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  6. Ethylene Stimulates Nutations That Are Dependent on the ETR1 Receptor
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Ethylene Stimulates Nutations That Are Dependent on the ETR1 Receptor

Source Publication
Plant Physiology
Date Issued
January 1, 2006
Author(s)
Binder, Brad M.  
O'Malley, Ronan C.
Wang, Wuyi
Zutz, Tobias C.
Bleecker, Anthony B.
DOI
10.1104/pp.106.087858
Link to full text
http://www.plantphysiol.org/cgi/gca?sendit=Get+All+Checked+Abstract%28s%29&SEARCHID=1&VOLUME=142&FIRSTPAGE=1690&FIRSTINDEX=0&hits=10&RESULTFORMAT=&gca=pp.106.087858
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/15577
Abstract

Ethylene influences a number of processes in Arabidopsis (Arabidopsis thaliana) through the action of five receptors. In this study, we used high-resolution, time-lapse imaging to examine the long-term effects of ethylene on growing, etiolated Arabidopsis seedlings. These measurements revealed that ethylene stimulates nutations of the hypocotyls with an average delay in onset of over 6 h. The nutation response was constitutive in ctr1-2 mutants maintained in air, whereas ein2-1 mutants failed to nutate when treated with ethylene. Ethylene-stimulated nutations were also eliminated in etr1-7 loss-of-function mutants. Transformation of the etr1-7 mutant with a wild-type genomic ETR1 transgene rescued the nutation phenotype, further supporting a requirement for ETR1. Loss-of-function mutations in the other receptor isoforms had no effect on ethylene-stimulated nutations. However, the double ers1-2 ers2-3 and triple etr2-3 ers2-3 ein4-4 loss-of-function mutants constitutively nutated in air. These results support a model where all the receptors are involved in ethylene-stimulated nutations, but the ETR1 receptor is required and has a contrasting role from the other receptor isoforms in this nutation phenotype. Naphthylphthalamic acid eliminated ethylene-stimulated nutations but had no effect on growth inhibition caused by ethylene, pointing to a role for auxin transport in the nutation phenotype.

Disciplines
Biochemistry
Molecular Biology
Plant Biology
Recommended Citation
Brad M. Binder, Ronan C. O'Malley, Wuyi Wang, Tobias C. Zutz, and Anthony B. Bleecker Ethylene Stimulates Nutations That Are Dependent on the ETR1 Receptor Plant Physiol. 142: 1690-1700.
Submission Type
Publisher's Version
Embargo Date
September 2, 2010
File(s)
Thumbnail Image
Name

pp1421690.pdf

Size

642.42 KB

Format

Adobe PDF

Checksum (MD5)

c31d8eb6393eda5547a928e8e778f531


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