نتایج جستجو برای: تراریختی بواسطه agrobacterium tumefacien
تعداد نتایج: 7387 فیلتر نتایج به سال:
هدف اصلی و اولیه این مطالعه, بهینه سازی انتقال ژن به قارچ بیماریزای گیاهی fusarium graminearum بود که عامل اصلی بیماری بلایت فوزاریومی سنبله (fhb) در غلات دانه ریز است. تراریخت کردن ژنتیکی، نه تنها ابزاری مفید جهت شناسایی ژنوم و مطالعه عملکرد آنها در بیمارگرهای گیاهی است, بلکه زمینه مطالعه برهمکنش گیاه - بیمارگر و راهکار لازم برای مقابله با بیماری را فراهم می کند. علاوه براین, تراریختی قارچ ها ...
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...
Agrobacterium tumefaciens is a soil phytopathogen that elicits neoplastic growths on the host plant species. In nature, however, Agrobacterium also may encounter organisms belonging to other kingdoms such as insects and animals that feed on the infected plants. Can Agrobacterium, then, also infect animal cells? Here, we report that Agrobacterium attaches to and genetically transforms several ty...
تراریختی گذرای گیاهان روشی مفید و در برخی موارد جایگزینی مناسب برای تراریختی پایدار به ویژه در غلات، گیاهان درختی و گیاهانی است که باززایی و یا تراریختی آنها با مشکل مواجه است. در این روش در زمانی کوتاه تعداد زیادی از نسخههای تراژن وارد سلول گیاهی شده، رونویسی و ترجمه میشوند و چون توالی DNA در ژنوم میزبان وارد نمیشود، بیان ژن تحت تاثیر محل درج و تغییرات اپیژنتیکی قرار نمیگیرد. تراریختی گذرا...
A combination of the crown gall biocontrol strain K-84 and another antagonist JH-l was better than K-84 alone in controlling some Agrobacterium strains. Strain K-84 surprisingly controlled some resistant Agrobacterium strains when heavy concentrations of K-84 were used. Strain K-84 could control sensitive strains of Agrobacterium up to 48 hr. after wounds were inoculated with the pathogen at te...
We investigated the effects of salicylic acid (SA) and systemic acquired resistance (SAR) on crown gall disease caused by Agrobacterium tumefaciens. Nicotiana benthamiana plants treated with SA showed decreased susceptibility to Agrobacterium infection. Exogenous application of SA to Agrobacterium cultures decreased its growth, virulence, and attachment to plant cells. Using Agrobacterium whole...
Exudates of dicotyledonous plants contain specific phenolic signal molecules, such as acetosyringone, which serve as potent inducers for the expression of the virulence (vir) regulon of the phytopathogen Agrobacterium tumefaciens. This induction activates the Agrobacterium T-DNA transfer process to initiate the genetic transformation of target plant cells. Wounded and metabolically active plant...
Agrobacterium tumefaciens has a unique ability to transfer genes into plant genomes. This ability has been utilized for plant genetic engineering. However, the efficiency is not sufficient for all plant species. Several studies have shown that ethylene decreased the Agrobacterium-mediated transformation frequency. Thus, A. tumefaciens with an ability to suppress ethylene evolution would increas...
Agrobacterium is a phytopathogenic bacterium that induces crown gall disease in many plant species by transferring and integrating a segment of its own DNA (T-DNA) into its host genome. Whereas Agrobacterium usually does not trigger an extensive defense response in its host plants, it induces the expression of several defense-related genes and activates plant stress reactions. In the complex in...
Tumorigenic strains of Agrobacterium spp. are responsible for crown gall disease of numerous plant species. We present here draft genome sequences of nonpathogenic Agrobacterium nepotum strain 39/7(T) (CFBP 7436(T), LMG 26435(T)), isolated from crown gall tumor on Prunus cerasifera, and tumorigenic Agrobacterium sp. strain KFB 330 (CFBP 8308, LMG 28674), isolated from galls on raspberry.
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