AbstractIn Volvox carteri adults, reproductive cells called gonidia are enclosed within a spherical monolayer of biflagellate somatic cells. Embryos must “invert” (turn inside out) to achieve this configuration, however, because at the end of cleavage the gonidia are on the outside and the flagellar ends of all somatic cells point inward. Generation of a bend region adequate to turn the embryo inside out involves a dramatic change in cell shape, plus cell movements. Here, we cloned a gene called invA that is essential for inversion and found that it codes for a kinesin localized in the cytoplasmic bridges that link all cells to their neighbors. In invA null mutants, cells change shape normally, but are unable to move relative to the cytopla...
<p>(a) Adult spheroid with somatic cells and one embryo labelled. Scale bar: 50 μm. (b) Schematic dr...
In Volvox carteri development, visibly asymmetric cleavage divisions set apart large embryonic cells...
AbstractGlsA, a J-protein chaperone, is required for the asymmetric divisions that set aside germ an...
AbstractIn Volvox carteri adults, reproductive cells called gonidia are enclosed within a spherical ...
AbstractDuring its development, the multicellular green alga Volvox undergoes inversion, in which sp...
Abstract Background Epithelial folding is a common morphogenetic process during the development of m...
Hallmann A. Morphogenesis in the family Volvocaceae: different tactics for turning an embryo right-s...
Höhn S, Hallmann A. There is more than one way to turn a spherical cellular monolayer inside out: ty...
The embryos of the green alga Volvox carteri are spherical sheets of cells that turn themselves insi...
The embryos of the green alga Volvox carteri are spherical sheets of cells that turn themselves insi...
Hallmann A, Kirk DL. The developmentally regulated ECM glycoprotein ISG plays an essential role in o...
Höhn S, Hallmann A. Distinct shape-shifting regimes of bowl-shaped cell sheets – embryonic inversion...
AbstractVolvox carteri is a spherical green alga with a predominantly asexual mode of reproduction a...
von der Heyde EL, Hallmann A. Molecular and cellular dynamics of early embryonic cell divisions in V...
Elastic objects across a wide range of scales deform under local changes of their intrinsic properti...
<p>(a) Adult spheroid with somatic cells and one embryo labelled. Scale bar: 50 μm. (b) Schematic dr...
In Volvox carteri development, visibly asymmetric cleavage divisions set apart large embryonic cells...
AbstractGlsA, a J-protein chaperone, is required for the asymmetric divisions that set aside germ an...
AbstractIn Volvox carteri adults, reproductive cells called gonidia are enclosed within a spherical ...
AbstractDuring its development, the multicellular green alga Volvox undergoes inversion, in which sp...
Abstract Background Epithelial folding is a common morphogenetic process during the development of m...
Hallmann A. Morphogenesis in the family Volvocaceae: different tactics for turning an embryo right-s...
Höhn S, Hallmann A. There is more than one way to turn a spherical cellular monolayer inside out: ty...
The embryos of the green alga Volvox carteri are spherical sheets of cells that turn themselves insi...
The embryos of the green alga Volvox carteri are spherical sheets of cells that turn themselves insi...
Hallmann A, Kirk DL. The developmentally regulated ECM glycoprotein ISG plays an essential role in o...
Höhn S, Hallmann A. Distinct shape-shifting regimes of bowl-shaped cell sheets – embryonic inversion...
AbstractVolvox carteri is a spherical green alga with a predominantly asexual mode of reproduction a...
von der Heyde EL, Hallmann A. Molecular and cellular dynamics of early embryonic cell divisions in V...
Elastic objects across a wide range of scales deform under local changes of their intrinsic properti...
<p>(a) Adult spheroid with somatic cells and one embryo labelled. Scale bar: 50 μm. (b) Schematic dr...
In Volvox carteri development, visibly asymmetric cleavage divisions set apart large embryonic cells...
AbstractGlsA, a J-protein chaperone, is required for the asymmetric divisions that set aside germ an...