Zhang Wen-Heng, Chen Zhi-Duan, Li Jian-Hua, Chen Hu-Biao, Tang Yan-Cheng
Laboratory of Systematic and Evolutionary Botany, Institute of Botany, The Chinese Academy of Sciences, Beijing 100093, People's Republic of China.
Mol Phylogenet Evol. 2003 Feb;26(2):176-89. doi: 10.1016/s1055-7903(02)00303-2.
Sequences of the chloroplast trnL-F region and 3(') end ndhF gene were used to elucidate phylogenetic relationships and the delimitation of families within Dipsacales s.l. Parsimony analyses of individual and combined data were conducted using maximum parsimony method. The most parsimonious tree based on combined trnL-F and 3(') end ndhF data set recognizes seven major clades of Dipsacales s.l. with the following relationships: Apiales (Adoxaceae ((Diervillaceae, Caprifoliaceae s.str.) (Linnaeaceae (Morinaceae (Dipsacaceae, Valerianaceae))))). Both Sambucus and Viburnum have close relationships with Adoxaceae, supporting their inclusion in this family. Caprifoliaceae s.l. (excluding Sambucus and Viburnum) is polyphyletic, and comprises three clades or families, i.e., Linnaeaceae (Abelia, Dipelta, Kolkwitzia, and Linnaea), Diervillaceae (Weigela and Diervilla) and Caprifoliaceae s.str. (Heptacodium, Leycesteria, Lonicera, Symphoricarpos, and Triosteum). This study focuses on the systematic position of Heptacodium, Triplostegia, and Morinaceae; and suggests that Heptacodium is closely related to the other Caprifoliaceae s.str.; Triplostegia is a sister to Dipsacaceae; Morinaceae, which has an affinity with Dipsacaceae, is possibly a sister group with Dipsacaceae-Valerianaceae clade. Our results are highly congruent with those of and.
利用叶绿体trnL-F区域和ndhF基因3(')端序列来阐明川续断目广义范围内科间的系统发育关系和界定。使用最大简约法对单个数据和合并数据进行简约分析。基于trnL-F和ndhF基因3(')端合并数据集的最简约树识别出川续断目广义范围内的七个主要分支,其关系如下:伞形目(五福花科(((毛核木科,狭义忍冬科)(北极花科(刺参科(川续断科,败酱科))))))。接骨木属和荚蒾属均与五福花科关系密切,支持将它们归入该科。广义忍冬科(不包括接骨木属和荚蒾属)是多系的,包含三个分支或科,即北极花科(六道木属、双盾木属、猬实属和北极花属)、毛核木科(锦带花属和毛核木属)和狭义忍冬科(七子花属、藏花忍冬属、忍冬属、雪果属和莛子藨属)。本研究聚焦于七子花属、双参属和刺参科的系统位置;并表明七子花属与其他狭义忍冬科关系密切;双参属是川续断科的姊妹类群;与川续断科有亲缘关系的刺参科可能是川续断科-败酱科分支的姊妹类群。我们的结果与[相关研究]的结果高度一致。