The Utilization of Seed Priming as a Tool to Overcome Salt and Drought Stresses: Is Still a Long Way to Go?

Cinzia Forni, Ilaria Borromeo
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Abstract

Abiotic stresses, sometimes due to dramatic environmental changes, such as sudden and heavy rainfalls, or drought, increasing temperatures or soil salinization, deeply affect the growth and yield of plants. Progress in terms of improving the abiotic stress tolerance of plants can be obtained via classical breeding and genetic engineering, which can be slow, or by practice, such as acclimation and seed priming. The latter can improve seedling performance, and it can be considered a short-term approach. Seed priming with different agents and biopriming may offer the possibility to improve stress tolerance, even though its beneficial effect depends on crop species, dose, and time of application. The aim of this review is to highlight some of the current research trends that may ultimately lead to strategies for stress-proofing crop species. The focus is on those abiotic stresses, e.g., drought and soil salinity, that are most often associated with climate change and poor agricultural practices and those crops that are most important for human nutrition. Comments are provided on the challenges and pros and cons of this methodology.
利用种子引种作为克服盐和干旱胁迫的工具:还有很长的路要走吗?
非生物胁迫,有时是由于剧烈的环境变化,如突然和大雨,或干旱,温度升高或土壤盐碱化,深刻影响植物的生长和产量。在提高植物的非生物抗逆性方面,可以通过传统育种和基因工程获得进展,这可能是缓慢的,或者通过实践,如驯化和种子启动。后者可以提高幼苗性能,可视为短期方法。用不同的药剂和生物药剂灌种可能提供提高胁迫耐受性的可能性,尽管其有益效果取决于作物种类、剂量和施用时间。这篇综述的目的是强调当前的一些研究趋势,这些趋势可能最终导致抗胁迫作物物种的策略。重点是那些最常与气候变化和不良农业做法有关的非生物压力,例如干旱和土壤盐碱化,以及对人类营养最重要的作物。对这种方法的挑战和利弊进行了评论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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