International Journal of Molecular Sciences (May 2024)

Genome Variability in Artificial Allopolyploid Hybrids of <i>Avena sativa</i> L. and <i>Avena macrostachya</i> Balansa ex Coss. et Durieu Based on Marker Sequences of Satellite DNA and the ITS1–5.8S rDNA Region

  • Alexandra V. Amosova,
  • Alexander A. Gnutikov,
  • Alexander V. Rodionov,
  • Igor G. Loskutov,
  • Nikolai N. Nosov,
  • Olga Yu. Yurkevich,
  • Tatiana E. Samatadze,
  • Svyatoslav A. Zoshchuk,
  • Olga V. Muravenko

DOI
https://doi.org/10.3390/ijms25105534
Journal volume & issue
Vol. 25, no. 10
p. 5534

Abstract

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Artificial hybrids between cultivated Avena species and wild Avena macrostachya that possess genes for resistance to biotic and abiotic stresses can be important for oat breeding. For the first time, a comprehensive study of genomes of artificial fertile hybrids Avena sativa × Avena macrostachya and their parental species was carried out based on the chromosome FISH mapping of satellite DNA sequences (satDNAs) and also analysis of intragenomic polymorphism in the 18S–ITS1–5.8S rDNA region, using NGS data. Chromosome distribution patterns of marker satDNAs allowed us to identify all chromosomes in the studied karyotypes, determine their subgenomic affiliation, and detect several chromosome rearrangements. Based on the obtained cytogenomic data, we revealed differences between two A. macrostachya subgenomes and demonstrated that only one of them was inherited in the studied octoploid hybrids. Ribotype analyses showed that the second major ribotype of A. macrostachya was species-specific and was not represented in rDNA pools of the octoploids, which could be related to the allopolyploid origin of this species. Our results indicate that the use of marker satDNAs in cytogenomic studies can provide important data on genomic relationships within Avena allopolyploid species and hybrids, and also expand the potential for interspecific crosses for breeding.

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