Multicolour three dimensional structured illumination microscopy of immunolabeled plant microtubules and associated proteins

Abstract Background In the present work, we provide an account of structured illumination microscopy (SIM) imaging of fixed and immunolabeled plant probes. We take advantage of SIM, to superresolve intracellular structures at a considerable z-range and circumvent its low temporal resolution capacity...

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Published in:Plant Methods
Main Authors: T. Vavrdová, O. Šamajová, P. Křenek, M. Ovečka, P. Floková, R. Šnaurová, J. Šamaj, G. Komis
Format: Article
Language:English
Published: BMC 2019-03-01
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Online Access:http://link.springer.com/article/10.1186/s13007-019-0406-z
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author T. Vavrdová
O. Šamajová
P. Křenek
M. Ovečka
P. Floková
R. Šnaurová
J. Šamaj
G. Komis
author_facet T. Vavrdová
O. Šamajová
P. Křenek
M. Ovečka
P. Floková
R. Šnaurová
J. Šamaj
G. Komis
author_sort T. Vavrdová
collection DOAJ
container_title Plant Methods
description Abstract Background In the present work, we provide an account of structured illumination microscopy (SIM) imaging of fixed and immunolabeled plant probes. We take advantage of SIM, to superresolve intracellular structures at a considerable z-range and circumvent its low temporal resolution capacity during the study of living samples. Further, we validate the protocol for the imaging of fixed transgenic material expressing fluorescent protein-based markers of different subcellular structures. Results Focus is given on 3D imaging of bulky subcellular structures, such as mitotic and cytokinetic microtubule arrays as well as on the performance of SIM using multichannel imaging and the quantitative correlations that can be deduced. As a proof of concept, we provide a superresolution output on the organization of cortical microtubules in wild-type and mutant Arabidopsis cells, including aberrant preprophase microtubule bands and phragmoplasts in a cytoskeletal mutant devoid of the p60 subunit of the microtubule severing protein KATANIN and refined details of cytoskeletal aberrations in the mitogen activated protein kinase (MAPK) mutant mpk4. We further demonstrate, in a qualitative and quantitative manner, colocalizations between MPK6 and unknown dually phosphorylated and activated MAPK species and we follow the localization of the microtubule associated protein 65-3 (MAP65-3) in telophase and cytokinetic microtubular arrays. Conclusions 3D SIM is a powerful, versatile and adaptable microscopy method for elucidating spatial relationships between subcellular compartments. Improved methods of sample preparation aiming to the compensation of refractive index mismatches, allow the use of 3D SIM in the documentation of complex plant cell structures, such as microtubule arrays and the elucidation of their interactions with microtubule associated proteins.
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spelling doaj-art-e27f8bb3e4fe4cfd9f669ac110ecd0eb2025-08-19T19:28:14ZengBMCPlant Methods1746-48112019-03-0115111710.1186/s13007-019-0406-zMulticolour three dimensional structured illumination microscopy of immunolabeled plant microtubules and associated proteinsT. Vavrdová0O. Šamajová1P. Křenek2M. Ovečka3P. Floková4R. Šnaurová5J. Šamaj6G. Komis7Department of Cell Biology, Centre of the Region Haná for Biotechnological and Agricultural Research, Faculty of Science, Palacký University OlomoucDepartment of Cell Biology, Centre of the Region Haná for Biotechnological and Agricultural Research, Faculty of Science, Palacký University OlomoucDepartment of Cell Biology, Centre of the Region Haná for Biotechnological and Agricultural Research, Faculty of Science, Palacký University OlomoucDepartment of Cell Biology, Centre of the Region Haná for Biotechnological and Agricultural Research, Faculty of Science, Palacký University OlomoucDepartment of Cell Biology, Centre of the Region Haná for Biotechnological and Agricultural Research, Faculty of Science, Palacký University OlomoucDepartment of Cell Biology, Centre of the Region Haná for Biotechnological and Agricultural Research, Faculty of Science, Palacký University OlomoucDepartment of Cell Biology, Centre of the Region Haná for Biotechnological and Agricultural Research, Faculty of Science, Palacký University OlomoucDepartment of Cell Biology, Centre of the Region Haná for Biotechnological and Agricultural Research, Faculty of Science, Palacký University OlomoucAbstract Background In the present work, we provide an account of structured illumination microscopy (SIM) imaging of fixed and immunolabeled plant probes. We take advantage of SIM, to superresolve intracellular structures at a considerable z-range and circumvent its low temporal resolution capacity during the study of living samples. Further, we validate the protocol for the imaging of fixed transgenic material expressing fluorescent protein-based markers of different subcellular structures. Results Focus is given on 3D imaging of bulky subcellular structures, such as mitotic and cytokinetic microtubule arrays as well as on the performance of SIM using multichannel imaging and the quantitative correlations that can be deduced. As a proof of concept, we provide a superresolution output on the organization of cortical microtubules in wild-type and mutant Arabidopsis cells, including aberrant preprophase microtubule bands and phragmoplasts in a cytoskeletal mutant devoid of the p60 subunit of the microtubule severing protein KATANIN and refined details of cytoskeletal aberrations in the mitogen activated protein kinase (MAPK) mutant mpk4. We further demonstrate, in a qualitative and quantitative manner, colocalizations between MPK6 and unknown dually phosphorylated and activated MAPK species and we follow the localization of the microtubule associated protein 65-3 (MAP65-3) in telophase and cytokinetic microtubular arrays. Conclusions 3D SIM is a powerful, versatile and adaptable microscopy method for elucidating spatial relationships between subcellular compartments. Improved methods of sample preparation aiming to the compensation of refractive index mismatches, allow the use of 3D SIM in the documentation of complex plant cell structures, such as microtubule arrays and the elucidation of their interactions with microtubule associated proteins.http://link.springer.com/article/10.1186/s13007-019-0406-zImmunofluorescenceMicrotubulesMicrotubule associated proteinsStructured illumination microscopy
spellingShingle T. Vavrdová
O. Šamajová
P. Křenek
M. Ovečka
P. Floková
R. Šnaurová
J. Šamaj
G. Komis
Multicolour three dimensional structured illumination microscopy of immunolabeled plant microtubules and associated proteins
Immunofluorescence
Microtubules
Microtubule associated proteins
Structured illumination microscopy
title Multicolour three dimensional structured illumination microscopy of immunolabeled plant microtubules and associated proteins
title_full Multicolour three dimensional structured illumination microscopy of immunolabeled plant microtubules and associated proteins
title_fullStr Multicolour three dimensional structured illumination microscopy of immunolabeled plant microtubules and associated proteins
title_full_unstemmed Multicolour three dimensional structured illumination microscopy of immunolabeled plant microtubules and associated proteins
title_short Multicolour three dimensional structured illumination microscopy of immunolabeled plant microtubules and associated proteins
title_sort multicolour three dimensional structured illumination microscopy of immunolabeled plant microtubules and associated proteins
topic Immunofluorescence
Microtubules
Microtubule associated proteins
Structured illumination microscopy
url http://link.springer.com/article/10.1186/s13007-019-0406-z
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