Live imaging Arabidopsis thaliana embryos under different hydration conditions

Summary: Despite the ecological and agronomical importance of seed germination, how seeds integrate environmental signals to trigger germination remains enigmatic. Recently we reported that a protein called FLOE1 is involved in sensing and responding to water availability during germination. Here, w...

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Main Authors: Yanniv Dorone, Steven Boeynaems, Seung Y. Rhee
Format: Article
Language:English
Published: Elsevier 2021-12-01
Series:STAR Protocols
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2666166721007310
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author Yanniv Dorone
Steven Boeynaems
Seung Y. Rhee
author_facet Yanniv Dorone
Steven Boeynaems
Seung Y. Rhee
author_sort Yanniv Dorone
collection DOAJ
description Summary: Despite the ecological and agronomical importance of seed germination, how seeds integrate environmental signals to trigger germination remains enigmatic. Recently we reported that a protein called FLOE1 is involved in sensing and responding to water availability during germination. Here, we present a live-imaging protocol to assess the subcellular localization of a protein of interest during imbibition of desiccated Arabidopsis thaliana seeds with the goal of understanding protein dynamics during the early stages of water uptake.For complete details on the use and execution of this profile, please refer to Dorone et al. (2021).
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spelling doaj.art-d9183e333dc1432c90d81dcaf27aaae22022-12-21T18:44:29ZengElsevierSTAR Protocols2666-16672021-12-0124101025Live imaging Arabidopsis thaliana embryos under different hydration conditionsYanniv Dorone0Steven Boeynaems1Seung Y. Rhee2Department of Plant Biology, Carnegie Institution for Science, Stanford, CA 94305, USA; Department of Biology, Stanford University, Stanford, CA 94305, USA; Corresponding authorDepartment of Genetics, Stanford University School of Medicine, Stanford, CA 94305, USA; Corresponding authorDepartment of Plant Biology, Carnegie Institution for Science, Stanford, CA 94305, USA; Corresponding authorSummary: Despite the ecological and agronomical importance of seed germination, how seeds integrate environmental signals to trigger germination remains enigmatic. Recently we reported that a protein called FLOE1 is involved in sensing and responding to water availability during germination. Here, we present a live-imaging protocol to assess the subcellular localization of a protein of interest during imbibition of desiccated Arabidopsis thaliana seeds with the goal of understanding protein dynamics during the early stages of water uptake.For complete details on the use and execution of this profile, please refer to Dorone et al. (2021).http://www.sciencedirect.com/science/article/pii/S2666166721007310Cell BiologyDevelopmental biologyMicroscopyModel OrganismsPlant sciencesMolecular Biology
spellingShingle Yanniv Dorone
Steven Boeynaems
Seung Y. Rhee
Live imaging Arabidopsis thaliana embryos under different hydration conditions
STAR Protocols
Cell Biology
Developmental biology
Microscopy
Model Organisms
Plant sciences
Molecular Biology
title Live imaging Arabidopsis thaliana embryos under different hydration conditions
title_full Live imaging Arabidopsis thaliana embryos under different hydration conditions
title_fullStr Live imaging Arabidopsis thaliana embryos under different hydration conditions
title_full_unstemmed Live imaging Arabidopsis thaliana embryos under different hydration conditions
title_short Live imaging Arabidopsis thaliana embryos under different hydration conditions
title_sort live imaging arabidopsis thaliana embryos under different hydration conditions
topic Cell Biology
Developmental biology
Microscopy
Model Organisms
Plant sciences
Molecular Biology
url http://www.sciencedirect.com/science/article/pii/S2666166721007310
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AT stevenboeynaems liveimagingarabidopsisthalianaembryosunderdifferenthydrationconditions
AT seungyrhee liveimagingarabidopsisthalianaembryosunderdifferenthydrationconditions