Systems and Computing Engineering Department, Universidad de los Andes, Bogotá, Colombia.
Departamento de Agronomía, Facultad de Ciencias Agrarias, Universidad Nacional de Colombia, Bogotá, Colombia.
Commun Biol. 2023 Aug 2;6(1):803. doi: 10.1038/s42003-023-05144-y.
The domestication process in lima bean (Phaseolus lunatus L.) involves two independent events, within the Mesoamerican and Andean gene pools. This makes lima bean an excellent model to understand convergent evolution. The mechanisms of adaptation followed by Mesoamerican and Andean landraces are largely unknown. Genes related to these adaptations can be selected by identification of selective sweeps within gene pools. Previous genetic analyses in lima bean have relied on Single Nucleotide Polymorphism (SNP) loci, and have ignored transposable elements (TEs). Here we show the analysis of whole-genome sequencing data from 61 lima bean accessions to characterize a genomic variation database including TEs and SNPs, to associate selective sweeps with variable TEs and to predict candidate domestication genes. A small percentage of genes under selection are shared among gene pools, suggesting that domestication followed different genetic avenues in both gene pools. About 75% of TEs are located close to genes, which shows their potential to affect gene functions. The genetic structure inferred from variable TEs is consistent with that obtained from SNP markers, suggesting that TE dynamics can be related to the demographic history of wild and domesticated lima bean and its adaptive processes, in particular selection processes during domestication.
菜豆(Phaseolus lunatus L.)的驯化过程涉及中美洲和安第斯基因库中的两个独立事件。这使得菜豆成为了解趋同进化的理想模型。中美洲和安第斯地方品种的适应机制在很大程度上尚不清楚。可以通过鉴定基因库中的选择清除来选择与这些适应相关的基因。以前在菜豆中的遗传分析依赖于单核苷酸多态性(SNP)位点,并且忽略了转座元件(TEs)。在这里,我们展示了对 61 个菜豆品系的全基因组测序数据的分析,以描述包括 TEs 和 SNPs 的基因组变异数据库,将选择清除与可变 TEs 相关联,并预测候选驯化基因。在基因库中共享的受选择基因的比例很小,这表明在两个基因库中,驯化遵循不同的遗传途径。大约 75%的 TEs 位于基因附近,这表明它们有可能影响基因功能。从可变 TEs 推断出的遗传结构与从 SNP 标记获得的遗传结构一致,这表明 TE 动力学可以与野生和驯化菜豆的种群历史及其适应过程(特别是驯化过程中的选择过程)相关。