远臂足
芸苔属
生物
农学
作物
油菜
植物育种
生物化学
基因
基因组
作者
Sreya Ghosh,Amy Watson,Oscar E. González-Navarro,Ricardo H. Ramírez-González,Luis Yanes,Marcela Mendoza-Suárez,James Simmonds,Rachel Wells,Tracey Rayner,Phon Green,Amber N. Hafeez,Şadiye Hayta,Rachel E. Melton,Andrew Steed,Abhimanyu Sarkar,Jeremy Carter,Lionel Perkins,J. W. Lord,Mark Tester,Anne Osbourn
出处
期刊:Nature Protocols
[Nature Portfolio]
日期:2018-11-14
卷期号:13 (12): 2944-2963
被引量:389
标识
DOI:10.1038/s41596-018-0072-z
摘要
'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.
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