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光系统 II 单体天线 CP26 在衣藻的非光化学猝灭中起着关键作用。

Photosystem II monomeric antenna CP26 plays a key role in nonphotochemical quenching in Chlamydomonas.

机构信息

Dipartimento di Biotecnologie, Università di Verona, Verona 37134, Italy.

Department of Life Science, Research Institute for Natural Sciences, Hanyang University, Seoul 04763, South Korea.

出版信息

Plant Physiol. 2023 Sep 22;193(2):1365-1380. doi: 10.1093/plphys/kiad391.

Abstract

Thermal dissipation of excess excitation energy, called nonphotochemical quenching (NPQ), is 1 of the main photoprotective mechanisms in oxygenic photosynthetic organisms. Here, we investigated the function of the monomeric photosystem II (PSII) antenna protein CP26 in photoprotection and light harvesting in Chlamydomonas reinhardtii, a model organism for green algae. We used CRISPR/Cas9 genome editing and complementation to generate cp26 knockout mutants (named k6#) that did not negatively affect CP29 accumulation, which differed from previous cp26 mutants, allowing us to compare mutants specifically deprived of CP26, CP29, or both. The absence of CP26 partially affected PSII activity, causing reduced growth at low or medium light but not at high irradiances. However, the main phenotype observed in k6# mutants was a more than 70% reduction of NPQ compared to the wild type (Wt). This phenotype was fully rescued by genetic complementation and complemented strains accumulating different levels of CP26, demonstrating that ∼50% of CP26 content, compared to the Wt, was sufficient to restore the NPQ capacity. Our findings demonstrate a pivotal role for CP26 in NPQ induction, while CP29 is crucial for PSII activity. The genetic engineering of these 2 proteins could be a promising strategy to regulate the photosynthetic efficiency of microalgae under different light regimes.

摘要

过剩激发能的耗散,称为非光化学猝灭(NPQ),是产氧光合作用生物的主要光保护机制之一。在这里,我们研究了单体光系统 II(PSII)天线蛋白 CP26 在莱茵衣藻中的光保护和光捕获中的功能,莱茵衣藻是一种绿藻模式生物。我们使用 CRISPR/Cas9 基因组编辑和互补来产生 cp26 敲除突变体(命名为 k6#),该突变体不会对 CP29 的积累产生负面影响,这与以前的 cp26 突变体不同,使我们能够专门比较缺乏 CP26、CP29 或两者的突变体。CP26 的缺失部分影响 PSII 活性,导致在低光或中光下生长减少,但在高光强下没有影响。然而,在 k6#突变体中观察到的主要表型是与野生型(Wt)相比,NPQ 降低了 70%以上。这种表型通过遗传互补和积累不同水平 CP26 的互补菌株得到完全挽救,表明与 Wt 相比,CP26 含量的约 50%足以恢复 NPQ 能力。我们的发现表明 CP26 在 NPQ 诱导中起着关键作用,而 CP29 对于 PSII 活性至关重要。这两种蛋白的基因工程可能是调节微藻在不同光照条件下光合作用效率的一种有前途的策略。

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