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Nutrient Uptake of Ornamental Plants Exposed to Arsenic in Hydroponic Solution

机译:水培溶液中接触砷的观赏植物对养分的吸收

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Arsenic-based agro-chemicals have contaminated considerable acreage on turf-farms, orchards, and around horticultural production structures. A study was undertaken to evaluate iris ( Iris savannarum ), switchgrass ( Panicum virgatum ), Tithonia rotundiflora, Coreopsis lanceolata , sunflower ( Helianthus annuus ), and marigold ( Tagetes erecta ) for their potential use as arsenic (As) accumulator plants. Plants were grown hydroponically with a modified Hoagland solution containing either 0, 10, 50 or 70 uM As (0.0, 0.75, 3.75, 5.25 mg L -1 , respectively). At 5.25 mg As L -1 solution there were no significant reductions in dry weight below that of the controls for iris marigold and sunflower. Maximum shoot As content (mg) for coreopsis and tithonia was reached at 0.75 and for switchgrass at 3.75 mg As L -1 solution. Iris marigold and sunflower maximum shoot As levels occurred at a solution concentration above 5.25 mg As L -1 solution, the high level used in this study. In general P decreased and S increased with increasing solution As. Marigold, switchgrass and sunflower, species that tolerated As at the levels used in this study, had a weak negative correlation between As and Cu concentrations in common. In these species As in hydroponic solution had no effect, or even slightly enhanced, P uptake compared to controls. Arsenic sensitive species coreopsis and tithonia had weak negative correlations between As and K and P in common. Coreopsis and tithonia appears to have a competitive uptake mechanism between arsenate with phosphate. Arsenic tolerance in iris appears to be a result of prohibiting As accumulation in root tissue.
机译:砷基农药已经污染了草皮农场,果园以及园艺生产结构周围的大量土地。进行了一项研究以评估鸢尾(Iris savannarum),柳枝((Panicum virgatum),罗勒地丁(Ththonia rotundiflora),金鸡菊(Coreopsis lanceolata),向日葵(Helianthus annuus)和万寿菊(Tagetes erecta)潜在用作砷(As)蓄积植物的可能性。用改良的Hoagland溶液使植物水培生长,该溶液含有0、10、50或70 uM As(分别为0.0、0.75、3.75、5.25 mg L -1)。在5.25 mg As L -1溶液下,干重没有显着降低,低于虹膜万寿菊和向日葵的对照。金鸡菊和二氧化钛的最高芽As含量(mg)达到0.75,柳枝switch的最大芽As含量为L -1溶液为3.75 mg。万寿菊和向日葵的最大芽As含量出现在浓度高于5.25 mg As -1溶液的L -1溶液中,是本研究中使用的高含量。通常,随着溶液As的增加,P降低而S升高。万寿菊,柳枝and和葵花籽,在本研究使用的水平上能耐受砷,而普通砷和铜浓度之间的相关性较弱。在这些物种中,与水培溶液相比,在水培溶液中对磷的吸收没有影响甚至略有增强。砷敏感物种金鸡菊和二氧化钛在砷,钾和磷之间的负相关性较弱。金鸡菊和二氧化钛似乎在砷酸根与磷酸根之间具有竞争性摄取机制。虹膜中的砷耐受性似乎是禁止砷在根组织中积累的结果。

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