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The trade-off between the light-harvesting and photoprotective functions of fucoxanthin-chlorophyll proteins dominates light acclimation in Emiliania huxleyi (clone CCMP 1516)

机译:岩藻黄质-叶绿素蛋白的光收集功能与光保护功能之间的权衡主导了Emililiania huxleyi(克隆CCMP 1516)的光适应

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摘要

Mechanistic understanding of the costs and benefits of photoacclimation requires knowledge of how photophysiology is affected by changes in the molecular structure of the chloroplast. We tested the hypothesis that changes in the light dependencies of photosynthesis, nonphotochemical quenching and PSII photoinactivation arises from changes in the abundances of chloroplast proteins in Emiliania huxleyi strain CCMP 1516 grown at 30 (Low Light; LL) and 1000 (High Light; HL) μmol photons m -2 s -1 photon flux densities. Carbon-specific light-saturated gross photosynthesis rates were not significantly different between cells acclimated to LL and HL. Acclimation to LL benefited cells by increasing biomass-specific light absorption and gross photosynthesis rates under low light, whereas acclimation to HL benefited cells by reducing the rate of photoinactivation of PSII under high light. Differences in the relative abundances of proteins assigned to light-harvesting (Lhcf), photoprotection (LI818-like), and the photosystem II (PSII) core complex accompanied differences in photophysiology: specifically, Lhcf:PSII was greater under LL, whereas LI818:PSII was greater in HL. Thus, photoacclimation in E. huxleyi involved a trade-off amongst the characteristics of light absorption and photoprotection, which could be attributed to changes in the abundance and composition of proteins in the light-harvesting antenna of PSII. © 2013 New Phytologist Trust.
机译:对光适应的成本和收益的机械理解需要了解叶绿体分子结构的变化如何影响光生理。我们测试了以下假设:在30(弱光; LL)和1000(强光; HL)下生长的Emiliania huxleyi菌株CCMP 1516的叶绿体蛋白丰度变化导致光合作用,非光化学猝灭和PSII光灭活的光依赖性变化。 μmol光子m -2 s -1光子通量密度。碳特异性光饱和总光合作用率在适应LL和HL的细胞之间没有显着差异。在弱光下,通过增加生物量特异性光吸收和总光合作用率来适应LL有益的细胞,而在强光下,通过降低PSII的光灭活速率来适应HL有益的细胞。分配给采光(Lhcf),光保护(LI818-like)和光系统II(PSII)核心复合物的蛋白质相对丰度的差异伴随着光生理的差异:特别是,LL下Lhcf:PSII更大,而LI818: PSII在HL中更大。因此,赫克斯利肠杆菌的光适应涉及光吸收和光保护特性之间的权衡,这可能归因于PSII的光收集天线中蛋白质的丰度和组成的变化。 ©2013新植物学家信托。

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