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Interommatidial cells build a tensile collagen network during Drosophila retinal morphogenesis.
Ready, Donald F; Chang, Henry C.
Affiliation
  • Ready DF; Department of Biological Sciences, Purdue University, 915 West State Street, West Lafayette, IN 47907-2054, USA.
  • Chang HC; Department of Biological Sciences, Purdue University, 915 West State Street, West Lafayette, IN 47907-2054, USA. Electronic address: hcchang@purdue.edu.
Curr Biol ; 33(11): 2223-2234.e3, 2023 06 05.
Article in En | MEDLINE | ID: mdl-37209679
ABSTRACT
Drosophila compound eye morphogenesis transforms a simple epithelium into an approximate hollow hemisphere comprised of ∼700 ommatidia, packed as tapering hexagonal prisms between a rigid external array of cuticular lenses and a parallel, rigid internal floor, the fenestrated membrane (FM). Critical to vision, photosensory rhabdomeres are sprung between these two surfaces, grading their length and shape accurately across the eye and aligning them to the optical axis. Using fluorescently tagged collagen and laminin, we show that that the FM assembles sequentially, emerging in the larval eye disc in the wake of the morphogenetic furrow as the original collagen-containing basement membrane (BM) separates from the epithelial floor and is replaced by a new, laminin-rich BM, which advances around axon bundles of newly differentiated photoreceptors as they exit the retina, forming fenestrae in this new, laminin-rich BM. In mid-pupal development, the interommatidial cells (IOCs) autonomously deposit collagen at fenestrae, forming rigid, tension-resisting grommets. In turn, stress fibers assemble in the IOC basal endfeet, where they contact grommets at anchorages mediated by integrin linked kinase (ILK). The hexagonal network of IOC endfeet tiling the retinal floor couples nearest-neighbor grommets into a supracellular tri-axial tension network. Late in pupal development, IOC stress fiber contraction folds pliable BM into a hexagonal grid of collagen-stiffened ridges, concomitantly decreasing the area of convex FM and applying essential morphogenetic longitudinal tension to rapidly growing rhabdomeres. Together, our results reveal an orderly program of sequential assembly and activation of a supramolecular tensile network that governs Drosophila retinal morphogenesis.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Drosophila melanogaster Limits: Animals Language: En Journal: Curr Biol Journal subject: BIOLOGIA Year: 2023 Document type: Article Affiliation country: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Drosophila melanogaster Limits: Animals Language: En Journal: Curr Biol Journal subject: BIOLOGIA Year: 2023 Document type: Article Affiliation country: United States