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PMID: 17151889 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Validation Study

Validation of the VRN-H2/VRN-H1 epistatic model in barley reveals that intron length variation in VRN-H1 may account for a continuum of vernalization sensitivity.

Molecular genetics and genomics : MGG ·Vol. 277 ·No. 3 ·2007-03-00 ·Pages 249-61

Szucs P, Skinner JS, Karsai I, Cuesta-Marcos A, Haggard KG, Corey AE, Chen TH, Hayes PM

Abstract

The epistatic interaction of alleles at the VRN-H1 and VRN-H2 loci determines vernalization sensitivity in barley. To validate the current molecular model for the two-locus epistasis, we crossed homozygous vernalization-insensitive plants harboring a predicted "winter type" allele at either VRN-H1 (Dicktoo) or VRN-H2 (Oregon Wolfe Barley Dominant), or at both VRN-H (Calicuchima-sib) loci and measured the flowering time of unvernalized F(2) progeny under long-day photoperiod. We assessed whether the spring growth habit of Calicuchima-sib is an exception to the two-locus epistatic model or contains novel "spring" alleles at VRN-H1 (HvBM5A) and/or VRN-H2 (ZCCT-H) by determining allele sequence variants at these loci and their effects relative to growth habit. We found that (a) progeny with predicted "winter type" alleles at both VRN-H1 and VRN-H2 alleles exhibited an extremely delayed flowering (i.e. vernalization-sensitive) phenotype in two out of the three F(2) populations, (b) sequence flanking the vernalization critical region of HvBM5A intron 1 likely influences degree of vernalization sensitivity, (c) a winter habit is retained when ZCCT-Ha has been deleted, and (d) the ZCCT-H genes have higher levels of allelic polymorphism than other winterhardiness regulatory genes. Our results validate the model explaining the epistatic interaction of VRN-H2 and VRN-H1 under long-day conditions, demonstrate recovery of vernalization-sensitive progeny from crosses of vernalization-insensitive genotypes, show that intron length variation in VRN-H1 may account for a continuum of vernalization sensitivity, and provide molecular markers that are accurate predictors of "winter vs spring type" alleles at the VRN-H loci.

MeSH Terms
Acclimatization/genetics Alleles Amino Acid Sequence Base Sequence Crosses, Genetic DNA Primers/genetics DNA, Plant/genetics Epistasis, Genetic Genes, Plant Genetic Variation Hordeum/genetics Introns Models, Genetic Molecular Sequence Data Photoperiod Phylogeny Plant Proteins/genetics Sequence Homology, Amino Acid
Chemicals
DNA Primers DNA, Plant Plant Proteins
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Szucs Péter
Department of Crop and Soil Science, Oregon State University, 253 Crop Science Building, Corvallis, OR 97331, USA.
Skinner Jeffrey S
Karsai Ildikó
Cuesta-Marcos Alfonso
Haggard Kale G
Corey Ann E
Chen Tony H H
Hayes Patrick M
References (30)
30 references, click to expand
  1. HvVRN2 responds to daylength, whereas HvVRN1 is regulated by vernalization and developmental status.
    Plant Physiol. 2006 Apr;140(4):1397-405 PMID: 16500994
  2. Mapping of barley homologs to genes that regulate low temperature tolerance in Arabidopsis.
    Theor Appl Genet. 2006 Mar;112(5):832-42 PMID: 16365758
  3. Positional relationships between photoperiod response QTL and photoreceptor and vernalization genes in barley.
    Theor Appl Genet. 2006 May;112(7):1277-85 PMID: 16489429
  4. The wheat VRN2 gene is a flowering repressor down-regulated by vernalization.
    Science. 2004 Mar 12;303(5664):1640-4 PMID: 15016992
  5. Effect of photoperiod on the regulation of wheat vernalization genes VRN1 and VRN2.
    Plant Mol Biol. 2006 Mar;60(4):469-80 PMID: 16525885
  6. Cloning, mapping and expression analysis of barley MADS-box genes.
    Plant Mol Biol. 2000 Apr;42(6):899-913 PMID: 10890536
  7. BASIC PENTACYSTEINE1, a GA binding protein that induces conformational changes in the regulatory region of the homeotic Arabidopsis gene SEEDSTICK.
    Plant Cell. 2005 Mar;17(3):722-9 PMID: 15722463
  8. Zinc-finger transcription factors in plants.
    Cell Mol Life Sci. 1998 Jun;54(6):582-96 PMID: 9676577
  9. Quantitative trait loci on barley (Hordeum vulgare L.) chromosome 7 associated with components of winterhardiness.
    Genome. 1993 Feb;36(1):66-71 PMID: 18469970
  10. RFLP mapping of five major genes and eight quantitative trait loci controlling flowering time in a winter x spring barley (Hordeum vulgare L.) cross.
    Genome. 1995 Jun;38(3):575-85 PMID: 18470191
  11. Allelic variation at the VRN-1 promoter region in polyploid wheat.
    Theor Appl Genet. 2004 Nov;109(8):1677-86 PMID: 15480533
  12. Functional importance of conserved domains in the flowering-time gene CONSTANS demonstrated by analysis of mutant alleles and transgenic plants.
    Plant J. 2001 Dec;28(6):619-31 PMID: 11851908
  13. Epistatic interaction between vernalization genes Vrn-Am1 and Vrn-Am2 in diploid wheat.
    J Hered. 2000 Jul-Aug;91(4):304-6 PMID: 10912677
  14. The Vrn-H2 locus is a major determinant of flowering time in a facultative x winter growth habit barley (Hordeum vulgare L.) mapping population.
    Theor Appl Genet. 2005 May;110(8):1458-66 PMID: 15834697
  15. WAP1, a wheat APETALA1 homolog, plays a central role in the phase transition from vegetative to reproductive growth.
    Plant Cell Physiol. 2003 Dec;44(12):1255-65 PMID: 14701921
  16. Regulation of VRN-1 vernalization genes in normal and transgenic polyploid wheat.
    Plant Physiol. 2005 Aug;138(4):2364-73 PMID: 16055679
  17. QTL mapping of chromosomal regions conferring reproductive frost tolerance in barley ( Hordeum vulgare L.).
    Theor Appl Genet. 2004 Oct;109(6):1267-74 PMID: 15365623
  18. FLOWERING LOCUS C encodes a novel MADS domain protein that acts as a repressor of flowering.
    Plant Cell. 1999 May;11(5):949-56 PMID: 10330478
  19. MADS box genes control vernalization-induced flowering in cereals.
    Proc Natl Acad Sci U S A. 2003 Oct 28;100(22):13099-104 PMID: 14557548
  20. TaVRT-1, a putative transcription factor associated with vegetative to reproductive transition in cereals.
    Plant Physiol. 2003 Aug;132(4):1849-60 PMID: 12913142
  21. Different regulatory regions are required for the vernalization-induced repression of FLOWERING LOCUS C and for the epigenetic maintenance of repression.
    Plant Cell. 2002 Oct;14(10):2527-37 PMID: 12368502
  22. Positional cloning of the wheat vernalization gene VRN1.
    Proc Natl Acad Sci U S A. 2003 May 13;100(10):6263-8 PMID: 12730378
  23. Morphological and agronomical diversity patterns in the Spanish barley core collection.
    Hereditas. 2001;135(2-3):217-25 PMID: 12152338
  24. Large deletions within the first intron in VRN-1 are associated with spring growth habit in barley and wheat.
    Mol Genet Genomics. 2005 Mar;273(1):54-65 PMID: 15690172
  25. MEGA3: Integrated software for Molecular Evolutionary Genetics Analysis and sequence alignment.
    Brief Bioinform. 2004 Jun;5(2):150-63 PMID: 15260895
  26. The evolution of CONSTANS-like gene families in barley, rice, and Arabidopsis.
    Plant Physiol. 2003 Apr;131(4):1855-67 PMID: 12692345
  27. Molecular and structural characterization of barley vernalization genes.
    Plant Mol Biol. 2005 Oct;59(3):449-67 PMID: 16235110
  28. Vernalization requires epigenetic silencing of FLC by histone methylation.
    Nature. 2004 Jan 8;427(6970):164-7 PMID: 14712277
  29. TaVRT-2, a member of the StMADS-11 clade of flowering repressors, is regulated by vernalization and photoperiod in wheat.
    Plant Physiol. 2005 Aug;138(4):2354-63 PMID: 16024692
  30. The CCAAT binding factor can mediate interactions between CONSTANS-like proteins and DNA.
    Plant J. 2006 May;46(3):462-76 PMID: 16623906
Article Info
Journal
Molecular genetics and genomics : MGG
Abbr.
Mol Genet Genomics
ISSN
1617-4615
Published
2007-03-00
Epub
2006-00-07
Pages
249-61
Language
English
Region
Germany
NLM ID
101093320
Subset
IM
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