State Key Laboratory of Marine Resource Utilization in South China Sea, College of Oceanology, Hainan University, Haikou, Hainan, China.
Howard Hughes Medical Institute, Department of Plant and Microbial Biology, University of California, Berkeley, CA, USA.
Nat Commun. 2021 Jan 29;12(1):679. doi: 10.1038/s41467-021-20967-1.
Diverse algae of the red lineage possess chlorophyll a-binding proteins termed LHCR, comprising the PSI light-harvesting system, which represent an ancient antenna form that evolved in red algae and was acquired through secondary endosymbiosis. However, the function and regulation of LHCR complexes remain obscure. Here we describe isolation of a Nannochloropsis oceanica LHCR mutant, named hlr1, which exhibits a greater tolerance to high-light (HL) stress compared to the wild type. We show that increased tolerance to HL of the mutant can be attributed to alterations in PSI, making it less prone to ROS production, thereby limiting oxidative damage and favoring growth in HL. HLR1 deficiency attenuates PSI light-harvesting capacity and growth of the mutant under light-limiting conditions. We conclude that HLR1, a member of a conserved and broadly distributed clade of LHCR proteins, plays a pivotal role in a dynamic balancing act between photoprotection and efficient light harvesting for photosynthesis.
红藻谱系中的多种藻类拥有被称为 LHCR 的叶绿素 a 结合蛋白,它组成了 PSI 光捕获系统,这是一种古老的天线形式,在红藻中进化而来,并通过二次内共生获得。然而,LHCR 复合物的功能和调节仍然不清楚。在这里,我们描述了分离出一种海洋拟球藻 LHCR 突变体,命名为 hlr1,与野生型相比,它对高光(HL)胁迫表现出更高的耐受性。我们表明,突变体对 HL 的耐受性增加可以归因于 PSI 的改变,使其不易产生 ROS,从而限制氧化损伤并有利于 HL 下的生长。HLR1 缺乏会削弱 PSI 的光捕获能力,并限制突变体在光照限制条件下的生长。我们得出结论,HLR1 是一个保守且广泛分布的 LHCR 蛋白家族的成员,在光合作用中光保护和高效光捕获之间的动态平衡中起着关键作用。