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在更短时间内培育更多作物:速生栽培法的视角

Breeding More Crops in Less Time: A Perspective on Speed Breeding.

作者信息

Samantara Kajal, Bohra Abhishek, Mohapatra Sourav Ranjan, Prihatini Riry, Asibe Flora, Singh Lokendra, Reyes Vincent P, Tiwari Abha, Maurya Alok Kumar, Croser Janine S, Wani Shabir Hussain, Siddique Kadambot H M, Varshney Rajeev K

机构信息

Department of Genetics and Plant Breeding, Centurion University of Technology and Management, Parlakhemundi 761211, Odisha, India.

ICAR-Indian Institute of Pulses Research (IIPR), Kanpur 208024, Uttar Pradesh, India.

出版信息

Biology (Basel). 2022 Feb 10;11(2):275. doi: 10.3390/biology11020275.

Abstract

Breeding crops in a conventional way demands considerable time, space, inputs for selection, and the subsequent crossing of desirable plants. The duration of the seed-to-seed cycle is one of the crucial bottlenecks in the progress of plant research and breeding. In this context, speed breeding (SB), relying mainly on photoperiod extension, temperature control, and early seed harvest, has the potential to accelerate the rate of plant improvement. Well demonstrated in the case of long-day plants, the SB protocols are being extended to short-day plants to reduce the generation interval time. Flexibility in SB protocols allows them to align and integrate with diverse research purposes including population development, genomic selection, phenotyping, and genomic editing. In this review, we discuss the different SB methodologies and their application to hasten future plant improvement. Though SB has been extensively used in plant phenotyping and the pyramiding of multiple traits for the development of new crop varieties, certain challenges and limitations hamper its widespread application across diverse crops. However, the existing constraints can be resolved by further optimization of the SB protocols for critical food crops and their efficient integration in plant breeding pipelines.

摘要

以传统方式培育作物需要大量的时间、空间、选择投入以及后续对优良植株的杂交。从种子到种子的周期时长是植物研究和育种进展中的关键瓶颈之一。在此背景下,主要依靠光周期延长、温度控制和早期种子收获的快速育种(SB)有潜力加快植物改良的速度。快速育种方案在长日照植物中已得到充分证明,目前正扩展到短日照植物以缩短世代间隔时间。快速育种方案的灵活性使其能够与包括群体发展、基因组选择、表型分析和基因组编辑在内的多种研究目的相协调和整合。在本综述中,我们讨论了不同的快速育种方法及其在加速未来植物改良方面的应用。尽管快速育种已广泛应用于植物表型分析以及为培育新作物品种而进行的多个性状的聚合,但某些挑战和限制阻碍了其在多种作物中的广泛应用。然而,通过进一步优化关键粮食作物的快速育种方案并将其有效整合到植物育种流程中,现有的限制可以得到解决。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d091/8869642/9a4860acd0cf/biology-11-00275-g001.jpg

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