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Breeding and biotechnological interventions for trait improvement: status and prospects

机译:特质改进的育种和生物技术干预措施:地位与前景

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Main conclusion Present review describes the molecular tools and strategies deployed in the trait discovery and improvement of major crops. The prospects and challenges associated with these approaches are discussed. Crop improvement relies on modulating the genes and genomic regions underlying key traits, either directly or indirectly. Direct approaches include overexpression, RNA interference, genome editing, etc., while breeding majorly constitutes the indirect approach. With the advent of latest tools and technologies, these strategies could hasten the improvement of crop species. Next-generation sequencing, high-throughput genotyping, precision editing, use of space technology for accelerated growth, etc. had provided a new dimension to crop improvement programmes that work towards delivering better varieties to cope up with the challenges. Also, studies have widened from understanding the response of plants to single stress to combined stress, which provides insights into the molecular mechanisms regulating tolerance to more than one stress at a given point of time. Altogether, next-generation genetics and genomics had made tremendous progress in delivering improved varieties; however, the scope still exists to expand its horizon to other species that remain underutilized. In this context, the present review systematically analyses the different genomics approaches that are deployed for trait discovery and improvement in major species that could serve as a roadmap for executing similar strategies in other crop species. The application, pros, and cons, and scope for improvement of each approach have been discussed with examples, and altogether, the review provides comprehensive coverage on the advances in genomics to meet the ever-growing demands for agricultural produce.
机译:主要结论本综述描述了在特质发现和主要作物的改进中部署的分子工具和策略。讨论了与这些方法相关的前景和挑战。作物改善依赖于调节基因和基因组区域,直接或间接地调节关键性状的基因和基因组区域。直接方法包括过表达,RNA干扰,基因组编辑等,同时繁殖主要构成间接方法。随着最新工具和技术的出现,这些策略可以加速作物物种的改善。下一代测序,高通量基因分型,精确编辑,空间技术对加速增长的使用等,为作物改善计划提供了新的维度,这些计划适用于提供更好的品种,以应对挑战。此外,研究从理解植物的响应扩大到单一应力组合应力,这为在给定的时间点调节了对多于一个应力的分子机制的洞察力。完全,下一代遗传学和基因组学在提供改进的品种方面取得了巨大的进展;但是,范围仍然存在扩大其地平线到仍未减少的其他物种。在这种情况下,本综述系统地分析了部署特质发现的不同基因组学方法,并改善了可以作为在其他作物物种中执行类似策略的路线图的主要种类。讨论了各种方法的申请,优点和缺点以及改进各种方法的范围,审查提供了对基因组学的进步,以满足对农产品不断增长的需求的全面覆盖。

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