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Do aeration conditions affect arsenic and phosphate accumulation and phosphate transporter expression in rice (Oryza sativa L.)?

机译:曝气条件是否会影响水稻(Oryza sativa L.)中砷和磷酸盐积累和磷酸盐转运蛋白表达?

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摘要

Widespread contamination of rice with arsenic (As) has revealed a major exposure pathway to humans. The present study aimed to investigate the effects of oxygen in the rhizosphere on phosphate (P) transporter (for arsenate transportation) expressions, on As and P accumulation and As speciation in four rice genotypes. Oxygenation marginally increased root and shoot length. Total As concentrations in rice roots were dramatically reduced following aeration compared to stagnant treatments (p 0.001). Aeration treatments significantly increased arsenate while reducing arsenite concentrations in roots (p 0.001). Root arsenite concentrations were 1.5-2.5 times greater in stagnant than in aeration treatments. Total P concentrations in rice roots were dramatically increased following aeration compared to stagnant treatments. The relative abundance of phosphate transporter (inorganic phosphate transporter and phosphate/H+ symporter family protein) expressions showed downregulation in aeration treatments, particularly for SY-9586, XWX-17, and XWX-12 in inorganic phosphate transporter expressions and XWX-17 in phosphate/H+ symporter family protein expression (p 0.05). The relative abundance of phosphate carrier protein expressions were relatively higher than the other phosphate transporters, showing upregulation in aeration treatments.
机译:用砷(AS)普遍污染水稻(AS)揭示了人类的主要曝光途径。本研究旨在探讨氧气在磷酸​​盐(P)转运蛋白(用于砷酸盐运输)表达的氧气的影响,并在四种水稻基因型中作为物种。氧气略微增加根和枝条。与储存的处理相比,随着水稻根中的浓度显着减少,与停滞处理相比(P <0.001)相比,曝气浓度显着减少。曝气处理显着增加砷酸盐,同时减少根部的砷酸盐浓度(P <0.001)。在曝气处理中,根砷酸盐浓度较高1.5-2.5倍。与停滞物处理相比,在曝气后,水稻根中的总浓度显着增加。磷酸盐转运蛋白(无机磷酸盐转运蛋白和磷酸盐/ H + Symporters家族蛋白)表达的相对丰度在曝气处理中显示出下调,特别是对于在磷酸盐的无机磷酸盐转运蛋白表达中的SY-9586,XWX-17和XWX-12中的XWX-12 / h +叙述者家庭蛋白表达(P <0.05)。磷酸盐载体蛋白表达的相对丰度比其他磷酸盐转运蛋白相对较高,显示出曝气处理的上调。

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