نتایج جستجو برای: agrobacterium rhizogenesis

تعداد نتایج: 5714  

Organogenesis and neoformant plantlet production were studied by culturing the different parts of mature embryo including radicle and proximal and distal parts of cotyledon of Mission and Kroneiki cultivars. Different parts of embryos were cultures in OMc medium containing growth regulators, such as indole butyric acid (IBA) and 2-isopentenyl adenine (2-ip) or IBA and naphthalene acetic acid (N...

Journal: :Scientific Papers of the Institute of Bioenergy Crops and Sugar Beet 2019

2016
Tackmin Kwon

The efficiency of Agrobacterium-mediated transformation in plants depends on the virulence of Agrobacterium strains, the plant tissue culture conditions, and the susceptibility of host plants. Understanding the molecular interactions between Agrobacterium and host plant cells is crucial when manipulating the susceptibility of recalcitrant crop plants and protecting orchard trees from crown gall...

Journal: :Methods in molecular biology 2006
Tzvi Tzfira Talya Kunik Yedidya Gafni Vitaly Citovsky

Agrobacterium most likely can transform virtually all known plant species, and experimental protocols for Agrobacterium-mediated genetic transformation of yet more plant species, ecotypes, and cultivars are published almost on a daily basis. Interestingly, the Agrobacterium host range is not limited to the plant kingdom, and it has been shown to transform many species of fungi and even prokaryo...

Journal: :Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis 2016

Journal: :Proceedings of the National Academy of Sciences of the United States of America 1993
W H Shen J Escudero M Schläppi C Ramos B Hohn Z Koukolíková-Nicola

Agrobacterium tumefaciens is routinely used to engineer desirable genes into dicotyledonous plants. However, the economically important graminaceous plant maize is refractory to tumor induction by inoculation with virulent strains of A. tumefaciens. Currently, the only clearcut evidence for transferred DNA (T-DNA) transport from Agrobacterium to maize comes from agroinfection. To study T-DNA tr...

2015
Mitsuhiro Kimura Sean Cutler Sachiko Isobe Luis Herrera-Estrella

Agrobacterium-mediated transformation is a commonly used method for plant genetic engineering. However, the limitations of Agrobacterium host-plant interactions and the complexity of plant tissue culture often make the production of transgenic plants difficult. Transformation efficiency in many legume species, including soybean and the common bean, has been reported to be quite low. To improve ...

Journal: :The Plant cell 2004
Hau-Hsuan Hwang Stanton B Gelvin

Agrobacterium tumefaciens uses a type IV secretion system (T4SS) to transfer T-DNA and virulence proteins to plants. The T4SS is composed of two major structural components: the T-pilus and a membrane-associated complex that is responsible for translocating substrates across both bacterial membranes. VirB2 protein is the major component of the T-pilus. We used the C-terminal-processed portion o...

Journal: :Trends in cell biology 2002
Tzvi Tzfira Vitaly Citovsky

Genetic modification of plant cells by Agrobacterium is the only known natural example of DNA transport between kingdoms. While the bacterial factors involved in Agrobacterium infection have been relatively well characterized, studies of their host cellular partners are just beginning. Here, we describe the plant cell factors that might participate in Agrobacterium-mediated genetic transformati...

Journal: :The International journal of developmental biology 2013
Benoît Lacroix Vitaly Citovsky

The genetic transformation of plants mediated by Agrobacterium tumefaciens represents an essential tool for both fundamental and applied research in plant biology. For a successful infection, culminating in the integration of its transferred DNA (T-DNA) into the host genome, Agrobacterium relies on multiple interactions with host-plant factors. Extensive studies have unraveled many of such inte...

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