首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Enhancement of excitation-energy quenching in fucoxanthin chlorophyll alpha/c-binding proteins isolated from a diatom Phaeodactylum tricornutum upon excess-light illumination
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Enhancement of excitation-energy quenching in fucoxanthin chlorophyll alpha/c-binding proteins isolated from a diatom Phaeodactylum tricornutum upon excess-light illumination

机译:在过度光照下,从硅藻土分离的硅藻土叶绿素α/ c结合蛋白中的激发能量猝灭的增强

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摘要

Photosynthetic organisms regulate pigment composition and molecular oligomerization of light-harvesting complexes in response to solar light intensities, in order to improve light-harvesting efficiency. Here we report excitation-energy dynamics and relaxation of fucoxanthin chlorophyll alpha/c-binding protein (FCP) complexes isolated from a diatom Phaeodactylum tricornutum grown under high-light (HL) illumination. Two types of FCP complexes were prepared from this diatom under the HL condition, whereas one FCP complex was isolated from the cells grown under a low-light (LL) condition. The subunit composition and oligomeric states of FCP complexes under the HL condition are different from those under the LL condition. Absorption and fluorescence spectra at 77 K of the FCP complexes also vary between the two conditions, indicating modifications of the pigment composition and arrangement upon the HL illumination. Time-resolved fluorescence curves at 77 K of the FCP complexes under the HL condition showed shorter lifetime components compared with the LL condition. Fluorescence decay-associated spectra at 77 K showed distinct excitation-energy-quenching components and alterations of energy-transfer pathways in the FCP complexes under the HL condition. These findings provide insights into molecular and functional mechanisms of the dynamic regulation of FCPs in this diatom under excess-light conditions.
机译:光合生物响应于太阳光强度,调节色素组合物和光学络合物的分子寡聚化,以提高光收获效率。在这里,我们报告了在高光(HL)照明下的硅藻土抑制的硅藻土叶绿素α/ c结合蛋白(FCP)复合物的激发能量动力和弛豫。在HL条件下由该硅藻制备两种类型的FCP复合物,而从低光(LL)条件下生长的细胞中分离出一个FCP络合物。 H1条件下的FCP络合物的亚基组合物和低聚状态不同于L1条件下的组合物。在FCP络合物的77k中的吸收和荧光光谱在两个条件下也会变化,表明颜料组合物的修饰和在HL照明时的修饰。与LL条件相比,HL病症下的FCP复合物的77k复合物的时间分辨荧光曲线显示出较短的寿命组分。在77K下荧光衰减相关光谱显示出明显的激发能量猝灭组分和HL条件下FCP配合物中的能量转移途径的改变。这些发现提供了在过度光线条件下该硅藻动态调节FCP的分子和功能机制的见解。

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