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Accumulation and Tolerance of Pb in Some Bioenergy Crops

机译:某些生物能源作物中铅的积累和耐受性

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Contamination of agricultural soil is a worldwide problem, with heavy metals being a major part of the concern. Bioenergy crop production is also a profitable phytoremediation strategy using biofuel crops for both utilization and remediation of contaminated soil. To investigate lead (Pb) accumulation and tolerance of three different energy crop cultivars, three-week-old healthy seedlings were grown in Hoagland solution supplemented with five different concentrations of Pb 0, 25, 50, 100, and 150 mg/kg. At the end of 30 days, Pb content and translocation, tolerance index, bioconcentration factor, and growth parameters of the plants were evaluated in the study. Results showed that increasing Pb concentrations did not affected the growth and development of Sunburst (Panicum virgatum L.) and Dincer (Carthamus tinctorius L.) cultivars. The highest Pb contents were also found in roots and shoots of Sunburst and Tarsan-1018 (Helianthus annuus L.) cultivars. Dincer cultivar has a high ability to transfer Pb from root to shoot when compared to others. These results suggest that these cultivars may be good candidates for remediation of Pb-contaminated areas for use in biofuel production.
机译:农业土壤的污染是一个世界性的问题,重金属是人们关注的主要部分。利用生物燃料作物来利用和修复受污染的土壤,生物能源作物的生产也是一种有益的植物修复策略。为了研究三种不同能源作物品种的铅(Pb)积累和耐性,在补充五种不同浓度的Pb 0、25、50、100和150 mg / kg的Hoagland溶液中生长了三周龄的健康幼苗。在30天结束时,研究中评估了植物的Pb含量和易位性,耐受性指数,生物富集因子和生长参数。结果表明,增加的Pb浓度不会影响森伯斯特(Panicum virgatum L.)和Dincer(Carthamus tinctorius L.)品种的生长和发育。在Sunburst和Tarsan-1018(Helianthus annuus L.)品种的根和茎中也发现了最高的Pb含量。与其他品种相比,Dincer品种具有很高的将Pb从根转移到芽的能力。这些结果表明,这些品种可能是补救用于生物燃料生产的受Pb污染地区的良好候选人。

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