0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R2,500 - R5,000 (1)
  • R5,000 - R10,000 (2)
  • -
Status
Brand

Showing 1 - 3 of 3 matches in All Departments

The Brassica napus Genome (Paperback, Softcover reprint of the original 1st ed. 2018): Shengyi Liu, Rod Snowdon, Boulos Chalhoub The Brassica napus Genome (Paperback, Softcover reprint of the original 1st ed. 2018)
Shengyi Liu, Rod Snowdon, Boulos Chalhoub
R5,277 Discovery Miles 52 770 Ships in 10 - 15 working days

This book describes how the genome sequence contributes to our understanding of allopolyploidisation and the genome evolution, genetic diversity, complex trait regulation and knowledge-based breeding of this important crop. Numerous examples demonstrate how widespread homoeologous genome rearrangements and exchanges have moulded structural genome diversity following a severe polyploidy bottleneck. The allopolyploid crop species Brassica napus has the most highly duplicated plant genome to be assembled to date, with the largest number of annotated genes. Examples are provided for use of the genome sequence to identify and capture diversity for important agronomic traits, including seed quality and disease resistance. The increased potential for detailed gene discovery using high-density genetic mapping, quantitative genetics and transcriptomic analyses is described in the context of genome availability and illustrated with recent examples. Intimate knowledge of the highly-duplicated gene space, on the one hand, and the repeat landscape on the other, particularly in comparison to the two diploid progenitor genomes, provide a fundamental basis for new insights into the regulatory mechanisms that are coupled with selection for polyploid success and crop evolution.

The Brassica napus Genome (Hardcover, 1st ed. 2018): Shengyi Liu, Rod Snowdon, Boulos Chalhoub The Brassica napus Genome (Hardcover, 1st ed. 2018)
Shengyi Liu, Rod Snowdon, Boulos Chalhoub
R5,324 Discovery Miles 53 240 Ships in 10 - 15 working days

This book describes how the genome sequence contributes to our understanding of allopolyploidisation and the genome evolution, genetic diversity, complex trait regulation and knowledge-based breeding of this important crop. Numerous examples demonstrate how widespread homoeologous genome rearrangements and exchanges have moulded structural genome diversity following a severe polyploidy bottleneck. The allopolyploid crop species Brassica napus has the most highly duplicated plant genome to be assembled to date, with the largest number of annotated genes. Examples are provided for use of the genome sequence to identify and capture diversity for important agronomic traits, including seed quality and disease resistance. The increased potential for detailed gene discovery using high-density genetic mapping, quantitative genetics and transcriptomic analyses is described in the context of genome availability and illustrated with recent examples. Intimate knowledge of the highly-duplicated gene space, on the one hand, and the repeat landscape on the other, particularly in comparison to the two diploid progenitor genomes, provide a fundamental basis for new insights into the regulatory mechanisms that are coupled with selection for polyploid success and crop evolution.

The Brassica oleracea Genome (Hardcover, 1st ed. 2021): Shengyi Liu, Rod Snowdon, Chittaranjan Kole The Brassica oleracea Genome (Hardcover, 1st ed. 2021)
Shengyi Liu, Rod Snowdon, Chittaranjan Kole
R4,502 Discovery Miles 45 020 Ships in 10 - 15 working days

This book presents comprehensive information on genetics, genomics and breeding in Brassica oleracea, an agriculturally important species that includes popular vegetable crops such as cabbage, cauliflower, broccoli, Brussels sprouts, kale, collard greens, savoy, kohlrabi, and gai lan. The content spans whole genome sequencing, assembly and gene annotation for this global vegetable species, along with molecular mapping and cloning of genes, physical genome mapping and analyses of the structure and composition of centromeres in the B. oleracea genome. The book also elaborates on asymmetrical genome evolution and transposable elements in the B. oleracea describes gene family differentiation in comparison to other Brassica species and structural and functional genomic resources and data bases developed for B. oleracea. Useful discussions on the impact of genome sequencing on genetic improvement in the species are also included.

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Philips TAUE101 Wired In-Ear Headphones…
R124 Discovery Miles 1 240
Guilty And Proud - An MK Soldier's…
Marion Sparg Paperback R330 R240 Discovery Miles 2 400
Bestway Spider-Man Beach Ball (51cm)
R50 R45 Discovery Miles 450
Casio LW-200-7AV Watch with 10-Year…
R999 R884 Discovery Miles 8 840
Aerolatte Cappuccino Art Stencils (Set…
R110 R95 Discovery Miles 950
Dromex 3-Ply Medical Mask (Box of 50)
 (17)
R1,099 R399 Discovery Miles 3 990
Treeline Tennis Balls (Pack of 3)
R59 R49 Discovery Miles 490
Hoover HSV600C Corded Stick Vacuum
 (7)
R949 R877 Discovery Miles 8 770
Shield Mr Fix-It Tubeless Repair Kit…
R99 R48 Discovery Miles 480
Cricut Joy Machine
 (6)
R3,589 R3,389 Discovery Miles 33 890

 

Partners