期刊文献+

The Cloning and Fluorescence In situ HybridizationAnalysis of Cotton Telomere Sequence

The Cloning and Fluorescence In situ HybridizationAnalysis of Cotton Telomere Sequence
下载PDF
导出
摘要 Telomeres form the ends of eukaryotic chromosomes and serve as protective caps that keep chromosomes structure independency and completeness. The first plant telomere DNA was isolated from Arabidopsis thaliana and was shown to have tandemly repeated sequence 5-TTTAGGG-3: The Arabidopsis-type telomere has been found in many plants, but several reports indicate that this sequence is absent in some plants. Up to now, no research has been conducted on the telomere of cotton. In this paper, the Arabidopsis-type telomere sequence was amplified and cloned using the primers designed based on the fragment containing telomere sequence in an Arabidopsis bacterial artificial chromosome (BAC). Fluorescence in situ hybridization (FISH) with cotton metaphase chromosomes using the Arabidopsis-type telomere sequence as probes indicated that the signals were located at all chromosome ends of seven diploid and two tetraploid cotton species with different signal intensities among chromosome complements of different cotton species, even between long and short arms of the same chromosome. To identify the signals of FISH, the genome DNA of Xinhai 7, a cultivar of Gossypium barbadense, digested by BAL-31 nuclease was introduced in this study. The result of BAL-31 digestion indicated that the hybridization signals of FISH represent the outermost DNA sequence of each cotton chromosomes. So we first proved that the telomeric repeats of cotton cross-hybridize with that of Arabidopsis. The results of terminal restriction fragment (TRF) showed significant variation in telomere length among cotton species. The telomere length of cultivated cotton was close to 20 kb and was larger than those of wild cotton species whose telomere length rahged from 6 to 20 kb. Telomeres form the ends of eukaryotic chromosomes and serve as protective caps that keep chromosomes structure independency and completeness. The first plant telomere DNA was isolated from Arabidopsis thaliana and was shown to have tandemly repeated sequence 5-TTTAGGG-3: The Arabidopsis-type telomere has been found in many plants, but several reports indicate that this sequence is absent in some plants. Up to now, no research has been conducted on the telomere of cotton. In this paper, the Arabidopsis-type telomere sequence was amplified and cloned using the primers designed based on the fragment containing telomere sequence in an Arabidopsis bacterial artificial chromosome (BAC). Fluorescence in situ hybridization (FISH) with cotton metaphase chromosomes using the Arabidopsis-type telomere sequence as probes indicated that the signals were located at all chromosome ends of seven diploid and two tetraploid cotton species with different signal intensities among chromosome complements of different cotton species, even between long and short arms of the same chromosome. To identify the signals of FISH, the genome DNA of Xinhai 7, a cultivar of Gossypium barbadense, digested by BAL-31 nuclease was introduced in this study. The result of BAL-31 digestion indicated that the hybridization signals of FISH represent the outermost DNA sequence of each cotton chromosomes. So we first proved that the telomeric repeats of cotton cross-hybridize with that of Arabidopsis. The results of terminal restriction fragment (TRF) showed significant variation in telomere length among cotton species. The telomere length of cultivated cotton was close to 20 kb and was larger than those of wild cotton species whose telomere length rahged from 6 to 20 kb.
出处 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2012年第9期1417-1423,共7页 农业科学学报(英文版)
基金 the National Natural Science Foundation of China (30170501)
关键词 COTTON fluorescent in situ hybridization (FISH) TELOMERE terminal restriction fragment (TRF) cotton, fluorescent in situ hybridization (FISH), telomere, terminal restriction fragment (TRF)
  • 相关文献

参考文献1

二级参考文献11

  • 1王坤波,张香娣,王春英,宋国立,李懋学.棉属A染色体组的核型研究[J].遗传,1995,17(4):32-34. 被引量:9
  • 2王坤波,宋国立,黎绍惠,张香娣.陆地棉的核型模式[J].遗传,1995,17(6):1-3. 被引量:6
  • 3Sambrook J Fritsch E F.分子克隆实验指南(第二版)[M].北京:科学出版社,1992..
  • 4聂汝芝 李懋学.三种野生和四个栽培棉种核型研究[J].植物学报,1985,27(2):113-121.
  • 5Ji Yuanfu,Final Program & Abstracts Guide of Plant Genome IV,1996年,49页
  • 6Ji Yuanfu,Final Program & Ab-tracts Guide of Plant Genome IV,1996年,50页
  • 7Wang K B,Identification of the karyotype of Gossypium bickii Prokh,1994年,299页
  • 8Sambrook J,分子克隆实验指南(第2版),1992年,16页
  • 9聂汝芝,植物学报,1985年,27卷,2期,113页
  • 10王春英,王坤波,王文奎,李懋学,宋国立,崔荣霞,黎绍惠,张香娣,张家明.棉花gDNA体细胞染色体FISH技术[J].棉花学报,1999,11(2):79-83. 被引量:22

共引文献16

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部