Key Laboratory of Bio‑Resources and Eco‑Environment of Ministry of Education, College of Life Sciences, Sichuan University, Chengdu, 610065, China.
College of Resources Environment and Chemistry, Chuxiong Normal University, Chuxiong, 675000, China.
BMC Plant Biol. 2024 Feb 12;24(1):106. doi: 10.1186/s12870-024-04784-4.
The genus Libanotis Haller ex Zinn, nom. cons., a contentious member of Apiaceae, encompasses numerous economically and medicinally significant plants, comprising approximately 30 species distributed across Eurasia. Despite many previous taxonomic insights into it, phylogenetic studies of the genus are still lacking. And the establishment of a robust phylogenetic framework remains elusive, impeding advancements and revisions in the taxonomic system for this genus. Plastomes with greater variability in their genetic characteristics hold promise for building a more robust Libanotis phylogeny.
During our research, we sequenced, assembled, and annotated complete plastomes for twelve Libanotis species belong to three sections and two closely related taxa. We conducted a comprehensive comparative analysis through totally thirteen Libanotis plastomes for the genus, including an additional plastome that had been published. Our results suggested that Libanotis plastome was highly conserved between different subclades, while the coding regions were more conserved than the non-coding regions, and the IR regions were more conserved than the single copy regions. Nevertheless, eight mutation hotspot regions were identified among plastomes, which can be considered as candidate DNA barcodes for accurate species identification in Libanotis. The phylogenetic analyses generated a robustly framework for Libanotis and revealed that Libanotis was not a monophyletic group and their all three sections were polygenetic. Libanotis schrenkiana was sister to L. sibirica, type species of this genus, but the remainders scattered within Selineae.
The plastomes of Libanotis exhibited a high degree of conservation and was effective in enhancing the support and resolution of phylogenetic analyses within this genus. Based on evidence from both phylogeny and morphology, we propose the recognition of "Libanotis sensu stricto" and provide taxonomic recommendations for other taxa that previously belonged to Libanotis. In conclusion, our study not only revealed the phylogenetic position and plastid evolution of Libanotis, but also provided new insights into the phylogeny of the family Apiaceae and phylogenetic relationships within the tribe Selineae.
属Libanotis Haller ex Zinn,命名共识,是伞形科有争议的成员,包含许多经济和药用重要的植物,约有 30 种分布在欧亚大陆。尽管以前对它进行了许多分类学研究,但该属的系统发育研究仍然缺乏。并且一个稳健的系统发育框架的建立仍然难以捉摸,阻碍了这个属的分类系统的发展和修订。具有更大遗传特征变异性的质体有望建立更稳健的Libanotis 系统发育。
在我们的研究过程中,我们对属于三个部分和两个密切相关类群的十二个Libanotis 种进行了完整质体的测序、组装和注释。我们通过对属内的十三个Libanotis 质体进行全面的比较分析,包括一个已发表的额外质体。我们的结果表明,Libanotis 质体在不同亚群之间高度保守,而编码区比非编码区更保守,IR 区比单拷贝区更保守。尽管如此,在质体中还是确定了八个突变热点区,这可以被认为是 Libanotis 中准确物种鉴定的候选 DNA 条形码。系统发育分析为 Libanotis 生成了一个稳健的框架,并表明 Libanotis 不是一个单系群,它们的三个部分都是多系的。Libanotis schrenkiana 与该属的模式种 L. sibirica 姐妹关系,但其余的种则散布在 Selineae 中。
Libanotis 的质体表现出高度的保守性,有效地增强了该属内系统发育分析的支持和分辨率。基于系统发育和形态学的证据,我们提出了“Libanotis sensu stricto”的识别,并对以前属于 Libanotis 的其他类群提出了分类建议。总之,我们的研究不仅揭示了 Libanotis 的系统发育地位和质体进化,而且为伞形科和 Selineae 族的系统发育关系提供了新的见解。