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PMID: 8837505 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Hormones act downstream of TTG and GL2 to promote root hair outgrowth during epidermis development in the Arabidopsis root.

The Plant cell ·Vol. 8 ·No. 9 ·1996-09-00 ·Pages 1505-17

Masucci JD, Schiefelbein JW

Abstract

The Arabidopsis root produces a position-dependent pattern of hair-bearing and hairless cell types during epidermis development. Five loci (TRANSPARENT TESTA GLABRA [TTG], GLABRA2 [GL2], ROOT HAIR DEFECTIVE6 [RHD6], CONSTITUTIVE TRIPLE RESPONSE1 [CTR1], and AUXIN RESISTANT2 [AXR2]) and the plant hormones ethylene and auxin have been reported to affect the production of root hair and hairless cells in the Arabidopsis root. In this study, genetic, molecular, and physiological tests were employed to define the roles of these loci and hormones. Epistasis tests and reporter gene studies indicated that the hairless cell-promoting genes TTG and GL2 are likely to act early to negatively regulate the ethylene and auxin pathways. Studies of the developmental timing of the hormone effects indicated that ethylene and auxin pathways promote root hair outgrowth after cell-type differentiation has been initiated. The genetic analysis of ethylene-and auxin-related mutations showed that root hair formation is influenced by a network of hormone pathways, including a partially redundant ethylene signaling pathway. A model is proposed in which the patterning of root epidermal cells in Arabidopsis is regulated by the cell position-dependent action of the TTG/GL2 pathway, and the ethylene and auxin hormone pathways act to promote root hair outgrowth at a relatively late stage of differentiation.

MeSH Terms
Amino Acids/pharmacology Amino Acids, Cyclic Arabidopsis/drug effects,genetics,growth & development Ethylenes/pharmacology Genes, Plant/drug effects Genes, Reporter Indoleacetic Acids/pharmacology Models, Biological Mutation Plant Growth Regulators/pharmacology
Chemicals
Amino Acids Amino Acids, Cyclic Ethylenes Indoleacetic Acids Plant Growth Regulators 1-aminocyclopropane-1-carboxylic acid indoleacetic acid ethylene
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Masucci J D
Department of Biology, University of Michigan, Ann Arbor 48109-1048, USA.
Schiefelbein J W
References (18)
18 references, click to expand
  1. The GLABRA2 gene encodes a homeo domain protein required for normal trichome development in Arabidopsis.
    Genes Dev. 1994 Jun 15;8(12):1388-99 PMID: 7926739
  2. Abscisic Acid Elicits the Water-Stress Response in Root Hairs of Arabidopsis thaliana.
    Plant Physiol. 1992 Sep;100(1):216-8 PMID: 16652949
  3. The AXR1 and AUX1 genes of Arabidopsis function in separate auxin-response pathways.
    Plant J. 1995 Oct;8(4):561-9 PMID: 11536712
  4. Temporal and spatial differences in cell wall expansion during bud and mycelium formation in Candida albicans.
    J Gen Microbiol. 1985 Jun;131(6):1467-80 PMID: 3900277
  5. Cellular organisation of the Arabidopsis thaliana root.
    Development. 1993 Sep;119(1):71-84 PMID: 8275865
  6. Arabidopsis and Nicotiana anthocyanin production activated by maize regulators R and C1.
    Science. 1992 Dec 11;258(5089):1773-5 PMID: 1465611
  7. Arabidopsis ethylene-response gene ETR1: similarity of product to two-component regulators.
    Science. 1993 Oct 22;262(5133):539-44 PMID: 8211181
  8. The rhd6 Mutation of Arabidopsis thaliana Alters Root-Hair Initiation through an Auxin- and Ethylene-Associated Process.
    Plant Physiol. 1994 Dec;106(4):1335-1346 PMID: 12232412
  9. The ethylene signal transduction pathway in plants.
    Science. 1995 May 5;268(5211):667-75 PMID: 7732375
  10. A dominant mutation in Arabidopsis confers resistance to auxin, ethylene and abscisic acid.
    Mol Gen Genet. 1990 Jul;222(2-3):377-83 PMID: 2148800
  11. GUS fusions: beta-glucuronidase as a sensitive and versatile gene fusion marker in higher plants.
    EMBO J. 1987 Dec 20;6(13):3901-7 PMID: 3327686
  12. Effect on wheat root development of inoculation with an Azospirillum brasilense mutant with altered indole-3-acetic acid production.
    Res Microbiol. 1993 Jan;144(1):69-75 PMID: 8327784
  13. Genetic Control of Root Hair Development in Arabidopsis thaliana.
    Plant Cell. 1990 Mar;2(3):235-243 PMID: 12354956
  14. Growth and development of the axr1 mutants of Arabidopsis.
    Plant Cell. 1990 Nov;2(11):1071-80 PMID: 1983791
  15. Ethylene is a positive regulator of root hair development in Arabidopsis thaliana.
    Plant J. 1995 Dec;8(6):943-8 PMID: 8580964
  16. 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
  17. Insensitivity to Ethylene Conferred by a Dominant Mutation in Arabidopsis thaliana.
    Science. 1988 Aug 26;241(4869):1086-9 PMID: 17747490
  18. The aux1 Mutation of Arabidopsis Confers Both Auxin and Ethylene Resistance.
    Plant Physiol. 1990 Nov;94(3):1462-6 PMID: 16667854
Article Info
Journal
The Plant cell
Abbr.
Plant Cell
ISSN
1040-4651
Published
1996-09-00
Pages
1505-17
Language
English
Region
England
NLM ID
9208688
PMCID
PMC161294
Subset
IM
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