De Novo Domestication in the Multi-Omics Era.

Liumei Jian, Jianbing Yan, Jie Liu
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引用次数: 1

Abstract

Most cereal crops were domesticated within the last 12,000 years and subsequently spread around the world. These crops have been nourishing the world by supplying a primary energy and nutrient source, thereby playing a critical role in determining the status of human health and sustaining the global population. Here, we review the major challenges of future agriculture and emphasize the utilization of wild germplasm. De novo domestication is one of the most straightforward strategies to manipulate domestication-related and/or other genes with known function, and thereby introduce desired traits into wild plants. We also summarize known causal variations and their corresponding pathways in order to better understand the genetic basis of crop evolution, and how this knowledge could facilitate de novo domestication. Indeed knowledge-driven de novo domestication has great potential for the development of new sustainable crops that have climate-resilient high yield with low resource input and meet individual nutrient needs. Finally, we discuss current opportunities for and barriers to knowledge-driven de novo domestication.

多组学时代的新驯化。
大多数谷类作物在过去的12000年里被驯化,随后传播到世界各地。这些作物通过提供主要能源和营养来源滋养着世界,从而在决定人类健康状况和维持全球人口方面发挥着关键作用。本文综述了未来农业面临的主要挑战,并强调了野生种质资源的利用。重新驯化是操纵驯化相关基因和/或其他已知功能基因,从而将所需性状引入野生植物的最直接策略之一。我们还总结了已知的因果变异及其相应的途径,以便更好地了解作物进化的遗传基础,以及这些知识如何促进重新驯化。事实上,知识驱动的重新驯化对于开发新的可持续作物具有巨大潜力,这些作物具有气候适应型高产和低资源投入,并满足个人营养需求。最后,我们讨论了目前知识驱动的新驯化的机会和障碍。
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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