Laboratory of Plant Physiology, Plant Sciences Group, Wageningen University and Research, Wageningen, the Netherlands.
Plant Cell Environ. 2022 Mar;45(3):695-704. doi: 10.1111/pce.14205. Epub 2021 Nov 17.
Increasing soil salinization largely impacts crop yield worldwide. To deal with salinity stress, plants exhibit an array of responses, including root system architecture remodelling. Here, we review recent progress in physiological, developmental and cellular mechanisms of root growth responses to salinity. Most recent research in modulation of root branching, root tropisms, as well as in root cell wall modifications under salinity stress, is discussed in the context of the contribution of these responses to overall plant performance. We highlight the power of natural variation approaches revealing novel potential pathways responsible for differences in root salt stress responses. Together, these new findings promote our understanding of how salt shapes the root phenotype, which may provide potential avenues for engineering crops with better yield and survival in saline soils.
土壤盐渍化的加剧对全球作物产量产生了重大影响。为了应对盐胁迫,植物表现出一系列的响应,包括根系结构的重塑。在这里,我们回顾了近年来关于植物根系生长响应盐胁迫的生理、发育和细胞机制的最新进展。本文讨论了在盐胁迫下根分枝、根向性以及根细胞壁修饰的调节,以及这些响应对整体植物性能的贡献。我们强调了利用自然变异方法揭示新的潜在途径来解释根盐胁迫响应差异的重要性。总之,这些新发现促进了我们对盐如何塑造根表型的理解,这可能为工程作物在盐渍土壤中提高产量和生存能力提供了潜在途径。