Role of Next Generation Sequencing (NGS) in Plant Disease Management: A Review

M. Saeed, Z. Jamil, T. Shehzad, S. Z. U. Hasan, R. Bibi, S. Malik, Hafiz Matee-ur-Rehman, Raees Ahmed
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Abstract

A high throughput technique used to determine a part of the nucleotide sequence of an organism’s genome is called next generation sequencing (NGS). NGS has been Proven revolutionary in genomics. Clinical diagnostics, Plant diseases diagnostic and other aspects of medical are now made possible by sequencing. Techniques of NGS: there are different techniques of NGS which are being used in real life sciences i.e., Illumina sequencing, Pyrosequencing, Roche 454 sequencing and Ion torrent sequencing. All vintage methods like culturing in bacterial, fungal, and viral samples are being suppressed by next generation sequencing. The potential for random metagenomic sequencing of sick samples to find potential pathogens has surfaced with the development of next-generation high-throughput parallel sequencing technology. NGS enables highly efficient, rapid, low-cost DNA or RNA high-throughput sequencing of plant virus and viroids genomes, as well as specific small RNAs generated during infection. Although this technique is not so much familiar in the field of plant diseases. However, its widespread application in agronomic sciences will make it possible to create solutions to future food-related challenges that involve biotic stress.
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下一代测序(NGS)在植物病害管理中的作用综述
用于确定生物体基因组部分核苷酸序列的高通量技术被称为下一代测序(NGS)。NGS已被证明是基因组学的革命性成果。临床诊断、植物疾病诊断和其他医疗方面的测序现在成为可能。NGS技术:有不同的NGS技术正在应用于现实生命科学,如Illumina测序,焦磷酸测序,罗氏454测序和离子激流测序。所有老式的方法,如细菌、真菌和病毒样本的培养,都被下一代测序所抑制。随着新一代高通量平行测序技术的发展,对患病样本进行随机宏基因组测序以发现潜在病原体的潜力已经浮出水面。NGS能够对植物病毒和类病毒基因组以及感染过程中产生的特定小RNA进行高效、快速、低成本的DNA或RNA高通量测序。虽然这种技术在植物病害领域并不常见。然而,它在农艺科学中的广泛应用将有可能为未来涉及生物压力的食品相关挑战创造解决方案。
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