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促进春化以加速冬小麦作物的世代进展。

Speed vernalization to accelerate generation advance in winter cereal crops.

机构信息

National Institute of Crop Science, RDA, Miryang 50424, Korea.

School of Biology, Faculty of Biological Sciences, University of Leeds, Leeds LS2 9JT, UK.

出版信息

Mol Plant. 2022 Aug 1;15(8):1300-1309. doi: 10.1016/j.molp.2022.06.012. Epub 2022 Jun 25.

Abstract

There are many challenges facing the development of high-yielding, nutritious crops for future environments. One limiting factor is generation time, which prolongs research and plant breeding timelines. Recent advances in speed breeding protocols have dramatically reduced generation time for many short-day and long-day species by optimizing light and temperature conditions during plant growth. However, winter crops with a vernalization requirement still require up to 6-10 weeks in low-temperature conditions before the transition to reproductive development. Here, we tested a suite of environmental conditions and protocols to investigate whether the vernalization process can be accelerated. We identified a vernalization method consisting of exposing seeds at the soil surface to an extended photoperiod of 22 h day:2 h night at 10°C with transfer to speed breeding conditions that dramatically reduces generation time in both winter wheat (Triticum aestivum) and winter barley (Hordeum vulgare). Implementation of the speed vernalization protocol followed by speed breeding allowed the completion of up to five generations per year for winter wheat or barley, whereas only two generations can be typically completed under standard vernalization and plant growth conditions. The speed vernalization protocol developed in this study has great potential to accelerate biological research and breeding outcomes for winter crops.

摘要

未来环境下高产、营养作物的发展面临诸多挑战。其中一个限制因素是世代时间,它延长了研究和植物育种的时间线。最近,通过优化植物生长过程中的光照和温度条件,快速繁殖协议的进展极大地缩短了许多短日和长日物种的世代时间。然而,仍有许多需要春化的冬季作物在进入生殖发育之前需要在低温条件下生长 6-10 周。在这里,我们测试了一系列环境条件和方案,以研究春化过程是否可以加速。我们确定了一种春化方法,包括将种子暴露在土壤表面,在 10°C 的条件下延长 22 小时光照:2 小时黑暗的光周期,然后转移到快速繁殖条件下,这极大地缩短了冬小麦(Triticum aestivum)和冬大麦(Hordeum vulgare)的世代时间。快速春化方案的实施 followed by speed breeding 允许冬小麦或大麦每年完成多达五代,而在标准春化和植物生长条件下通常只能完成两代。本研究中开发的快速春化方案具有极大的潜力,可以加速冬季作物的生物学研究和育种成果。

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