Yagi Kouhei, Pawełkowicz Magdalena, Osipowski Paweł, Siedlecka Ewa, Przybecki Zbigniew, Tagashira Norikazu, Hoshi Yoshikazu, Malepszy Stefan, Pląder Wojciech
Department of Plant Genetics, Breeding and Biotechnology, Faculty of Horticulture, Biotechnology and Landscape Architecture, Warsaw University of Life Sciences-SGGW, Warsaw, Poland.
Cytogenet Genome Res. 2015;146(1):80-7. doi: 10.1159/000433572. Epub 2015 Jun 19.
Wild Cucumis species have been divided into Australian/Asian and African groups using morphological and phylogenetic characteristics, and new species have been described recently. No molecular cytogenetic information is available for most of these species. The crossability between 5 southern African Cucumis species (C. africanus, C. anguria, C. myriocarpus, C. zeyheri, and C. heptadactylus) has been reported; however, the evolutionary relationship among them is still unclear. Here, a molecular cytogenetic analysis using FISH with 5S and 45 S ribosomal DNA (rDNA) was used to investigate these Cucumis species based on sets of rDNA-bearing chromosomes (rch) types I, II and III. The molecular cytogenetic and phylogenetic results suggested that at least 2 steps of chromosomal rearrangements may have occurred during the evolution of tetraploid C. heptadactylus. In step 1, an additional 45 S rDNA site was observed in the chromosome (type III). In particular, C. myriocarpus had a variety of rch sets. Our results suggest that chromosomal rearrangements may have occurred in the 45 S rDNA sites. We propose that polyploid evolution occurred in step 2. This study provides insights into the chromosomal characteristics of African Cucumis species and contributes to the understanding of chromosomal evolution in this genus.
野生黄瓜属物种已根据形态学和系统发育特征分为澳大利亚/亚洲组和非洲组,并且最近已描述了新物种。对于这些物种中的大多数,尚无分子细胞遗传学信息。已有报道5种南部非洲黄瓜属物种(非洲黄瓜、角黄瓜、多果黄瓜、泽氏黄瓜和七指黄瓜)之间的杂交可育性;然而,它们之间的进化关系仍不清楚。在此,使用5S和45S核糖体DNA(rDNA)荧光原位杂交(FISH)进行分子细胞遗传学分析,以基于I、II和III型含rDNA染色体(rch)组来研究这些黄瓜属物种。分子细胞遗传学和系统发育结果表明,在四倍体七指黄瓜的进化过程中可能发生了至少2步染色体重排。在步骤1中,在染色体(III型)中观察到一个额外的45S rDNA位点。特别是,多果黄瓜具有多种rch组。我们的结果表明,45S rDNA位点可能发生了染色体重排。我们提出在步骤2中发生了多倍体进化。本研究提供了对非洲黄瓜属物种染色体特征的见解,并有助于理解该属的染色体进化。