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Hybrids between Brassica napus and B. nigra show frequent pairing between the B and A/C genomes and resistance to blackleg.
Gaebelein, Roman; Alnajar, Dima; Koopmann, Birger; Mason, Annaliese S.
Afiliação
  • Gaebelein R; Department of Plant Breeding, Justus Liebig University, Heinrich-Buff-Ring 26-32, 35392, Giessen, Germany.
  • Alnajar D; Plant Pathology and Crop Protection Division, Department of Crop Sciences, Georg-August University Göttingen, Grisebachstraße 6, 37077, Göttingen, Germany.
  • Koopmann B; Plant Pathology and Crop Protection Division, Department of Crop Sciences, Georg-August University Göttingen, Grisebachstraße 6, 37077, Göttingen, Germany.
  • Mason AS; Department of Plant Breeding, Justus Liebig University, Heinrich-Buff-Ring 26-32, 35392, Giessen, Germany. Annaliese.Mason@agrar.uni-giessen.de.
Chromosome Res ; 27(3): 221-236, 2019 09.
Article em En | MEDLINE | ID: mdl-31280459
ABSTRACT
High frequencies of homoeologous and even non-homologous chromosome recombination in Brassica hybrids can transfer useful traits between genomes, but also destabilise synthetic allopolyploids. We produced triploid hybrids (2n = 3x = ABC) from the cross B. napus (rapeseed, 2n = 4x = AACC) × B. nigra (black mustard, 2n = 2x = BB) by embryo rescue and allohexaploid hybrids (2n = 6x = AABBCC = 54) by chromosome doubling of the triploids. These hybrids demonstrated resistance to blackleg disease (causal agent Leptosphaeria maculans) inherited from their B. nigra parent. In order to assess the possibility of transfer of this resistance between the B genome and the A and C subgenomes of B. napus, as well as to assess the genomic stability of allohexaploids from the cross B. napus × B. nigra, frequencies of non-homologous chromosome pairing in these hybrids were assessed using classical cytogenetics and genomic in-situ hybridization. Meiosis was highly irregular, and non-homologous chromosome pairing between the B genome and the A/C genomes was common in both triploid hybrids (observed in 38% of pollen mother cells) and allohexaploid hybrids (observed in 15% of pollen mother cells). Our results suggest that introgression of blackleg resistance from the B genome into the A or C genomes should be possible, but that allohexaploids from this genome combination are likely unstable.
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Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Brassica / Genoma de Planta / Brassica napus / Pareamento Cromossômico / Resistência à Doença / Hibridização Genética Idioma: En Revista: Chromosome Res Assunto da revista: BIOLOGIA MOLECULAR Ano de publicação: 2019 Tipo de documento: Article País de afiliação: Alemanha

Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Brassica / Genoma de Planta / Brassica napus / Pareamento Cromossômico / Resistência à Doença / Hibridização Genética Idioma: En Revista: Chromosome Res Assunto da revista: BIOLOGIA MOLECULAR Ano de publicação: 2019 Tipo de documento: Article País de afiliação: Alemanha