Matches in UGent Biblio for { <https://biblio.ugent.be/publication/3202755#aggregation> ?p ?o. }
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- aggregation classification "A1".
- aggregation creator B604528.
- aggregation creator B604529.
- aggregation creator B604530.
- aggregation creator B604531.
- aggregation creator B604532.
- aggregation creator person.
- aggregation creator person.
- aggregation date "2006".
- aggregation format "application/pdf".
- aggregation hasFormat 3202755.bibtex.
- aggregation hasFormat 3202755.csv.
- aggregation hasFormat 3202755.dc.
- aggregation hasFormat 3202755.didl.
- aggregation hasFormat 3202755.doc.
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- aggregation hasFormat 3202755.txt.
- aggregation hasFormat 3202755.xls.
- aggregation hasFormat 3202755.yaml.
- aggregation isPartOf urn:issn:1534-5807.
- aggregation language "eng".
- aggregation rights "I have transferred the copyright for this publication to the publisher".
- aggregation subject "Biology and Life Sciences".
- aggregation title "Endocytosis of cell surface material mediates cell plate formation during plant cytokinesis".
- aggregation abstract "Dividing plant cells perform a remarkable task of building a new cell wall within the cytoplasm in a few minutes. A long-standing paradigm claims that this primordial cell wall, known as the cell plate, is generated by delivery of newly synthesized material from Golgi apparatus-originated secretory vesicles. Here, we show that, in diverse plant species, cell surface material, including plasma membrane proteins, cell wall components, and exogenously applied endocytic tracers, is rapidly delivered to the forming cell plate. Importantly, this occurs even when de novo protein synthesis is blocked. In addition, cytokinesis-specific syntaxin KNOLLE as well as plasma membrane (PM) resident proteins localize to endosomes that fuse to initiate the cell plate. The rate of endocytosis is strongly enhanced during cell plate formation, and its genetic or pharmacological inhibition leads to cytokinesis defects. Our results reveal that endocytic delivery of cell surface material significantly contributes to cell plate formation during plant cytokinesis.".
- aggregation authorList BK959795.
- aggregation endPage "150".
- aggregation issue "1".
- aggregation startPage "137".
- aggregation volume "10".
- aggregation aggregates 3212711.
- aggregation isDescribedBy 3202755.
- aggregation similarTo j.devcel.2005.11.015.
- aggregation similarTo LU-3202755.