La multicelularidad se ha desarrollado de forma independiente en el curso de la evolución en diversos grupos filogenéticos, incluidos diferentes grupos bacterianos, e implica universalmente fenómenos de adhesión, comunicación y diferenciación celular. Se encuentran organismos multicelulares en grupos bacterianos como las actinobacterias, las...
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September 13, 2017 (v1)PublicationUploaded on: March 27, 2023
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May 12, 2020 (v1)Publication
Filamentous, heterocyst-forming cyanobacteria are multicellular organisms in which growth requires the activity of two interdependent cell types that exchange nutrients and regulators. Vegetative cells provide heterocysts with reduced carbon, and heterocysts provide vegetative cells with fixed nitrogen. Additionally, heterocyst differentiation...
Uploaded on: March 27, 2023 -
November 16, 2017 (v1)Publication
Heterocyst‐forming cyanobacteria grow as filaments that can be hundreds of cells long. Proteinaceous septal junctions provide cell–cell binding and communication functions in the filament. In Anabaena sp. strain PCC 7120, the SepJ protein is important for the formation of septal junctions. SepJ consists of integral membrane and extramembrane...
Uploaded on: March 27, 2023 -
November 24, 2017 (v1)Publication
Heterocyst-forming cyanobacteria are multicellular organisms that grow as filaments that can be hundreds of cells long. Septal junction complexes, of which SepJ is a possible component, appear to join the cells in the filament. SepJ is a cytoplasmic membrane protein that contains a long predicted periplasmic section and localizes not only to...
Uploaded on: March 27, 2023 -
August 29, 2017 (v1)Publication
Filamentous, heterocyst-forming cyanobacteria exchange nutrients and regulators between cells for diazotrophic growth. Two alternative modes of exchange have been discussed involving transport either through the periplasm or through septal junctions linking adjacent cells. Septal junctions and channels in the septal peptidoglycan are likely...
Uploaded on: December 5, 2022