Phylogeny, origin and diversification of the Dasylirion genus based on matK and rbcL sequences

IF 1.2 4区 生物学 Q3 PLANT SCIENCES Plant Genetic Resources: Characterization and Utilization Pub Date : 2022-10-11 DOI:10.1017/s1479262122000181
Yadhira C. Ortiz-Covarrubias, M. M. Orozco-Sifuentes, Dulce V. Mendoza-Rodríguez, José A. Villlarreal-Quintanilla, Octavio Martínez, Fernando Hernández-Godínez, María de Jesús Jáuregui-González, M. Reyes-Valdés
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Abstract

The Dasylirion genus is highly represented in the arid and semi-arid regions of Mexico and USA, playing important ecological and economical roles. Inferring the evolutionary patterns of this group will eventually facilitate understanding biological phenomena and outlining conservation and usage strategies. We performed a molecular phylogenetic analysis based on two chloroplast DNA regions: maturase-K gene (matK) and the large subunit of ribulose-1,5-bisphosphate carboxylase gene (rbcL). We constructed a phylogenetic tree by maximum likelihood with GTR as the sequence substitution model and a relaxed clock, inferred diversification patterns by lineage through time and explored the diversification rates of Dasylirion by the Yule model. The study included 11 species of the genus, which represent 50% of all its known species. We used two calibration points to date the tree, one based on fossil records of Acorus gramineus, and the other on the estimated stem age of the Yucca genus. The combined sequences of the two partial genes comprised 1455 bp and 18 polymorphic sites. We estimated an average substitution rate of 0.0005 nucleotide per million years for the concatenated DNA sequences. The molecular dating analysis estimated that the Dasylirion genus appeared more than 5.46 million years ago, with a rate of diversification of 0.0466 net speciation events per million years. The estimated age represents a lower bound, since not all Dasylirion species are included. These findings are consistent with other origin and diversification hypotheses for arid-land Asparagaceae in the Mexican highlands as a result of geomorphological events in North America.
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基于matK和rbcL序列的水蛭属的系统发育、起源和分化
该属植物在墨西哥和美国的干旱和半干旱地区分布广泛,具有重要的生态和经济作用。推断这一群体的进化模式将最终有助于理解生物现象,并概述保护和利用策略。我们基于两个叶绿体DNA区域:成熟酶- k基因(matK)和核酮糖-1,5-二磷酸羧化酶基因(rbcL)的大亚基进行了分子系统发育分析。以GTR为序列替代模型,采用松弛时钟法构建了最大似然进化树,通过谱系的时间序列推断多样化模式,并利用Yule模型探讨了Dasylirion的多样化率。该研究包括该属的11种,占其所有已知物种的50%。我们使用了两个校准点来确定树的年代,一个基于Acorus gramineus的化石记录,另一个基于丝兰属的估计茎龄。两个部分基因的组合序列包含1455 bp和18个多态性位点。我们估计连接的DNA序列的平均取代率为每百万年0.0005个核苷酸。分子测年分析估计,Dasylirion属出现在超过546万年前,每百万年净物种形成事件的多样化率为0.0466。估计的年龄是一个下限,因为并不是所有的大飞龙物种都包括在内。这些发现与其他关于墨西哥高地旱地芦笋科的起源和多样化假设是一致的,这是北美地貌事件的结果。
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来源期刊
Plant Genetic Resources: Characterization and Utilization
Plant Genetic Resources: Characterization and Utilization Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
2.80
自引率
0.00%
发文量
29
审稿时长
>12 weeks
期刊介绍: Plant Genetic Resources is an international journal which provides a forum for describing the application of novel genomic technologies, as well as their integration with established techniques, towards the understanding of the genetic variation captured in both in situ and ex situ collections of crop and non-crop plants; and for the airing of wider issues relevant to plant germplasm conservation and utilisation. We particularly welcome multi-disciplinary approaches that incorporate both a technical and a socio-economic focus. Technical aspects can cover developments in technologies of potential or demonstrated relevance to the analysis of variation and diversity at the phenotypic and genotypic levels.
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