Isolation of intact vacuoles from Arabidopsis rosette leaf–derived protoplasts. Robert, S., Zouhar, J., Carter, C., & Raikhel, N. Nature Protocols, 2(2):259–262, February, 2007. Number: 2 Publisher: Nature Publishing GroupPaper doi abstract bibtex Vacuoles are very prominent compartments within plant cells, and understanding of their function relies on knowledge of their content. Here, we present a simple vacuole purification protocol that was successfully used for large-scale isolation of vacuoles, free of significant contamination from other endomembrane compartments. This method is based on osmotic and thermal disruption of mesophyl-derived Arabidopsis protoplasts, followed by a density gradient fractionation of the cellular content. The whole procedure, including protoplast isolation, takes approximately 6 h.
@article{robert_isolation_2007,
title = {Isolation of intact vacuoles from {Arabidopsis} rosette leaf–derived protoplasts},
volume = {2},
copyright = {2007 Nature Publishing Group},
issn = {1750-2799},
url = {https://www.nature.com/articles/nprot.2007.26},
doi = {10/c58qb9},
abstract = {Vacuoles are very prominent compartments within plant cells, and understanding of their function relies on knowledge of their content. Here, we present a simple vacuole purification protocol that was successfully used for large-scale isolation of vacuoles, free of significant contamination from other endomembrane compartments. This method is based on osmotic and thermal disruption of mesophyl-derived Arabidopsis protoplasts, followed by a density gradient fractionation of the cellular content. The whole procedure, including protoplast isolation, takes approximately 6 h.},
language = {en},
number = {2},
urldate = {2021-06-10},
journal = {Nature Protocols},
author = {Robert, Stéphanie and Zouhar, Jan and Carter, Clay and Raikhel, Natasha},
month = feb,
year = {2007},
note = {Number: 2
Publisher: Nature Publishing Group},
pages = {259--262},
}
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