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  2. Archenteron - Wikipedia

    en.wikipedia.org/wiki/Archenteron

    The cells continue to be rearranged until the shallow dip formed by invagination transforms into a deeper, narrower pouch formed by the gastrula's endoderm. This pouch narrows and lengthens to become the archenteron, a process driven by convergent extension. The open end of the archenteron is called the blastopore.

  3. Gastrulation - Wikipedia

    en.wikipedia.org/wiki/Gastrulation

    Before gastrulation, the embryo is a continuous epithelial sheet of cells; by the end of gastrulation, the embryo has begun differentiation to establish distinct cell lineages, set up the basic axes of the body (e.g. dorsal–ventral, anterior–posterior), and internalized one or more cell types including the prospective gut.

  4. Gastruloid - Wikipedia

    en.wikipedia.org/wiki/Gastruloid

    Gastruloids are three dimensional aggregates of embryonic stem cells (ESCs) that, when cultured in specific conditions, exhibit an organization resembling that of an embryo. They develop with three orthogonal axes and contain the primordial cells for various tissues derived from the three germ layers, without the presence of extraembryonic tissues.

  5. Organogenesis - Wikipedia

    en.wikipedia.org/wiki/Organogenesis

    Mesoderm cells condense to form a rod which will send out signals to redirect the ectoderm cells above. This fold along the neural tube sets up the vertebrate central nervous system. The endoderm is the inner most germ layer of the embryo which gives rise to gastrointestinal and respiratory organs by forming epithelial linings and organs such ...

  6. Germ layer - Wikipedia

    en.wikipedia.org/wiki/Germ_layer

    During the next stage, cleavage, mitotic cell divisions transform the zygote into a hollow ball of cells, a blastula. This early embryonic form undergoes gastrulation, forming a gastrula with either two or three layers (the germ layers). In all vertebrates, these progenitor cells differentiate into all adult tissues and organs. [5]

  7. Mesoderm - Wikipedia

    en.wikipedia.org/wiki/Mesoderm

    The cells of the epiblast move toward the primitive streak and slip beneath it, in a process called "invagination". Some of the migrating cells displace the hypoblast and create the endoderm, and other cells migrate between the endoderm and the epiblast to create the mesoderm. The remaining cells form the ectoderm.

  8. Histogenesis - Wikipedia

    en.wikipedia.org/wiki/Histogenesis

    Histogenesis is the formation of different tissues from undifferentiated cells. [1] These cells are constituents of three primary germ layers , the endoderm , mesoderm , and ectoderm . The science of the microscopic structures of the tissues formed within histogenesis is termed histology .

  9. Somitogenesis - Wikipedia

    en.wikipedia.org/wiki/Somitogenesis

    Once the cells of the pre-somitic mesoderm are in place following cell migration during gastrulation, oscillatory expression of many genes begins in these cells as if regulated by a developmental "clock." As mentioned previously, this has led many to conclude that somitogenesis is coordinated by a "clock and wave" mechanism.

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