Optimization of RAPD-PCR conditions for the study of genetic diversity in Nepal’s Swertia chirayita (Roxb. Ex Fleming) H. Karst

IF 0.2 Q4 GEOLOGY
S. Shrestha, Jaishree Sijapati, N. Rana, Diwa Malla, Prabha Regmi, B. B. Raskoti
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引用次数: 5

Abstract

Of the 30 species (including five varieties) of the genus Swertia in Nepal, nine have been reported to possess medicinal properties. Among these, S. chirayita is the most valuable species, with high demand in domestic and international markets. Nepal’s S. chirayita and related species are being recklessly exploited for commercial purposes. Two problems that have emerged with this lucrative market are (a) adulteration and fraudulent labeling of S. chirayita , and (b) depletion of S. chirayita and allied species from their natural habitats. To address the problem of adulteration and conservation, we studied molecular genetic diversity in S. chirayita populations and developed a molecular diagnostic tool for the purposes of authentication. We studied intra-specific genetic diversity in S. chirayita using Polymerase Chain Reaction (PCR)-based Random Amplified Polymorphic DNA (RAPD) technique. As a preliminary step, we identified optimal RAPD-PCR reaction and cycling conditions by varying PCR reaction parameters such as concentration of template DNA, MgCl 2 , dNTPs, primer, Taq DNA polymerase and RAPD-PCR programs. The optimized PCR reaction and cycling conditions were then used in subsequent RAPD profiling experiments for the study of genetic diversity within S. chirayita populations from various geographical locations. Genetic diversity characterization of S. chirayita populations at the molecular level would furnish information with significant applications in the conservation and sustainable utilization of S. chirayita and its allied species in Nepal. Key words: Polymerase Chain Reaction, Random Amplified Polymorphic DNA, DNA fingerprinting, genetic diversity DOI: http://dx.doi.org/10.3126/hjs.v6i8.2699 Himalayan Journal of Sciences Vol.6 Issue 8 2010 pp.35-40
尼泊尔獐牙菜遗传多样性研究的RAPD-PCR条件优化。(弗莱明)喀斯特
在尼泊尔的獐牙菜属的30种(包括5个变种)中,据报道有9种具有药用价值。其中,藏红花是价值最高的品种,国内外市场需求量大。尼泊尔的S. chirayita和相关物种正被不计后果地用于商业目的。在这个利润丰厚的市场中出现了两个问题:(a)假药和虚假标签,以及(b)从其自然栖息地中耗尽的藏羚羊及其相关物种。为了解决掺假和保护的问题,我们研究了藏南居群的分子遗传多样性,并开发了一种分子诊断工具以进行鉴定。采用基于聚合酶链反应(PCR)的随机扩增多态性DNA (RAPD)技术研究了藏红花种内遗传多样性。作为初步步骤,我们通过改变模板DNA浓度、mgcl2、dNTPs、引物、Taq DNA聚合酶和RAPD-PCR程序等PCR反应参数,确定了最佳的RAPD-PCR反应和循环条件。利用优化后的PCR反应和循环条件进行RAPD分析实验,研究不同地理位置藏红花居群的遗传多样性。在分子水平上对尼泊尔藏南种群的遗传多样性特征进行分析,对尼泊尔藏南及其近缘种的保护和可持续利用具有重要的应用价值。关键词:聚合酶链反应,随机扩增多态性DNA, DNA指纹,遗传多样性DOI: http://dx.doi.org/10.3126/hjs.v6i8.2699喜马拉雅科学杂志Vol.6 Issue 8 2010 pp.35-40
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
0
期刊介绍: The "Journal of Himalayan Earth Sciences" (JHES) is a biannual journal, managed by the National Centre of Excellence in Geology, University of Peshawar, Pakistan. JHES is recognized by Higher Education Commission (HEC), Pakistan in "X" Category. The JHES entertains research articles relevant to the field of geosciences. Typical geoscience-related topics include sedimentary geology, igneous, and metamorphic geology and geochemistry, geographical information system/remote sensing related to natural hazards, and geo-environmental issues and earth quake seismology, and engineering and exploration geophysics. However, as the journal name implies, the articles addressing research relevant to the above disciplines in the Himalayan region will be given prime importance and relevance.
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