نتایج جستجو برای: عوامل رونویسی mads box

تعداد نتایج: 199170  

Journal: :Nucleic acids research 1998
A G West B E Causier B Davies A D Sharrocks

Members of the MADS-box family of transcription factors are found in eukaryotes ranging from yeast to humans. In plants, MADS-box proteins regulate several developmental processes including flower, fruit and root development. We have investigated the DNA-binding mechanisms used by four such proteins in Antirrhinum majus, SQUA, PLE, DEF and GLO. SQUA differs from the characterised mammalian and ...

2014
Xiaoyan Qu Baodong Yu Jinliang Liu Xianghui Zhang Guihua Li Dongjing Zhang Le Li Xueliang Wang Lu Wang Jingyuan Chen Wenhui Mu Hongyu Pan Yanhua Zhang

MADS-box proteins, a well-conserved family of transcription factors in eukaryotic organisms, specifically regulate a wide range of cellular functions, including primary metabolism, cell cycle, and cell identity. However, little is known about roles of the MADS-box protein family in the fungal pathogen Sclerotinia sclerotiorum. In this research, the S. sclerotiorum MADS-box gene SsMADS was clone...

Journal: :journal of ornamental plants 2015
n. mahna b. baghban kohneh rouz

apple (malus×domestica borkh.) is the fourth fruit in importance and iran ranks fifth in apple production in the world. longevity of juvenility in apple extends breeding cycles and makes its breeding a tough job. to alleviate this barrier via genetic engineering, the genes involved in flowering and floral development of apple and their function must be identified and characterized. most of thes...

Journal: :The Plant cell 2012
Sha Yu Vinicius C Galvão Yan-Chun Zhang Daniel Horrer Tian-Qi Zhang Yan-Hong Hao Yu-Qi Feng Shui Wang Markus Schmid Jia-Wei Wang

Gibberellin (GA), a diterpene hormone, plays diverse roles in plant growth and development, including seed germination, stem elongation, and flowering time. Although it is known that GA accelerates flowering through degradation of transcription repressors, DELLAs, the underlying mechanism is poorly understood. We show here that DELLA directly binds to microRNA156 (miR156)-targeted SQUAMOSA PROM...

2017
Runze Wang Meiling Ming Jiaming Li Dongqing Shi Xin Qiao Leiting Li Shaoling Zhang Jun Wu

MADS-box transcription factors play significant roles in plant developmental processes such as floral organ conformation, flowering time, and fruit development. Pear (Pyrus), as the third-most crucial temperate fruit crop, has been fully sequenced. However, there is limited information about the MADS family and its functional divergence in pear. In this study, a total of 95 MADS-box genes were ...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2005
Yoichi Tanabe Mitsuyasu Hasebe Hiroyuki Sekimoto Tomoaki Nishiyama Masakazu Kitani Katrin Henschel Thomas Münster Günter Theissen Hisayoshi Nozaki Motomi Ito

The MADS-box genes of land plants are extensively diverged to form a superfamily and are important in various aspects of development including the specification of floral organs as homeotic selector genes. The closest relatives of land plants are the freshwater green algae charophyceans. To study the origin and evolution of land plant MADS-box genes, we characterized these genes in three charop...

2016
Gulshan Kumar Preeti Arya Khushboo Gupta Vinay Randhawa Vishal Acharya Anil Kumar Singh

The MADS-box transcription factors play essential roles in various processes of plant growth and development. In the present study, phylogenetic analysis of 142 apple MADS-box proteins with that of other dicotyledonous species identified six putative Dormancy-Associated MADS-box (DAM) and four putative Flowering Locus C-like (FLC-like) proteins. In order to study the expression of apple MADS-bo...

Journal: :Plant physiology 2004
Fabio Fornara Lucie Parenicová Giuseppina Falasca Nilla Pelucchi Simona Masiero Stefano Ciannamea Zenaida Lopez-Dee Maria Maddalena Altamura Lucia Colombo Martin M Kater

MADS box transcription factors controlling flower development have been isolated and studied in a wide variety of organisms. These studies have shown that homologous MADS box genes from different species often have similar functions. OsMADS18 from rice (Oryza sativa) belongs to the phylogenetically defined AP1/SQUA group. The MADS box genes of this group have functions in plant development, lik...

2013
Lydia Gramzow Günter Theißen

The development of multicellular eukaryotes, according to their body plan, is often directed by members of multigene families that encode transcription factors. MADS (for MINICHROMOSOME MAINTENANCE1, AGAMOUS, DEFICIENS and SERUM RESPONSE FACTOR)-box genes form one of those families controlling nearly all major aspects of plant development. Knowing the complete complement of MADS-box genes in se...

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