4.8 Article

Saccharina genomes provide novel insight into kelp biology

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NATURE COMMUNICATIONS
卷 6, 期 -, 页码 -

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NATURE RESEARCH
DOI: 10.1038/ncomms7986

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资金

  1. Hi-Tech Research and Development Program (863) of China [2012AA052103, 2014AA022003]
  2. National Science and Technology Pillar Program [2013BAD23B01]
  3. Qingdao Municipal Leading Talent project [13-CX-27]
  4. National Natural Science Foundation of China Grant [91131013, 31100952, 31272285]
  5. Fund of Beijing Institutes of Life Science, Chinese Academy of Sciences
  6. Ministry of Sciences and Technology of China 973 Program Grant [2012CB910503]

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Seaweeds are essential for marine ecosystems and have immense economic value. Here we present a comprehensive analysis of the draft genome of Saccharina japonica, one of the most economically important seaweeds. The 537-Mb assembled genomic sequence covered 98.5% of the estimated genome, and 18,733 protein-coding genes are predicted and annotated. Gene families related to cell wall synthesis, halogen concentration, development and defence systems were expanded. Functional diversification of the mannuronan C-5-epimerase and haloperoxidase gene families provides insight into the evolutionary adaptation of polysaccharide biosynthesis and iodine antioxidation. Additional sequencing of seven cultivars and nine wild individuals reveal that the genetic diversity within wild populations is greater than among cultivars. All of the cultivars are descendants of a wild Saccharina japonica accession showing limited admixture with Saccharina longissima. This study represents an important advance toward improving yields and economic traits in Saccharina and provides an invaluable resource for plant genome studies.

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