首页> 外文期刊>Scientia horticulturae >Exogenous Ca2SiO4 enrichment reduces the leaf apoplastic Na+ and increases the growth of okra (Abelmoschus esculentus L.) under salt stress
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Exogenous Ca2SiO4 enrichment reduces the leaf apoplastic Na+ and increases the growth of okra (Abelmoschus esculentus L.) under salt stress

机译:外源Ca2SiO4富集减少了叶子痉挛Na +,并增加了盐胁迫下秋葵(Abelmoschus Esculentus L.)的生长

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Salt-sensitive plants have been hypothesized to deposit excessive Na+ in their leaf apoplast, which can mainly disturb shoot growth of crop plants. Knowledge of the subcellular location of Na* is important to ascertain its toxicity level under salt stress. However, this hypothesis of extracellular salt deposition under salinity stress is still not fully understood. This research mainly focuses on the influence of 1 mM calcium silicate (Ca2SiO4) on growth and Na+ accumulation in the leaf apoplast of hydroponically grown salt sensitive okra plants under short-term stress of 100 mM NaCl. It has been found that Na* concentration not only increases in total shoot and root of okra, but also in the leaf apoplast of salt-stressed plants. Na* concentration was significantly reduced in total shoot (52%) and leaf apoplast (30%), when 1 mM Ca2SiO4 was applied as a foliar plus pot under salt stress. Moreover, calcium silicate treated plants showed significant improvement in shoot fresh weight, shoot length, leaf area and leaf length under 100 mM NaCl stress. Together, these results suggest that calcium silicate enrichment in pot and as a foliar spray increases the growth of Abelmoschus esculentus by reducing the Na* concentration in the leaf apoplast, which could thus ameliorate the negative impacts of salt stress on plants. (C) 2016 Elsevier B.V. All rights reserved.
机译:已经假设盐敏感植物以沉积过量的Na +在它们的叶子间相色中,这主要可以扰乱作物植物的射击生长。知识Na *的亚细胞位置对于确定其盐胁迫下的毒性水平是重要的。然而,在盐度应力下的细胞外盐沉积的这种假设仍未完全理解。该研究主要侧重于1mM硅酸钙(CA2SIO4)对水粒性生长盐敏秋葵植物的叶胰蛋白酶在100mM NaCl的短期应力下的叶胰蛋白酶中生长和Na +积累的影响。已经发现Na *浓度不仅增加了秋葵的总枝条和根部,而且在盐胁迫植物的叶子荚膜中增加。当在盐胁迫下涂抹1mM Ca2SiO4时,Na *浓度显着降低,总枝条(52%)和叶形血管体(30%)。此外,硅酸钙处理的植物显示出在100mM NaCl应力下的芽鲜重,芽长度,叶面积和叶长度的显着改善。这些结果表明,通过降低叶子素中的Na *浓度,池氧化钙和叶面的富含钙和叶面喷雾增加了Abelmoschus Esculentus的生长,这可能会改善盐胁迫对植物的负面影响。 (c)2016年Elsevier B.v.保留所有权利。

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