Characterization of Advanced Tilling and Its Application in Cotton

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Abstract

Among all the fibre crops, cotton is most important economic fibre crop. It is known as white gold because it contributes in the economic, industrial and agricultural sectors. In GDP, it contributes to about 1.6% and have share 7.8% in agricultural products. Pakistan is ranked 5th in world in term of consumption and has 4th in term of total cotton production in 2015-2016. The seed cotton yield and production are stagnant for more than decade in Pakistan, biotic and abiotic stresses are considered as major reasons of this stagnancy. Mutagenesis is an important tool in crop improvement. In breeding programs, mutation is an important tool for creating the variations. Powerful reverse genetic strategies allow the detection of induced point mutation. TILLING (Target Induced Local Lesions in Genomes) is genomic approach which is used for the screening of mutant and germplasm collection for the for the allelic variant in targeted gene. This kind of research explores an advanced TILLING population for various parameters. The main advantage of TILLING is that this technique can be used for any plant species, irrespective of its genome size, ploidy level and method of propagation.
先进耕作技术的特点及其在棉花中的应用
在所有的纤维作物中,棉花是最重要的经济纤维作物。它被称为“白金”,因为它对经济、工业和农业部门都有贡献。在GDP中,它贡献了1.6%,在农产品中占有7.8%的份额。2015-2016年,巴基斯坦棉花消费量排名世界第五,棉花总产量排名世界第四。巴基斯坦的种棉产量和生产停滞了十多年,生物和非生物胁迫被认为是这种停滞的主要原因。诱变是作物改良的重要手段。在育种计划中,突变是创造变异的重要工具。强大的反向遗传策略允许检测诱导点突变。TILLING (Target Induced Local lesion in Genomes)是一种基因组学方法,用于对目标基因中的等位基因变异进行突变体筛选和种质收集。这种研究探索了不同参数下的高级TILLING种群。TILLING的主要优点是该技术可用于任何植物物种,而不考虑其基因组大小、倍性水平和繁殖方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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