首页> 外文期刊>Journal of Environmental Radioactivity >Elevated CO_2 increases Cs uptake and alters microbial communities and biomass in the rhizosphere of Phytolacca americana Linn (pokeweed) and Amaranthus cruentus L (purple amaranth) grown on soils spiked with various levels of Cs
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Elevated CO_2 increases Cs uptake and alters microbial communities and biomass in the rhizosphere of Phytolacca americana Linn (pokeweed) and Amaranthus cruentus L (purple amaranth) grown on soils spiked with various levels of Cs

机译:升高的CO_2增加了Cs的吸收并改变了在植满了不同水平的Cs的土壤中种植的美洲商陆(商陆)和A菜(紫色mar菜)的根际微生物群落和生物量

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摘要

General concern about increasing global atmospheric CO_2 levels owing to the ongoing fossil fuel combustion and elevated levels of radionuclides in the environment, has led to growing interest in the responses of plants to interactive effects of elevated CO_2 and radionuclides in terms of phytoremediation and food safety. To assess the combined effects of elevated CO_2 and cesium contamination on plant biomass, microbial activities in the rhizosphere soil and Cs uptake, Phytolacca americana Linn (pokeweed, C3 specie) and Amaranthus cruentus L. (purple amaranth, C4 specie) were grown in pots of soils containing five levels of cesium (0,100, 300, 500 and 1000 mg Cs kg~(-1)) under two levels of CO_2 (360 and 860 μL L~(-1), respectively). Shoot and root biomass of P. americana and Amaranthus crentus was generally higher under elevated CO_2 than under ambient CO_2 for all treatments. Both plant species exhibited higher Cs concentration in the shoots and roots under elevated CO_2 than ambient CO_2. For P. americana grown at 0, 100, 300, 500 and 1000 mg Cs kg~(-1), the increase magnitude of Cs concentration due to elevated CO_2 was 140, 18, 11, 34 and 15% in the shoots, and 150, 20, 14, 15 and 19% in the roots, respectively. For A. cruentus, the corresponding value was 118,28,21,14 and 17% in the shoots, and 126,6, 11, 17 and 22% in the roots, respectively. Higher bioaccumulation factors were noted for both species grown under elevated CO_2 than ambient CO_2. The populations of bacteria, actinomycetes and fungi, and the microbial C and N in the rhizosphere soils of both species were higher at elevated CO_2 than at ambient CO_2 with the same concentration of Cs. The results suggested that elevated CO_2 significantly affected plant biomass, Cs uptake, soil C and N concentrations, and community composition of soil microbes associated with P. americana and A. cruentus roots. The knowledge gained from this investigation constitutes an important advancement in promoting utilization of CO_2 fertilization for improvement of phytoextraction of soils contaminated with radionuclides.
机译:由于持续的化石燃料燃烧和环境中放射性核素水平的升高,人们普遍关注全球大气中CO_2含量的增加,这导致人们对植物对植物修复和食品安全方面对CO_2和放射性核素升高的相互作用的反应的兴趣日益增长。为了评估升高的CO_2和铯污染对植物生物量的综合影响,在盆中种植了根际土壤微生物活性和Cs吸收,美洲疫霉(商陆,C3种)和A菜(紫色mar菜,C4类)。在两种CO_2(分别为360和860μLL〜(-1))下含有五种铯(0,100、300、500和1000 mg Cs kg〜(-1))的土壤在所有处理下,CO 2浓度升高时,美洲假单胞菌和Amaranthus crentus的枝条和根生物量通常高于周围CO 2。在CO_2升高的情况下,两种植物在芽和根中均表现出比周围CO_2更高的Cs浓度。对于生长在0、100、300、500和1000 mg Cs kg〜(-1)的美洲对虾,由于CO_2升高而引起的Cs浓度增加幅度分别为140、18、11、34和15%。分别占根的150%,20%,14%,15%和19%。对于A. cruentus,相应的值在芽中分别为118,28,21,14和17%,在根中分别为126,6,11,17和22%。在升高的CO_2下生长的两个物种都比周围的CO_2具有更高的生物积累因子。在相同的Cs浓度下,CO_2升高时,两个物种的根际土壤中的细菌,放线菌和真菌种群以及微生物C和N均高于周围CO_2。结果表明,升高的CO_2显着影响植物生物量,Cs吸收,土壤碳和氮浓度以及与美洲假单胞菌和刺槐根相关的土壤微生物的群落组成。从这项调查中获得的知识构成了在促进利用CO_2施肥以改善被放射性核素污染的土壤中植物提取方面的重要进步。

著录项

  • 来源
    《Journal of Environmental Radioactivity》 |2012年第2012期|p.29-37|共9页
  • 作者单位

    Centre for Research in Ecotoxicology and Environmental Remediation, Agro-Environmental Protection Institute, Ministry of Agriculture, No. 31, Fukang Rd, Nankai District, Tianjin 300191, PR China,Key Laboratory of Production Environment and Agro-product Safety of Ministry of Agriculture, Tianjin 300191, PR China,Tianjin Key Laboratory of Agro-environment and Food Safety, Tianjin 300191, PR China;

    Centre for Research in Ecotoxicology and Environmental Remediation, Agro-Environmental Protection Institute, Ministry of Agriculture, No. 31, Fukang Rd, Nankai District, Tianjin 300191, PR China,Key Laboratory of Production Environment and Agro-product Safety of Ministry of Agriculture, Tianjin 300191, PR China,Tianjin Key Laboratory of Agro-environment and Food Safety, Tianjin 300191, PR China;

    Centre for Research in Ecotoxicology and Environmental Remediation, Agro-Environmental Protection Institute, Ministry of Agriculture, No. 31, Fukang Rd, Nankai District, Tianjin 300191, PR China,Key Laboratory of Production Environment and Agro-product Safety of Ministry of Agriculture, Tianjin 300191, PR China,Tianjin Key Laboratory of Agro-environment and Food Safety, Tianjin 300191, PR China;

    Centre for Research in Ecotoxicology and Environmental Remediation, Agro-Environmental Protection Institute, Ministry of Agriculture, No. 31, Fukang Rd, Nankai District, Tianjin 300191, PR China,Key Laboratory of Production Environment and Agro-product Safety of Ministry of Agriculture, Tianjin 300191, PR China,Tianjin Key Laboratory of Agro-environment and Food Safety, Tianjin 300191, PR China;

    Centre for Research in Ecotoxicology and Environmental Remediation, Agro-Environmental Protection Institute, Ministry of Agriculture, No. 31, Fukang Rd, Nankai District, Tianjin 300191, PR China,Key Laboratory of Production Environment and Agro-product Safety of Ministry of Agriculture, Tianjin 300191, PR China,Tianjin Key Laboratory of Agro-environment and Food Safety, Tianjin 300191, PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    elevated CO_2; cesium; hyperaccumulation; phytolacca americana linn; amaranthus cruentus L;

    机译:CO_2升高;铯;过度积累美洲植酸菜;

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