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Plant exomics: Concepts applications and methodologies in crop improvement

机译:植物组学:作物改良的概念应用和方法

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摘要

Molecular breeding has a crucial role in improvement of crops. Conventional breeding techniques have failed to ameliorate food production. Next generation sequencing has established new concepts of molecular breeding. Exome sequencing has proven to be a significant tool for assessing natural evolution in plants, studying host pathogen interactions and betterment of crop production as exons assist in interpretation of allelic variation with respect to their phenotype. This review covers the platforms for exome sequencing, next generation sequencing technologies that have revolutionized exome sequencing and led toward development of third generation sequencing. Also discussed in this review are the uses of these sequencing technologies to improve wheat, rice and cotton yield and how these technologies are used in exploring the biodiversity of crops, providing better understanding of plant-host pathogen interaction and assessing the process of natural evolution in crops and it also covers how exome sequencing identifies the gene pool involved in symbiotic and other co-existential systems. Furthermore, we conclude how integration of other methodologies including whole genome sequencing, proteomics, transcriptomics and metabolomics with plant exomics covers the areas which are left untouched with exomics alone and in the end how these integration will transform the future of crops.
机译:分子育种对改善农作物具有至关重要的作用。传统的育种技术未能改善粮食生产。下一代测序已建立了分子育种的新概念。外显子组测序已被证明是评估植物自然进化,研究宿主病原体相互作用和改善作物产量的重要工具,因为外显子有助于解释等位基因表型的变异。这篇综述涵盖了外显子组测序的平台,彻底改变了外显子组测序并引领第三代测序开发的下一代测序技术。本文还讨论了如何使用这些测序技术提高小麦,水稻和棉花的产量,以及如何将这些技术用于探索农作物的生物多样性,更好地了解植物与宿主之间的病原体相互作用以及评估其自然进化过程。它也涵盖了外显子组测序如何识别共生和其他共存系统中涉及的基因库。此外,我们得出结论,将包括全基因组测序,蛋白质组学,转录组学和代谢组学在内的其他方法与植物组学整合在一起如何涵盖了仅靠组学无法触及的领域,最后这些整合将如何改变作物的未来。

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