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黍稷耐盐胁迫管理的最新进展与未来方向综述

A Review of Recent Advances and Future Directions in the Management of Salinity Stress in Finger Millet.

作者信息

Mbinda Wilton, Mukami Asunta

机构信息

Department of Biochemistry and Biotechnology, Pwani University, Kilifi, Kenya.

Pwani University Biosciences Research Centre (PUBReC), Pwani University, Kilifi, Kenya.

出版信息

Front Plant Sci. 2021 Sep 16;12:734798. doi: 10.3389/fpls.2021.734798. eCollection 2021.

Abstract

Salinity stress is a major environmental impediment affecting the growth and production of crops. Finger millet is an important cereal grown in many arid and semi-arid areas of the world characterized by erratic rainfall and scarcity of good-quality water. Finger millet salinity stress is caused by the accumulation of soluble salts due to irrigation without a proper drainage system, coupled with the underlying rocks having a high salt content, which leads to the salinization of arable land. This problem is projected to be exacerbated by climate change. The use of new and efficient strategies that provide stable salinity tolerance across a wide range of environments can guarantee sustainable production of finger millet in the future. In this review, we analyze the strategies that have been used for salinity stress management in finger millet production and discuss potential future directions toward the development of salt-tolerant finger millet varieties. This review also describes how advanced biotechnological tools are being used to develop salt-tolerant plants. The biotechnological techniques discussed in this review are simple to implement, have design flexibility, low cost, and highly efficient. This information provides insights into enhancing finger millet salinity tolerance and improving production.

摘要

盐分胁迫是影响作物生长和产量的主要环境障碍。龙爪稷是一种重要的谷物,生长在世界许多干旱和半干旱地区,这些地区降雨不稳定且优质水源稀缺。龙爪稷的盐分胁迫是由于缺乏适当排水系统的灌溉导致可溶性盐积累,再加上底层岩石含盐量高,从而导致耕地盐碱化。预计气候变化会使这个问题更加严重。采用能在广泛环境中提供稳定耐盐性的新的高效策略,可确保未来龙爪稷的可持续生产。在本综述中,我们分析了龙爪稷生产中用于盐分胁迫管理的策略,并讨论了培育耐盐龙爪稷品种未来可能的发展方向。本综述还描述了先进生物技术工具如何用于培育耐盐植物。本综述中讨论的生物技术简单易行、设计灵活、成本低且效率高。这些信息为提高龙爪稷的耐盐性和改善产量提供了见解。

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