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Titlebook: Genomics of Plant Genetic Resources; Volume 1. Managing, Roberto Tuberosa,Andreas Graner,Emile Frison Book 2014 Springer Science+Business

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楼主: 忠诚
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High-throughput SNP Profiling of Genetic Resources in Crop Plants Using Genotyping Arraysele calling as well as data assembly for the analysis of millions of genotypes. To make the best use of these genotyping data, it will be very important to establish databases containing marker data from many genotyping experiments in order to simplify downstream data processing for scientific as for breeding purposes.
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Paleogenomics as a Guide for Traits Improvementome syntenies in concentric crop circles, providing a new reference tool as a guide for accurate and improved gene annotation, cross-genome markers development and translational genomics-based modern trait dissection.
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Exploiting Barley Genetic Resources for Genome Wide Association Scans (GWAS)om analysis of simple single gene traits through oligogenic to quantitative traits, and the detection of epistatic interactions. We conclude that appropriately designed and executed GWAS in barley is a powerful tool in our quest to identify the genes and alleles underlying key genetic traits.
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Mining Genetic Resources , Ecotillingnt species for a range of applications including population genetics, mapping, and QTL cloning. I review here progress in the establishment of Ecotilling for diploid and polyploid plants, adaptation of the method for a variety of different investigations, and modifications to mutation discovery methods.
发表于 2025-3-27 19:22:49 | 显示全部楼层
Building a Global Plant Genetic Resources Systemwith the additional uncertainties associated with climate change, against a background of less land and less water being available for agriculture. More than ever before, this will require the wise use of plant genetic resources. Scientific advances such as high-throughput sequencing, marker assiste
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The Use of Molecular Marker Data to Assist in the Determination of Essentially Derived Varieties Plant Breeders’ Rights system for the protection of new plant varieties in an era where it had become increasingly common and with greater facility to make relatively small genetic changes to existing varieties including through the use of transgenic modification, mutation breeding, and through the
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Historical and Prospective Applications of ‘Quantitative Genomics’ in Utilising Germplasm Resourcessolely pedigree-based approach to genetic improvement, to one based almost entirely on genome-wide sequence information. We have also witnessed the evolution of dominant genetic theory, including the adoption of new statistical techniques necessary to accommodate the plethora of genomic information
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