The Grape Genome

The Grape Genome
Title The Grape Genome PDF eBook
Author Dario Cantu
Publisher Springer Nature
Pages 385
Release 2019-11-13
Genre Science
ISBN 3030186016

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This book describes the current state of international grape genomics, with a focus on the latest findings, tools and strategies employed in genome sequencing and analysis, and genetic mapping of important agronomic traits. It also discusses how these are having a direct impact on outcomes for grape breeders and the international grape research community. While V. vinifera is a model species, it is not always appreciated that its cultivation usually requires the use of other Vitis species as rootstocks. The book discusses genetic diversity within the Vitis genus, the available genetic resources for breeding, and the available genomic resources for other Vitis species. Grapes (Vitis vinifera spp. vinifera) have been a source of food and wine since their domestication from their wild progenitor (Vitis vinifera ssp. sylvestris) around 8,000 years ago, and they are now the world’s most valuable horticultural crop. In addition to being economically important, V. vinifera is also a model organism for the study of perennial fruit crops for two reasons: Firstly, its ability to be transformed and micropropagated via somatic embryogenesis, and secondly its relatively small genome size of 500 Mb. The economic importance of grapes made V. vinifera an obvious early candidate for genomic sequencing, and accordingly, two draft genomes were reported in 2007. Remarkably, these were the first genomes of any fruiting crop to be sequenced and only the fourth for flowering plants. Although riddled with gaps and potentially omitting large regions of repetitive sequences, the two genomes have provided valuable insights into grape genomes. Cited in over 2,000 articles, the genome has served as a reference in more than 3,000 genome-wide transcriptional analyses. Further, recent advances in DNA sequencing and bioinformatics are enabling the assembly of reference-grade genome references for more grape genotypes revealing the exceptional extent of structural variation in the species.

The USDA-ARS Plant Genome Research Program

The USDA-ARS Plant Genome Research Program
Title The USDA-ARS Plant Genome Research Program PDF eBook
Author
Publisher
Pages 32
Release 1994
Genre Plant genetics
ISBN

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Managing Global Genetic Resources

Managing Global Genetic Resources
Title Managing Global Genetic Resources PDF eBook
Author National Research Council
Publisher National Academies Press
Pages 476
Release 1993-02-01
Genre Technology & Engineering
ISBN 0309131863

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This anchor volume to the series Managing Global Genetic Resources examines the structure that underlies efforts to preserve genetic material, including the worldwide network of genetic collections; the role of biotechnology; and a host of issues that surround management and use. Among the topics explored are in situ versus ex situ conservation, management of very large collections of genetic material, problems of quarantine, the controversy over ownership or copyright of genetic material, and more.

ARS Science Hall of Fame

ARS Science Hall of Fame
Title ARS Science Hall of Fame PDF eBook
Author United States. Agricultural Research Service
Publisher
Pages 24
Release 2004
Genre Agriculturists
ISBN

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Research and Marketing Act [reports]

Research and Marketing Act [reports]
Title Research and Marketing Act [reports] PDF eBook
Author United States. Department of Agriculture
Publisher
Pages 386
Release 1946
Genre Agriculture
ISBN

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Advances in New Technology for Targeted Modification of Plant Genomes

Advances in New Technology for Targeted Modification of Plant Genomes
Title Advances in New Technology for Targeted Modification of Plant Genomes PDF eBook
Author Feng Zhang
Publisher Springer
Pages 171
Release 2015-04-21
Genre Science
ISBN 1493925563

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Over the past 50 years, biotechnology has been the major driving force for increasing crop productivity. Particularly, advances in plant genetic engineering technologies have opened up vast new opportunities for plant researchers and breeders to create new crop varieties with desirable traits. Recent development of precise genome modification methods, such as targeted gene knock-out/knock-in and precise gene replacement, moves genetic engineering to another level and offers even more potentials for improving crop production. The work provides an overview of the latest advances on precise genomic engineering technologies in plants. Topics include recombinase and engineered nucleases-mediated targeted modification, negative/positive selection-based homologous recombination and oligo nucleotide-mediated recombination. Finally, challenges and impacts of the new technologies on present regulations for genetic modification organisms (GMOs) will be discussed.

The Amaranth Genome

The Amaranth Genome
Title The Amaranth Genome PDF eBook
Author Dinesh Adhikary
Publisher Springer Nature
Pages 181
Release 2021-06-01
Genre Science
ISBN 3030723658

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This book describes the development of genetic resources in amaranths, with a major focus on genomics, reverse, and forward genetics tools and strategies that have been developed for crop improvement. Amaranth is an ancient crop native to the New World. Interest in amaranths is being renewed, due to their adaptability, stress tolerance, and nutritional value. There are about 65 species in the genus, including Amaranthus caudatus L., A. cruentus L., and A. hypochondriacus L., which are primarily grown as protein-rich grains or pseudocereals. The genus also includes major noxious weeds (e.g., A. palmeri). The amaranths are within the Caryophyllales order and thus many species (e.g., A. tricolor) produce red (betacyanin) or yellow (betaxanthin) betalain pigments, which are chemically distinct from the anthocyanins responsible for red pigmentation in other plants. A. hypochondriacus, which shows disomic inheritance (2n = 32; n= 466 Mb), has been sequenced and annotated with 23,059 protein-coding genes. Additional members of the genus are now also been sequenced including weedy amaranths, other grain amaranths, and their putative progenitors.