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外源性肌醇可提高兼性盐生植物幼体早期的耐盐性并加速 CAM 诱导,但对幼体晚期则没有作用。

Exogenous -inositol increases salt tolerance and accelerates CAM induction in the early juvenile stage of the facultative halophyte but not in the late juvenile stage.

机构信息

Department of Life Sciences, National Chung Hsing University, Taichung 40227, Taiwan.

出版信息

Funct Plant Biol. 2023 May;50(5):363-377. doi: 10.1071/FP22285.

Abstract

Mesembryanthemum crystallinum L. (ice plant) develops salt tolerance during the transition from the juvenile to the adult stage through progressive morphological, physiological, biochemical, and molecular changes. Myo -inositol is the precursor for the synthesis of compatible solute D-pinitol and promotes Na+ transport in ice plants. We previously showed that supplying myo -inositol to 9-day-old seedlings alleviates salt damage by coordinating the expression of genes involved in inositol synthesis and transport, affecting osmotic adjustment and the Na/K balance. In this study, we examined the effects of myo -inositol on physiological parameters and inositol-related gene expression in early- and late-stage juvenile plants. The addition of myo -inositol to salt-treated, hydroponically grown late juvenile plants had no significant effects on growth or photosynthesis. In contrast, supplying exogenous myo -inositol to salt-treated early juvenile plants increased leaf biomass, relative water content, and chlorophyll content and improved PSII activity and CO2 assimilation. The treatment combining high salt and myo -inositol synergistically induced the expression of myo -inositol phosphate synthase (INPS ), myo -inositol O -methyltransferase (IMT ), and inositol transporters (INTs ), which modulated root-to-shoot Na/K ratio and increased leaf D-pinitol content. The results indicate that sufficient myo -inositol is a prerequisite for high salt tolerance in ice plant.

摘要

冰叶日中花(Mesembryanthemum crystallinum L.)在从幼年到成年的过渡过程中通过渐进的形态、生理、生化和分子变化发展出耐盐性。肌醇是合成相容溶质 D-松醇的前体,并促进冰叶日中花中的 Na+ 转运。我们之前表明,在 9 天大的幼苗中供应肌醇通过协调参与肌醇合成和转运的基因的表达来减轻盐害,从而影响渗透调节和 Na/K 平衡。在这项研究中,我们研究了肌醇对早期和晚期幼年期植物生理参数和肌醇相关基因表达的影响。向盐处理的水培生长的晚期幼年期植物中添加肌醇对生长或光合作用没有显著影响。相比之下,向盐处理的早期幼年期植物供应外源性肌醇会增加叶片生物量、相对含水量和叶绿素含量,并改善 PSII 活性和 CO2 同化。高盐和肌醇的组合处理协同诱导肌醇磷酸合酶(INPS)、肌醇 O-甲基转移酶(IMT)和肌醇转运蛋白(INTs)的表达,从而调节根到梢的 Na/K 比值并增加叶片 D-松醇含量。结果表明,充足的肌醇是冰叶日中花高耐盐性的前提条件。

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