4.6 Article

The Jujube Genome Provides Insights into Genome Evolution and the Domestication of Sweetness/Acidity Taste in Fruit Trees

期刊

PLOS GENETICS
卷 12, 期 12, 页码 -

出版社

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pgen.1006433

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资金

  1. National Science and Technology [2013BAD20B03]
  2. Key Project from the Government of Shaanxi Province [2013KTZB02-03-1]
  3. Public Welfare Project from the Ministry of Forestry [201304110]
  4. Fundamental Research Funds for the Central Universities [2014YB074]
  5. National Natural Science Foundation of China [31372019]
  6. Talents Supporting Plan of Shaanxi Province
  7. special fund from the Key laboratory of Shaanxi Province [2015SZS-10]
  8. special fund from NWAFU for the jujube experimental station [XTG2015002]
  9. United States National Science Foundation [IOS-1539831]

向作者/读者索取更多资源

Jujube (Ziziphus jujuba Mill.) belongs to the Rhamnaceae family and is a popular fruit tree species with immense economic and nutritional value. Here, we report a draft genome of the dry jujube cultivar 'Junzao' and the genome resequencing of 31 geographically diverse accessions of cultivated and wild jujubes (Ziziphus jujuba var. spinosa). Comparative analysis revealed that the genome of 'Dongzao', a fresh jujube, was similar to 86.5 Mb larger than that of the 'Junzao', partially due to the recent insertions of transposable elements in the 'Dongzao' genome. We constructed eight proto-chromosomes of the common ancestor of Rhamnaceae and Rosaceae, two sister families in the order Rosales, and elucidated the evolutionary processes that have shaped the genome structures of modern jujubes. Population structure analysis revealed the complex genetic background of jujubes resulting from extensive hybridizations between jujube and its wild relatives. Notably, several key genes that control fruit organic acid metabolism and sugar content were identified in the selective sweep regions. We also identified S-locus genes controlling gametophytic self-incompatibility and investigated haplotype patterns of the S locus in the jujube genomes, which would provide a guideline for parent selection for jujube crossbreeding. This study provides valuable genomic resources for jujube improvement, and offers insights into jujube genome evolution and its population structure and domestication.

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