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作物种质:当前挑战、生理-分子视角以及培育气候适应型作物的先进策略

Crop germplasm: Current challenges, physiological-molecular perspective, and advance strategies towards development of climate-resilient crops.

作者信息

Mondal Raju, Kumar Amit, Gnanesh Belaghihalli N

机构信息

Mulberry Tissue Culture Lab, Central Sericultural Germplasm Resources Centre (CSGRC), Hosur, 635109, India.

Central Sericultural Research and Training Institute, Mysuru, 570 008, Karnataka, India.

出版信息

Heliyon. 2023 Jan 16;9(1):e12973. doi: 10.1016/j.heliyon.2023.e12973. eCollection 2023 Jan.

Abstract

Germplasm is a long-term resource management mission and investment for civilization. An estimated ∼7.4 million accessions are held in 1750 plant germplasm centres around the world; yet, only 2% of these assets have been utilized as plant genetic resources (PGRs). According to recent studies, the current food yield trajectory will be insufficient to feed the world's population in 2050. Additionally, possible negative effects in terms of crop failure because of climate change are already being experienced across the world. Therefore, it is necessary to reconciliation of research advancement and innovation of practices for further exploration of the potential of crop germplasm especially for the complex traits associated with yield such as water- and nitrogen use efficiency. In this review, we tried to address current challenges, research gaps, physiological and molecular aspects of two broad spectrum complex traits such as water- and nitrogen-use efficiency, and advanced integrated strategies that could provide a platform for combined stress management for climate-smart crop development. Additionally, recent development in technologies that are directly related to germplasm characterization was highlighted for further molecular utilization towards the development of elite varieties.

摘要

种质资源是一项关乎文明的长期资源管理任务和投资。据估计,全球1750个植物种质资源中心保存着约740万份种质资源;然而,这些资源中仅有2%被用作植物遗传资源。根据近期研究,当前的粮食产量增长轨迹将不足以养活2050年的世界人口。此外,世界各地已经在经历气候变化导致作物歉收的可能负面影响。因此,有必要协调研究进展与实践创新,以进一步挖掘作物种质资源的潜力,特别是与产量相关的复杂性状,如水氮利用效率。在本综述中,我们试图探讨当前的挑战、研究差距、水氮利用效率这两个广谱复杂性状的生理和分子层面,以及可为气候智能型作物开发的复合胁迫管理提供平台的先进综合策略。此外,还强调了与种质资源鉴定直接相关的技术的最新进展,以便进一步从分子层面利用这些技术来培育优良品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4c1/9880400/0fd6cb21e9de/gr1.jpg

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