Home LiteratureArticle Details
PMID: 11115879 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Arabidopsis mutants resistant to S(+)-beta-methyl-alpha, beta-diaminopropionic acid, a cycad-derived glutamate receptor agonist.

Plant physiology ·Vol. 124 ·No. 4 ·2000-12-00 ·Pages 1615-24

Brenner ED, Martinez-Barboza N, Clark AP, Liang QS, Stevenson DW, Coruzzi GM

Abstract

Ionotropic glutamate receptors (iGluRs) are ligand-gated ion channels that are the predominant neuroreceptors in the mammalian brain. Genes with high sequence similarity to animal iGluRs have been identified in Arabidopsis. To understand the role of Arabidopsis glutamate receptor-like (AtGLR) genes in plants, we have taken a pharmacological approach by examining the effects of BMAA [S(+)-beta-methyl-alpha, beta-diaminopropionic acid], a cycad-derived iGluR agonist, on Arabidopsis morphogenesis. When applied to Arabidopsis seedlings, BMAA caused a 2- to 3-fold increase in hypocotyl elongation and inhibited cotyledon opening during early seedling development. The effect of BMAA on hypocotyl elongation is light specific. Furthermore, BMAA effects on early morphogenesis of Arabidopsis can be reversed by the simultaneous application of glutamate, the native iGluR agonist in animals. To determine the targets of BMAA action in Arabidopsis, a genetic screen was devised to isolate Arabidopsis mutants with a BMAA insensitive morphology (bim). When grown in the light on BMAA, bim mutants exhibited short hypocotyls compared with wild type. bim mutants were grouped into three classes based on their morphology when grown in the dark in the absence of BMAA. Class-I bim mutants have a normal, etiolated morphology, similar to wild-type plants. Class-II bim mutants have shorter hypocotyls and closed cotyledons when grown in the dark. Class-III bim mutants have short hypocotyls and open cotyledons when grown in the dark, resembling the previously characterized constitutively photomorphogenic mutants (cop, det, fus, and shy). Further analysis of the bim mutants should help define whether plant-derived iGluR agonists target glutamate receptor signaling pathways in plants.

MeSH Terms
Amino Acids, Diamino/pharmacology Arabidopsis/drug effects,genetics,growth & development Cotyledon/drug effects,genetics,growth & development Cyanobacteria Toxins Dose-Response Relationship, Drug Excitatory Amino Acid Agonists/pharmacology Hypocotyl/drug effects,genetics,growth & development Light Morphogenesis/drug effects,genetics,radiation effects Mutagenesis/drug effects Mutation Phenotype Plant Development Plants/chemistry,drug effects,genetics
Chemicals
Amino Acids, Diamino Cyanobacteria Toxins Excitatory Amino Acid Agonists beta-N-methylamino-L-alanine
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Brenner E D
Department of Biology, New York University, New York, New York 10003, USA.
Martinez-Barboza N
Clark A P
Liang Q S
Stevenson D W
Coruzzi G M
References (48)
48 references, click to expand
  1. Identification of nonprotein amino acids from cycad seeds as N-ethoxycarbonyl ethyl ester derivatives by positive chemical-ionization gas chromatography-mass spectrometry.
    J Chromatogr A. 1997 Nov 7;787(1-2):288-94 PMID: 9409004
  2. Correlation between the pharmacology of long-term potentiation and the pharmacology of memory.
    Neurobiol Learn Mem. 1995 Jan;63(1):19-32 PMID: 7663877
  3. Glutamate-receptor genes in plants.
    Nature. 1998 Nov 12;396(6707):125-6 PMID: 9823891
  4. Contributions of quisqualate and NMDA receptors to the induction and expression of LTP.
    Science. 1988 Dec 23;242(4886):1694-7 PMID: 2904701
  5. Beta-N-oxalylamino-L-alanine action on glutamate receptors.
    J Neurochem. 1989 Sep;53(3):710-5 PMID: 2547898
  6. Arabidopsis Mutants Lacking Blue Light-Dependent Inhibition of Hypocotyl Elongation.
    Plant Cell. 1991 Jul;3(7):685-694 PMID: 12324610
  7. The essential role of hippocampal CA1 NMDA receptor-dependent synaptic plasticity in spatial memory.
    Cell. 1996 Dec 27;87(7):1327-38 PMID: 8980238
  8. Reciprocal regulation of distinct asparagine synthetase genes by light and metabolites in Arabidopsis thaliana.
    Plant J. 1998 Nov;16(3):345-53 PMID: 9881155
  9. The Arabidopsis deetiolated2 mutant is blocked early in brassinosteroid biosynthesis.
    Plant Cell. 1997 Nov;9(11):1951-62 PMID: 9401120
  10. Quantification of the putative neurotoxin 2-amino-3-(methylamino)propanoic acid (BMAA) in cycadales: analysis of the seeds of some members of the family Cycadaceae.
    J Anal Toxicol. 1989 Jul-Aug;13(4):suppl A-G PMID: 2490746
  11. Procuste1 mutants identify two distinct genetic pathways controlling hypocotyl cell elongation, respectively in dark- and light-grown Arabidopsis seedlings.
    Development. 1996 Feb;122(2):683-93 PMID: 8625819
  12. The phenotype of Arabidopsis thaliana det1 mutants suggests a role for cytokinins in greening.
    Symp Soc Exp Biol. 1991;45:21-9 PMID: 1843409
  13. A plasma membrane-bound putative endo-1,4-beta-D-glucanase is required for normal wall assembly and cell elongation in Arabidopsis.
    EMBO J. 1998 Oct 1;17(19):5563-76 PMID: 9755157
  14. The FUSCA genes of Arabidopsis: negative regulators of light responses.
    Mol Gen Genet. 1994 Aug 2;244(3):242-52 PMID: 8058035
  15. LIGHT CONTROL OF SEEDLING DEVELOPMENT.
    Annu Rev Plant Physiol Plant Mol Biol. 1996 Jun;47:215-243 PMID: 15012288
  16. Phenotypic and Genetic Analysis of det2, a New Mutant That Affects Light-Regulated Seedling Development in Arabidopsis.
    Plant Cell. 1991 May;3(5):445-459 PMID: 12324600
  17. Review: neurotransmitter receptors. II. AMPA and kainate receptors.
    Neuropharmacology. 1995 Feb;34(2):123-39 PMID: 7542368
  18. Mutations at the SPINDLY locus of Arabidopsis alter gibberellin signal transduction.
    Plant Cell. 1993 Aug;5(8):887-96 PMID: 8400871
  19. Guam amyotrophic lateral sclerosis-parkinsonism-dementia linked to a plant excitant neurotoxin.
    Science. 1987 Jul 31;237(4814):517-22 PMID: 3603037
  20. An anion channel in Arabidopsis hypocotyls activated by blue light.
    Proc Natl Acad Sci U S A. 1996 Jul 23;93(15):8134-8 PMID: 8755616
  21. A complement of ten essential and pleiotropic arabidopsis COP/DET/FUS genes is necessary for repression of photomorphogenesis in darkness.
    Plant Physiol. 1996 Mar;110(3):731-42 PMID: 8819865
  22. Carbon and amino acids reciprocally modulate the expression of glutamine synthetase in Arabidopsis.
    Plant Physiol. 1999 Sep;121(1):301-10 PMID: 10482686
  23. Magnesium gates glutamate-activated channels in mouse central neurones.
    Nature. 1984 Feb 2-8;307(5950):462-5 PMID: 6320006
  24. The hy3 Long Hypocotyl Mutant of Arabidopsis Is Deficient in Phytochrome B.
    Plant Cell. 1991 Dec;3(12):1263-1274 PMID: 12324590
  25. Control of auxin-regulated root development by the Arabidopsis thaliana SHY2/IAA3 gene.
    Development. 1999 Feb;126(4):711-21 PMID: 9895319
  26. Reduction of desensitization of a glutamate ionotropic receptor by antagonists.
    Mol Pharmacol. 1991 May;39(5):587-91 PMID: 1709719
  27. A New Class of Arabidopsis Constitutive Photomorphogenic Genes Involved in Regulating Cotyledon Development.
    Plant Cell. 1993 Mar;5(3):329-339 PMID: 12271066
  28. Neurodegenerative disorders: clues from glutamate and energy metabolism.
    Crit Rev Neurobiol. 1996;10(2):239-63 PMID: 8971131
  29. Isolation and Initial Characterization of Arabidopsis Mutants That Are Deficient in Phytochrome A.
    Plant Physiol. 1993 May;102(1):269-277 PMID: 12231818
  30. Photomorphogenic development of the Arabidopsis shy2-1D mutation and its interaction with phytochromes in darkness.
    Plant J. 1998 Jul;15(1):61-8 PMID: 9744095
  31. Isolation of the GA-response mutant sly1 as a suppressor of ABI1-1 in Arabidopsis thaliana.
    Genetics. 1998 Jun;149(2):509-21 PMID: 9611170
  32. Metabolic regulation of the gene encoding glutamine-dependent asparagine synthetase in Arabidopsis thaliana.
    Plant Physiol. 1994 Dec;106(4):1347-57 PMID: 7846154
  33. Cellular basis of hypocotyl growth in Arabidopsis thaliana.
    Plant Physiol. 1997 May;114(1):295-305 PMID: 9159952
  34. Arabidopsis thaliana mutant that develops as a light-grown plant in the absence of light.
    Cell. 1989 Sep 8;58(5):991-9 PMID: 2776216
  35. Phytochrome A and Phytochrome B Have Overlapping but Distinct Functions in Arabidopsis Development.
    Plant Physiol. 1994 Apr;104(4):1139-1149 PMID: 12232154
  36. Light control of plant development.
    Annu Rev Cell Dev Biol. 1997;13:203-29 PMID: 9442873
  37. Molecular evolution of glutamate receptors: a primitive signaling mechanism that existed before plants and animals diverged.
    Mol Biol Evol. 1999 Jun;16(6):826-38 PMID: 10368960
  38. Auxin transport is required for hypocotyl elongation in light-grown but not dark-grown Arabidopsis.
    Plant Physiol. 1998 Feb;116(2):455-62 PMID: 9489005
  39. Arabidopsis contains at least four independent blue-light-activated signal transduction pathways.
    Plant Physiol. 1999 Jun;120(2):605-14 PMID: 10364413
  40. CTR1, a negative regulator of the ethylene response pathway in Arabidopsis, encodes a member of the raf family of protein kinases.
    Cell. 1993 Feb 12;72(3):427-41 PMID: 8431946
  41. HY4 gene of A. thaliana encodes a protein with characteristics of a blue-light photoreceptor.
    Nature. 1993 Nov 11;366(6451):162-6 PMID: 8232555
  42. Functional characterization of a potassium-selective prokaryotic glutamate receptor.
    Nature. 1999 Dec 16;402(6763):817-21 PMID: 10617203
  43. The excitatory amino acid receptors: their classes, pharmacology, and distinct properties in the function of the central nervous system.
    Annu Rev Pharmacol Toxicol. 1989;29:365-402 PMID: 2543272
  44. Gibberellin and ethylene control endoreduplication levels in the Arabidopsis thaliana hypocotyl.
    Planta. 1999 Oct;209(4):513-6 PMID: 10550633
  45. Arabidopsis HY8 locus encodes phytochrome A.
    Plant Cell. 1993 Sep;5(9):1081-8 PMID: 8400877
  46. An Arabidopsis brassinosteroid-dependent mutant is blocked in cell elongation.
    Plant Cell. 1998 Feb;10(2):219-30 PMID: 9490745
  47. Synaptic transmission: well-placed modulators.
    Curr Biol. 1997 Jun 1;7(6):R362-5 PMID: 9197230
  48. Interaction between beta-N-methylamino-L-alanine and excitatory amino acid receptors in brain slices and neuronal cultures.
    Brain Res. 1991 Aug 30;558(1):79-86 PMID: 1657313
Article Info
Journal
Plant physiology
Abbr.
Plant Physiol
ISSN
0032-0889
Published
2000-12-00
Pages
1615-24
Language
English
Region
United States
NLM ID
0401224
PMCID
PMC59860
Subset
IM
Grants
NIGMS NIH HHS · GM32877 · United States
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com