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Titlebook: Diagnostics in Plant Breeding; Thomas Lübberstedt,Rajeev K. Varshney Book 2013 Springer Science+Business Media Dordrecht 2013 Assisted pla

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发表于 2025-3-21 16:39:06 | 显示全部楼层 |阅读模式
书目名称Diagnostics in Plant Breeding
编辑Thomas Lübberstedt,Rajeev K. Varshney
视频video
概述Comprehensive compilation of methods and concepts related to genomics – assisted plant breeding.Detailed description of approaches relating to diagnostic marker development in plants.Three chapters su
图书封面Titlebook: Diagnostics in Plant Breeding;  Thomas Lübberstedt,Rajeev K. Varshney Book 2013 Springer Science+Business Media Dordrecht 2013 Assisted pla
描述“Diagnostics in Plant Breeding” is systematically organizing cutting-edge research reviews on the development and application of molecular tools for the prediction of plant performance. Given its significance for mankind and the available research resources, medical sciences are leading the area of molecular diagnostics, where DNA-based risk assessments for various diseases and biomarkers to determine their onset become increasingly available. So far, most research in plant genomics has been directed towards understanding the molecular basis of biological processes or phenotypic traits. From a plant breeding perspective, however, the main interest is in predicting optimal genotypes based on molecular information for more time- and cost-efficient breeding schemes. It is anticipated that progress in plant genomics and in particular sequence technology made recently will shift the focus from “explanatory” to “predictive” in crop science. This book assembles chapters on all areas relevant to development and application of predictive molecular tools in plant breeding by leading authorties in the respective areas.
出版日期Book 2013
关键词Assisted plant breeding; Genomics; Molecular diagnostics; Molecular markers; Plant breeding
版次1
doihttps://doi.org/10.1007/978-94-007-5687-8
isbn_softcover978-94-007-9473-3
isbn_ebook978-94-007-5687-8
copyrightSpringer Science+Business Media Dordrecht 2013
The information of publication is updating

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Non-DNA Biomarkersorrelated with the expression of a second trait, for which selection is carried out. Markers can be used to (i) determine the genetic diversity in germplasm and its changes over time, (ii) detect genetic relationships among germplasm in seed banks and applied breeding programs, (iii) predict heteros
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Gene Identification: Forward Genetics mutated phenotype resulted from known sequence changes, gene identification via forward genetics has different process. It starts with the identification of the mutant phenotype (caused by either artificial mutagenesis or natural variation). Then a mapping population which segregates at the interes
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Gene Identification: Reverse Geneticstive genetics and bioinformatics have been invaluable in investigating the function of the genes that have been sequenced, but the elucidation of gene function . remains a huge challenge. Many gene functions have been defined through the use of forward genetics, where a phenotype is identified and u
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Allele Re-sequencing Technologiesith various traits. However, the cost of whole genome re-sequencing still remains too high to be feasible for many plant species with large and complex genomes. Recent developments in strategies for target-enrichment, transcriptome re-sequencing, and partial genome re-sequencing allows for enrichmen
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Gene Replacementt is very inefficient in plants, because integration of foreign DNA mainly occurs via non-homologous recombination. Inactivation of the most conserved pathway of non-homologous recombination called non-homologous end-joining (NHEJ) did not result in much higher GT frequency. However, introduction of
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SNP Genotyping Technologiesications. Besides the efficient technologies available for SNP discovery even in complex genomes, one of the main reasons for this is the availability of high-throughput platforms for multiplexed SNP genotyping. Advancements in these technologies have enabled increased flexibility and throughput, al
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Insertion-Deletion Marker Targeting for Intron Polymorphisms). As one of the types of indel markers to detect polymorphisms among individuals, we focus on markers targeting intron length polymorphisms (ILPs) in this chapter. Intron polymorphism (IP) markers including ILP markers are based on more abundant polymorphisms in intron regions compared to exon regi
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