Transfer of Resistance to Leaf Rust and Stem Rust from Triticum Tauschii to Hexaploid Wheat, Cytogenetic Mapping of the Genes Involved, and Restriction Mapping of Ribosomal DNA in T. Tauschii

Transfer of Resistance to Leaf Rust and Stem Rust from Triticum Tauschii to Hexaploid Wheat, Cytogenetic Mapping of the Genes Involved, and Restriction Mapping of Ribosomal DNA in T. Tauschii PDF Author: Robert Lorne Innes
Publisher:
ISBN:
Category :
Languages : en
Pages : 208

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Characterization and Mapping of Four New Leaf Rust Resistance Genes Transferred to Common Wheat from Triticum Tauschii and T. Monococcum

Characterization and Mapping of Four New Leaf Rust Resistance Genes Transferred to Common Wheat from Triticum Tauschii and T. Monococcum PDF Author: Temam Hussien
Publisher:
ISBN:
Category :
Languages : en
Pages : 224

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Dissertation Abstracts International

Dissertation Abstracts International PDF Author:
Publisher:
ISBN:
Category : Dissertations, Academic
Languages : en
Pages : 780

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Wheat Rusts

Wheat Rusts PDF Author: RA McIntosh
Publisher: CSIRO PUBLISHING
ISBN: 0643103023
Category : Technology & Engineering
Languages : en
Pages : 308

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Book Description
Although stem rust has been controlled by means of resistant cultivars, leaf and stripe rust continue as problems for many growing areas of the world. Wheat Rusts: An Atlas of Resistance Genes has been prepared by specialists from one of the leading international laboratories, and illustrates with colour photographs typical resistance phenotypes associated with most known genes for resistance to the three rust diseases of wheat. Relevant details for each gene include chromosome location, aspects of genetics and pathogen variation, the effects of environment on expression, origin, availability in genetic and breeding stocks, and use in agriculture. This atlas includes an introduction to host:pathogen genetics, methodologies for wheat rust research and breeding for resistance.

Broadening the Wheat Gene Pool for Stem Rust Resistance Through Genomic-assisted Introgressions from Aegilops Tauschii

Broadening the Wheat Gene Pool for Stem Rust Resistance Through Genomic-assisted Introgressions from Aegilops Tauschii PDF Author: Eric Leonard Olson
Publisher:
ISBN:
Category :
Languages : en
Pages :

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The diploid D genome species, Aegilops tauschii Coss. (2n=2x=14,DD) has provided numerous genes for resistance to diseases and insect pests that attack bread wheat (Triticum aestivum L. (2n=6x=42, AABBDD). Wheat production is currently threatened by broadly virulent races of the 'Ug99' lineage of wheat stem rust caused by the fungus, Puccinia graminis f.sp. tritici Pers. & Eriks. Screening of a large set of Ae. tauschii germplasm for resistance to TTKSK (Ug99) identified potentially novel sources of resistance. To expedite utilization of TTKSK resistance from Ae. tauschii, a direct hybridization approach was established that integrates gene transfer, mapping and introgression into one process. Direct crossing of Ae. tauschii accessions with an elite wheat breeding was used to initiate transfer of resistance. Genetic mapping of resistance was accomplished during gene transfer through development of BC2 mapping populations. Bulked segregant analysis of BC2F1 genotypes at 70 SSR loci across the D genome identified the chromosome locations of stem rust resistance genes and facilitated genetic mapping. Using this approach, TTKSK resistance from CDL4424 and TA1662 was mapped on chromosome arm 1DS flanked distally by Xwmc432 and proximally by Xwmc222 at 4.4 cM, TA10187 on 6DS linked to Xcfd49 at 1.9 cM and TA10171 on 7DS linked Xwmc827 at 0.9 cM. TTKSK resistance from additional Ae. tauschii accessions CDL4366, TA1615, TA1642, TA1693 and TA1718 has been recovered in segregating populations but await mapping. Altogether, TTKSK resistance from eight Ae. tauschii accessions has been introgressed to a hard winter wheat genetic background. Three new stem resistance genes have been tagged with molecular markers for marker assisted breeding and will provide valuable material for stem rust resistance breeding and gene pyramids for effective control of stem rust.

American Doctoral Dissertations

American Doctoral Dissertations PDF Author:
Publisher:
ISBN:
Category : Dissertation abstracts
Languages : en
Pages : 796

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Agronomy News

Agronomy News PDF Author:
Publisher:
ISBN:
Category : Agriculture
Languages : en
Pages : 832

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Sept.-Oct. issue includes list of theses and dissertations for U.S. and Canadian graduate degrees granted in crop science, soil science, and agronomic science during the previous academic year.

Improving Disease Resistance to Stem Rust and Powdery Mildew in Wheat Using D Genome Introgressions from Aegilops Tauschii

Improving Disease Resistance to Stem Rust and Powdery Mildew in Wheat Using D Genome Introgressions from Aegilops Tauschii PDF Author: Andrew Thomas Wiersma
Publisher:
ISBN: 9780355163124
Category : Electronic dissertations
Languages : en
Pages : 72

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Identification of New Resistance Genes for Stripe Rust and Eyespot Diseases of Wheat in Triticum Tauschii and Dasypyrum Villosum and Molecular Genetic Mapping of a New Eyespot Resistance Gene on Chromosome 4V in a Wheat Background

Identification of New Resistance Genes for Stripe Rust and Eyespot Diseases of Wheat in Triticum Tauschii and Dasypyrum Villosum and Molecular Genetic Mapping of a New Eyespot Resistance Gene on Chromosome 4V in a Wheat Background PDF Author: Ahmet Yildirim
Publisher:
ISBN:
Category : Eyespot (Plant disease)
Languages : en
Pages : 204

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Genetic and Genomic Resources of Grain Legume Improvement

Genetic and Genomic Resources of Grain Legume Improvement PDF Author: Mohar Singh
Publisher: Newnes
ISBN: 0123984947
Category : Science
Languages : en
Pages : 322

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Book Description
Grain legumes, including common-bean, chickpea, pigeonpea, pea, cowpea, lentil and others, form important constituents of global diets, both vegetarian and non-vegetarian. Despite this significant role, global production has increased only marginally in the past 50 years. The slow production growth, along with a rising human population and improved buying capacity has substantially reduced the per capita availability of food legumes. Changes in environmental climate have also had significant impact on production, creating a need to identify stable donors among genetic resources for environmentally robust genes and designing crops resilient to climate change. Genetic and Genomic Resources of Grain Legume Improvement is the first book to bring together the latest resources in plant genetics and genomics to facilitate the identification of specific germplasm, trait mapping and allele mining to more effectively develop biotic and abiotic-stress-resistant grains. This book will be an invaluable resource for researchers, crop biologists and students working with crop development. - Explores origin, distribution and diversity of grain legumes - Presents information on germplasm collection, evaluation and maintenance - Offers insight into pre-breeding/germplasm enhancement efforts - Integrates genomic and genetic resources in crop improvement - Internationally contributed work