4.5 Article

Ten alien chromosome additions of Gossypium hirsutum-Gossypium bickii developed by integrative uses of GISH and species-specific SSR markers

期刊

MOLECULAR GENETICS AND GENOMICS
卷 293, 期 4, 页码 945-955

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s00438-018-1434-5

关键词

Genomic in situ hybridization (GISH); Gossypium hirsutum; Monosomic alien addition line (MAAL); Simple sequence repeat (SSR); Wild cotton

资金

  1. National Key Research and Development Program of China [2016YFD0100203]
  2. National Key Technology Support Program of China [2013BAD01B03-04]
  3. Priority Academic Program Development of Jiangsu Higher Education Institutions
  4. Jiangsu Collaborative Innovation Center for Modern Crop Production

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Gossypium bickii: (2n = 26, G(1)G(1)), a wild diploid cotton, carries many favourable traits. However, these favourable traits cannot be directly transferred into G. hirsutum (2n = 52, AADD) cultivars due to the differences in genomes. Monosomic alien addition lines (MAALs) are considered an invaluable tool for the introgression of genes of interest from wild relatives into cultivated crops. In this study, the G. hirsutum-G. bickii amphidiploid (2n = 78, AADDG(1)G(1)) was backcrossed with G. hirsutum to develop alien additions containing individual G. bickii chromosomes in a G. hirsutum background. Genomic in situ hybridization was employed to detect the number of alien chromosomes added to the backcross progenies. A total of 183 G. bickii-specific DNA markers were developed to discriminate the identities of the G. bickii chromosomes added to G. hirsutum and assess the alien chromosome transmissibility. Chromosomes 4G(b) and 13G(b) showed the highest transmissibility, while chromosomes 1G(b), 7G(b) and 11G(b) showed the lowest. Ten of the 13 possible G. hirsutum-G. bickii MAALs were isolated and characterized, which will lay the foundation for transferring resistance genes of G. bickii into G. hirsutum, as well as for gene assignment, physical mapping, and selective isolation and mapping of cDNAs for particular G. bickii chromosomes. The strategies of how to use MAALs to develop varieties with the trait of interest from wild species (such as glanded plant-glandless seed) were proposed and discussed.

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