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1.
Plant Cell ; 32(2): 392-413, 2020 02.
Article in English | MEDLINE | ID: mdl-31806675

ABSTRACT

The spikelet is an inflorescence structure unique to grasses. The molecular mechanisms underlying spikelet development and evolution are unclear. In this study, we characterized three allelic recessive mutants in rice (Oryza sativa): nonstop glumes 1-1 (nsg1-1), nsg1-2, and nsg1-3 In these mutants, organs such as the rudimentary glume, sterile lemma, palea, lodicule, and filament were elongated and/or widened, or transformed into lemma- and/or marginal region of the palea-like organs. NSG1 encoded a member of the C2H2 zinc finger protein family and was expressed mainly in the organ primordia of the spikelet. In the nsg1-1 mutant spikelet, LHS1 DL, and MFO1 were ectopically expressed in two or more organs, including the rudimentary glume, sterile lemma, palea, lodicule, and stamen, whereas G1 was downregulated in the rudimentary glume and sterile lemma. Furthermore, the NSG1 protein was able to bind to regulatory regions of LHS1 and then recruit the corepressor TOPLESS-RELATED PROTEIN to repress expression by downregulating histone acetylation levels of the chromatin. The results suggest that NSG1 plays a pivotal role in maintaining organ identities in the spikelet by repressing the expression of LHS1, DL, and MFO1.


Subject(s)
CYS2-HIS2 Zinc Fingers/genetics , Oryza/genetics , Oryza/metabolism , Plant Proteins/genetics , Plant Proteins/metabolism , Gene Expression Regulation, Plant , Genes, Plant/genetics , Genetic Engineering , Inflorescence , Mutation , Phenotype , Transcriptome
2.
J Integr Plant Biol ; 52(3): 265-72, 2010 Mar.
Article in English | MEDLINE | ID: mdl-20377687

ABSTRACT

In order to gain a better understanding of rice flower development, a rice flower mutant supernumerary lodicules (snl), which was identified from ethyl methane sulfonate (EMS)-treated Jinhui10 (Oryza sativa L. ssp. indica) was used in the present study. In the snl mutant, the palea obtained lemma identity, additional glume-like organs formed, lodicules increased and elongated, stamens decreased, and a few aberrant carpels formed. These phenotypes suggest that SNL is involved in the entire rice flower development. SNL was mapped between two simple sequence repeat markers RM3512 and RM1342 on chromosome 2, an approximate 800 kb region, and it co-segregated with SSR215. We conclude that SNL is a novel gene involved in flower development in rice. The present study will be useful for further cloning of the SNL gene, which will contribute to the elucidation of rice flower development.


Subject(s)
Chromosome Mapping , Flowers/anatomy & histology , Flowers/genetics , Genes, Plant/genetics , Mutation/genetics , Oryza/genetics , Plant Proteins/genetics , Chromosomes, Plant/genetics , Flowers/growth & development , Flowers/ultrastructure , Genetic Linkage , Genetic Markers , Oryza/anatomy & histology , Oryza/growth & development , Phenotype , Plant Proteins/metabolism
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