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盐对盐生植物生长的有益影响:形态、细胞和基因

Beneficial Effects of Salt on Halophyte Growth: Morphology, Cells, and Genes.

作者信息

Yuan Fang, Xu Yanyu, Leng Bingying, Wang Baoshan

机构信息

Shandong Provincial Key Laboratory of Plant Stress, College of Life Sciences, Shandong Normal University, Ji'nan, Shandong, 250014, P.R. China.

出版信息

Open Life Sci. 2019 Jun 24;14:191-200. doi: 10.1515/biol-2019-0021. eCollection 2019 Jan.

Abstract

Halophytes can survive and complete their life cycle in the presence of ≥200 mM NaCl. These remarkable plants have developed various strategies to tolerate salinity and thrive in high-salt environments. At the appropriate levels, salt has a beneficial effect on the vegetative growth of halophytes but inhibits the growth of non-halophytes. In recent years, many studies have focused on elucidating the salt-tolerance mechanisms of halophytes at the molecular, physiological, and individual level. In this review, we focus on the mechanisms, from the macroscopic to the molecular, underlying the successful growth of halophytes in saline environments to explain why salt has beneficial effects on halophytes but harmful effects on non-halophytes. These mechanisms include the specialized organs of halophytes (for example, ion compartmentalization in succulent leaves), their unique structures (salt glands and hydrophobic barriers in roots), and their salt-tolerance genes. We hope to shed light on the use of halophytes for engineering salt-tolerant crops, soil conservation, and the protection of freshwater resources in the near future.

摘要

盐生植物能够在氯化钠浓度≥200 mM的环境中生存并完成其生命周期。这些非凡的植物已经发展出各种策略来耐受盐分并在高盐环境中茁壮成长。在适当的水平下,盐对盐生植物的营养生长有有益影响,但会抑制非盐生植物的生长。近年来,许多研究致力于在分子、生理和个体水平上阐明盐生植物的耐盐机制。在这篇综述中,我们聚焦于盐生植物在盐渍环境中成功生长的从宏观到分子层面的机制,以解释为何盐对盐生植物有有益影响而对非盐生植物有有害影响。这些机制包括盐生植物的特殊器官(例如肉质叶中的离子区隔化)、其独特结构(根中的盐腺和疏水屏障)以及它们的耐盐基因。我们希望在不久的将来能够阐明如何利用盐生植物来培育耐盐作物、保护土壤以及保护淡水资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be2b/7874760/22d1e0cf4757/biol-14-191-g001.jpg

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