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GA3 enhances root responsiveness to exogenous IAA by modulating auxin transport and signalling in Arabidopsis

Overview of attention for article published in Plant Cell Reports, December 2014
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Title
GA3 enhances root responsiveness to exogenous IAA by modulating auxin transport and signalling in Arabidopsis
Published in
Plant Cell Reports, December 2014
DOI 10.1007/s00299-014-1728-y
Pubmed ID
Authors

Guijun Li, Changhua Zhu, Lijun Gan, Denny Ng, Kai Xia

Abstract

We used auxin-signalling mutants, auxin transport mutants, and auxin-related marker lines to show that exogenously applied GA enhances auxin-induced root inhibition by affecting auxin signalling and transport. Variation in root elongation is valuable when studying the interactions of phytohormones. Auxins influence the biosynthesis and signalling of gibberellins (GAs), but the influence of GAs on auxins in root elongation is poorly understood. This study was conducted to investigate the effect of GA3 on Arabidopsis root elongation in the presence of auxin. Root elongation was inhibited in roots treated with both IAA and GA3, compared to IAA alone, and the effect was dose dependent. Further experiments showed that GA3 could modulate auxin signalling based on root elongation in auxin-signalling mutants and the expression of auxin-responsive reporters. The GA3-enhanced inhibition of root elongation observed in the wild type was not found in the auxin-signalling mutants tir1-1 and axr1-3. GA3 increased DR5::GUS expression in the root meristem and elongation zones, and IAA2::GUS in the columella. The DR5rev::GFP signal was enhanced in columella cells of the root caps and in the elongation zone in GA3-treated seedling roots. A reduction was observed in the stele of PAC-treated roots. We also examined the effect of GA3 on auxin transport. The enhanced responsiveness caused by GA3 was not observed in the auxin influx mutant aux1-7 or the efflux mutant eir1-1. Additional molecular data demonstrated that GA3 could promote auxin transport via AUX1 and PIN proteins. However, GA3-induced PIN gene expression did not fully explain GA-enhanced PIN protein accumulation. These results suggest that GA3 is involved in auxin-mediated primary root elongation by modulating auxin signalling and transport, and thus enhances root responsiveness to exogenous IAA.

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Geographical breakdown

Country Count As %
Chile 1 1%
Netherlands 1 1%
France 1 1%
Argentina 1 1%
Unknown 65 94%

Demographic breakdown

Readers by professional status Count As %
Researcher 11 16%
Student > Ph. D. Student 10 14%
Student > Master 10 14%
Student > Doctoral Student 6 9%
Professor > Associate Professor 6 9%
Other 11 16%
Unknown 15 22%
Readers by discipline Count As %
Agricultural and Biological Sciences 34 49%
Biochemistry, Genetics and Molecular Biology 10 14%
Unspecified 1 1%
Environmental Science 1 1%
Nursing and Health Professions 1 1%
Other 3 4%
Unknown 19 28%
Attention Score in Context

Attention Score in Context

This research output has an Altmetric Attention Score of 1. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 11 May 2016.
All research outputs
#20,247,117
of 22,775,504 outputs
Outputs from Plant Cell Reports
#1,985
of 2,181 outputs
Outputs of similar age
#295,823
of 353,182 outputs
Outputs of similar age from Plant Cell Reports
#14
of 31 outputs
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