نتایج جستجو برای: mads box

تعداد نتایج: 86861  

2016
Chao Li Yan Wang Liang Xu Shanshan Nie Yinglong Chen Dongyi Liang Xiaochuan Sun Benard K. Karanja Xiaobo Luo Liwang Liu

The MADS-box gene family is an important transcription factor (TF) family that is involved in various aspects of plant growth and development, especially flowering time and floral organogenesis. Although it has been reported in many plant species, the systematic identification and characterization of MADS-box TF family is still limited in radish (Raphanus sativus L.). In the present study, a co...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2000
E R Alvarez-Buylla S Pelaz S J Liljegren S E Gold C Burgeff G S Ditta L Ribas de Pouplana L Martínez-Castilla M F Yanofsky

Changes in genes encoding transcriptional regulators can alter development and are important components of the molecular mechanisms of morphological evolution. MADS-box genes encode transcriptional regulators of diverse and important biological functions. In plants, MADS-box genes regulate flower, fruit, leaf, and root development. Recent sequencing efforts in Arabidopsis have allowed a nearly ...

Journal: :The Plant cell 2003
Michiel Vandenbussche Jan Zethof Erik Souer Ronald Koes Giovanni B Tornielli Mario Pezzotti Silvia Ferrario Gerco C Angenent Tom Gerats

We have initiated a systematic functional analysis of the MADS box, intervening region, K domain, C domain-type MADS box gene family in petunia. The starting point for this has been a reverse-genetics approach, aiming to select for transposon insertions into any MADS box gene. We have developed and applied a family signature insertion screening protocol that is highly suited for this purpose, r...

Journal: :Nucleic acids research 1995
A Fischer N Baum H Saedler G Theissen

A linker PCR procedure has been developed for preparing repetitive DNA-free probes from genomic clones, which is especially efficient for members of gene families. Using this procedure as well as standard methods to prepare hybridization probes, chromosomal map positions of MADS-box genes were determined in recombinant inbred lines of maize (Zea mays ssp. mays). It appears that MADS-box genes a...

Journal: :Genes & genetic systems 1997
K Murai R Murai Y Ogihara

Polymerase chain reaction (PCR) with degenerate primers was utilized for partial cloning of the MADS box gene family from wheat (Triticum aestivum L.). PCR products corresponding to a part of the MADS box region were cloned and sequenced. Eleven individual clones sequenced were classified into seven types on the basis of the nucleotide sequence and five types on the deduced amino acid sequence,...

2014
Magda A. Pacheco-Sánchez Carmen A. Contreras-Vergara Eduardo Hernandez-Navarro Gloria Yepiz-Plascencia Miguel A. Martínez-Téllez Sergio Casas-Flores Aldo A. Arvizu-Flores Maria A. Islas-Osuna

MADS-box genes are a large family of transcription factors initially discovered for their role during development of flowers and fruits. The MADS-box transcription factors from animals have been studied by X-ray protein crystallography but those from plants remain to be studied. In this work, a MADS-box cDNA from mango encoding a protein of 254 residues was obtained and compared. Based on phylo...

Journal: :The Plant cell 2003
Lucie Parenicová Stefan de Folter Martin Kieffer David S Horner Cristina Favalli Jacqueline Busscher Holly E Cook Richard M Ingram Martin M Kater Brendan Davies Gerco C Angenent Lucia Colombo

MADS-box transcription factors are key regulators of several plant development processes. Analysis of the complete Arabidopsis genome sequence revealed 107 genes encoding MADS-box proteins, of which 84% are of unknown function. Here, we provide a complete overview of this family, describing the gene structure, gene expression, genome localization, protein motif organization, and phylogenetic re...

Journal: :Genetics research 2011
Qiong Zhao Allison L Weber Michael D McMullen Katherine Guill John Doebley

MADS-box genes encode transcription factors that are key regulators of plant inflorescence and flower development. We examined DNA sequence variation in 32 maize MADS-box genes and 32 randomly chosen maize loci and investigated their involvement in maize domestication and improvement. Using neutrality tests and a test based on coalescent simulation of a bottleneck model, we identified eight MAD...

Journal: :Molecular biology and evolution 2003
Jongmin Nam Claude W dePamphilis Hong Ma Masatoshi Nei

MADS-box genes in plants control various aspects of development and reproductive processes including flower formation. To obtain some insight into the roles of these genes in morphological evolution, we investigated the origin and diversification of floral MADS-box genes by conducting molecular evolutionary genetics analyses. Our results suggest that the most recent common ancestor of today's f...

Journal: :TheScientificWorldJournal 2006
Takahiro Yamaguchi Hiro-Yuki Hirano

MADS-box genes play critical roles in a number of developmental processes in flowering plants, such as specification of floral organ identity, control of flowering time, and regulation of fruit development. Because of their crucial functions in flower development, diversification of the MADS-box gene family has been suggested to be a major factor responsible for floral diversity during radiatio...

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