In a programme aimed at tagging rust-resistance genes in flax with the maize transposable element Ac, a primary transformant of a line called 'Forge' that is homozygous for four rust-resistance genes, L6, M, N and P2, was identified that possessed 10 copies of the Ac element, one of which was linked (29 map units) to L6. Descendants of this plant, which had from 8 to 15 copies of Ac, were crossed to a rust-susceptible line and the progeny screened for rust-susceptible mutants. When the Ac linked to L6 was present in the parent, a high frequency of L6 mutants was observed (29 mutants in 30,575). By contrast, when this Ac was absent, no such mutants were observed in 9258 progeny. The background frequency of L6 mutants was low (five in 124,088). A detailed analysis was made of the first 11 L6 mutants recovered from parents carrying the L6-linked Ac element. While none of the mutants possessed a tagged resistance gene, all lacked an RFLP marker closely linked to L6, suggesting that deletions were responsible for loss of the L6 specificity. In many of the mutants, one or more RFLP markers in the vicinity of the linked Ac were also absent. These findings suggest that the linked Ac may be inducing chromosome breakage.
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http://dx.doi.org/10.1046/j.1365-313x.1993.04040659.x | DOI Listing |
Plant Genome
March 2025
Department of Entomology and Plant Pathology, Oklahoma State University, Stillwater, Oklahoma, USA.
Leaf rust, caused by Puccinia triticina (Pt), is a serious constraint to wheat production. Developing resistant varieties is the best approach to managing this disease. Wheat leaf rust resistance (Lr) genes have been classified into either all-stage resistance (ASR) or adult-plant resistance (APR).
View Article and Find Full Text PDFPhytopathology
January 2025
Agricultural University of Hebei, 289 Lingyusi, Baoding, Baoding, Hebei, China, 071001;
Wheat leaf rust, caused by Erikss. (), is one of the most devastating diseases in common wheat ( L.) globally.
View Article and Find Full Text PDFTheor Appl Genet
December 2024
Plant Breeding Institute, School of Life and Environmental Sciences, The University of Sydney, Cobbitty, NSW, 2570, Australia.
We analysed the chromosomal structures of two wheat-Thinopyrum intermedium addition lines Z4 and Z5 and resolved the linkage relationship between the leaf rust and stripe rust resistance genes in Z4. Wheat addition lines Z4 and Z5 carrying rust resistance genes from Thinopyrum intermedium (JJJJStSt, 2n = 6x = 42) together with three wheat lines involved in the production of these addition lines were analysed by rust response, 90K SNP genotyping, and molecular cytogenetic analysis. Seedling leaf rust (LR) responses to five diverse pathotypes indicated that the LR resistance gene(s) was located in translocation chromosome T3DS-3AS.
View Article and Find Full Text PDFTheor Appl Genet
December 2024
Hungarian Research Network (HUN-REN), Centre for Agricultural Research, Agricultural Institute, Martonvásár, 2462, Hungary.
GBS read coverage analysis identified a Robertsonian chromosome from two Thinopyrum subgenomes in wheat, conferring leaf and stripe rust resistance, drought tolerance, and maintaining yield stability. Agropyron glael (GLAEL), a Thinopyrum intermedium × Th. ponticum hybrid, serves as a valuable genetic resource for wheat improvement.
View Article and Find Full Text PDFFront Plant Sci
December 2024
Crop Diseases Research Institute, Pakistan Agriculture Research Council, Islamabad, Pakistan.
Introduction: Stripe rust, caused by f. sp. , poses a significant threat to wheat quality and production worldwide.
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