Mitrenina Elizaveta Yu, Alekseeva Svetlana S, Badaeva Ekaterina D, Peruzzi Lorenzo, Artemov Gleb N, Krivenko Denis A, Pinzani Lorenzo, Aytaç Zeki, Çeçen Ömer, Baasanmunkh Shukherdorj, Choi Hyeok Jae, Mesterházy Attila, Tashev Alexander N, Bancheva Svetlana, Lian Lian, Xiang Kunli, Wang Wei, Erst Andrey S
Department of Genetics and Cell Biology, Biological Institute, National Research Tomsk State University, 634050 Tomsk, Russia.
Central Siberian Botanical Garden, Siberian Branch of the Russian Academy of Sciences, 630090 Novosibirsk, Russia.
Plants (Basel). 2023 Dec 22;13(1):47. doi: 10.3390/plants13010047.
A comparative karyotype analysis of four species of yellow-flowered sect. , i.e., , , , and from different areas, has been carried out for the first time. All the studied specimens had somatic chromosome number 2 = 16 with basic chromosome number = 8. Karyotypes of the investigated plants included five pairs of metacentric chromosomes and three pairs of submetacentric/subtelocentric chromosomes. The chromosome sets of the investigated species differ mainly in the ratio of submetacentric/subtelocentric chromosomes, their relative lengths, and arm ratios. A new oligonucleotide probe was developed and tested to detect 45S rDNA clusters. Using this probe and an oligonucleotide probe to 5S rDNA, 45S and 5S rDNA clusters were localized for the first time on chromosomes of , , and . Major 45S rDNA clusters were identified on satellite chromosomes in all the species; in , minor clusters were also identified in the terminal regions of one metacentric chromosome pair. The number and distribution of 5S rDNA clusters is more specific. In , two major clusters were identified in the pericentromeric region of a pair of metacentric chromosomes. Two major clusters in the pericentromeric region of a pair of submetacentric chromosomes and two major clusters in the interstitial region of a pair of metacentric chromosomes were observed in . has many clusters of different sizes, localized mainly in the pericentromeric regions. Summarizing new data on the karyotype structure of sect. and previously obtained data on sect. allowed conclusions to be formed about the clear interspecific karyological differences of the genus .
首次对来自不同地区的四种黄花组植物,即[具体物种1]、[具体物种2]、[具体物种3]和[具体物种4]进行了比较核型分析。所有研究标本的体细胞染色体数2n = 16,基本染色体数x = 8。所研究植物的核型包括五对中着丝粒染色体和三对亚中着丝粒/近端着丝粒染色体。所研究物种的染色体组主要在亚中着丝粒/近端着丝粒染色体的比例、它们的相对长度和臂比方面存在差异。开发并测试了一种新的寡核苷酸探针来检测45S rDNA簇。使用该探针和一个针对5S rDNA的寡核苷酸探针,首次在[具体物种1]、[具体物种2]和[具体物种3]的染色体上定位了45S和5S rDNA簇。在所有物种的随体染色体上都鉴定出了主要的45S rDNA簇;在[具体物种1]中,在一对中着丝粒染色体的末端区域也鉴定出了次要簇。5S rDNA簇的数量和分布更具特异性。在[具体物种2]中,在一对中着丝粒染色体的着丝粒周围区域鉴定出两个主要簇。在[具体物种3]中,观察到在一对亚中着丝粒染色体的着丝粒周围区域有两个主要簇,以及在一对中着丝粒染色体的中间区域有两个主要簇。[具体物种4]有许多大小不同的簇,主要定位在着丝粒周围区域。总结黄花组核型结构的新数据以及先前获得的关于[另一组]的数据,得出了关于该属明显的种间核型差异的结论。