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Plant salt-tolerance mechanisms

机译:植物耐盐机制

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Crop performance is severely affected by high salt concentrations in soils. To engineer more salt-tolerant plants it is crucial to unravel the key components of the plant salt-tolerance network. Here we review our understanding of the core salt-tolerance mechanisms in plants. Recent studies have shown that stress sensing and signaling components can play important roles in regulating the plant salinity stress response. We also review key Na+ transport and detoxification pathways and the impact of epigenetic chromatin modifications on salinity tolerance. In addition, we discuss the progress that has been made towards engineering salt tolerance in crops, including marker-assisted selection and gene stacking techniques. We also identify key open questions that remain to be addressed in the future.C1 Schroeder, Julian I.; Univ Calif San Diego, Div Biol Sci, Food and Fuel Century Ctr 21, La Jolla, CA 92093 USASC Genetics & Heredity; Physiology
机译:土壤中的高盐含量严重影响了作物的生长性能。为了设计出更多的耐盐植物,至关重要的是要揭示植物耐盐网络的关键组成部分。在这里,我们回顾了我们对植物核心耐盐机制的理解。最近的研究表明,胁迫感测和信号传导成分在调节植物盐度胁迫响应中可以发挥重要作用。我们还审查了关键的Na +转运和排毒途径以及表观遗传染色质修饰对盐分耐受性的影响。此外,我们讨论了在农作物工程耐盐性方面所取得的进展,包括标记辅助选择和基因堆叠技术。我们还确定了未来仍有待解决的关键公开问题。C1 Schroeder,JulianI。加州大学圣地亚哥分校,生物科学部,食品和燃料世纪中心21号,拉荷亚,CA 92093,USASC遗传与遗传;生理

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