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三角褐指藻通过精细调控 LHCx 和叶黄素循环色素合成来响应动态光调节非光化学荧光猝灭能力。

The diatom Phaeodactylum tricornutum adjusts nonphotochemical fluorescence quenching capacity in response to dynamic light via fine-tuned Lhcx and xanthophyll cycle pigment synthesis.

机构信息

UMR7266 'LIENSs', CNRS Université de La Rochelle, Institut du Littoral et de l'Environnement, 2 rue Olympe de Gouges, La Rochelle, 17000, France.

Zukunftskolleg, Pflanzliche Ökophysiologie, Universität Konstanz, Konstanz, 78457, Germany.

出版信息

New Phytol. 2017 Apr;214(1):205-218. doi: 10.1111/nph.14337. Epub 2016 Nov 21.

DOI:10.1111/nph.14337
PMID:27870063
Abstract

Diatoms contain a highly flexible capacity to dissipate excessively absorbed light by nonphotochemical fluorescence quenching (NPQ) based on the light-induced conversion of diadinoxanthin (Dd) into diatoxanthin (Dt) and the presence of Lhcx proteins. Their NPQ fine regulation on the molecular level upon a shift to dynamic light conditions is unknown. We investigated the regulation of Dd + Dt amount, Lhcx gene and protein synthesis and NPQ capacity in the diatom Phaeodactylum tricornutum after a change from continuous low light to 3 d of sine (SL) or fluctuating (FL) light conditions. Four P. tricornutum strains with different NPQ capacities due to different expression of Lhcx1 were included. All strains responded to dynamic light comparably, independently of initial NPQ capacity. During SL, NPQ capacity was strongly enhanced due to a gradual increase of Lhcx2 and Dd + Dt amount. During FL, cells enhanced their NPQ capacity on the first day due to increased Dd + Dt, Lhcx2 and Lhcx3; already by the second day light acclimation was accomplished. While quenching efficiency of Dt was strongly lowered during SL conditions, it remained high throughout the whole FL exposure. Our results highlight a more balanced and cost-effective photoacclimation strategy of P. tricornutum under FL than under SL conditions.

摘要

硅藻具有高度灵活的能力,可以通过非光化学荧光猝灭(NPQ)来耗散过多吸收的光,这是基于二氢玉米黄质(Dd)向硅藻黄素(Dt)的光诱导转化和 Lhcx 蛋白的存在。它们在分子水平上对动态光照条件的 NPQ 精细调节尚不清楚。我们研究了在从连续低光到正弦(SL)或波动(FL)光条件变化后,三角褐指藻中 Dd + Dt 量、Lhcx 基因和蛋白质合成以及 NPQ 能力的调节。由于 Lhcx1 的不同表达,包含了具有不同 NPQ 能力的四种三角褐指藻菌株。所有菌株对动态光的反应相似,与初始 NPQ 能力无关。在 SL 期间,由于 Lhcx2 和 Dd + Dt 量的逐渐增加,NPQ 能力得到了强烈增强。在 FL 期间,由于 Dd + Dt、Lhcx2 和 Lhcx3 的增加,细胞在第一天就增强了它们的 NPQ 能力;到第二天,光驯化就完成了。虽然在 SL 条件下 Dt 的猝灭效率大大降低,但在整个 FL 暴露过程中仍保持较高水平。我们的研究结果突出了三角褐指藻在 FL 条件下比在 SL 条件下具有更平衡和更具成本效益的光适应策略。

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