نتایج جستجو برای: عوامل رونویسی mads

تعداد نتایج: 113924  

Journal: :Plant physiology 2012
Xianchun Sang Yunfeng Li Zengke Luo Deyong Ren Likui Fang Nan Wang Fangming Zhao Yinghua Ling Zhenglin Yang Yongsheng Liu Guanghua He

The control of floral organ identity by homeotic MADS box genes is well established in eudicots. However, grasses have highly specialized outer floral organs, and the identities of the genes that regulate the highly specialized outer floral organs of grasses remain unclear. In this study, we characterized a MIKC-type MADS box gene, CHIMERIC FLORAL ORGANS (CFO1), which plays a key role in the re...

Journal: :The Plant cell 2014
Masaki Fujisawa Yoko Shima Hiroyuki Nakagawa Mamiko Kitagawa Junji Kimbara Toshitsugu Nakano Takafumi Kasumi Yasuhiro Ito

The tomato (Solanum lycopersicum) MADS box FRUITFULL homologs FUL1 and FUL2 act as key ripening regulators and interact with the master regulator MADS box protein RIPENING INHIBITOR (RIN). Here, we report the large-scale identification of direct targets of FUL1 and FUL2 by transcriptome analysis of FUL1/FUL2 suppressed fruits and chromatin immunoprecipitation coupled with microarray analysis (C...

2016
Zhanquan Zhang Hua Li Guozheng Qin Chang He Boqiang Li Shiping Tian

MADS-box transcription factors are highly conserved in eukaryotic species and involved in a variety of biological processes. Little is known, however, regarding the function of MADS-box genes in Botrytis cinerea, a fungal pathogen with a wide host range. Here, the functional role of the B. cinerea MADS-box gene, Bcmads1, was characterized in relation to the development, pathogenicity and produc...

Journal: :Genetics and molecular research : GMR 2015
Q Shi J Zhou P Wang X Lin Y Xu

SEPALLATA (SEP) MADS-box genes play crucial roles in the regulation of floral growth and development. They are required for the specification of sepals, petals, stamens, and carpels as well as for floral determinacy. SEPs perform their functions through the formation of homo- or hetero-polymers, which are the molecular basis of floral quartets. In vitro assays indicated that SEP3 forms a tetram...

The flowering process in plants proceeds through the induction of an inflorescence meristem triggered by several pathways. Many of the genes associated with these pathways encode transcription factors of the MADS domain family. The MADS-domain transcription factor APETALA1 (AP1) is a key regulator of flower development. The first step to understand the molecular mechanisms under the function of...

Journal: :Open Access Macedonian Journal of Medical Sciences 2022

BACKGROUND: Citrus species produce essential oils (EOs) containing various chemical components that show many pharmacological activities. AIM: The purpose of this study is to evaluate the content and antimicrobial activity EO extracted from fruit peels leaves x aurantifolia (“Asam sundai”) (lime EOs leaves). METHODS: was by hydrodistillation method. determined using gas chromatography in tandem...

2017
Zhongying Ren Daoqian Yu Zhaoen Yang Changfeng Li Ghulam Qanmber Yi Li Jie Li Zhao Liu Lili Lu Lingling Wang Hua Zhang Quanjia Chen Fuguang Li Zuoren Yang

Cotton is one of the major world oil crops. Cottonseed oil meets the increasing demand of fried food, ruminant feed, and renewable bio-fuels. MADS intervening keratin-like and C-terminal (MIKC)-type MADS-box genes encode transcription factors that have crucial roles in various plant developmental processes. Nevertheless, this gene family has not been characterized, nor its functions investigate...

Journal: :The Plant cell 2008
Marian Bemer Mieke Wolters-Arts Ueli Grossniklaus Gerco C Angenent

MADS box genes in plants consist of MIKC-type and type I genes. While MIKC-type genes have been studied extensively, the functions of type I genes are still poorly understood. Evidence suggests that type I MADS box genes are involved in embryo sac and seed development. We investigated two independent T-DNA insertion alleles of the Arabidopsis thaliana type I MADS box gene AGAMOUS-LIKE61 (AGL61)...

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