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Red-light phenotype in a marine diatom involves a specialized oligomeric red-shifted antenna and altered cell morphology

机译:海洋硅藻的红光表型涉及特殊的寡聚红移天线和改变的细胞形态

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摘要

Diatoms greatly contribute to carbon fixation and thus strongly influence the global biogeochemical balance. Capable of chromatic acclimation (CA) to unfavourable light conditions, diatoms often dominate benthic ecosystems in addition to their planktonic lifestyle. Although CA has been studied at the molecular level, our understanding of this phenomenon remains incomplete. Here we provide new data to better explain the acclimation-associated changes under red-enhanced ambient light (RL) in diatom Phaeodactylum tricornutum, known to express a red-shifted antenna complex (F710). The complex was found to be an oligomer of a single polypeptide, Lhcf15. The steady-state spectroscopic properties of the oligomer were also studied. The oligomeric assembly of the Lhcf15 subunits is required for the complex to exhibit a red-shifted absorption. The presence of the red antenna in RL culture coincides with the development of a rounded phenotype of the diatom cell. A model summarizing the modulation of the photosynthetic apparatus during the acclimation response to light of different spectral quality is proposed. Our study suggests that toggling between alternative organizations of photosynthetic apparatus and distinct cell morphologies underlies the remarkable acclimation capacity of diatoms.
机译:硅藻极大地促进了碳固定,因此强烈影响了全球生物地球化学平衡。硅藻能够适应不利的光照条件,因此具有色适应性(CA),除浮游生物外,它们还经常在底栖生态系统中占主导地位。尽管已经在分子水平上研究了CA,但是我们对这种现象的理解仍然不完整。在这里,我们提供了新的数据,以更好地解释硅藻Phaeodactylum tricornutum中的红色增强环境光(RL)下与驯化相关的变化,已知该硅藻表达了红移天线复合体(F710)。发现该复合物是单个多肽Lhcf15的寡聚体。还研究了低聚物的稳态光谱性质。 Lhcf15亚基的寡聚组装是复合物表现出红移吸收所必需的。 RL培养物中红色触角的存在与硅藻细胞圆形表型的发展相吻合。提出了一个模型,该模型概述了光合设备在适应不同光谱质量的光时的调制。我们的研究表明,在光合作用的替代组织和独特的细胞形态之间切换是硅藻显着适应环境的基础。

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