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增强植物的耐盐性:从代谢重编程到外源化学处理和分子方法。

Enhancing Salt Tolerance of Plants: From Metabolic Reprogramming to Exogenous Chemical Treatments and Molecular Approaches.

机构信息

Department of Postharvest Science of Fresh Produce, Agricultural Research Organization, Volcani Center, Rishon LeZion 7505101, Israel.

Institute of Plant Sciences, Agricultural Research Organization, Volcani Center, Rishon LeZion 7505101, Israel.

出版信息

Cells. 2020 Nov 17;9(11):2492. doi: 10.3390/cells9112492.

Abstract

Plants grow on soils that not only provide support for root anchorage but also act as a reservoir of water and nutrients important for plant growth and development. However, environmental factors, such as high salinity, hinder the uptake of nutrients and water from the soil and reduce the quality and productivity of plants. Under high salinity, plants attempt to maintain cellular homeostasis through the production of numerous stress-associated endogenous metabolites that can help mitigate the stress. Both primary and secondary metabolites can significantly contribute to survival and the maintenance of growth and development of plants on saline soils. Existing studies have suggested that seed/plant-priming with exogenous metabolites is a promising approach to increase crop tolerance to salt stress without manipulation of the genome. Recent advancements have also been made in genetic engineering of various metabolic genes involved in regulation of plant responses and protection of the cells during salinity, which have therefore resulted in many more basic and applied studies in both model and crop plants. In this review, we discuss the recent findings of metabolic reprogramming, exogenous treatments with metabolites and genetic engineering of metabolic genes for the improvement of plant salt tolerance.

摘要

植物生长在土壤中,土壤不仅为根系的锚定提供支撑,还作为水和养分的储存库,这些水和养分对植物的生长和发育至关重要。然而,环境因素(如高盐度)会阻碍植物从土壤中吸收养分和水分,降低植物的质量和生产力。在高盐度下,植物会通过产生大量与应激相关的内源性代谢物来试图维持细胞内稳态,这些代谢物有助于减轻应激。初级和次级代谢物都可以显著促进植物在盐渍土壤中的生存以及生长和发育的维持。现有研究表明,通过外源代谢物对种子/植物进行预处理是一种很有前途的方法,可以在不改变基因组的情况下提高作物对盐胁迫的耐受性。最近在涉及植物响应调节和盐胁迫下细胞保护的各种代谢基因的遗传工程方面也取得了进展,因此在模式植物和作物植物中进行了更多的基础和应用研究。在这篇综述中,我们讨论了代谢重编程、外源代谢物处理和代谢基因遗传工程在提高植物耐盐性方面的最新发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0efb/7697626/68dd0b99b8ce/cells-09-02492-g001.jpg

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