种子灌浆技术是逆境条件下作物增产的关键策略

Daniel Garcia, S. Arif, Yinglei Zhao, Shuo Zhao, L. Ming, Danfeng Huang
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引用次数: 7

摘要

农民和种子公司不断需要具有优良农艺性能的优质种子。然而,面对环境逆境、有限的自然资源和全球不断增长的粮食需求,人们越来越关注通过实施有效的策略来提高作物产量。引种技术已显示出良好的生物改良前景,可使作物在不利的环境条件下获得适宜的农艺性能。种子处于受控条件下,有利于复杂的生理、生化和分子变化,对随后的萌发和生长条件具有特定的耐受性。本文综述了近年来在逆境条件下作物生产过程中,氢激发、渗透激发、化学激发、激素激发、纳米激发、基质激发、生物激发、物理激发和杂交激发等方法的效率及其生物学机制变化的研究进展。所有的引物方法都显示了与作物生产相关的生物机制的变化,减轻了盐效应、重金属和洪涝胁迫,提高了作物对冷、热、干旱和植物病原体的耐受性。我们强烈建议研究人员在他们的研究中结合多种启动方法,即杂交启动,以提供新技术和额外的生物学方法,以提高作物植物科学的知识。因此,研究结果揭示了种子引种技术作为一种关键策略,可以通过获得抗逆性和提高农艺性状来提高作物在环境逆境下的产量,以满足全球粮食需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seed Priming Technology as a Key Strategy to Increase Crop Plant Production under Adverse Environmental Conditions
Farmers and seed companies constantly require high-quality seeds with excellent agronomic performance. However, faced with environmental adversity, limited natural resources and increasing food demand around the globe, more attention has turned to improving crop plant production by implementing efficient strategies. Seed priming technology has shown promising biological improvements leading to suitable agronomic performance in crop plants under adverse environmental conditions. Seeds are subjected to controlled conditions that are conducive to complex physiological, biochemical, and molecular changes, conferring specific stress tolerance to subsequent germination and growth conditions. In this review paper, we aimed to study the recent approaches in the efficiency of hydropriming, osmopriming, chemopriming, hormopriming, nanopriming, matrix priming, biopriming, physical priming and hybrid priming procedures in the production of crop plants under environmental adversity, as well as their biological mechanism changes. All priming methods demonstrated relevant changes in the biological mechanism related to crop plant production by mitigating salinity effects, heavy metals, and flooding stress and enhancing chilling, heat, drought and phytopathogen tolerance. We strongly recommend that researchers combine multiple priming methods, known as hybrid priming, in their investigations to provide novel technologies and additional biological approaches to enhance the knowledge of crop plant science. Thus, the findings shed light on the use of seed priming technology as a key strategy to increase crop plant production under environmental adversity by acquiring stress tolerance and enhancing agronomic traits to meet the global food demand.
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