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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >The multiple roles of light-harvesting chlorophyll a/b-protein complexes define structure and optimize function of Arabidopsis chloroplasts: a study using two chlorophyll b-less mutants.
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The multiple roles of light-harvesting chlorophyll a/b-protein complexes define structure and optimize function of Arabidopsis chloroplasts: a study using two chlorophyll b-less mutants.

机译:集光的叶绿素a / b-蛋白复合物的多重作用定义了拟南芥叶绿体的结构并优化了功能:一项使用两个叶绿素b-less突变体的研究。

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The multiple roles of light-harvesting chlorophyll a/b-protein complexes in the structure and function of Arabidopsis chloroplasts were investigated using two chlorophyll b-less mutants grown under metal halide lamps with a significant far-red component. In ch1-3, all six light-harvesting proteins of photosystem (PS) II were greatly decreased; in ch1-3lhcb5, Lhcb5 was completely absent while the other five proteins were further decreased. The thylakoids of ch1-3 were less negatively-charged than the wild type, and those of ch1-3lhcb5 were even less so. Despite the expected weaker electrostatic repulsion, however, thylakoids in leaves of the mutants were not well stacked, an effect we attribute to lower van der Waals attraction, lower electrostatic attraction between opposite charges, and the absence or instability of PSII supercomplexes and peripheral light-harvesting trimers. The quantum yield of oxygen evolution in leaves decreased from 0.109 (wild type) to 0.087 (ch1-3) and 0.081 (ch1-3lhcb5) O(2) (photon absorbed)(-1); we attribute this decrease to an excessive spillover from PSII to PSI, a limited PSII antenna, and increased light-independent thermal dissipation in PSII in the mutants. Destabilization of the donor side of PSII, indicated by slower electron donation to the redox-active tyrosine Y(Z)(*) in ch1-3, probably enhanced PSII susceptibility to photoinactivation, increased the non-functional PSII complexes in vivo, and further inactivated PSII complexes in vitro. The evolution of chlorophyll b-containing chloroplasts seems to fine-tune oxygenic photosynthesis.
机译:利用在具有显着远红成分的金属卤化物灯下生长的两个无叶绿素b少突变体,研究了光收集叶绿素a / b蛋白复合物在拟南芥叶绿体结构和功能中的多重作用。在ch1-3中,光系统(PS)II的所有六个光收集蛋白都大大减少了。在ch1-3lhcb5中,Lhcb5完全不存在,而其他5种蛋白则进一步减少。与野生型相比,ch1-3的类囊体带负电荷少,而ch1-3lhcb5的类囊体则带负电荷。尽管预期的静电排斥力较弱,但是突变体叶片中的类囊体却没有很好地堆叠,这归因于范德华引力降低,相反电荷之间的静电引力降低以及PSII超复合物和周围光的缺乏或不稳定性。收获三聚体。叶片中放氧的量子产率从0.109(野生型)降至0.087(ch1-3)和0.081(ch1-3lhcb5)O(2)(吸收光子)(-1);我们将此减少归因于从PSII到PSI的过度溢出,有限的PSII天线,以及突变体中PSII的光独立散热增加。第ch1-3部分中氧化还原活性酪氨酸Y(Z)(*)的电子捐赠速度较慢,表明PSII供体侧不稳定,这可能增强了PSII对光灭活的敏感性,增加了体内无功能的PSII复合物,并且进一步灭活的PSII复合物。含叶绿素b的叶绿体的进化似乎可以微调氧的光合作用。

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