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Advances in molecular marker techniques and their applications in plant sciences

机译:分子标记技术的进展及其在植物科学中的应用

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Detection and analysis of genetic variation can help us to understand the molecular basis of various biological phenomena in plants. Since the entire plant kingdom cannot be covered under sequencing projects, molecular markers and their correlation to phenotypes provide us with requisite landmarks for elucidation of genetic variation. Genetic or DNA based marker techniques such as RFLP (restriction fragment length polymorphism), RAPD (random amplified polymorphic DNA), SSR (simple sequence repeats) and AFLP (amplified fragment length polymorphism) are routinely being used in ecological, evolutionary, taxonomical, phylogenic and genetic studies of plant sciences. These techniques are well established and their advantages as well as limitations have been realized. In recent years, a new class of advanced techniques has emerged, primarily derived from combination of earlier basic techniques. Advanced marker techniques tend to amalgamate advantageous features of several basic techniques. The newer methods also incorporate modifications in the methodology of basic techniques to increase the sensitivity and resolution to detect genetic discontinuity and distinctiveness. The advanced marker techniques also utilize newer class of DNA elements such as retrotransposons, mitochondrial and chloroplast based microsatellites, thereby revealing genetic variation through increased genome coverage. Techniques such as RAPD and AFLP are also being applied to cDNA-based templates to study patterns of gene expression and uncover the genetic basis of biological responses. The review details account of techniques used in identification of markers and their applicability in plant sciences.
机译:对遗传变异的检测和分析可以帮助我们了解植物中各种生物现象的分子基础。由于整个植物界不能被测序项目覆盖,因此分子标记及其与表型的相关性为我们阐明遗传变异提供了必要的标志。基于遗传或DNA的标记技术,例如RFLP(限制性片段长度多态性),RAPD(随机扩增的多态性DNA),SSR(简单序列重复)和AFLP(扩增的片段长度多态性)通常用于生态,进化,分类学,系统发育和植物科学的遗传研究。这些技术已经很好地确立,并且它们的优点和局限性已经实现。近年来,出现了一类新的先进技术,主要是从早期基本技术的结合中得出的。先进的标记技术倾向于融合几种基本技术的优势。较新的方法还对基本技术的方法进行了修改,以提高检测基因不连续性和独特性的灵敏度和分辨率。先进的标记技术还利用了新型的DNA元素,例如反转录转座子,线粒体和基于叶绿体的微卫星,从而通过增加基因组覆盖率揭示了遗传变异。 RAPD和AFLP等技术也已应用于基于cDNA的模板,以研究基因表达模式并揭示生物学应答的遗传基础。审查详细说明了用于鉴定标记物的技术及其在植物科学中的适用性。

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