Abstract
A late heading-time mutant line, HS276, which was induced by gamma-irradiation of seeds of the japonica rice (Oryza sativa L.) variety Gimbozu, exhibits an extremely long basic vegetative growth phase (BVP). A genetic analysis using the F(2) population from the cross between HS276 and Gimbozu revealed that the late heading of HS276 is governed by a single recessive mutant gene. The subsequent analysis on heading responses of HS276 and Gimbozu to four photoperiods (12, 13, 14, and 15 h) and to the photoperiodic transfer treatment from a short photoperiod to a long photoperiod revealed that the mutant gene confers an extremely long BVP and increases photoperiod sensitivity under long photoperiod (14 and 15 h). The BVP durations of HS276 and Gimbozu were estimated at 30.1 and 16.0 days, respectively; the mutant gene, compared with its wild type allele, elongates the duration of BVP by 14 days. Linkage analysis showed that the mutant gene is located in the 129 kb region between the two INDEL markers, INDELAP0399_6 and INDELAP3487_2, on the distal part of the short arm of chromosome 6. None of the other BVP genes are located in this region; therefore, we declared this a newly detected mutant gene and designated it ef7. A recently established program to breed rice suitable for low latitudes, where short photoperiodic conditions continue throughout the year, aims to develop varieties with extremely long BVPs and weak photoperiod sensitivities; the mutant gene ef7, therefore, will be quite useful in these programs because it confers an extremely long BVP and little enhances photoperiod sensitivity under short photoperiod.
MeSH Terms
Chromosome Mapping
Chromosomes, Plant/genetics
Crosses, Genetic
Genes, Plant
Genotype
Lod Score
Mutation/genetics
Oryza/genetics,growth & development
Photoperiod
Quantitative Trait Loci/genetics
Time Factors
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Yuan Qingbo
Graduate School of Agriculture, Kyoto University, Kitashirakawa, Sakyou, Kyoto, 606-8502, Japan.
Saito Hiroki
Okumoto Yutaka
Inoue Hiromo
Nishida Hidetaka
Tsukiyama Takuji
Teraishi Masayoshi
Tanisaka Takatoshi
References (20)
20 references, click to expand
-
Ehd1, a B-type response regulator in rice, confers short-day promotion of flowering and controls FT-like gene expression independently of Hd1.
Genes Dev. 2004 Apr 15;18(8):926-36
PMID: 15078816
-
Hd1, a major photoperiod sensitivity quantitative trait locus in rice, is closely related to the Arabidopsis flowering time gene CONSTANS.
Plant Cell. 2000 Dec;12(12):2473-2484
PMID: 11148291
-
Genetic dissection of a genomic region for a quantitative trait locus, Hd3, into two loci, Hd3a and Hd3b, controlling heading date in rice.
Theor Appl Genet. 2002 Apr;104(5):772-778
PMID: 12582636
-
High potential of a transposon mPing as a marker system in japonica x japonica cross in rice.
DNA Res. 2009 Apr;16(2):131-40
PMID: 19270311
-
Multiple alleles at Early flowering 1 locus making variation in the basic vegetative growth period in rice (Oryza sativa L.).
Theor Appl Genet. 2009 Jul;119(2):315-23
PMID: 19407983
-
Molecular mapping of rice chromosomes.
Theor Appl Genet. 1988 Dec;76(6):815-29
PMID: 24232389
-
Functional analyses of the flowering time gene OsMADS50, the putative SUPPRESSOR OF OVEREXPRESSION OF CO 1/AGAMOUS-LIKE 20 (SOC1/AGL20) ortholog in rice.
Plant J. 2004 Jun;38(5):754-64
PMID: 15144377
-
RID1, encoding a Cys2/His2-type zinc finger transcription factor, acts as a master switch from vegetative to floral development in rice.
Proc Natl Acad Sci U S A. 2008 Sep 2;105(35):12915-20
PMID: 18725639
-
Phytochrome mediates the external light signal to repress FT orthologs in photoperiodic flowering of rice.
Genes Dev. 2002 Aug 1;16(15):2006-20
PMID: 12154129
-
Identification of heading date quantitative trait locus Hd6 and characterization of its epistatic interactions with Hd2 in rice using advanced backcross progeny.
Genetics. 2000 Feb;154(2):885-91
PMID: 10655238
-
Natural variation in Ghd7 is an important regulator of heading date and yield potential in rice.
Nat Genet. 2008 Jun;40(6):761-7
PMID: 18454147
-
Ehd2, a rice ortholog of the maize INDETERMINATE1 gene, promotes flowering by up-regulating Ehd1.
Plant Physiol. 2008 Nov;148(3):1425-35
PMID: 18790997
-
Hd3a protein is a mobile flowering signal in rice.
Science. 2007 May 18;316(5827):1033-6
PMID: 17446351
-
Highly polymorphic microsatellites of rice consist of AT repeats, and a classification of closely related cultivars with these microsatellite loci.
Theor Appl Genet. 1997 Jan;94(1):61-7
PMID: 19352746
-
Rice Indeterminate 1 (OsId1) is necessary for the expression of Ehd1 (Early heading date 1) regardless of photoperiod.
Plant J. 2008 Dec;56(6):1018-29
PMID: 18774969
-
Shedding light on the circadian clock and the photoperiodic control of flowering.
Curr Opin Plant Biol. 2003 Feb;6(1):13-9
PMID: 12495746
-
A 300 kilobase interval genetic map of rice including 883 expressed sequences.
Nat Genet. 1994 Dec;8(4):365-72
PMID: 7894488
-
The timing of developmental transitions in plants.
Cell. 2006 May 19;125(4):655-64
PMID: 16713560
-
Analysis of flowering time control in Arabidopsis by comparison of double and triple mutants.
Plant Physiol. 2001 Jul;126(3):1085-91
PMID: 11457959
-
Hd3a and RFT1 are essential for flowering in rice.
Development. 2008 Feb;135(4):767-74
PMID: 18223202