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极端环境中的植物生命:如何提高耐旱性?

Plant Life in Extreme Environments: How Do You Improve Drought Tolerance?

作者信息

Bechtold Ulrike

机构信息

School of Biological Sciences, University of Essex, Colchester, United Kingdom.

出版信息

Front Plant Sci. 2018 May 15;9:543. doi: 10.3389/fpls.2018.00543. eCollection 2018.

Abstract

Systems studies of drought stress in resurrection plants and other xerophytes are rapidly identifying a large number of genes, proteins and metabolites that respond to severe drought stress or desiccation. This has provided insight into drought resistance mechanisms, which allow xerophytes to persist under such extreme environmental conditions. Some of the mechanisms that ensure cellular protection during severe dehydration appear to be unique to desert species, while many other stress signaling pathways are in common with well-studied model and crop species. However, despite the identification of many desiccation inducible genes, there are few "gene-to-field" examples that have led to improved drought tolerance and yield stability derived from resurrection plants, and only few examples have emerged from model species. This has led to many critical reviews on the merit of the experimental approaches and the type of plants used to study drought resistance mechanisms. This article discusses the long-standing arguments between the ecophysiology and molecular biology communities, on how to "drought-proof" future crop varieties. It concludes that a more positive and inclusive dialogue between the different disciplines is needed, to allow us to move forward in a much more constructive way.

摘要

对复苏植物和其他旱生植物干旱胁迫的系统研究正在迅速鉴定出大量响应严重干旱胁迫或脱水的基因、蛋白质和代谢物。这为抗旱机制提供了深入了解,使旱生植物能够在这种极端环境条件下生存。一些在严重脱水期间确保细胞保护的机制似乎是沙漠物种所特有的,而许多其他胁迫信号通路与经过充分研究的模式植物和作物物种相同。然而,尽管鉴定出了许多脱水诱导基因,但很少有“从基因到田间”的实例能够提高源自复苏植物的耐旱性和产量稳定性,且只有少数实例来自模式物种。这引发了许多关于实验方法的优点以及用于研究抗旱机制的植物类型的批判性评论。本文讨论了生态生理学和分子生物学界之间关于如何“抗旱”未来作物品种的长期争论。文章得出结论,不同学科之间需要进行更积极和包容的对话,以便我们能够以更具建设性的方式向前发展。

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