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国家自然科学基金(30970477)

作品数:2 被引量:28H指数:2
相关作者:李月芳陈欣唐建军胡亮亮刘领更多>>
相关机构:浙江大学河南科技大学更多>>
发文基金:国家自然科学基金浙江省自然科学基金浙江省教育厅科研计划更多>>
相关领域:环境科学与工程农业科学轻工技术与工程更多>>

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Plant coexistence can enhance phytoextraction of cadmium by tobacco (Nicotiana tabacum L.) in contaminated soil被引量:9
2011年
A mesocosm experiment was conducted to investigate whether plant coexistence affects cadmium (Cd) uptake by plant in contaminated soil. Tobacco (Nicotiana tabacum L. var. K326) and Japanese clover (Kummerowia striata (Thunb.) Schindl.) were used. Cadmium was applied as 3CdSO4.SH2O in solution at three levels (0, 1, and 3 mg/kg soil) to simulate an unpolluted soil and soils that were slightly and moderately polluted with Cd. Tobacco (crop), Japanese clover (non-crop), and their combination were grown under each Cd treatment. Compared to monoculture and under all Cd treatments, co-planting with Japanese clover did not affect tobacco biomass but significantly increased Cd concentration in all tobacco tissues and enhanced Cd accumulation in tobacco shoots and roots. Compared to monoculture, co-planting reduced soil pH and increased Cd bioavailability. For tobacco, co-planting with Japanese clover increased the Cd bioconcentration factor (BCF) in Cd contaminated soil. Japanese clover also accumulated substantial quantities of Cd in shoots and roots. Thus, total Cd uptake by the plants was much greater with co-planting than with monoculture. The results suggested that phytoextraction can be effectively increased through tobacco co-planting with Japanese clover in mildly Cd-contaminated soil.
Ling LiuYuefang LiJianjun TangLiangliang HuXin Chen
关键词:PHYTOEXTRACTIONCADMIUMTOBACCO
模拟铅胁迫下玉米不同基因型生长与铅积累及各器官间分配规律被引量:21
2010年
我国遭受重金属污染的土地中有87%左右是中轻度污染土壤类型,深入研究不同植物对重金属的吸收和转运积累规律,是科学利用植物和土壤资源的重要基础工作。通过玻璃网室盆栽模拟污染的手段,研究了玉米6种基因型在铅中度污染胁迫(800mg·kg-1)与轻度污染胁迫(400mg·kg-1)下的植株生长、铅吸收积累及其在玉米不同器官间分配的规律。结果表明,不同铅污染胁迫下,玉米不同基因型的生长及铅吸收量达到极显著差异(P<0.01),铅在不同器官之间的分布形式也存在显著的基因型差异。轻度铅污染胁迫不同程度地促进玉米所有供试基因型的生长,而中度污染胁迫下糯玉米基因型生物量最大。与正常土壤对照条件下的表现相比,不同程度铅污染胁迫下基因型申甜1号的生物量增幅最大,表现出较强的铅耐受能力。不同基因型的玉米体内铅积累量随着污染水平的提高而增加,各器官内铅积累浓度差异规律为根>叶>茎>穗。掖单13号具有较强的铅转运能力(TF=0.6628),申甜1号的生物富集能力最强(BCF=0.0264),掖单13号和申甜1号均具有较强的铅吸收和积累能力,属于潜在的高积累基因型。但掖单13号根部富集量少而穗部积累多,申甜1号根中铅积累较多而果穗中较少。2个甜玉米基因型果穗内铅积累量较少,其含量符合国家规定的食品生产相应的安全标准。
李月芳刘领陈欣胡亮亮唐建军
关键词:玉米基因型铅污染
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