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cDNA-SCoT: A novel rapid method for analysis of gene differential expression in sugarcane and other plants

机译:cDNA-SCoT:一种新的快速分析甘蔗和其他植物中基因差异表达的方法

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Gene expression analysis is extremely important in the field of agriculture. The correct analysis could provide theoretical and scientific references for wide-range genetic improvements in plants to increase crop production quality and quantity. To correctly analyze gene expressions, a high-performing, effective, and inexpensive gene expression method is needed. Throughout all previous relevant researches, many methods were created for the detection and analysis of differentially-expressed genes in plants. Although these methods are technologically advanced, each marker system has its own disadvantages when used for gene expression analysis. All these methods have been created in various laboratories for different application purposes. In addition, each method is highly influential to different crop species, technical expertise, available equipments, available research funding, etc. which are not always available. So, these methods are unsuitable for a pure gene expression analysis. To simplify the gene expression analysis without the outside influences of crop species differentiation, different technical skills and equipments, and limited funding, we developed a new method for gene differential expression in plants based on the start codon targeted polymorphism (SCoT) DNA Marker technique, called cDNA-SCoT. The cDNA-SCoT is advantageous compared to all other existing methods because it is relatively more efficient, faster, cheaper, simpler to operate, and the results can be easily reproduced. This method also does not require expensive machineries or complicated chemical mixtures to operate. Consequently, this newly created method was successfully tested on sugarcane genes through this study. We predict that, due to its beneficial qualities in differential gene analysis in comparison to other methods, the cDNA-SCoT would play a more important role in studying differentially expressed genes, finding new genes, investigating the molecular mechanism of resistance, and more.
机译:基因表达分析在农业领域中极为重要。正确的分析可以为植物广泛的遗传改良提供理论和科学参考,以提高作物的生产质量和数量。为了正确地分析基因表达,需要高性能,有效且廉价的基因表达方法。在所有先前的相关研究中,创建了许多方法来检测和分析植物中差异表达的基因。尽管这些方法技术先进,但是当用于基因表达分析时,每种标记系统都有其自身的缺点。所有这些方法已在各种实验室中出于不同的应用目的而创建。另外,每种方法对不同的作物种类,技术专长,可用的设备,可用的研究经费等都具有很大的影响力,而这些并非总是可用的。因此,这些方法不适用于纯基因表达分析。为了简化基因表达分析而不受农作物物种分化,不同技术技能和设备以及有限资金的外部影响,我们基于起始密码子靶向多态性(SCoT)DNA标记技术开发了一种在植物中进行基因差异表达的新方法,称为cDNA-SCoT。相对于所有其他现有方法,cDNA-SCoT具有优势,因为它相对更有效,更快,更便宜,操作更简单,并且结果易于复制。该方法也不需要昂贵的机械或复杂的化学混合物即可操作。因此,通过这项研究成功地在甘蔗基因上测试了这种新创建的方法。我们预测,由于与其他方法相比,cDNA-SCoT在差异基因分析中具有有益的品质,因此在研究差异表达基因,寻找新基因,研究抗性的分子机制等方面将发挥更重要的作用。

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