Kumazawa Minoru, Ifuku Kentaro
Graduate School of Agriculture, Kyoto University, Kyoto, Kyoto 606-8502, Japan.
iScience. 2024 Sep 13;27(10):110897. doi: 10.1016/j.isci.2024.110897. eCollection 2024 Oct 18.
Red algae and the secondary symbiotic algae that engulfed a red alga as an endosymbiont are called red-lineage algae. Several photosystem (PS) I-light-harvesting complex I (LHCI) structures have been reported from red-lineage algae-two red algae (Cyanidiophyceae) and (Rhodophytina), a diatom, and a Cryptophyte. Here, we clarified the orthologous relation of LHCIs by combining a detailed phylogenetic analysis and the structural information of PSI-LHCI. We found that the seven Lhcr groups in LHCI are conserved in Rhodophytina; furthermore, during both genome reduction in Cyanidioschyzonales and endosymbiosis leading to Cryptophyta, some LHCIs were lost and replaced by existing or differentiated LHCIs. We denominate "neolocalization" to these examples of flexible reorganization of LHCIs. This study provides insights into the evolutionary process of LHCIs in red-lineage algae and clarifies the need for both molecular phylogeny and structural information to elucidate the plausible evolutionary history of LHCI.
红藻以及作为内共生体吞噬红藻的次生共生藻类被称为红系藻类。已报道了几种来自红系藻类的光系统(PS)I - 光捕获复合体I(LHCI)结构——两种红藻(蓝藻纲)和(红藻门)、一种硅藻以及一种隐藻。在此,我们通过结合详细的系统发育分析和PSI - LHCI的结构信息,阐明了LHCI的直系同源关系。我们发现,LHCI中的七个Lhcr组在红藻门中是保守的;此外,在蓝藻目基因组缩减以及导致隐藻门的内共生过程中,一些LHCI丢失,并被现有的或分化的LHCI所取代。我们将LHCI这种灵活重组的例子称为“新定位”。本研究为红系藻类中LHCI的进化过程提供了见解,并阐明了分子系统发育和结构信息对于阐明LHCI合理进化历史的必要性。