Suppr超能文献

基于叶绿体 MATK 编码序列和侧翼 TRNK 内含子间隔区的金合欢属(豆科:含羞草亚科)的分子系统发育。

Molecular phylogenetics of Acacia (Fabaceae: Mimosoideae) based on the chloroplast MATK coding sequence and flanking TRNK intron spacer regions.

机构信息

Centre for Plant Biodiversity Research, CSIRO Plant Industry, GPO Box 1600, Canberra, Australia 2601.

出版信息

Am J Bot. 2001 Apr;88(4):697-705.

Abstract

The tribe Acacieae (Fabaceae: Mimosoideae) contains two genera, the monotypic African Faidherbia and the pantropical Acacia, which comprise about 1200 species with over 950 confined to Australia. As currently recognized, the genus Acacia is subdivided into three subgenera: subg. Acacia, subg. Aculeiferum, and the predominantly Australian subg. Phyllodineae. Morphological studies have suggested the tribe Acacieae and genus Acacia are artificial and have a close affinity to the tribe Ingeae. Based on available data there is no consensus on whether Acacia should be subdivided. Sequence analysis of the chloroplast trnK intron, including the matK coding region and flanking noncoding regions, indicate that neither the tribe Acacieae nor the genus Acacia are monophyletic. Two subgenera are monophyletic; section Filicinae of subgenus Aculeiferum does not group with taxa of the subgenus. Section Filicinae, eight Ingeae genera, and Faidherbia form a weakly supported paraphyletic grade with respect to subg. Phyllodineae. Acacia subg. Aculeiferum (s. s.) is sister to the grade. These data suggest that characters currently used to differentiate taxa at the tribal, generic, and subgeneric levels are polymorphic and homoplasious in cladistic analyses.

摘要

含羞草族(豆科:含羞草亚科)包含两个属,即单种的非洲槐属和泛热带的金合欢属,它们包含约 1200 种,其中超过 950 种局限于澳大利亚。如目前所认识的,金合欢属分为三个亚属:亚属金合欢、亚属多刺金合欢和主要分布在澳大利亚的亚属 Phyllodineae。形态学研究表明,含羞草族和金合欢属是人为的,与含羞草族有密切的亲缘关系。根据现有数据,对于金合欢属是否应该细分尚无共识。叶绿体 trnK 内含子,包括 matK 编码区和侧翼非编码区的序列分析表明,含羞草族和金合欢属都不是单系的。两个亚属是单系的;多刺金合欢亚属的 Filicinae 节与该亚属的其他分类群没有分组。Filicinae 节、八个含羞草族属和非洲槐属与 Phyllodineae 亚属形成一个弱支持的并系群。多刺金合欢亚属(s. s.)是这个并系群的姐妹群。这些数据表明,目前用于区分族、属和亚属分类群的特征在系统发育分析中是多态的和同形的。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验