Department of Computational Biology, Génopode, University of Lausanne, Lausanne, Switzerland.
Department of Ecology and Evolution, Biophore, University of Lausanne, Lausanne, Switzerland.
J Exp Bot. 2019 Nov 18;70(21):6127-6139. doi: 10.1093/jxb/erz363.
Ribulose-1,5-bisphosphate carboxylase/oxygenase (RuBisCO) is considered to be the main enzyme determining the rate of photosynthesis. The small subunit of the protein, encoded by the rbcS gene, has been shown to influence the catalytic efficiency, CO2 specificity, assembly, activity, and stability of RuBisCO. However, the evolution of the rbcS gene remains poorly studied. We inferred the phylogenetic tree of the rbcS gene in angiosperms using the nucleotide sequences and found that it is composed of two lineages that may have existed before the divergence of land plants. Although almost all species sampled carry at least one copy of lineage 1, genes of lineage 2 were lost in most angiosperm species. We found the specific residues that have undergone positive selection during the evolution of the rbcS gene. We detected intensive coevolution between each rbcS gene copy and the rbcL gene encoding the large subunit of RuBisCO. We tested the role played by each rbcS gene copy on the stability of the RuBisCO protein through homology modelling. Our results showed that this evolutionary constraint could limit the level of divergence seen in the rbcS gene, which leads to the similarity among the rbcS gene copies of lineage 1 within species.
核酮糖-1,5-二磷酸羧化酶/加氧酶(RuBisCO)被认为是决定光合作用速率的主要酶。该蛋白的小亚基由 rbcS 基因编码,已被证明会影响 RuBisCO 的催化效率、CO2 特异性、组装、活性和稳定性。然而,rbcS 基因的进化仍然研究不足。我们使用核苷酸序列推断了被子植物中 rbcS 基因的系统发育树,发现它由两个谱系组成,这两个谱系可能在陆地植物分化之前就已经存在。尽管几乎所有采样的物种都至少携带一个 1 谱系的拷贝,但大多数被子植物物种都丢失了 2 谱系的基因。我们发现了在 rbcS 基因进化过程中经历正选择的特定残基。我们检测到每个 rbcS 基因拷贝与编码 RuBisCO 大亚基的 rbcL 基因之间存在强烈的共进化。我们通过同源建模测试了每个 rbcS 基因拷贝在 RuBisCO 蛋白稳定性方面所起的作用。研究结果表明,这种进化约束可能限制了 rbcS 基因的分化程度,导致了物种内 1 谱系的 rbcS 基因拷贝之间的相似性。