重述兰科植物主干系统发育及花序进化趋势:来自同源核基因的新见解。

IF 3.9 2区 生物学 Q1 EVOLUTIONARY BIOLOGY
Cladistics Pub Date : 2025-02-18 DOI:10.1111/cla.12604
Xin-Jie Jin, Yan Yu, Han-Yang Lin, Feng-Luan Liu, Hai-feng Wang, Qing Ma, Yang Chen, Yong-Hua Zhang, Pan Li
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引用次数: 0

摘要

叶香科被子植物族花序复杂,具有重要的药用和经济价值。Elsholtzieae内部的关系,包括Elsholtzia和Keiskea的单系关系,以及Mosla, Keiskea和Perilla之间的关系,仍然不确定,阻碍了对部落内部花序进化的深入研究。利用杂交捕获测序和深度基因组扫描数据分析,利用56种Elsholtzieae的279个同源核位点重建了Elsholtzieae的系统发育。我们使用串联、凝聚和网络方法来评估关系中的不确定性。利用时间校准的系统发育,我们重建了祖先的花序特征,以阐明它们在部落内的进化模式。我们的分析一致支持Elsholtzia属的类。PhyloNetworks和splittree的系统发育网络分析表明,Elsholtzieae主要谱系之间存在网状事件。在ASTRAL(精确种树算法)、ML(最大似然)和MP(最大简约)分析中观察到的Keiskea不稳定多聚现象可能与紫苏和紫苏的遗传渗入有关。通过对Elsholtzieae植物系统发育树的分析,发现其花序的进化轨迹呈现出多样化的模式,而专门化是这一过程的一个方面。Elsholtzieae支持这样的假设,即压缩花序是通过对花序轴的连续压缩而从更大更复杂的祖先形式进化而来的。此外,部落内的某些血统显示出花序简化的趋势,其特征是小花数量减少。这突出了部落内花序结构进化的专门化和多样性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Revisiting the backbone phylogeny and inferring the evolutionary trends in inflorescence of Elsholtzieae (Lamiaceae): new insights from orthologous nuclear genes

The angiosperm tribe of Elsholtzieae (Lamiaceae) is characterized by complex inflorescences and has notable medicinal and economic significance. Relationships within Elsholtzieae, including the monophyly of Elsholtzia and Keiskea, and relationships among Mosla, Keiskea and Perilla, remain uncertain, hindering insights into inflorescence evolution within the tribe. Using hybridization capture sequencing and deep genome skimming data analysis, we reconstruct a phylogeny of Elsholtzieae using 279 orthologous nuclear loci from 56 species. We evaluated uncertainty among relationships using concatenation, coalescent and network approaches. Using a time-calibrated phylogeny, we reconstructed ancestral inflorescence traits to elucidate the patterns in their evolution within the tribe. Our analyses consistently support the paraphyly of the genus Elsholtzia. Phylogenetic network analyses, confirmed by PhyloNetworks and SplitsTree, showed reticulation events among the major lineages of Elsholtzieae. The unstable polyphyly of Keiskea observed in ASTRAL (accurate species tree algorithm), ML (maximum likelihood) and MP (maximum parsimony) analyses may be related to introgression from Perilla and Mosla. Based on the analyses of phylogenetic trees within Elsholtzieae, the evolutionary trajectory of inflorescences demonstrates a pattern of diversification, with specialization as one aspect of this process. Elsholtzieae support the hypothesis that compressed inflorescences evolved from larger and more complex ancestral forms through successive compressions of the inflorescence axis. Additionally, certain lineages within the tribe display a trend towards simplified inflorescences, characterized by a reduction in the number of florets. This highlights both the specialization and the diversity in the evolution of inflorescence structures within the tribe.

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来源期刊
Cladistics
Cladistics 生物-进化生物学
CiteScore
8.60
自引率
5.60%
发文量
34
期刊介绍: Cladistics publishes high quality research papers on systematics, encouraging debate on all aspects of the field, from philosophy, theory and methodology to empirical studies and applications in biogeography, coevolution, conservation biology, ontogeny, genomics and paleontology. Cladistics is read by scientists working in the research fields of evolution, systematics and integrative biology and enjoys a consistently high position in the ISI® rankings for evolutionary biology.
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