4.8 Article

The Chara Genome: Secondary Complexity and Implications for Plant Terrestrialization

期刊

CELL
卷 174, 期 2, 页码 448-+

出版社

CELL PRESS
DOI: 10.1016/j.cell.2018.06.033

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资金

  1. MEXT
  2. JSPS KAKENHI [17020008, 20017013, 22128008, 15H04413, 24370095, 22770083, 24570100, 15K07185, 221S0002]
  3. Hyogo Science and Technology Association grant
  4. DFG [GO1825/4-1, CRC1208, VR 132/1-1, SFB 944, FOR964, SFB 924]
  5. MEYS CR project [LO1417]
  6. Carlsberg Foundation
  7. Villum Foundation's Young Investigator Programme
  8. LRSV laboratory [ANR-10-LABX-41]
  9. Gent University
  10. Research Foundation Flanders [G.0317.17N, 1S17917N]
  11. ERC Advanced Grants [EVO500]
  12. Leibniz Association
  13. NSF [DEB-1020660, DEB-1036466, MCB1714993, DEB 1036506]
  14. Grants-in-Aid for Scientific Research [15H04413, 22770083, 20017013, 24570100, 15K07185, 17020008] Funding Source: KAKEN
  15. BBSRC [BB/M020517/1] Funding Source: UKRI

向作者/读者索取更多资源

Land plants evolved from charophytic algae, among which Charophyceae possess the most complex body plans. We present the genome of Chara braunii; comparison of the genome to those of land plants identified evolutionary novelties for plant terrestrialization and land plant heritage genes. C. braunii employs unique xylan synthases for cell wall biosynthesis, a phragmoplast (cell separation) mechanism similar to that of land plants, and many phytohormones. C. braunii plastids are controlled via landplant- like retrograde signaling, and transcriptional regulation is more elaborate than in other algae. The morphological complexity of this organism may result from expanded gene families, with three cases of particular note: genes effecting tolerance to reactive oxygen species (ROS), LysM receptor-like kinases, and transcription factors (TFs). Transcriptomic analysis of sexual reproductive structures reveals intricate control by TFs, activity of the ROS gene network, and the ancestral use of plant-like storage and stress protection proteins in the zygote.

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