Literature DB >> 20145905

Development of a wheat genotype combining the recessive crossability alleles kr1kr1kr2kr2 and the 1BL.1RS translocation, for the rapid enrichment of 1RS with new allelic variation.

Márta Molnár-Láng1, András Cseh, Eva Szakács, István Molnár.   

Abstract

The main objective of the present work was to develop a wheat genotype containing both the recessive crossability alleles (kr1kr1kr2kr2), allowing high crossability between 6x wheat and diploid rye, and the 1BL.1RS wheat/rye translocation chromosome. This wheat genotype could be used as a recipient partner in wheat-rye crosses for the efficient introduction of new allelic variation into 1RS in translocation wheats. After crossing the wheat cultivars 'Mv Magdaléna' and 'Mv Béres', which carry the 1BL.1RS translocation involving the 1RS chromosome arm from 'Petkus', with the line 'Mv9 kr1', 117 F(2) plants were analysed for crossability, ten of which had higher than 50% seed set with rye and thus presumably carried the kr1kr1kr2kr2 alleles. Four of the ten plants contained the 1BL.1RS translocation in the disomic condition as detected by genomic in situ hybridization (GISH). The wheat x rye F(1) hybrids produced between these lines and the rye cultivar 'Kriszta' were analysed in meiosis using GISH. 1BL.1RS/1R chromosome pairing was detected in 62.4% of the pollen mother cells. The use of fluorescent in situ hybridization (FISH) with the repetitive DNA probes pSc119.2, Afa family and pTa71 allowed the 1R and 1BL.1RS chromosomes to be identified. The presence of the 1RS arm from 'Kriszta' besides that of 'Petkus' was demonstrated in the F(1) hybrids using the rye SSR markers RMS13 and SCM9. In four of the 22 BC(1) progenies analysed, only 'Kriszta'-specific bands were observed with these markers, though the presence of the 1BL.1RS translocation was detected using GISH. It can be concluded that recombination occurred between the 'Petkus' and 'Kriszta' 1RS chromosome arms in the translocated chromosome in these plants.

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Year:  2010        PMID: 20145905     DOI: 10.1007/s00122-010-1274-0

Source DB:  PubMed          Journal:  Theor Appl Genet        ISSN: 0040-5752            Impact factor:   5.699


  21 in total

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Journal:  Theor Appl Genet       Date:  2008-07-15       Impact factor: 5.699

2.  Linkage mapping of genes for resistance to leaf, stem and stripe rusts and ω-secalins on the short arm of rye chromosome 1R.

Authors:  N K Singh; K W Shepherd; R A McIntosh
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4.  Molecular characterization of a tandem repeat, Afa family, and its distribution among Triticeae.

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Journal:  Genome       Date:  1995-06       Impact factor: 2.166

5.  High-resolution mapping and mutation analysis separate the rust resistance genes Sr31, Lr26 and Yr9 on the short arm of rye chromosome 1.

Authors:  R Mago; H Miah; G J Lawrence; C R Wellings; W Spielmeyer; H S Bariana; R A McIntosh; A J Pryor; J G Ellis
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Journal:  J Appl Genet       Date:  2014-04-30       Impact factor: 3.240

3.  Molecular Cytogenetic and Physiological Characterization of a Novel Wheat-Rye T1RS.1BL Translocation Line from Secale cereal L. Weining with Resistance to Stripe Rust and Functional "Stay Green" Trait.

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5.  Addition of Manas barley chromosome arms to the hexaploid wheat genome.

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6.  McGISH identification and phenotypic description of leaf rust and yellow rust resistant partial amphiploids originating from a wheat × Thinopyrum synthetic hybrid cross.

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7.  Molecular Cytogenetic Characterization of Novel Wheat-rye T1RS.1BL Translocation Lines with High Resistance to Diseases and Great Agronomic Traits.

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8.  1RS arm of Secale cereanum 'Kriszta' confers resistance to stripe rust, improved yield components and high arabinoxylan content in wheat.

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9.  Molecular cytogenetic identification and phenotypic description of a new synthetic amphiploid, Triticum timococcum (AtAtGGAmAm).

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10.  FISH-Based Markers Enable Identification of Chromosomes Derived From Tetraploid Thinopyrum elongatum in Hybrid Lines.

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  10 in total

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