Phylogeny and infrageneric classification of Clerodendrum (Lamiaceae)

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-08-23 DOI:10.1093/botlinnean/boad045
Jiratthi Satthaphorn, Alan J Paton, Alexandre R Zuntini, Robyn S Cowan, Charan Leeratiwong
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Abstract

Abstract The infrageneric classification of the genus Clerodendrum (Lamiaceae) has been highly problematic due to different concepts and subdivisions being applied to the treatment of Asian, Australian, and African species. Earlier molecular phylogenetic studies based on Sanger sequencing and limited sampling have indicated that previous morphology-based infrageneric classifications are not congruent with the phylogeny due to morphological convergence in many lineages. Advances in high-throughput DNA sequencing provide more information allowing more robust phylogenetic reconstruction at larger scale. We present the first comprehensive phylogenetic study of Clerodendrum that includes representatives of all previously recognized infrageneric taxa and using targeted sequencing data obtained from the Angiosperms353 enrichment to resolve the phylogenetic relationships. In agreement with previous phylogenetic work, our phylogeny shows that Asian and Australian species form a sister clade to an African Clade. Clerodendrum is monophyletic with the exclusion of some tropical coastal species, including some Australian species, which fall within a clade containing Volkameria and New World genera. We recognize two subgenera: subgen. Clerodendrum for Asian and Australian species and the new subgen. Afroclerodendrum for African and Malagasy species. Our findings support an infrageneric classification of Clerodendrum with a total of 13 sections based on molecular phylogenetic evidence and morphology that clearly accommodate the Asian, remaining Australian, and African species. Of these, we propose three new sections: sect. Albiflora, sect. Fortunata and sect. Megaflora for clades presenting unique morphological characters. The sectional classification and taxonomic consequences are discussed.
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木蕨科植物的系统发育及属内分类
由于对亚洲、澳大利亚和非洲三种植物的分类采用了不同的概念和细分方法,因此对木蕨属(Lamiaceae)的内属分类一直存在很大的问题。早期基于Sanger测序和有限采样的分子系统发育研究表明,由于许多谱系的形态趋同,先前基于形态学的非谱系分类与系统发育不一致。高通量DNA测序的进步提供了更多的信息,允许在更大范围内进行更稳健的系统发育重建。我们提出了第一个全面的Clerodendrum系统发育研究,包括所有以前认识到的矮属分类群的代表,并使用从被子植物353富集中获得的目标测序数据来解决系统发育关系。与以前的系统发育工作一致,我们的系统发育表明亚洲和澳大利亚的物种形成了非洲进化支的姐妹进化支。Clerodendrum是单系的,不包括一些热带沿海物种,包括一些澳大利亚物种,它们属于一个包含Volkameria和New World属的分支。我们认识到两个亚属:亚属。标题亚洲和澳大利亚种和新亚属的树茎。非洲和马达加斯加种的非洲蕨。基于分子系统发育证据和形态学,我们的研究结果支持了Clerodendrum的亚属分类,该分类共有13个部分,明确包括亚洲、剩余的澳大利亚和非洲物种。在这些分支中,我们提出了三个具有独特形态特征的分支:Albiflora节、Fortunata节和Megaflora节。讨论了断面分类和分类学结果。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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