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Titlebook: Current Technologies in Plant Molecular Breeding; A Guide Book of Plan Hee-Jong Koh,Suk-Yoon Kwon,Michael Thomson Book 2015 Springer Scienc

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Heron Werner,Gabriele Tonni,Jorge Lopeseted trait using linkage maps is a fundamental tool in gene functional studies and allows . manipulation of the gene. A helpful guide with step-by-step procedures for map-based cloning, from the selection of a target gene to the complementation test, and a case study in rice are also described.
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Brief History and Perspectives on Plant Breeding,to create and select variation by using genetic principles. Since the beginning of the twenty-first century, plant breeding has been systematized with state-of-the-art technologies aided by transgenic and genomics approaches. In the future, breeders will be able to assemble desirable alleles or gene
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Methods for Developing Molecular Markers,commonly used. This chapter describes the principles of DNA marker techniques and methods to map major genes. DNA markers can be classified into two categories: (1) DNA hybridization-based techniques, including restriction fragment polymorphism and DNA chips, and (2) polymerase chain reaction techni
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Marker-Assisted Breeding,lar markers can be applied to marker-assisted selection (MAS), which capitalizes on genetic linkage between target gene(s) or quantitative trait loci (QTLs) and phenotypes. Constructing a molecular genetic map and detecting the target trait-linked markers should be performed prior to MAS; for quanti
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Concept of Genome-Wide Association Studies,traits and genes and allowed the discovery of new genes. In 2006, an innovational method known as genome-wide association study (GWAS) was developed. GWAS is different from the traditional method of studying associations between a few candidate genes and traits in that GWAS can handle about one mill
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Identification of Mutagenized Plant Populations,tool for the identification and characterization of the function of specific genes linked to phenotypes. TILLING (Targeting Induced Local Lesions IN Genomes) is a general reverse-genetics tool that combines traditional mutagenesis with high-throughput methods of mutation discovery among mutagenized
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