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A Ratiometric Calcium Reporter CGf Reveals Calcium Dynamics Both in the Single Cell and Whole Plant Levels Under Heat Stress

Land plants evolved to quickly sense and adapt to temperature changes, such as hot days and cold nights. Given that calcium (Ca(2+)) signaling networks are implicated in most abiotic stress responses, heat-triggered changes in cytosolic Ca(2+) were investigated in Arabidopsis leaves and pollen. Plan...

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Autores principales: Weigand, Chrystle, Kim, Su-Hwa, Brown, Elizabeth, Medina, Emily, Mares, Moises, Miller, Gad, Harper, Jeffrey F., Choi, Won-Gyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8718611/
https://www.ncbi.nlm.nih.gov/pubmed/34975960
http://dx.doi.org/10.3389/fpls.2021.777975
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author Weigand, Chrystle
Kim, Su-Hwa
Brown, Elizabeth
Medina, Emily
Mares, Moises
Miller, Gad
Harper, Jeffrey F.
Choi, Won-Gyu
author_facet Weigand, Chrystle
Kim, Su-Hwa
Brown, Elizabeth
Medina, Emily
Mares, Moises
Miller, Gad
Harper, Jeffrey F.
Choi, Won-Gyu
author_sort Weigand, Chrystle
collection PubMed
description Land plants evolved to quickly sense and adapt to temperature changes, such as hot days and cold nights. Given that calcium (Ca(2+)) signaling networks are implicated in most abiotic stress responses, heat-triggered changes in cytosolic Ca(2+) were investigated in Arabidopsis leaves and pollen. Plants were engineered with a reporter called CGf, a ratiometric, genetically encoded Ca(2+) reporter with an mCherry reference domain fused to an intensiometric Ca(2+) reporter GCaMP6f. Relative changes in [Ca(2+)](cyt) were estimated based on CGf’s apparent K(D) around 220 nM. The ratiometric output provided an opportunity to compare Ca(2+) dynamics between different tissues, cell types, or subcellular locations. In leaves, CGf detected heat-triggered cytosolic Ca(2+) signals, comprised of three different signatures showing similarly rapid rates of Ca(2+) influx followed by differing rates of efflux (50% durations ranging from 5 to 19 min). These heat-triggered Ca(2+) signals were approximately 1.5-fold greater in magnitude than blue light-triggered signals in the same leaves. In contrast, growing pollen tubes showed two different heat-triggered responses. Exposure to heat caused tip-focused steady growth [Ca(2+)](cyt) oscillations to shift to a pattern characteristic of a growth arrest (22%), or an almost undetectable [Ca(2+)](cyt) (78%). Together, these contrasting examples of heat-triggered Ca(2+) responses in leaves and pollen highlight the diversity of Ca(2+) signals in plants, inviting speculations about their differing kinetic features and biological functions.
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spelling pubmed-87186112022-01-01 A Ratiometric Calcium Reporter CGf Reveals Calcium Dynamics Both in the Single Cell and Whole Plant Levels Under Heat Stress Weigand, Chrystle Kim, Su-Hwa Brown, Elizabeth Medina, Emily Mares, Moises Miller, Gad Harper, Jeffrey F. Choi, Won-Gyu Front Plant Sci Plant Science Land plants evolved to quickly sense and adapt to temperature changes, such as hot days and cold nights. Given that calcium (Ca(2+)) signaling networks are implicated in most abiotic stress responses, heat-triggered changes in cytosolic Ca(2+) were investigated in Arabidopsis leaves and pollen. Plants were engineered with a reporter called CGf, a ratiometric, genetically encoded Ca(2+) reporter with an mCherry reference domain fused to an intensiometric Ca(2+) reporter GCaMP6f. Relative changes in [Ca(2+)](cyt) were estimated based on CGf’s apparent K(D) around 220 nM. The ratiometric output provided an opportunity to compare Ca(2+) dynamics between different tissues, cell types, or subcellular locations. In leaves, CGf detected heat-triggered cytosolic Ca(2+) signals, comprised of three different signatures showing similarly rapid rates of Ca(2+) influx followed by differing rates of efflux (50% durations ranging from 5 to 19 min). These heat-triggered Ca(2+) signals were approximately 1.5-fold greater in magnitude than blue light-triggered signals in the same leaves. In contrast, growing pollen tubes showed two different heat-triggered responses. Exposure to heat caused tip-focused steady growth [Ca(2+)](cyt) oscillations to shift to a pattern characteristic of a growth arrest (22%), or an almost undetectable [Ca(2+)](cyt) (78%). Together, these contrasting examples of heat-triggered Ca(2+) responses in leaves and pollen highlight the diversity of Ca(2+) signals in plants, inviting speculations about their differing kinetic features and biological functions. Frontiers Media S.A. 2021-12-17 /pmc/articles/PMC8718611/ /pubmed/34975960 http://dx.doi.org/10.3389/fpls.2021.777975 Text en Copyright © 2021 Weigand, Kim, Brown, Medina, Mares, Miller, Harper and Choi. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Weigand, Chrystle
Kim, Su-Hwa
Brown, Elizabeth
Medina, Emily
Mares, Moises
Miller, Gad
Harper, Jeffrey F.
Choi, Won-Gyu
A Ratiometric Calcium Reporter CGf Reveals Calcium Dynamics Both in the Single Cell and Whole Plant Levels Under Heat Stress
title A Ratiometric Calcium Reporter CGf Reveals Calcium Dynamics Both in the Single Cell and Whole Plant Levels Under Heat Stress
title_full A Ratiometric Calcium Reporter CGf Reveals Calcium Dynamics Both in the Single Cell and Whole Plant Levels Under Heat Stress
title_fullStr A Ratiometric Calcium Reporter CGf Reveals Calcium Dynamics Both in the Single Cell and Whole Plant Levels Under Heat Stress
title_full_unstemmed A Ratiometric Calcium Reporter CGf Reveals Calcium Dynamics Both in the Single Cell and Whole Plant Levels Under Heat Stress
title_short A Ratiometric Calcium Reporter CGf Reveals Calcium Dynamics Both in the Single Cell and Whole Plant Levels Under Heat Stress
title_sort ratiometric calcium reporter cgf reveals calcium dynamics both in the single cell and whole plant levels under heat stress
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8718611/
https://www.ncbi.nlm.nih.gov/pubmed/34975960
http://dx.doi.org/10.3389/fpls.2021.777975
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