Speed breeding is a powerful tool to accelerate crop research and breeding

作物 农学 普通大麦 生物 植物育种 萝卜 油菜 生物技术 禾本科
作者
Amy Watson,Sreya Ghosh,Matthew Williams,William S. Cuddy,James Simmonds,María-Dolores Rey,Muhammad Asyraf Md Hatta,Alison Hinchliffe,Andrew Steed,Daniel Reynolds,Nikolai M. Adamski,Andrew Breakspear,Andrey Korolev,Tracey Rayner,Laura E. Dixon,Adnan Riaz,William E. Martin,Merrill Ryan,David Edwards,Jacqueline Batley
出处
期刊:Nature plants [Nature Portfolio]
卷期号:4 (1): 23-29 被引量:1150
标识
DOI:10.1038/s41477-017-0083-8
摘要

The growing human population and a changing environment have raised significant concern for global food security, with the current improvement rate of several important crops inadequate to meet future demand 1 . This slow improvement rate is attributed partly to the long generation times of crop plants. Here, we present a method called ‘speed breeding’, which greatly shortens generation time and accelerates breeding and research programmes. Speed breeding can be used to achieve up to 6 generations per year for spring wheat (Triticum aestivum), durum wheat (T. durum), barley (Hordeum vulgare), chickpea (Cicer arietinum) and pea (Pisum sativum), and 4 generations for canola (Brassica napus), instead of 2–3 under normal glasshouse conditions. We demonstrate that speed breeding in fully enclosed, controlled-environment growth chambers can accelerate plant development for research purposes, including phenotyping of adult plant traits, mutant studies and transformation. The use of supplemental lighting in a glasshouse environment allows rapid generation cycling through single seed descent (SSD) and potential for adaptation to larger-scale crop improvement programs. Cost saving through light-emitting diode (LED) supplemental lighting is also outlined. We envisage great potential for integrating speed breeding with other modern crop breeding technologies, including high-throughput genotyping, genome editing and genomic selection, accelerating the rate of crop improvement. Fully enclosed, controlled-environment growth chambers can accelerate plant development. Such ‘speed breeding’ reduces generation times to accelerate crop breeding and research programmes, and can integrate with other modern crop breeding technologies.
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