首页> 外文期刊>Journal of plant interactions >Flue gas desulfurization gypsum by-products alters cytosolic Ca2 + distribution and Ca2+-ATPase activity in leaf cells of oil sunflower in alkaline soil
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Flue gas desulfurization gypsum by-products alters cytosolic Ca2 + distribution and Ca2+-ATPase activity in leaf cells of oil sunflower in alkaline soil

机译:烟气脱硫石膏副产物改变碱性土壤油葵叶片细胞中胞质Ca2 +分布和Ca2 + -ATPase活性

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Soil salinization in arid zones is a major factor that resulted in the reduction in the yield and quality of many important crops in Northwestern China. In this study, the potential mechanism of flue gas desulfurization gypsum by-product (FGDB) mediated amendment of alkaline soils was investigated in an oil sunflower model by accessing the Ca2+ distribution and Ca2+-ATPase activity in leaf cells. Our results demonstrated an increased calcium concentration, as well as intact chloroplast structure with increasing calcium precipitates in the cell wall, intercellular space, and vacuole of leaf cells in the plants grown in alkaline soils supplied with FGDB or CaSO4. Additionally, a dose-dependent Ca2+-ATPase activity was detected in the plasma membrane and tonoplast of leaf cells from the plants grown in FGDB or CaSO4 supplemented soils. These results implied that the Ca2+-ATPase activity cause cytosolic Ca2+ efflux. The Ca2+ influx is through the Ca2+-channels, and increasing cytosolic Ca2+ concentration migh...
机译:干旱地区的土壤盐渍化是导致西北地区许多重要农作物减产和减产的主要因素。在这项研究中,通过访问叶细胞中Ca2 +的分布和Ca2 + -ATPase的活性,在油葵模型中研究了烟气脱硫石膏副产物(FGDB)介导的碱性土壤的改性机理。我们的研究结果表明,在碱性土壤中生长的FGDB或CaSO4在植物体内生长时,细胞壁,细胞间空间和叶细胞液泡中钙的沉淀增加,钙浓度增加,叶绿体结构保持完整,钙离子浓度增加。此外,在生长于FGDB或CaSO4的土壤中生长的植物的叶细胞的质膜和液泡膜中检测到剂量依赖性Ca2 + -ATPase活性。这些结果暗示Ca 2+ -ATPase活性引起胞质Ca 2+外排。 Ca2 +通过Ca2 +通道流入,并增加了胞质Ca2 +的浓度。

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