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Harmonizing technological advances in phenomics and genomics for enhanced salt tolerance in rice from a practical perspective

机译:从实践视角下协调表情和基因组学中增强耐盐性的技术进步

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Abstract Half of the global human population is dependent on rice as a staple food crop and more than 25% increase in rice productivity is required to feed the global population by 2030. With increase in irrigation, global warming and rising sea level, rising salinity has become one of the major challenges to enhance the rice productivity. Since the loss on this account is to the tune of US$12 billion per annum, it necessitates the global attention. In the era of technological advancement, substantial progress has been made on phenomics and genomics data generation but reaping benefit of this in rice salinity variety development in terms of cost, time and precision requires their harmonization. There is hardly any comprehensive holistic review for such combined approach. Present review describes classical salinity phenotyping approaches having morphological, physiological and biochemical components. It also gives a detailed account of invasive and non-invasive approaches of phenomic data generation and utilization. Classical work of rice salinity QLTs mapping in the form of chromosomal atlas has been updated. This review describes how QTLs can be further dissected into QTN by GWAS and transcriptomic approaches. Opportunities and progress made by transgenic, genome editing, metagenomics approaches in combating rice salinity problems are discussed. Major aim of this review is to provide a comprehensive over-view of hitherto progress made in rice salinity tolerance research which is required to understand bridging of phenotype based breeding with molecular breeding. This review is expected to assist rice breeders in their endeavours by fetching greater harmonization of technological advances in phenomics and genomics for better pragmatic approach having practical perspective.
机译:摘要一半的全球人口依赖大米,因为在2030年之前,将全球人口养活全球人口的大量粮食作物,增加了25%以上的水稻生产力。随着灌溉,全球变暖和海平面上升,盐度上升的增加成为提高水稻生产率的主要挑战之一。由于该账户的损失是每个年度为120亿美元的曲调,因此需要全球关注。在技​​术进步时代,对表情和基因组学的实质性进展已经取得了重大进展,但在成本,时间和精度下,在水稻盐度各种发展中获得了益处,需要他们的协调。对这种综合方法几乎没有全面的整体审查。目前述评描述了具有形态学,生理和生物化学成分的古典盐度表型方法。它还详细介绍了表情数据生成和利用的侵入性和非侵入性方法。染色体地图集形式的水稻盐度QLT型典型工作已经更新。该综述描述了GWAS和转录组方法可以进一步解释QTL的QTN。讨论了转基因,基因组编辑,偏见方法对水稻盐度问题进行的机会和进展。本综述的主要目的是提供迄今为止在水稻盐度公差研究中进行的综合性,这是了解基于分子育种的表型繁殖的桥接需要。本综述预计将通过取得更好的统一技能和基因组学的技术进步,帮助稻类育种者以获得更好的务实观点的务实观点。

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