Division of Forest Biodiversity, Korea National Arboretum, Pocheon, Republic of Korea.
PLoS One. 2023 Sep 21;18(9):e0289625. doi: 10.1371/journal.pone.0289625. eCollection 2023.
Chloroplast genomes are valuable for inferring evolutionary relationships. We report the complete chloroplast genomes of 36 Corydalis spp. and one Fumaria species. We compared these genomes with 22 other taxa and investigated the genome structure, gene content, and evolutionary dynamics of the chloroplast genomes of 58 species, explored the structure, size, repeat sequences, and divergent hotspots of these genomes, conducted phylogenetic analysis, and identified nine types of chloroplast genome structures among Corydalis spp. The ndh gene family suffered inversion and rearrangement or was lost or pseudogenized throughout the chloroplast genomes of various Corydalis species. Analysis of five protein-coding genes revealed simple sequence repeats and repetitive sequences that can be potential molecular markers for species identification. Phylogenetic analysis revealed three subgenera in Corydalis. Subgenera Cremnocapnos and Sophorocapnos represented the Type 2 and 3 genome structures, respectively. Subgenus Corydalis included all types except type 3, suggesting that chloroplast genome structural diversity increased during its differentiation. Despite the explosive diversification of this subgenus, most endemic species collected from the Korean Peninsula shared only one type of genome structure, suggesting recent divergence. These findings will greatly improve our understanding of the chloroplast genome of Corydalis and may help develop effective molecular markers.
叶绿体基因组对于推断进化关系很有价值。我们报告了 36 种紫堇属植物和 1 种紫堇属植物的完整叶绿体基因组。我们将这些基因组与 22 个其他分类群进行了比较,并研究了 58 个物种的叶绿体基因组的结构、基因组成和进化动态,探索了这些基因组的结构、大小、重复序列和分歧热点,进行了系统发育分析,并在紫堇属植物中鉴定了九种叶绿体基因组结构。ndh 基因家族在各种紫堇属植物的叶绿体基因组中经历了反转和重排,或者丢失或假基因化。对五个蛋白质编码基因的分析揭示了简单重复序列和重复序列,这些序列可以作为物种鉴定的潜在分子标记。系统发育分析表明,紫堇属植物分为三个亚属。亚属 Cremnocapnos 和 Sophorocapnos 分别代表类型 2 和 3 的基因组结构。亚属 Corydalis 包括除类型 3 以外的所有类型,这表明在其分化过程中,叶绿体基因组结构多样性增加。尽管这个亚属经历了爆炸性的多样化,但从朝鲜半岛收集的大多数特有种只共享一种基因组结构,这表明它们是最近分化的。这些发现将极大地提高我们对紫堇属植物叶绿体基因组的认识,并可能有助于开发有效的分子标记。