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Changes in Root Cap pH Are Required for the Gravity Response of the Arabidopsis Root

Jeremiah M. Fasano, Sarah J. Swanson, Elison B. Blancaflor, Peter E. Dowd, Teh-hui Kao, Simon Gilroy
Jeremiah M. Fasano
a Biology Department, The Pennsylvania State University, 208 Mueller Lab, University Park, Pennsylvania 16802
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Sarah J. Swanson
a Biology Department, The Pennsylvania State University, 208 Mueller Lab, University Park, Pennsylvania 16802
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Elison B. Blancaflor
a Biology Department, The Pennsylvania State University, 208 Mueller Lab, University Park, Pennsylvania 16802
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Peter E. Dowd
b Biochemistry and Molecular Biology Department, The Pennsylvania State University, 208 Mueller Lab, University Park, Pennsylvania 16802
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Teh-hui Kao
b Biochemistry and Molecular Biology Department, The Pennsylvania State University, 208 Mueller Lab, University Park, Pennsylvania 16802
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Simon Gilroy
a Biology Department, The Pennsylvania State University, 208 Mueller Lab, University Park, Pennsylvania 16802
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  • For correspondence: sxg12@psu.edu

Published April 2001. DOI: https://doi.org/10.1105/tpc.13.4.907

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  • © 2001 American Society of Plant Physiologists

Abstract

Although the columella cells of the root cap have been identified as the site of gravity perception, the cellular events that mediate gravity signaling remain poorly understood. To determine if cytoplasmic and/or wall pH mediates the initial stages of root gravitropism, we combined a novel cell wall pH sensor (a cellulose binding domain peptide–Oregon green conjugate) and a cytoplasmic pH sensor (plants expressing pH-sensitive green fluorescent protein) to monitor pH dynamics throughout the graviresponding Arabidopsis root. The root cap apoplast acidified from pH 5.5 to 4.5 within 2 min of gravistimulation. Concomitantly, cytoplasmic pH increased in columella cells from 7.2 to 7.6 but was unchanged elsewhere in the root. These changes in cap pH preceded detectable tropic growth or growth-related pH changes in the elongation zone cell wall by 10 min. Altering the gravity-related columella cytoplasmic pH shift with caged protons delayed the gravitropic response. Together, these results suggest that alterations in root cap pH likely are involved in the initial events that mediate root gravity perception or signal transduction.

  • Received December 5, 2000.
  • Accepted February 6, 2001.
  • Published April 1, 2001.
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Changes in Root Cap pH Are Required for the Gravity Response of the Arabidopsis Root
Jeremiah M. Fasano, Sarah J. Swanson, Elison B. Blancaflor, Peter E. Dowd, Teh-hui Kao, Simon Gilroy
The Plant Cell Apr 2001, 13 (4) 907-921; DOI: 10.1105/tpc.13.4.907

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Changes in Root Cap pH Are Required for the Gravity Response of the Arabidopsis Root
Jeremiah M. Fasano, Sarah J. Swanson, Elison B. Blancaflor, Peter E. Dowd, Teh-hui Kao, Simon Gilroy
The Plant Cell Apr 2001, 13 (4) 907-921; DOI: 10.1105/tpc.13.4.907
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The Plant Cell Online: 13 (4)
The Plant Cell
Vol. 13, Issue 4
Apr 2001
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