The genome sequence of 'Kurodagosun', a major carrot variety in Japan and China, reveals insights into biological research and carrot breeding.

Resource Type: 
Publication
Publication Type: 
Journal Article
Title: 
The genome sequence of 'Kurodagosun', a major carrot variety in Japan and China, reveals insights into biological research and carrot breeding.
Authors: 
Wang F, Wang GL, Hou XL, Li MY, Xu ZS, Xiong AS
Series Name: 
Molecular genetics and genomics : MGG
Journal Abbreviation: 
Mol. Genet. Genomics
Volume: 
293
Issue: 
4
Page Numbers: 
861-871
Publication Year: 
2018
Publication Date: 
2018 Aug
DOI: 
10.1007/s00438-018-1428-3
ISSN: 
1617-4623
EISSN: 
1617-4623
References: 
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Cross Reference: 
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Citation: 
Wang F, Wang GL, Hou XL, Li MY, Xu ZS, Xiong AS. The genome sequence of 'Kurodagosun', a major carrot variety in Japan and China, reveals insights into biological research and carrot breeding.. Molecular genetics and genomics : MGG. 2018 Aug; 293(4):861-871.
Abstract: 

Carrot (Daucus carota L.) is one of the most economically important root vegetables in the world, providing numerous nutrients for human health. China is the largest country of carrot production in the world, and 'Kurodagosun' has been a major carrot variety in China. Carrot material used in this study was the inbred line 'DC-27', which was derived by forced selfing from 'Kurodagosun'. To understand the genetic system and plant-specific genes of 'Kurodagosun', we report the draft genome sequence of carrot 'DC-27' assembled using a combination of Roche454 and HiSeq 2000 sequencing technologies to achieve 32-fold genome coverage. A total of 31,891 predicted genes were identified. These assembled sequences provide candidate genes involved in biological processes including stress response and carotenoid biosynthesis. Genomic sequences corresponding to 371.6 Mb was less than 473 Mb, which is the estimated genome size. The availability of a draft sequence of the 'DC-27' genome advances knowledge on the biological research and breeding of carrot, as well as other Apiaceae plants. The 'DC-27' genome sequence data also provide a new resource to explore the evolution of other higher plants.

Publication Model: 
Print-Electronic
Language: 
English
Language Abbr: 
eng
Journal Country: 
Germany
Keywords: 
  • Daucus carota
  • biosynthesis
  • carotenoids
  • carrots
  • genes
  • inbred lines
  • nucleotide sequences
  • nutrients
  • selfing
  • stress response