Optimization of Bacterial Plasmid Transformation Using Nanomaterials Based on the Yoshida Effect
نویسندگان
چکیده
With the help of sepiolite, a unique method for transforming DNA into bacteria, based on the Yoshida effect, has been developed recently. However, we confronted many problems when this newest method was tried. Only a few transformants could be obtained even when 100 ng of plasmid pET15b was used, and a successful result seemed difficult to repeat. To address this problem, we optimized the operating method and could achieve about 15,000 transformants using the same amount of plasmid, which could match the efficiency gained using the calcium chloride transformation method. Meanwhile, the results could also be reproduced well. In the same way, carbon nanotubes were used to attain more than 15,000 transformants in the same situation. Therefore, the transformation method could be extended to other nanomaterials. Meanwhile, compared with the mechanism previously reported, we verified quite a different principle for the mechanism responsible for such a transformation. In sum, this unique transformation can be developed to become the third widely-used transformation method in laboratories in addition to the chemical method and electroporation.
منابع مشابه
روش سریع و مؤثر ترانسفورمسازی باکتری اشریشیاکلی
Background & Objective: Transformation of plasmid DNA into bacterial competent cells is a key technique for molecular cloning. Transformation can be achieved using either chemical or physical methods, e.g., electroporation. The rate of success in these methods depends on experience and attention to method’s details. Therefore, the higher the efficiency and quality of a transformation method, ...
متن کاملProduction of transgenic Paulownia tomentosa (Thunb.) steud. using chitosan nanoparticles to express antimicrobial genes resistant to bacterial infection
Paulownia tomentosa (Thunb.) Steud. is a very important hard woody plant, an extremely fast-growing tree and produce timber. Therefore, there is a demand to produce transgenic Paulownia plant resistant to bacterial infection. Microbial infection (especially bacterial one) is serious sever and cause a loss in plant productivity as they bear upon the character and amount of plan...
متن کاملبهینهسازی بیان سم شقایق دریایی (فراگاسیاتوکسین C) در باکتری E.coli سویه BL21
Background and purpose: Sea anemones of the genus Actinia are commonly found in the intertidal zone of the northern rocky coast of Spain. Actinia fragacea is one of the most important species that secretes a toxic protein, fragaceatoxin C (FraC), for defense and hunting purposes. The aim of this study was transformation of plasmid containing the gene encoding the FraC to Escherichia coli bacter...
متن کاملProviding a mathematical model for measuring the expression of GUS gene was transferred temporarily through xylem vessels using RT-PCR and probe Gold nanoparticles
Gene transfer to plants and the production of transgenic plants with various purposes, such as improving the performance and quality, resistance to pests, diseases, etc., and of great importance are carried out Gene transfer to plants performs to evaluate the transient and permanent gene expression. Transient expression is quick, easy and simple and is not influenced by position effect compare ...
متن کاملProviding a mathematical model for measuring the expression of GUS gene was transferred temporarily through xylem vessels using RT-PCR and probe Gold nanoparticles
Gene transfer to plants and the production of transgenic plants with various purposes, such as improving the performance and quality, resistance to pests, diseases, etc., and of great importance are carried out Gene transfer to plants performs to evaluate the transient and permanent gene expression. Transient expression is quick, easy and simple and is not influenced by position effect compare ...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره 11 شماره
صفحات -
تاریخ انتشار 2010