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RESEARCH PAPER

Identification of emergent motion compartments in the amniote embryo

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Pages 350-364 | Received 25 Jun 2014, Accepted 01 Sep 2014, Published online: 26 Jan 2015

References

  • Filla MB, Czirok A, Zamir EA, Little CD, Cheuvront TJ, Rongish BJ. Dynamic imaging of cell, extracellular matrix, and tissue movements during avian vertebral axis patterning. Birth defects research Part C, Embryo today : reviews 2004; 72:267-76.
  • Wyczalkowski MA, Chen Z, Filas BA, Varner VD, Taber LA. Computational models for mechanics of morphogenesis. Birth defects research Part C, Embryo today : reviews 2012; 96:132-52.
  • Aleksandrova A, Czirok A, Szabo A, Filla MB, Hossain MJ, Whelan PF, Lansford R, Rongish BJ. Convective tissue movements play a major role in avian endocardial morphogenesis. Developmental biology 2012; 363:348-61.
  • Lawson A, Schoenwolf GC. Cell populations and morphogenetic movements underlying formation of the avian primitive streak and organizer. Genesis (New York, NY : 2000) 2001; 29:188-95.
  • Voiculescu O, Bertocchini F, Wolpert L, Keller RE, Stern CD. The amniote primitive streak is defined by epithelial cell intercalation before gastrulation. Nature 2007; 449:1049-52.
  • Schoenwolf GC, Smith JL. Gastrulation and early mesodermal patterning in vertebrates. Methods in molecular biology (Clifton, NJ) 2000; 135:113-25.
  • Keller R, Davidson LA, Shook DR. How we are shaped: the biomechanics of gastrulation. Differentiation; research in biological diversity 2003; 71:171-205.
  • Solnica-Krezel L, Sepich DS. Gastrulation: making and shaping germ layers. Annual review of cell and developmental biology 2012; 28:687-717.
  • Spratt NT, Jr. Development in vitro of the early chick blastoderm explanted on yolk and albumen extract saline-agar substrata. The Journal of experimental zoology 1947; 106:345-65.
  • Bellairs R, Bromham DR, Wylie CC. The influence of the area opaca on the development of the young chick embryo. Journal of embryology and experimental morphology 1967; 17:195-212.
  • Cui C, Lansford R, Filla MB, Little CD, Cheuvront TJ, Rongish BJ. Electroporation and EGFP labeling of gastrulating quail embryos. Developmental dynamics : an official publication of the American Association of Anatomists 2006; 235:2802-10.
  • Patten BM. The early embryology of the chick. Philadelphia: P. Blakiston's Son & Co., 1920.
  • Keller R. Mechanisms of elongation in embryogenesis. Development 2006; 133:2291-302.
  • Adams DS, Keller R, Koehl MA. The mechanics of notochord elongation, straightening and stiffening in the embryo of Xenopus laevis. Development 1990; 110:115-30.
  • Healy KH, Schoenwolf GC, Darnell DK. Cell interactions underlying notochord induction and formation in the chick embryo. Developmental dynamics : an official publication of the American Association of Anatomists 2001; 222:165-77.
  • Catala M, Teillet MA, Le Douarin NM. Organization and development of the tail bud analyzed with the quail-chick chimaera system. Mechanisms of development 1995; 51:51-65.
  • Loganathan R, Potetz BR, Rongish BJ, Little CD. Spatial anisotropies and temporal fluctuations in extracellular matrix network texture during early embryogenesis. PloS one 2012; 7:e38266.
  • Zamir EA, Czirok A, Cui C, Little CD, Rongish BJ. Mesodermal cell displacements during avian gastrulation are due to both individual cell-autonomous and convective tissue movements. Proceedings of the National Academy of Sciences of the United States of America 2006; 103:19806-11.
  • Zamir EA, Rongish BJ, Little CD. The ECM moves during primitive streak formation–computation of ECM versus cellular motion. PLoS biology 2008; 6:e247.
  • Benazeraf B, Francois P, Baker RE, Denans N, Little CD, Pourquie O. A random cell motility gradient downstream of FGF controls elongation of an amniote embryo. Nature 2010; 466:248-52.
  • Gros J, Feistel K, Viebahn C, Blum M, Tabin CJ. Cell movements at Hensen's node establish left/right asymmetric gene expression in the chick. Science (New York, NY) 2009; 324:941-4.
  • Solnica-Krezel L. Conserved patterns of cell movements during vertebrate gastrulation. Current biology : CB 2005; 15:R213-28.
  • Charrier JB, Catala M, Lapointe F, Le-Douarin N, Teillet MA. Cellular dynamics and molecular control of the development of organizer-derived cells in quail-chick chimeras. The International journal of developmental biology 2005; 49:181-91.
  • Sato Y, Lansford R. Transgenesis and imaging in birds, and available transgenic reporter lines. Development, growth & differentiation 2013; 55:406-21.
  • Yuan S, Schoenwolf GC. Reconstitution of the organizer is both sufficient and required to re-establish a fully patterned body plan in avian embryos. Development 1999; 126:2461-73.
  • Rupp PA, Filla MB, Cui C, Little CD. Chapter 5. Avian embryos a model for the study of primary vascular assembly in warm-blooded animals. Methods in enzymology 2008; 445:107-23.
  • Guillot C, Lecuit T. Mechanics of epithelial tissue homeostasis and morphogenesis. Science (New York, NY) 2013; 340:1185-9.
  • Holmes WR, Edelstein-Keshet L. A comparison of computational models for eukaryotic cell shape and motility. PLoS computational biology 2012; 8:e1002793.
  • Levayer R, Lecuit T. Biomechanical regulation of contractility: spatial control and dynamics. Trends in cell biology 2012; 22:61-81.
  • Mason FM, Martin AC. Tuning cell shape change with contractile ratchets. Current opinion in genetics & development 2011; 21:671-9.
  • Hall A. Rho family GTPases. Biochemical Society transactions 2012; 40:1378-82.
  • Eiraku M, Takata N, Ishibashi H, Kawada M, Sakakura E, Okuda S, Sekiguchi K, Adachi T, Sasai Y. Self-organizing optic-cup morphogenesis in three-dimensional culture. Nature 2011; 472:51-6.
  • Levayer R, Lecuit T. Oscillation and polarity of E-cadherin asymmetries control actomyosin flow patterns during morphogenesis. Developmental cell 2013; 26:162-75.
  • Czirok A, Zamir EA, Filla MB, Little CD, Rongish BJ. Extracellular matrix macroassembly dynamics in early vertebrate embryos. Current topics in developmental biology 2006; 73:237-58.
  • Zamir EA, Czirok A, Rongish BJ, Little CD. A digital image-based method for computational tissue fate mapping during early avian morphogenesis. Annals of biomedical engineering 2005; 33:854-65.
  • Czirok A, Varga K, Mehes E, Szabo A. Collective cell streams in epithelial monolayers depend on cell adhesion. New journal of physics 2013; 15.
  • Schlichting H GK. Boundary Layer Theory. Berlin: Springer, 2000.
  • Storey KG, Selleck MA, Stern CD. Neural induction and regionalisation by different subpopulations of cells in Hensen's node. Development 1995; 121:417-28.
  • Spratt NT, Jr., Haas H. Integrative mechanisms in development of the early chick blastoderm. II. Role of morphogenetic movements and regenerative growth in synthetic and topographically disarranged blastoderms. The Journal of experimental zoology 1961; 147:57-93.
  • Moury JD, Schoenwolf GC. Cooperative model of epithelial shaping and bending during avian neurulation: autonomous movements of the neural plate, autonomous movements of the epidermis, and interactions in the neural plate/epidermis transition zone. Developmental dynamics : an official publication of the American Association of Anatomists 1995; 204:323-37.
  • Spratt NT, Jr. Analysis of the organizer center in the early chick embryo. III. Regulative properties of the chorda and somite centers. The Journal of experimental zoology 1957; 135:319-53.
  • Yuan S, Schoenwolf GC. De novo induction of the organizer and formation of the primitive streak in an experimental model of notochord reconstitution in avian embryos. Development 1998; 125:201-13.
  • Grabowski CT. The induction of secondary embryos in the early chick blastoderm by grafts of Hensen's node. The American journal of anatomy 1957; 101:101-33.
  • Grabowski CT. Neural induction and notochord formation by mesoderm from the node area of the early chick blastoderm. The Journal of experimental zoology 1962; 150:233-45.
  • Psychoyos D, Stern CD. Restoration of the organizer after radical ablation of Hensen's node and the anterior primitive streak in the chick embryo. Development 1996; 122:3263-73.
  • Yen WW, Williams M, Periasamy A, Conaway M, Burdsal C, Keller R, Lu X, Sutherland A. PTK7 is essential for polarized cell motility and convergent extension during mouse gastrulation. Development 2009; 136:2039-48.
  • Kitase Y, Shuler CF. Multi-layered hypertrophied MEE formation by microtubule disruption via GEF-H1/RhoA/ROCK signaling pathway. Developmental dynamics : an official publication of the American Association of Anatomists 2012; 241:1169-82.
  • Skoglund P, Rolo A, Chen X, Gumbiner BM, Keller R. Convergence and extension at gastrulation require a myosin IIB-dependent cortical actin network. Development 2008; 135:2435-44.
  • Zhou J, Kim HY, Davidson LA. Actomyosin stiffens the vertebrate embryo during crucial stages of elongation and neural tube closure. Development 2009; 136:677-88.
  • Skoglund P, Keller R. Integration of planar cell polarity and ECM signaling in elongation of the vertebrate body plan. Current opinion in cell biology 2010; 22:589-96.
  • Sehring IM, Dong B, Denker E, Bhattachan P, Deng W, Mathiesen BT, Jiang D. An Equatorial Contractile Mechanism Drives Cell Elongation but not Cell Division. PLoS biology 2014; 12:e1001781.
  • Hamburger V, Hamilton HL. A series of normal stages in the development of the chick embryo. 1951. Developmental dynamics : an official publication of the American Association of Anatomists 1992; 195:231-72.
  • Drake CJ, Davis LA, Little CD. Antibodies to beta 1-integrins cause alterations of aortic vasculogenesis, in vivo. Developmental dynamics : an official publication of the American Association of Anatomists 1992; 193:83-91.
  • Streit A. EC culture: a method to culture early chick embryos. Methods in molecular biology (Clifton, NJ) 2008; 461:255-64.
  • Svoboda KK, Moessner P, Field T, Acevedo J. ROCK inhibitor (Y27632) increases apoptosis and disrupts the actin cortical mat in embryonic avian corneal epithelium. Developmental dynamics : an official publication of the American Association of Anatomists 2004; 229:579-90.
  • Sato Y, Poynter G, Huss D, Filla MB, Czirok A, Rongish BJ, Little CD, Fraser SE, Lansford R. Dynamic analysis of vascular morphogenesis using transgenic quail embryos. PloS one 2010; 5:e12674.
  • Poynter G, Huss D, Lansford R. Japanese quail: an efficient animal model for the production of transgenic avians. Cold Spring Harbor protocols 2009; 2009:pdb emo112.
  • Poynter G, Lansford R. Generating transgenic quail using lentiviruses. Methods in cell biology 2008; 87:281-93.
  • Little CD, Drake CJ. Whole-mount immunolabeling of embryos by microinjection. Increased detection levels of extracellular and cell surface epitopes. Methods in molecular biology (Clifton, NJ) 2000; 135:183-9.
  • Chapman SC, Collignon J, Schoenwolf GC, Lumsden A. Improved method for chick whole-embryo culture using a filter paper carrier. Developmental dynamics : an official publication of the American Association of Anatomists 2001; 220:284-9.
  • Czirok A, Rupp PA, Rongish BJ, Little CD. Multi-field 3D scanning light microscopy of early embryogenesis. Journal of microscopy 2002; 206:209-17.

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