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1.
Plant Cell Environ ; 40(9): 1735-1747, 2017 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-28437590

RESUMO

Light controls vegetative and reproductive development of plants. For a plant, sensing the light input properly ensures coordination with the ever-changing environment. Previously, we found that LIGHT-REGULATED WD1 (LWD1) and LWD2 regulate the circadian clock and photoperiodic flowering. Here, we identified Arabidopsis YET ANOTHER KINASE1 (AtYAK1), an evolutionarily conserved protein and a member of dual-specificity tyrosine phosphorylation-regulated kinases (DYRKs), as an interacting protein of LWDs. Our study revealed that AtYAK1 is an important regulator for various light responses, including the circadian clock, photomorphogenesis and reproductive development. AtYAK1 could antagonize the function of LWDs in regulating the circadian clock and photoperiodic flowering. By examining phenotypes of atyak1, we found that AtYAK1 regulated light-induced period-length shortening and photomorphogenic development. Moreover, AtYAK1 mediated plant fertility especially under inferior light conditions including low light and short-day length. This study discloses a new regulator connecting environmental light to plant growth.


Assuntos
Proteínas de Arabidopsis/metabolismo , Arabidopsis/enzimologia , Arabidopsis/crescimento & desenvolvimento , Luz , Desenvolvimento Vegetal/efeitos da radiação , Proteínas Serina-Treonina Quinases/metabolismo , Arabidopsis/efeitos da radiação , Ritmo Circadiano/efeitos da radiação , Flores/fisiologia , Flores/efeitos da radiação , Morfogênese/efeitos da radiação , Mutação/genética , Fosforilação/efeitos da radiação , Fotoperíodo , Infertilidade das Plantas/efeitos da radiação , Ligação Proteica/efeitos da radiação , Especificidade por Substrato/efeitos da radiação
2.
Planta ; 224(2): 330-8, 2006 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-16408208

RESUMO

Previously, the growth of Arabidopsis hit1-1 (heat-intolerant) mutant was found to be inhibited by both heat and water stress (Wu et al. in J Plant Physiol 157:543-547, 2000). In order to determine the genetic mutation underlying the hit1-1 phenotype, map-based cloning of HIT1 gene was conducted. Transformation of the hit1-1 mutant with a HIT1 cDNA clone reverts the mutant to the heat tolerance phenotype, confirming the identity of HIT1. Sequence analysis revealed the HIT1 gene encodes a protein of 829 amino acid residues and is homologous to yeast (Saccharomyces cerevisiae) Vps53p protein. The yeast Vps53p protein has been shown to be a tethering factor that associates with Vps52p and Vps54p in a complex formation involved in the retrograde trafficking of vesicles to the late Golgi. An Arabidopsis homolog of yeast Vps52p has previously been identified and mutation of either the homolog or HIT1 by T-DNA insertion resulted in a male-specific transmission defect. The growth of yeast vps53Delta null mutant also shows reduced thermotolerance, and expression of HIT1 in this mutant can partially complement the defect, supporting the possibility of a conserved biological function for Vps53p and HIT1. Collectively, the hit1-1 is the first mutant in higher plant linking a homolog of the vesicle tethering factor to both heat and osmotic stress tolerance.


Assuntos
Proteínas de Arabidopsis/genética , Proteínas de Arabidopsis/metabolismo , Arabidopsis/metabolismo , Proteínas de Transporte/genética , Mutação/genética , Fenótipo , Proteínas de Saccharomyces cerevisiae/genética , Saccharomyces cerevisiae/metabolismo , Sequência de Aminoácidos , Proteínas de Arabidopsis/química , Cromossomos de Plantas/genética , Sequência Conservada , DNA Complementar/genética , Células Eucarióticas/metabolismo , Regulação da Expressão Gênica de Plantas , Teste de Complementação Genética , Hipertermia Induzida , Dados de Sequência Molecular , Pressão Osmótica , Mapeamento Físico do Cromossomo , RNA Mensageiro/genética , RNA Mensageiro/metabolismo , Saccharomyces cerevisiae/citologia , Plântula/metabolismo , Homologia de Sequência de Aminoácidos
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