Liu C, Liu J, Li H, Zhang Z, Han Y, Huang S, Jin W
National Maize Improvement Center of China, Key Laboratory of Crop Genetic Improvement and Genome of the Ministry of Agriculture, Beijing Key Laboratory of Crop Genetic Improvement, China Agricultural University, Beijing, China.
Cytogenet Genome Res. 2010 Jul;129(1-3):241-9. doi: 10.1159/000314343. Epub 2010 Jun 11.
Chromosome identification is critical for cytogenetic research and will accelerate studies on genetic variation and breeding, especially for those species with relatively little sequence information. So far, no reliable cytological landmarks have been developed to distinguish individual chromosomes in melon. In this study, using FISH (fluorescence in situ hybridization) combined with comparative genome information, we selected 21 cucumber fosmids anchored by SSR markers as chromosome-specific cytological markers for melon chromosomes. Moreover, with the help of melon centromeric satellite DNA repeats CentM, 45S rDNA and 5S rDNA, sequential FISH with 3 sets of multi-fosmid cocktails were conducted on the same metaphase cell, which allowed us to simultaneously identify each of the 12 metaphase chromosomes of melon and a standardized melon karyotype of somatic metaphase chromosomes was constructed. Finally, we compared the distribution of 21 FISH-mapped fosmids between melon and cucumber chromosomes, which allows a better understanding of the evolutionary process shaping these 2 species. Our study provides a basis for cytological characterization of the melon genome and comparative genomics of Cucurbitaceae.
染色体识别对于细胞遗传学研究至关重要,并且将加速对遗传变异和育种的研究,特别是对于那些序列信息相对较少的物种。到目前为止,尚未开发出可靠的细胞学标记来区分甜瓜中的各个染色体。在本研究中,我们使用荧光原位杂交(FISH)结合比较基因组信息,选择了21个由SSR标记锚定的黄瓜fosmid作为甜瓜染色体的染色体特异性细胞学标记。此外,借助甜瓜着丝粒卫星DNA重复序列CentM、45S rDNA和5S rDNA,在同一个中期细胞上进行了3组多fosmid混合物的连续FISH,这使我们能够同时识别甜瓜的12条中期染色体中的每一条,并构建了体细胞中期染色体的标准化甜瓜核型。最后,我们比较了甜瓜和黄瓜染色体之间21个FISH定位的fosmid的分布,这有助于更好地理解塑造这两个物种的进化过程。我们的研究为甜瓜基因组的细胞学表征和葫芦科的比较基因组学提供了基础。