Abstract
The plant hormone abscisic acid (ABA) regulates diverse processes of plant growth and development. It has recently been proposed that GCR2 functions as a G-protein-coupled receptor (GPCR) for ABA. However, the structural relationships and functionality of GCR2 have been challenged by several independent studies. A central question in this controversy is whether gcr2 mutants are insensitive to ABA, because gcr2 mutants were shown to display reduced sensitivity to ABA under one experimental condition (e.g. 22 degrees C, continuous white light with 150 micromol m(-2) s(-1)) but were shown to display wild-type sensitivity under another slightly different condition (e.g. 23 degrees C, 14/10 hr photoperiod with 120 micromol m(-2) s(-1)). It has been hypothesized that gcr2 appears only weakly insensitive to ABA because two other GCR2-like genes in Arabidopsis, GCL1 and GCL2, compensate for the loss of function of GCR2. In order to test this hypothesis, we isolated a putative loss-of-function allele of GCL2, and then generated all possible combinations of mutations in each member of the GCR2 gene family. We found that all double mutants, including gcr2 gcl1, gcr2 gcl2, gcl1 gcl2, as well as the gcr2 gcl1 gcl2 triple mutant displayed wild-type sensitivity to ABA in seed germination and early seedling development assays, demonstrating that the GCR2 gene family is not required for ABA responses in these processes. These results provide compelling genetic evidence that GCR2 is unlikely to act as a receptor for ABA in the context of either seed germination or early seedling development.
MeSH Terms
Abscisic Acid/pharmacology
Arabidopsis/drug effects,genetics,growth & development
Arabidopsis Proteins/genetics
DNA, Bacterial/genetics
Genome, Plant
Germination/drug effects,physiology
Multigene Family
Mutagenesis
Receptors, G-Protein-Coupled/genetics
Reverse Transcriptase Polymerase Chain Reaction
Seedlings/drug effects,physiology
Seeds/drug effects,physiology
Chemicals
Arabidopsis Proteins
DNA, Bacterial
GCR2 protein, Arabidopsis
Receptors, G-Protein-Coupled
T-DNA
Abscisic Acid
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Guo Jianjun
Department of Botany, University of British Columbia, Vancouver, British Columbia, Canada.
Zeng Qingning
Emami Mohammad
Ellis Brian E
Chen Jin-Gui
References (24)
24 references, click to expand
-
Plant heterotrimeric G protein function: insights from Arabidopsis and rice mutants.
Curr Opin Plant Biol. 2004 Dec;7(6):719-31
PMID: 15491922
-
Plants: the latest model system for G-protein research.
EMBO Rep. 2004 Jun;5(6):572-8
PMID: 15170476
-
Biosynthesis and mode of action of lantibiotics.
Chem Rev. 2005 Feb;105(2):633-84
PMID: 15700960
-
Differential roles of Arabidopsis heterotrimeric G-protein subunits in modulating cell division in roots.
Plant Physiol. 2006 Jul;141(3):887-97
PMID: 16679415
-
New developments in abscisic acid perception and metabolism.
Curr Opin Plant Biol. 2007 Oct;10(5):447-52
PMID: 17875396
-
Genetic characterization reveals no role for the reported ABA receptor, GCR2, in ABA control of seed germination and early seedling development in Arabidopsis.
Plant J. 2007 Dec;52(6):1001-13
PMID: 17894782
-
The plant heterotrimeric G-protein complex.
Annu Rev Plant Biol. 2007;58:249-66
PMID: 17201690
-
The Arabidopsis F-box protein TIR1 is an auxin receptor.
Nature. 2005 May 26;435(7041):446-51
PMID: 15917798
-
Heterotrimeric and unconventional GTP binding proteins in plant cell signaling.
Plant Cell. 2002;14 Suppl:S355-73
PMID: 12045288
-
An update on abscisic acid signaling in plants and more...
Mol Plant. 2008 Mar;1(2):198-217
PMID: 19825533
-
Lantibiotics: biosynthesis and biological activities of uniquely modified peptides from gram-positive bacteria.
Annu Rev Microbiol. 1998;52:41-79
PMID: 9891793
-
The Mg-chelatase H subunit is an abscisic acid receptor.
Nature. 2006 Oct 19;443(7113):823-6
PMID: 17051210
-
Perception and transduction of abscisic acid signals: keys to the function of the versatile plant hormone ABA.
Trends Plant Sci. 2007 Aug;12(8):343-51
PMID: 17629540
-
The RNA-binding protein FCA is an abscisic acid receptor.
Nature. 2006 Jan 19;439(7074):290-4
PMID: 16421562
-
GCR2 is a new member of the eukaryotic lanthionine synthetase component C-like protein family.
Plant Signal Behav. 2008 May;3(5):307-10
PMID: 19841654
-
Criteria for confirming sequence periodicity identified by Fourier transform analysis: application to GCR2, a candidate plant GPCR?
Biophys Chem. 2008 Mar;133(1-3):28-35
PMID: 18086512
-
Modulation of cell proliferation by heterotrimeric G protein in Arabidopsis.
Science. 2001 Jun 15;292(5524):2066-9
PMID: 11408654
-
GENEVESTIGATOR. Arabidopsis microarray database and analysis toolbox.
Plant Physiol. 2004 Sep;136(1):2621-32
PMID: 15375207
-
Plant development is regulated by a family of auxin receptor F box proteins.
Dev Cell. 2005 Jul;9(1):109-19
PMID: 15992545
-
A G protein-coupled receptor is a plasma membrane receptor for the plant hormone abscisic acid.
Science. 2007 Mar 23;315(5819):1712-6
PMID: 17347412
-
Comment on "A G protein coupled receptor is a plasma membrane receptor for the plant hormone abscisic acid".
Science. 2007 Nov 9;318(5852):914; author reply 914
PMID: 17991845
-
Abscisic acid receptors: multiple signal-perception sites.
Ann Bot. 2008 Feb;101(3):311-7
PMID: 17981876
-
The F-box protein TIR1 is an auxin receptor.
Nature. 2005 May 26;435(7041):441-5
PMID: 15917797
-
The beta-subunit of the Arabidopsis G protein negatively regulates auxin-induced cell division and affects multiple developmental processes.
Plant Cell. 2003 Feb;15(2):393-409
PMID: 12566580