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Biotechnology: reality or dream

机译:生物技术:现实还是梦想

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The development of molecular biology and molecular genetics, especially of the recombinant DNA technology enabled improvement of experimental methods that provide manipulation within a cell-free system, such as cell and tissue cultures. Such methods resulted in the development of different new technologies with specific properties in relation to the conventional definitions. According to PERSLEY and lantin (2000) the following components are essential for the contemporary biotechnology: (i) genomics - a molecular characterization of all genes and gene products of an organism (ii) bioinformatics - the assembly of data from genomic analysis into accessible forms; (iii) transformation - the introduction of genes controlling a trait of interest into a genome of a desired organism (micro organisms, plants, animal systems). By the application of cotemporary biotechnology new methods in the field of diagnostic are developed such as rapid and more accurate identification of the presence and absence of genes in the genome of the organism of interest (identification of pathogens prenatal diagnostics, molecular markers assisted breeding for plants, etc). The traits of an organism are determined by its genetic material, i.e. by a molecule of deoxyribonucleic acid (DNA). watson and crick (1953) were the first scientists to describe the structure of DNA as a double-stranded helix. Higher organisms contain a set of linear DNA molecules - chromosomes and a full set of chromosomes of an organism is a genome. Each genome is divided into a series of functional units, i.e. genes. The traits of an organism depend on genes, but their expression depends not only on genes but also on many other factors, including whether a gene, controlling the trait, expresses, specific cells in which it expresses and specially the mode by which the gene and its product interact with the environment. A special aspect within the application of biotechnology occurs as an interaction of a foreign gene with a genome of an integrated organism. Also application of biotechnology provides transfer of one or several favorable genes from any evolutionary category into other category of an organism and in such a way it is possible to develop genetically modified organisms (GMO) having expressed desired, target traits. A survey of the application of biotechnology in the world and our country is presented in this paper.
机译:分子生物学和分子遗传学的发展,尤其是重组DNA技术的发展,使实验方法的改进成为可能,该方法提供了在无细胞系统(例如细胞和组织培养)中进行操纵的方法。这种方法导致了具有与常规定义有关的特定特性的不同新技术的发展。根据PERSLEY和Lantin(2000)的研究,以下要素对于当代生物技术是必不可少的:(i)基因组学-生物体所有基因和基因产物的分子特征(ii)生物信息学-将来自基因组分析的数据组装成可访问的形式; (iii)转化-将控制目的性状的基因引入所需生物(微生物,植物,动物系统)的基因组中。通过同时代生物技术的应用,开发了诊断领域的新方法,例如快速,更准确地鉴定目标生物基因组中基因的存在与否(病原体的鉴定,产前诊断,分子标记辅助植物育种)等)。生物的特征由其遗传物质,即脱氧核糖核酸(DNA)分子决定。 watson和crick(1953)是最早将DNA结构描述为双链螺旋的科学家。高等生物包含一组线性DNA分子-生物体的染色体和整套染色体是基因组。每个基因组被分为一系列功能单元,即基因。生物体的性状取决于基因,但它们的表达不仅取决于基因,还取决于许多其他因素,包括控制该性状的基因是否表达,其表达的特定细胞,特别是该基因和基因的表达方式。其产品与环境互动。生物技术应用中的一个特殊方面是外源基因与整合生物体基因组的相互作用。生物技术的应用还提供了从任何进化类别到生物的另一类别的一种或几种有利基因的转移,并且以这种方式,有可能发展出表达了期望的靶性状的基因改造生物(GMO)。本文介绍了生物技术在世界和我国的应用情况。

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