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犬新孢子虫分子遗传学的发展:一种对刚地弓形虫的补充系统。

Development of molecular genetics for Neospora caninum: A complementary system to Toxoplasma gondii.

作者信息

Howe D K, Sibley L D

机构信息

Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, Missouri, 63110, USA.

出版信息

Methods. 1997 Oct;13(2):123-33. doi: 10.1006/meth.1997.0505.

Abstract

The development of molecular genetics has greatly enhanced the study of Toxoplasma gondii, and investigations into the biology and pathology associated with neosporosis will be similarly benefited by the development of molecular tools for Neospora caninum. We have demonstrated the feasibility of using the existing DNA vectors developed for T. gondii to transfect and transform the Nc-1 strain of Neospora. We have also shown that T. gondii proteins are faithfully expressed and targeted in N. caninum, indicating the suitability of using Neospora as a heterologous expression system for studying T. gondii. These studies provide the basis for initiating molecular genetic studies on N. caninum and will allow for a number of molecular comparisons of these two closely related, though phenotypically distinct, parasites. Here we describe the methods and reagents used to perform genetic manipulations of N. caninum, and we present some of the principles and potential utilities of these molecular studies, including the use of N. caninum as a heterologous system for the study of T. gondii proteins.

摘要

分子遗传学的发展极大地促进了对弓形虫的研究,随着犬新孢子虫分子工具的开发,对新孢子虫病相关生物学和病理学的研究也将同样受益。我们已经证明了使用为弓形虫开发的现有DNA载体转染和转化犬新孢子虫Nc-1株的可行性。我们还表明,弓形虫蛋白在犬新孢子虫中能如实地表达并靶向定位,这表明将新孢子虫用作研究弓形虫的异源表达系统是合适的。这些研究为启动犬新孢子虫的分子遗传学研究提供了基础,并将使我们能够对这两种密切相关但表型不同的寄生虫进行大量分子比较。在这里,我们描述了对犬新孢子虫进行基因操作所使用的方法和试剂,并介绍了这些分子研究的一些原理和潜在用途,包括将犬新孢子虫用作研究弓形虫蛋白的异源系统。

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