Home LiteratureArticle Details
PMID: 10859166 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

FACKEL is a sterol C-14 reductase required for organized cell division and expansion in Arabidopsis embryogenesis.

Genes & development ·Vol. 14 ·No. 12 ·2000-06-15 ·Pages 1471-84

Schrick K, Mayer U, Horrichs A, Kuhnt C, Bellini C, Dangl J, Schmidt J, Jürgens G

Abstract

In flowering plants, the developing embryo consists of growing populations of cells whose fates are determined in a position-dependent manner to form the adult organism. Mutations in the FACKEL (FK) gene affect body organization of the Arabidopsis seedling. We report that FK is required for cell division and expansion and is involved in proper organization of the embryo. We isolated FK by positional cloning. Expression analysis in embryos revealed that FK mRNA becomes localized to meristematic zones. FK encodes a predicted integral membrane protein related to the vertebrate lamin B receptor and sterol reductases across species, including yeast sterol C-14 reductase ERG24. We provide functional evidence that FK encodes a sterol C-14 reductase by complementation of erg24. GC/MS analysis confirmed that fk mutations lead to accumulation of intermediates in the biosynthetic pathway preceding the C-14 reductase step. Although fk represents a sterol biosynthetic mutant, the phenotype was not rescued by feeding with brassinosteroids (BRs), the only plant sterol signaling molecules known so far. We propose that synthesis of sterol signals in addition to BRs is important in mediating regulated cell growth and organization during embryonic development. Our results indicate a novel role for sterols in the embryogenesis of plants.

MeSH Terms
Amino Acid Sequence Arabidopsis/embryology,enzymology Base Sequence Cell Division Cloning, Molecular DNA, Complementary/metabolism Exons Gas Chromatography-Mass Spectrometry Genetic Complementation Test In Situ Hybridization Membrane Proteins/genetics Molecular Sequence Data Mutation Oxidoreductases/metabolism Phenotype Phylogeny Plant Proteins/genetics,physiology Polymorphism, Restriction Fragment Length RNA, Messenger/metabolism Signal Transduction Time Factors Transcription, Genetic
Chemicals
DNA, Complementary Membrane Proteins Plant Proteins RNA, Messenger Oxidoreductases delta(14)-sterol reductase
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Schrick K
Zentrum f]ur Molekularbiologie der Pflanzen, Universit]at T]ubingen, D-72076 T]ubingen, Germany. kathrin.schrick@uni-tuebingen.de
Mayer U
Horrichs A
Kuhnt C
Bellini C
Dangl J
Schmidt J
Jürgens G
References (43)
43 references, click to expand
  1. Regulation of the mevalonate pathway.
    Nature. 1990 Feb 1;343(6257):425-30 PMID: 1967820
  2. The identification of a gene family in the Saccharomyces cerevisiae ergosterol biosynthesis pathway.
    Gene. 1994 Mar 11;140(1):41-9 PMID: 8125337
  3. Improved method for high efficiency transformation of intact yeast cells.
    Nucleic Acids Res. 1992 Mar 25;20(6):1425 PMID: 1561104
  4. The homeobox gene ATK1 of Arabidopsis thaliana is expressed in the shoot apex of the seedling and in flowers and inflorescence stems of mature plants.
    Plant Mol Biol. 1995 Jul;28(4):723-37 PMID: 7647303
  5. Mutations in the pilz group genes disrupt the microtubule cytoskeleton and uncouple cell cycle progression from cell division in Arabidopsis embryo and endosperm.
    Eur J Cell Biol. 1999 Feb;78(2):100-8 PMID: 10099932
  6. Targeting, disruption, replacement, and allele rescue: integrative DNA transformation in yeast.
    Methods Enzymol. 1991;194:281-301 PMID: 2005793
  7. An Arabidopsis mutant deficient in sterol biosynthesis: heterologous complementation by ERG 3 encoding a delta 7-sterol-C-5-desaturase from yeast.
    Plant J. 1995 Sep;8(3):407-16 PMID: 7550378
  8. A calcium-dependent ergosterol mutant of Saccharomyces cerevisiae.
    Curr Genet. 1998 Aug;34(2):93-9 PMID: 9724410
  9. Cloning, sequencing, and disruption of the gene encoding sterol C-14 reductase in Saccharomyces cerevisiae.
    DNA Cell Biol. 1992 Nov;11(9):685-92 PMID: 1418625
  10. The Arabidopsis dwarf1 mutant is defective in the conversion of 24-methylenecholesterol to campesterol in brassinosteroid biosynthesis.
    Plant Physiol. 1999 Mar;119(3):897-907 PMID: 10069828
  11. Delta7-sterol-C5-desaturase: molecular characterization and functional expression of wild-type and mutant alleles.
    Plant Mol Biol. 1999 Mar;39(5):891-906 PMID: 10344195
  12. Splinkerettes--improved vectorettes for greater efficiency in PCR walking.
    Nucleic Acids Res. 1995 May 11;23(9):1644-5 PMID: 7784225
  13. Thermal asymmetric interlaced PCR: automatable amplification and sequencing of insert end fragments from P1 and YAC clones for chromosome walking.
    Genomics. 1995 Feb 10;25(3):674-81 PMID: 7759102
  14. Specialized binary vector for plant transformation: expression of the Arabidopsis thaliana AHAS gene in Nicotiana tabacum.
    Nucleic Acids Res. 1988 Nov 25;16(22):10765-82 PMID: 3060849
  15. The KEULE gene is involved in cytokinesis in Arabidopsis.
    Mol Gen Genet. 1996 Dec 13;253(3):267-77 PMID: 9003313
  16. Molecular physiology of brassinosteroids revealed by the analysis of mutants.
    Planta. 1999 Mar;208(1):1-11 PMID: 10212999
  17. Construction and growth properties of a yeast strain defective in sterol 14-reductase.
    Curr Genet. 1992 Oct;22(4):267-72 PMID: 1394506
  18. BRASSINOSTEROIDS: Essential Regulators of Plant Growth and Development.
    Annu Rev Plant Physiol Plant Mol Biol. 1998 Jun;49:427-451 PMID: 15012241
  19. Use of the IGF BAC library for physical mapping of the Arabidopsis thaliana genome.
    Plant J. 1998 Nov;16(3):377-84 PMID: 9881158
  20. A member of the KNOTTED class of homeodomain proteins encoded by the STM gene of Arabidopsis.
    Nature. 1996 Jan 4;379(6560):66-9 PMID: 8538741
  21. The auxin-insensitive bodenlos mutation affects primary root formation and apical-basal patterning in the Arabidopsis embryo.
    Development. 1999 Apr;126(7):1387-95 PMID: 10068632
  22. Role of WUSCHEL in regulating stem cell fate in the Arabidopsis shoot meristem.
    Cell. 1998 Dec 11;95(6):805-15 PMID: 9865698
  23. LEAFY controls floral meristem identity in Arabidopsis.
    Cell. 1992 May 29;69(5):843-59 PMID: 1350515
  24. Cloning of cDNAs or genes encoding enzymes of sterol biosynthesis from plants and other eukaryotes: heterologous expression and complementation analysis of mutations for functional characterization.
    Prog Lipid Res. 1997 Sep;36(2-3):197-226 PMID: 9624427
  25. Biochemistry and molecular biology of sterol synthesis in Saccharomyces cerevisiae.
    Crit Rev Biochem Mol Biol. 1999;34(1):33-47 PMID: 10090470
  26. In planta Agrobacterium-mediated transformation of adult Arabidopsis thaliana plants by vacuum infiltration.
    Methods Mol Biol. 1998;82:259-66 PMID: 9664431
  27. Embryogenesis: A New Start in Life.
    Plant Cell. 1997 Jul;9(7):989-1000 PMID: 12237371
  28. A protein phosphatase 2C involved in ABA signal transduction in Arabidopsis thaliana.
    Science. 1994 Jun 3;264(5164):1452-5 PMID: 8197457
  29. Studies on biosynthesis of brassinosteroids.
    Biosci Biotechnol Biochem. 1997 May;61(5):757-62 PMID: 9178548
  30. Sterol structure and membrane function.
    CRC Crit Rev Biochem. 1983;14(1):47-92 PMID: 6340956
  31. Role of the ZWILLE gene in the regulation of central shoot meristem cell fate during Arabidopsis embryogenesis.
    EMBO J. 1998 Mar 16;17(6):1799-809 PMID: 9501101
  32. Cholesterol metabolism and embryogenesis.
    Trends Genet. 1998 Mar;14(3):115-20 PMID: 9540409
  33. A putative leucine-rich repeat receptor kinase involved in brassinosteroid signal transduction.
    Cell. 1997 Sep 5;90(5):929-38 PMID: 9298904
  34. The Arabidopsis DIMINUTO/DWARF1 gene encodes a protein involved in steroid synthesis.
    Plant Cell. 1998 Oct;10(10):1677-90 PMID: 9761794
  35. The erg-3 (sterol delta14,15-reductase) gene of Neurospora crassa: generation of null mutants by repeat-induced point mutation and complementation by proteins chimeric for human lamin B receptor sequences.
    Microbiology. 1999 Jun;145 ( Pt 6):1443-51 PMID: 10411271
  36. Differential effects of plant sterols on water permeability and on acyl chain ordering of soybean phosphatidylcholine bilayers.
    Proc Natl Acad Sci U S A. 1991 Aug 15;88(16):6926-30 PMID: 11607205
  37. Human lamin B receptor exhibits sterol C14-reductase activity in Saccharomyces cerevisiae.
    Biochim Biophys Acta. 1998 Jun 15;1392(2-3):233-44 PMID: 9630650
  38. The human lamin B receptor/sterol reductase multigene family.
    Genomics. 1998 Dec 15;54(3):469-76 PMID: 9878250
  39. Microsomal delta 8,14-sterol delta 14-reductase in higher plants. Characterization and inhibition by analogues of a presumptive carbocationic intermediate of the reduction reaction.
    Eur J Biochem. 1989 Nov 20;185(3):605-14 PMID: 2591378
  40. Patterns of gene action in plant development revealed by enhancer trap and gene trap transposable elements.
    Genes Dev. 1995 Jul 15;9(14):1797-810 PMID: 7622040
  41. The Arabidopsis dwf7/ste1 mutant is defective in the delta7 sterol C-5 desaturation step leading to brassinosteroid biosynthesis.
    Plant Cell. 1999 Feb;11(2):207-21 PMID: 9927639
  42. A conserved domain of the arabidopsis GNOM protein mediates subunit interaction and cyclophilin 5 binding.
    Plant Cell. 2000 Mar;12(3):343-56 PMID: 10715321
  43. The CIC library: a large insert YAC library for genome mapping in Arabidopsis thaliana.
    Plant J. 1995 Nov;8(5):763-70 PMID: 8528287
Article Info
Journal
Genes & development
Abbr.
Genes Dev
ISSN
0890-9369
Published
2000-06-15
Pages
1471-84
Language
English
Region
United States
NLM ID
8711660
PMCID
PMC316688
Subset
IM
Databases
GENBANK
AF256535
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