Home LiteratureArticle Details
PMID: 11826306 Published · ppublish English Comparative Study Journal Article

Mutation of a chitinase-like gene causes ectopic deposition of lignin, aberrant cell shapes, and overproduction of ethylene.

The Plant cell ·Vol. 14 ·No. 1 ·2002-01-00 ·Pages 165-79

Zhong R, Kays SJ, Schroeder BP, Ye ZH

Abstract

Chitinase-like proteins have long been proposed to play roles in normal plant growth and development, but no mutations in chitinase-like genes have been obtained previously to support this hypothesis. In this study, we have shown that the gene responsible for the elp1 mutation in Arabidopsis encodes a chitinase-like protein (AtCTL1). Mutation of this chitinase-like gene caused ectopic deposition of lignin and aberrant shapes of cells with incomplete cell walls in the pith of inflorescence stems. The AtCTL1 gene was expressed in all organs during normal plant growth and development, but it was not induced by wounding, salicylic acid, pectin fragments, or ethylene. Consistent with its ubiquitous expression pattern, mutation of the AtCTL1 gene affected many aspects of plant growth and development, including exaggerated hook curvature, reduced length and increased diameter of hypocotyls in dark-grown seedlings, and reduced root length and increased number of root hairs in light-grown seedlings. The mutant phenotypes could be rescued partially by ethylene inhibitors, and ethylene production in the mutant was significantly greater than in the wild type. Together, these results suggest that AtCTL1, a chitinase-like gene, is essential for normal plant growth and development in Arabidopsis.

MeSH Terms
Amino Acid Sequence Arabidopsis/enzymology,genetics,metabolism Arabidopsis Proteins/genetics,metabolism Cell Size/genetics Chitinases/genetics,metabolism Cloning, Molecular Ethylenes/antagonists & inhibitors,metabolism Gene Expression Regulation, Plant/drug effects Glycoside Hydrolases/genetics,metabolism Lignin/metabolism Molecular Sequence Data Mutation Phenotype Plant Stems/cytology,metabolism Salicylic Acid/pharmacology Sequence Homology, Amino Acid
Chemicals
Arabidopsis Proteins Ethylenes Lignin ethylene CTL1 protein, Arabidopsis Glycoside Hydrolases Chitinases Salicylic Acid
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Zhong Ruiqin
Department of Botany, University of Georgia, Athens, GA 30602, USA.
Kays Stanley J
Schroeder Betty P
Ye Zheng-Hua
References (31)
31 references, click to expand
  1. The ethylene-inhibitor aminoethoxyvinylglycine restores normal nodulation by Rhizobium leguminosarum biovar. viciae on Vicia sativa subsp. nigra by suppressing the 'Thick and short roots' phenotype.
    Planta. 1989 Feb;177(2):141-50 PMID: 24212336
  2. Plant chitinases.
    Plant J. 1993 Jan;3(1):31-40 PMID: 8401605
  3. Nod factors produced by Rhizobium leguminosarum biovar viciae induce ethylene-related changes in root cortical cells of Vicia sativa ssp. nigra.
    Eur J Cell Biol. 1995 Dec;68(4):463-9 PMID: 8690027
  4. Microbial elicitors induce activation and dual phosphorylation of the Arabidopsis thaliana MAPK 6.
    J Biol Chem. 2000 Mar 17;275(11):7521-6 PMID: 10713056
  5. A distinct member of the basic (class I) chitinase gene family in potato is specifically expressed in epidermal cells.
    Plant Mol Biol. 1999 Apr;39(6):1137-51 PMID: 10380801
  6. Chitin oligosaccharides as candidate patterning agents in zebrafish embryogenesis.
    Int J Dev Biol. 2000 Feb;44(2):183-93 PMID: 10794076
  7. Rhizobium NodB protein involved in nodulation signal synthesis is a chitooligosaccharide deacetylase.
    Proc Natl Acad Sci U S A. 1993 Jan 15;90(2):625-9 PMID: 8421697
  8. Shoot inversion inhibition of stem elongation in Pharbitis nil: a possible role for ethylene-induced glycoprotein and lignin.
    Plant Physiol. 1987;85:104-8 PMID: 11539703
  9. Synthesis of "Nod"-like chitin oligosaccharides by the Xenopus developmental protein DG42.
    Proc Natl Acad Sci U S A. 1995 Apr 11;92(8):3498-501 PMID: 7724589
  10. Expression pattern of the Arabidopsis thaliana AtEP3/AtchitIV endochitinase gene.
    Planta. 2001 Mar;212(4):556-67 PMID: 11525512
  11. Developmental and Pathogen-Induced Activation of the Arabidopsis Acidic Chitinase Promoter.
    Plant Cell. 1991 Oct;3(10):1063-1072 PMID: 12324582
  12. The ethylene gas signal transduction pathway: a molecular perspective.
    Annu Rev Genet. 1998;32:227-54 PMID: 9928480
  13. Isolation and Characterization of the Genes Encoding Basic and Acidic Chitinase in Arabidopsis thaliana.
    Plant Physiol. 1990 Jul;93(3):907-14 PMID: 16667600
  14. The eli1 mutation reveals a link between cell expansion and secondary cell wall formation in Arabidopsis thaliana.
    Development. 2000 Aug;127(15):3395-405 PMID: 10887094
  15. A procedure for mapping Arabidopsis mutations using co-dominant ecotype-specific PCR-based markers.
    Plant J. 1993 Aug;4(2):403-10 PMID: 8106085
  16. Enhanced quantitative resistance against fungal disease by combinatorial expression of different barley antifungal proteins in transgenic tobacco.
    Plant J. 1995 Jul;8(1):97-109 PMID: 7655510
  17. IFL1, a gene regulating interfascicular fiber differentiation in Arabidopsis, encodes a homeodomain-leucine zipper protein.
    Plant Cell. 1999 Nov;11(11):2139-52 PMID: 10559440
  18. Expression pattern of the carrot EP3 endochitinase genes in suspension cultures and in developing seeds
    Plant Physiol. 1998 May;117(1):43-53 PMID: 9576773
  19. Homologs of the Xenopus developmental gene DG42 are present in zebrafish and mouse and are involved in the synthesis of Nod-like chitin oligosaccharides during early embryogenesis.
    Proc Natl Acad Sci U S A. 1996 May 14;93(10):4548-53 PMID: 8643441
  20. The Lupinus albus class-III chitinase gene, IF3, is constitutively expressed in vegetative organs and developing seeds.
    Planta. 2000 Mar;210(4):543-50 PMID: 10787047
  21. Ectopic deposition of lignin in the pith of stems of two Arabidopsis mutants.
    Plant Physiol. 2000 May;123(1):59-70 PMID: 10806225
  22. Ethylene is a positive regulator of root hair development in Arabidopsis thaliana.
    Plant J. 1995 Dec;8(6):943-8 PMID: 8580964
  23. RPS2 of Arabidopsis thaliana: a leucine-rich repeat class of plant disease resistance genes.
    Science. 1994 Sep 23;265(5180):1856-60 PMID: 8091210
  24. 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
  25. Flower-predominant expression of a gene encoding a novel class I chitinase in rice (Oryza sativa L.).
    Plant Mol Biol. 2000 Apr;42(6):883-97 PMID: 10890535
  26. PLANT CELL WALL PROTEINS.
    Annu Rev Plant Physiol Plant Mol Biol. 1998 Jun;49:281-309 PMID: 15012236
  27. The most abundant soluble basic protein of the stylar transmitting tract in potato (Solanum tuberosum L.) is an endochitinase.
    Planta. 1994;194(2):264-73 PMID: 7765121
  28. Rhizobium Lipooligosaccharides Rescue a Carrot Somatic Embryo Mutant.
    Plant Cell. 1993 Jun;5(6):615-620 PMID: 12271077
  29. A carrot somatic embryo mutant is rescued by chitinase.
    Plant Cell. 1992 Apr;4(4):425-33 PMID: 1498601
  30. Srchi13, a novel early nodulin from Sesbania rostrata, is related to acidic class III chitinases.
    Plant Cell. 1998 Jun;10(6):905-15 PMID: 9634579
  31. Transgenic Plants with Enhanced Resistance to the Fungal Pathogen Rhizoctonia solani.
    Science. 1991 Nov 22;254(5035):1194-7 PMID: 17776411
Article Info
Journal
The Plant cell
Abbr.
Plant Cell
ISSN
1040-4651
Published
2002-01-00
Pages
165-79
Language
English
Region
England
NLM ID
9208688
PMCID
PMC150558
Subset
IM
Databases
GENBANK
AF422178, AF422179
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