The Franciszek Górski Institute of Plant Physiology, Polish Academy of Sciences, Niezapominajek 21, 30-239, Kraków, Poland.
Institute of Botany, Faculty of Biology, Jagiellonian University, Gronostajowa 9, 30-387, Kraków, Poland.
Photosynth Res. 2022 Sep;153(3):163-175. doi: 10.1007/s11120-022-00917-8. Epub 2022 Jun 1.
The molecular evolution concerns coding sequences (CDSs) of genes and may affect the structure and function of proteins. Non-uniform use of synonymous codons during translation, known as codon usage bias (CUB), depends on the balance between mutations bias and natural selection. We estimated different CUB indices, i.e. the effective number of codons (ENC), G + C content in the 3rd codon positions (GC), and codon adaptation index for CDSs of intrinsic proteins of photosystem II (PSII), such as psbA (D1), psbD (D2), psbB (CP47), psbC (CP43), and CDSs of the extrinsic protein psbO (PsbO). These genes occur in all organisms that perform oxygenic photosynthesis (OP) on Earth: cyanobacteria, algae and plants. Comparatively, a similar analysis of codon bias for CDSs of L and M subunits that constitute the core proteins of the type II reaction centre (RCII) in anoxygenic bacteria was performed. Analysis of CUB indices and determination of the number of synonymous (d) and nonsynonymous substitutions (d) in all analysed CDSs indicated that the crucial PSII and RCII proteins were under strong purifying (negative) selection in course of evolution. Purifying selection was also estimated for CDSs of atpA, the α subunit of ATP synthase, an enzyme that was most likely already present in the last universal common ancestor (LUCA). The data obtained point to an ancient origin of OP, even in the earliest stages of the evolution of life on Earth.
分子进化涉及基因的编码序列(CDS),可能影响蛋白质的结构和功能。在翻译过程中,同义密码子的非均匀使用,即密码子使用偏性(CUB),取决于突变偏性和自然选择之间的平衡。我们估计了不同的 CUB 指数,即有效密码子数(ENC)、第三密码子位置的 G+C 含量(GC)和光系统 II(PSII)内在蛋白的密码子适应指数,如 psbA(D1)、psbD(D2)、psbB(CP47)、psbC(CP43)和外蛋白 psbO(PsbO)的 CDS。这些基因存在于地球上所有进行放氧光合作用(OP)的生物中:蓝细菌、藻类和植物。相比之下,我们还对构成厌氧细菌 II 型反应中心(RCII)核心蛋白的 L 和 M 亚基 CDS 的密码子偏性进行了类似的分析。CUB 指数分析和所有分析 CDS 中同义(d)和非同义(d)取代数的确定表明,关键的 PSII 和 RCII 蛋白在进化过程中受到强烈的净化(负)选择。atpA 的 CDS 也估计受到了净化选择,atpA 编码 ATP 合酶的α亚基,该酶很可能已经存在于最后一个共同祖先(LUCA)中。这些数据表明,OP 的起源非常古老,甚至在地球生命进化的早期阶段也是如此。