4.8 Article

Cell Lineage Reconstruction of Early Zebrafish Embryos Using Label-Free Nonlinear Microscopy

Journal

SCIENCE
Volume 329, Issue 5994, Pages 967-971

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.1189428

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Funding

  1. Direction Generale de l'Armament
  2. Agence Nationale de la Recherche,
  3. FP6 New Emerging Science and Technology program
  4. Association pour le Recherche Contre le Cancer
  5. Egide Picasso France-Spain
  6. Fondation Louis D.
  7. Institut de France

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Quantifying cell behaviors in animal early embryogenesis remains a challenging issue requiring in toto imaging and automated image analysis. We designed a framework for imaging and reconstructing unstained whole zebrafish embryos for their first 10 cell division cycles and report measurements along the cell lineage with micrometer spatial resolution and minute temporal accuracy. Point-scanning multiphoton excitation optimized to preferentially probe the innermost regions of the embryo provided intrinsic signals highlighting all mitotic spindles and cell boundaries. Automated image analysis revealed the phenomenology of cell proliferation. Blastomeres continuously drift out of synchrony. After the 32-cell stage, the cell cycle lengthens according to cell radial position, leading to apparent division waves. Progressive amplification of this process is the rule, contrasting with classical descriptions of abrupt changes in the system dynamics.

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