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Solute accumulation and osmotic adjustment characteristics of the mangrove Avicennia marina under NaCl-induced salinity stress

机译:NaCl诱导的盐分胁迫下红树林Avicennia Marina的溶质积累和渗透调节特征

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Osmotic adjustment characteristics of mangrove leaves (Avicennia marina) were investigated over 45 days of growth under three NaCl concentrations (0, 200 and 600 mM NaCl). Maximum seedling growth occurred at 200 mM NaCl. Leaf water potential and osmotic potential were more negative under saltier conditions. The salinity treatments caused an increase in the leaf contents of Na+, Cl-, glycine betaine, total free amino acids and proline. However, inorganic ions (especially Na+ and Cl-) played a key role in osmotic adjustment in A. marina leaves, as they contributed 70% and 76% to these adjustments in 200 and 600 mM NaCl-treated plants, respectively. NaCl treatment induced a decrease in the organic solute contribution. Thus, growth of A. marina was stimulated by the 200 mM NaCl treatment due to effective osmotic adjustment, mainly by accumulation of inorganic ions. Reduction in growth when A. marina was subjected to high salinity stress (600 mM NaCl) appears to have been caused for the most part by the accumulation of excess NaCl (ionic effect), exacerbated by additional organic solute synthesis, rather than an osmotic effect.
机译:在三种NaCl浓度(0、200和600 mM NaCl)下,经过45天的生长研究了红树林叶片(Avicennia marina)的渗透调节特性。在200 mM NaCl中出现最大的幼苗生长。在较咸的条件下,叶片水势和渗透势较负。盐分处理导致叶片中Na +,Cl-,甘氨酸甜菜碱,总游离氨基酸和脯氨酸含量增加。但是,无机离子(尤其是Na +和Cl-)在滨海曲霉叶片的渗透调节中起关键作用,因为它们分别对200和600 mM NaCl处理过的植物的这些调节贡献了70%和76%。 NaCl处理导致有机溶质贡献降低。因此,由于有效的渗透调节,主要通过无机离子的积累,通过200 mM NaCl处理刺激了滨海曲霉的生长。滨海曲霉遭受高盐度胁迫(600 mM NaCl)时,生长的减少似乎主要是由于过量的NaCl的积累(离子效应)引起的,而额外的有机溶质合成加剧了这种效应,而不是渗透效应。

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