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在生长室和温室中进行作物育种和模式植物研究的加速繁殖。

Speed breeding in growth chambers and glasshouses for crop breeding and model plant research.

机构信息

John Innes Centre, Norwich Research Park, Norwich, UK.

Queensland Alliance for Agriculture and Food Innovation, University of Queensland, Brisbane, Australia.

出版信息

Nat Protoc. 2018 Dec;13(12):2944-2963. doi: 10.1038/s41596-018-0072-z.

Abstract

'Speed breeding' (SB) shortens the breeding cycle and accelerates crop research through rapid generation advancement. SB can be carried out in numerous ways, one of which involves extending the duration of plants' daily exposure to light, combined with early seed harvest, to cycle quickly from seed to seed, thereby reducing the generation times for some long-day (LD) or day-neutral crops. In this protocol, we present glasshouse and growth chamber-based SB approaches with supporting data from experimentation with several crops. We describe the conditions that promote the rapid growth of bread wheat, durum wheat, barley, oat, various Brassica species, chickpea, pea, grass pea, quinoa and Brachypodium distachyon. Points of flexibility within the protocols are highlighted, including how plant density can be increased to efficiently scale up plant numbers for single-seed descent (SSD). In addition, instructions are provided on how to perform SB on a small scale in a benchtop growth cabinet, enabling optimization of parameters at a low cost.

摘要

“快速繁殖”(SB)通过快速世代推进缩短了繁殖周期并加速了作物研究。SB 可以通过多种方式进行,其中一种方法是延长植物每天接受光照的时间,同时提前收获种子,从而快速从种子到种子进行循环,从而减少一些长日照(LD)或日中性作物的世代时间。在本方案中,我们介绍了基于温室和生长室的 SB 方法,并提供了几种作物实验的支持数据。我们描述了促进面包小麦、硬粒小麦、大麦、燕麦、各种芸薹属物种、鹰嘴豆、豌豆、兵豆、藜麦和短柄草快速生长的条件。方案中突出了灵活性的要点,包括如何增加植物密度以有效地提高 SSD 的植物数量。此外,还提供了如何在台式生长柜中进行小规模 SB 的说明,从而可以以低成本优化参数。

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