Kyndt Tina, Van Droogenbroeck Bart, Romeijn-Peeters Eliza, Romero-Motochi José Parcemon, Scheldeman Xavier, Goetghebeur Paul, Van Damme Patrick, Gheysen Godelieve
Department of Molecular Biotechnology, Faculty of Bioscience Engineering, Ghent University, Coupure links 653, B-9000 Ghent, Belgium.
Mol Phylogenet Evol. 2005 Nov;37(2):442-59. doi: 10.1016/j.ympev.2005.06.017. Epub 2005 Aug 10.
This study focused on clarifying phylogenetic relationships and evolution within Caricaceae. Our phylogenetic analysis based on nucleotide sequences from the ITS of the ribosomal DNA and three chloroplast fragments (matK, trnL-trnF, and psbA-trnH) included 29 taxa belonging to five genera: the neotropical genera Carica, Vasconcellea, Jarilla, and Jacaratia and the equatorial African genus Cylicomorpha. Having a relatively low mutation rate, matK, and trnL-trnF were used for estimating relationships at the generic level, while intrageneric evolution within Vasconcellea was studied with the more variable ITS and psbA-trnH sequences. Gaps, coded as binary characters, were added to the sequence alignments before performing Maximum Parsimony and Maximum Likelihood analyses. Monophyly of Caricaceae as well as phylogenetic distance between Carica and Vasconcellea species, previously belonging to the same genus, and monophyly of the resurrected genus Vasconcellea were emphasized. Within Vasconcellea, the largest genus of this family, two well-confirmed evolutionary lineages could be discerned: (1) V.xheilbornii, V. weberbaueri, V. stipulata, and V. parviflora and (2) a clade holding all other taxa of the genus. Incongruence between nuclear ITS and chloroplast psbA-trnH datasets, shown to be significantly caused by some taxa of the genus Vasconcellea, indicated that reticulate events in this genus might be more frequent than previously suspected. Moreover, intra-individual ITS sequence heterogeneity provided further evidence for the hybrid or introgressed origin of different taxa and one presumed hybrid belonging to this genus.
本研究聚焦于厘清番木瓜科内部的系统发育关系及进化情况。我们基于核糖体DNA的ITS核苷酸序列以及三个叶绿体片段(matK、trnL-trnF和psbA-trnH)进行系统发育分析,纳入了五个属的29个分类单元:新热带属的番木瓜属、香瓜茄属、Jarilla属和番荔枝叶瓜属,以及赤道非洲的环果番木瓜属。由于matK和trnL-trnF的突变率相对较低,被用于估计属级水平的关系,而香瓜茄属内的种内进化则使用变异性更高的ITS和psbA-trnH序列进行研究。在进行最大简约法和最大似然法分析之前,将编码为二元性状的空位添加到序列比对中。强调了番木瓜科的单系性,以及先前属于同一属的番木瓜属和香瓜茄属物种之间的系统发育距离,还有复活的香瓜茄属的单系性。在本科最大的属香瓜茄属内,可以辨别出两个得到充分证实的进化谱系:(1)希氏香瓜茄、韦氏香瓜茄、具托叶香瓜茄和小花香瓜茄,以及(2)包含该属所有其他分类单元的一个分支。核ITS和叶绿体psbA-trnH数据集之间的不一致,经证明是由香瓜茄属的一些分类单元显著造成的,这表明该属中的网状进化事件可能比之前怀疑的更为频繁。此外,个体内ITS序列的异质性为不同分类单元以及该属中一个假定的杂交种的杂交或渐渗起源提供了进一步证据。