4.8 Article

Pectin homogalacturonan nanofilament expansion drives morphogenesis in plant epidermal cells

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SCIENCE
卷 367, 期 6481, 页码 1003-+

出版社

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aaz5103

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资金

  1. French National Research Agency (ANR) GoodVibration [ANR-17-CE13-0007]
  2. European Union [201310]
  3. Saclay Plant Sciences-SPS [ANR-17-EUR-0007]
  4. Gatsby Charitable Foundation
  5. Gatsby Charitable Foundation [GAT3395/DAA]
  6. Howard Hughes Medical Institute
  7. IJPB's Plant Observatory technological platforms
  8. Agence Nationale de la Recherche (ANR) [ANR-17-CE13-0007] Funding Source: Agence Nationale de la Recherche (ANR)

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The process by which plant cells expand and gain shape has presented a challenge for researchers. Current models propose that these processes are driven by turgor pressure acting on the cell wall. Using nanoimaging, we show that the cell wall contains pectin nanofilaments that possess an intrinsic expansion capacity. Additionally, we use growth models containing such structures to show that a complex plant cell shape can derive from chemically induced local and polarized expansion of the pectin nanofilaments without turgor-driven growth. Thus, the plant cell wall, outside of the cell itself, is an active participant in shaping plant cells. Extracellular matrix function may similarly guide cell shape in other kingdoms, including Animalia.

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