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Calcium effects on changes in chlorophyll contents, dry weight and micronutrients of strawberry (Fragaria x ananassa Duch.) plants under salt-stress conditions.

机译:钙对盐胁迫条件下草莓(Fragaria x ananassa Duch。)植物叶绿素含量,干重和微量营养元素变化的影响。

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Introduction. Today, approximately one-third of the world's irrigated lands suffer some degree of salinity. Although there are several reports about the effects of calcium treatments on strawberry growth and development under saline conditions, there are no reports demonstrating the effect on micronutrient concentrations of strawberry due to supplementary calcium applied to the salt-stressed plants. Consequently, we investigated the effects of high salinity levels, with application of supplementary calcium, on chlorophyll contents, dry weight and micronutrients of strawberry. Materials and methods. Strawberry (Fragaria x ananassa Duch.) plants cv. 'Selva' were grown in hydroponic culture in a heated greenhouse to investigate the effectiveness of calcium (Ca) added to nutrient solution applied to plants. Six treatments were applied: nutrient solution alone (=[N]); [N]+NaCl salt (35 mM) (=[NS]); [NS]+CaCl2 (5 mM); [NS]+CaCl2 (10 mM); [NS]+CaSO4 (5 mM); and [NS]+CaSO4 (10 mM). The effect of calcium (different forms and different concentrations) on chlorophyll contents and dry weight of salt-stressed plants was determined. Additionally, micronutrient contents were studied. Results. The results indicated that chlorophyll contents and plant dry weight were decreased by salinity. NaCl application increased Cu, Zn, Mn and Fe concentrations of root parts. In shoot parts, Cu accumulation decreased, while other elements increased. Supplementary calcium could ameliorate the negative effects of salinity on chlorophyll and dry mass production. However, micronutrient concentrations of plant parts as influenced by calcium had contradictory results: calcium induced high levels of zinc, manganese and iron concentrations in roots, but high levels of copper and zinc concentrations in shoots. Moreover, there were significant differences between calcium forms in their actions. Conclusion. Our results suggest that CaSO4 could be applied to improve the growth of salt-stressed strawberry plants.
机译:介绍。如今,世界约三分之一的灌溉土地遭受了一定程度的盐碱化。尽管有几篇有关钙处理在盐碱条件下对草莓生长和发育的影响的报道,但没有报道表明由于向盐胁迫的植物补充钙对草莓中微量营养素浓度的影响。因此,我们研究了高盐度水平以及添加钙对草莓叶绿素含量,干重和微量营养元素的影响。材料和方法。草莓( Fragaria x ananassa Duch。)植物。 “塞尔瓦”(Selva)在加热温室中进行水培培养,以研究向植物营养液中添加钙(Ca)的有效性。进行了六种处理:仅营养液(= [N]); [N] + NaCl盐(35 mM)(= [NS]); [NS] + CaCl 2 (5 mM); [NS] + CaCl 2 (10 mM); [NS] + CaSO 4 (5 mM);和[NS] + CaSO 4 (10 mM)。确定了钙(不同形式和不同浓度)对盐胁迫植物叶绿素含量和干重的影响。另外,研究了微量营养素含量。结果。结果表明,盐度降低了叶绿素含量和植物干重。 NaCl的施用增加了根部部分的Cu,Zn,Mn和Fe浓度。在芽部,铜积累减少,而其他元素增加。补充钙可以减轻盐度对叶绿素和干物质生产的负面影响。但是,受钙影响的植物部位的微量营养素浓度却有矛盾的结果:钙在根部诱导高水平的锌,锰和铁含量,而在芽中诱导高水平的铜和锌含量。此外,钙形式之间的作用存在显着差异。结论。我们的结果表明,CaSO 4 可以用于改善盐胁迫草莓植株的生长。

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