Faculty of Engineering, Department of Bioengineering, Ege University, Izmir, Turkey.
Sci Rep. 2023 Sep 11;13(1):14959. doi: 10.1038/s41598-023-41287-y.
Lens lamottei is a member of the Fabaceae family and the second gene pool of the genus Lens. The environmental factors that drove the divergence among wild and cultivated species have been studied extensively. Recent research has focused on genomic signatures associated with various phenotypes with the acceleration of next-generation techniques in molecular profiling. Therefore, in this study, we provide the complete sequence of the chloroplast genome sequence in the wild Lens species L. lamottei with a deep coverage of 713 × next-generation sequencing (NGS) data for the first time. Compared to the cultivated species, Lens culinaris, we identified synonymous, and nonsynonymous changes in the protein-coding regions of the genes ndhB, ndhF, ndhH, petA, rpoA, rpoC2, rps3, and ycf2 in L. lamottei. Phylogenetic analysis of chloroplast genomes of various plants under Leguminosae revealed that L. lamottei and L. culinaris are closest to one another than to other species. The complete chloroplast genome of L. lamottei also allowed us to reanalyze previously published transcriptomic data, which showed high levels of gene expression for ATP-synthase, rubisco, and photosystem genes. Overall, this study provides a deeper insight into the diversity of Lens species and the agricultural importance of these plants through their chloroplast genomes.
Lens lamottei 是豆科植物的一员,也是属 Lens 的第二基因库。对驱动野生和栽培物种分化的环境因素进行了广泛研究。随着下一代分子图谱技术的加速发展,最近的研究集中在与各种表型相关的基因组特征上。因此,在这项研究中,我们首次提供了野生 Lens 物种 L. lamottei 的完整叶绿体基因组序列,深度覆盖了 713×下一代测序 (NGS) 数据。与栽培物种 Lens culinaris 相比,我们在 L. lamottei 的基因 ndhB、ndhF、ndhH、petA、rpoA、rpoC2、rps3 和 ycf2 的蛋白质编码区中鉴定了同义和非同义变化。对豆科植物各种植物叶绿体基因组的系统发育分析表明,L. lamottei 和 L. culinaris 彼此之间的亲缘关系比与其他物种更近。L. lamottei 的完整叶绿体基因组还允许我们重新分析以前发表的转录组数据,该数据显示 ATP 合酶、Rubisco 和光合基因的高水平表达。总的来说,这项研究通过它们的叶绿体基因组深入了解了 Lens 物种的多样性和这些植物的农业重要性。