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Lhcx proteins provide photoprotection via thermal dissipation of absorbed light in the diatom Phaeodactylum tricornutum

机译:LHCX蛋白通过硅藻土抑制术中的吸收光的热散热提供光保护

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摘要

Diatoms possess an impressive capacity for rapidly inducible thermal dissipation of excess absorbed energy (qE), provided by the xanthophyll diatoxanthin and Lhcx proteins. By knocking out the Lhcx1 and Lhcx2 genes individually in Phaeodactylum tricornutum strain 4 and complementing the knockout lines with different Lhcx proteins, multiple mutants with varying qE capacities are obtained, ranging from zero to high values. We demonstrate that qE is entirely dependent on the concerted action of diatoxanthin and Lhcx proteins, with Lhcx1, Lhcx2 and Lhcx3 having similar functions. Moreover, we establish a clear link between Lhcx1/2/3 mediated inducible thermal energy dissipation and a reduction in the functional absorption cross-section of photosystem II. This regulation of the functional absorption cross-section can be tuned by altered Lhcx protein expression in response to environmental conditions. Our results provide a holistic understanding of the rapidly inducible thermal energy dissipation process and its mechanistic implications in diatoms.
机译:硅藻具有令人印象深刻的能力,用于Xanthophyll Diactoxanthin和LHCX蛋白提供的过量吸收能量(QE)的迅速诱导的过度吸收能量(QE)。通过在Phaeodactylum Tricornutum菌株4中单独敲出LHCX1和LHCX2基因并用不同的LHCX蛋白互补敲除线,获得具有不同QE容量的多个突变体,从零到高值。我们证明QE完全取决于含有类似功能的LHCX1,LHCX2和LHCX3的偶联蛋白和LHCX蛋白的齐齐异作用。此外,我们在LHCX1 / 2/3介导的诱导型热能耗散和减少光照横截面之间建立清晰的光照联系。这种调节功能吸收横截面可以通过改变的LHCL蛋白表达来调节响应于环境条件。我们的结果提供了对迅速诱导的热能耗散过程及其在硅藻中的机制影响的全面了解。

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