结构不同于丰富的D2同工型。 psbD3在低强度可见光下也被诱导,当通过叶绿素d的红移吸收表示彩色光适应时。我们的结果表明,编码D1和D2不同同工型的多基因家族的差异表达在滨海曲霉适应环境条件差异方面起着重要作用。此外,细胞色素b559的α和β亚基的转录物数量不成比例,这意味着在光系统II复合物中存在细胞色素b559的α-α同二聚体组织。

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