The Almond Tree Genome: Compendium of Plant Genomes
Editat de Raquel Sánchez-Pérez, Angel Fernandez i Marti, Pedro Martinez-Gomezen Limba Engleză Hardback – 28 iun 2023
Cultivated almond [(Prunus dulcis (Miller) D. A. Webb, syn. Prunus amygdalus Batsch., Amygdalus communis L., Amygdalus dulcis Mill.)] is a tree crop producing seeds of great economic interest, and adapted to hot and dry climates. Domesticated in Southeast Asia, its small diploid genome and phenotypic diversity make it an ideal model to complement genomics studies on peach, generally considered to be the reference Prunus species. Both represent consanguineous species that evolved in two distinct environments: warmer and more humid in the case of peach, and colder and xerophytic for almond. The advent of affordable whole-genome sequencing, in combination with existing Prunus functional genomics data, has now made it possible to leverage the novel diversity found in almond, providing an unmatched resource for the genetic improvement of this species.
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Specificații
ISBN-13: 9783030303013
ISBN-10: 3030303012
Pagini: 171
Ilustrații: XVIII, 171 p. 33 illus., 25 illus. in color.
Dimensiuni: 178 x 254 mm
Greutate: 0.55 kg
Ediția:1st ed. 2023
Editura: Springer International Publishing
Colecția Springer
Seria Compendium of Plant Genomes
Locul publicării:Cham, Switzerland
ISBN-10: 3030303012
Pagini: 171
Ilustrații: XVIII, 171 p. 33 illus., 25 illus. in color.
Dimensiuni: 178 x 254 mm
Greutate: 0.55 kg
Ediția:1st ed. 2023
Editura: Springer International Publishing
Colecția Springer
Seria Compendium of Plant Genomes
Locul publicării:Cham, Switzerland
Cuprins
Almond genome analysis and breeding.- Labelling Almond Genome: SAM, QTLs and Association mapping.- Identification of natural variation in almond target genes.- Recent advances on almond bitterness expression at genomic and trascriptomic level.- Recent advances on flower self-incompatibility expression at genomic and transcriptomic level.- Molecular basis of abiotic and biotic stresses in almond.- Genomics for fruit quality traits in almond: QTLs vs Association mapping.- Transcriptional changes associated with flower bud dormancy in almond and other Prunus species: DNA sequence motifs, mRNA and miRNA expression, transcription factors, chromatin modifications and phytohormone signaling.- Almond transcriptome analysis using high-throughput sequencing technologies.- Almond miRNA expression and horticultural implications.
Textul de pe ultima copertă
This book brings together the latest information on almond genomics and transcriptomics, with a particular focus on cutting-edge findings, tools, and strategies employed in genome sequencing and analysis with regard to the most important agronomic traits.
Cultivated almond [(Prunus dulcis (Miller) D. A. Webb, syn. Prunus amygdalus Batsch., Amygdalus communis L., Amygdalus dulcis Mill.)] is a tree crop producing seeds of great economic interest, and adapted to hot and dry climates. Domesticated in Southeast Asia, its small diploid genome and phenotypic diversity make it an ideal model to complement genomics studies on peach, generally considered to be the reference Prunus species. Both represent consanguineous species that evolved in two distinct environments: warmer and more humid in the case of peach, and colder and xerophytic for almond. The advent of affordable whole-genome sequencing, in combination with existing Prunus functional genomics data, has now made it possible toleverage the novel diversity found in almond, providing an unmatched resource for the genetic improvement of this species.
Cultivated almond [(Prunus dulcis (Miller) D. A. Webb, syn. Prunus amygdalus Batsch., Amygdalus communis L., Amygdalus dulcis Mill.)] is a tree crop producing seeds of great economic interest, and adapted to hot and dry climates. Domesticated in Southeast Asia, its small diploid genome and phenotypic diversity make it an ideal model to complement genomics studies on peach, generally considered to be the reference Prunus species. Both represent consanguineous species that evolved in two distinct environments: warmer and more humid in the case of peach, and colder and xerophytic for almond. The advent of affordable whole-genome sequencing, in combination with existing Prunus functional genomics data, has now made it possible toleverage the novel diversity found in almond, providing an unmatched resource for the genetic improvement of this species.
Caracteristici
Shares the latest insights into the almond tree genome project Discusses the possibilities of genetic improvement for almonds Describes essential tools and strategies used in genome sequencing and analysis