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利用 LED 控制的光照方案加速短日照作物的繁殖。

Speed breeding short-day crops by LED-controlled light schemes.

机构信息

State Plant Breeding Institute, University of Hohenheim, Fruwirthstr. 21, 70599, Stuttgart, Germany.

出版信息

Theor Appl Genet. 2020 Aug;133(8):2335-2342. doi: 10.1007/s00122-020-03601-4. Epub 2020 May 12.

Abstract

A simple and rapid speed breeding system was developed for short-day crops that enables up to five generations per year using LED lighting systems that allow very specific adjustments regarding light intensity and quality. Plant breeding is a key element for future agricultural production that needs to cope with a growing human population and climate change. However, the process of developing suitable cultivars is time-consuming, not least because of the long generation times of crops. Recently, speed breeding has been introduced for long-day crops, but a similar protocol for short-day crops is lacking to date. In this study, we present a speed breeding protocol based on light-emitting diodes (LEDs) that allow to modify light quality, and exemplarily demonstrate its effectiveness for the short-day crops soybean (Glycine max), rice (Oryza sativa) and amaranth (Amaranthus spp.). Adjusting the photoperiod to 10 h and using a blue-light enriched, far-red-deprived light spectrum facilitated the growth of short and sturdy soybean plants that flowered ~ 23 days after sowing and matured within 77 days, thus allowing up to five generations per year. In rice and amaranth, flowering was achieved ~ 60 and ~ 35 days after sowing, respectively. Interestingly, the use of far-red light advanced flowering by 10 and 20 days in some amaranth and rice genotypes, respectively, but had no impact on flowering in soybeans, highlighting the importance of light quality for speed breeding protocols. Taken together, our short-day crops' speed breeding protocol enables several generations per year using crop-specific LED-based lighting regimes, without the need of tissue culture tools such as embryo rescue. Moreover, this approach can be readily applied to a multi-storey 96-cell tray-based system to integrate speed breeding with genomics, toward a higher improvement rate in breeding.

摘要

我们开发了一种简单而快速的短日照作物繁殖系统,该系统可利用 LED 照明系统,每年进行五代繁殖,从而实现非常具体的光照强度和质量的调节。植物育种是未来农业生产的关键要素,需要应对不断增长的人口和气候变化。然而,培育合适品种的过程非常耗时,部分原因是作物的世代时间长。最近,长日照作物的快速繁殖已经问世,但迄今为止,短日照作物缺乏类似的方案。在这项研究中,我们提出了一种基于发光二极管(LED)的快速繁殖方案,该方案允许修改光质,并举例说明了其在短日照作物大豆(Glycine max)、水稻(Oryza sativa)和苋菜(Amaranthus spp.)中的有效性。将光周期调整为 10 小时,并使用富含蓝光、缺乏远红光的光谱,有利于生长出矮小而健壮的大豆植株,这些植株在播种后约 23 天开花,77 天内成熟,因此每年可繁殖五代。在水稻和苋菜中,分别在播种后约 60 天和 35 天开花。有趣的是,远红光的使用分别使某些苋菜和水稻基因型的开花提前了 10 天和 20 天,但对大豆的开花没有影响,这突显了光质对快速繁殖方案的重要性。总之,我们的短日照作物快速繁殖方案可利用特定作物的基于 LED 的照明方案,每年进行多代繁殖,而无需胚胎拯救等组织培养工具。此外,这种方法可以很容易地应用于多层 96 孔板系统,将快速繁殖与基因组学相结合,以提高育种的更高改良率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebe7/7360641/358b87096f29/122_2020_3601_Fig1_HTML.jpg

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