395
Views
45
CrossRef citations to date
0
Altmetric
Original Articles

Co-Planting Cd Contaminated Field Using Hyperaccumulator Solanum Nigrum L. Through Interplant with Low Accumulation Welsh Onion

, , &

References

  • Adriano DC, Wenzel WW, Vangronsveld J, Bolan NS. 2004. Role of assisted natural remediation in environmental cleanup. Geoderma 122:121–142.
  • Baker AJM, Brooks RR. 1989. Terrestrial higher plants which hyperaccumulate metallic elements- a review of their distribution, ecology and phytochemistry. Biorecovery 1:81–126.
  • Baker AJM, Reeves RD, Hajar ASM. 1994. Heavy metal accumulation and tolerance in British population of the metallophyte Thlaspi caerulescens J & C Presl (Brassicaceae). New Phytol 127:61–68.
  • Bjelkova M, Genˇcurov V, Grig M. 2011. Accumulation of cadmium by flax and linseed cultivars in field-simulated conditions: A potential for phytoremediation of Cd-contaminated soils. Industr Crops Products 33:761–774.
  • Chen L, Luo SL, Li XJ, Wan Y, Chen JL, Liu CB. 2014. Interaction of Cd-hyperaccumulator Solanum nigrum L. and functional endophyte Pseudomonas sp. Lk9 on soil heavy metals uptake. Soil Biology Biochem 68:300–308.
  • Ji PH, Sun TH, Song YF, Ackland ML, Liu Y. 2011. Strategies for enhancing the phytoremediation of cadmium-contaminated agricultural soils by Solanum nigrum L. Environ Pollut 159:762–768.
  • Li ST, Liu R, Wang M, Wang XB, Shan H, Wang HT. 2006. Phytoavailability of cadmium to cherry-red radish in soils applied composted chicken or pig manure. Geoderma 136:260–271.
  • Li T, Di Z, Islam E, Jiang H, Yang X. 2011. Rhizosphere characteristics of zinc hyperaccumulator Sedum alfredii involved in zinc accumulation. J Hazard Mater 185:818–823.
  • Li XH, Zhou QX, Wei SH, Ren WJ. 2012. Identification of cadmium-excluding Welsh onion (Allium fistulosum L.) cultivars and their mechanisms of low cadmium accumulation. Environ Sci Pollut Res 19:1773–1780.
  • Li Z, Wu LH, Hu PJ, Luo YM, Zhang H, Christie P. 2014. Repeated phytoextraction of four metal-contaminated soils usingthe cadmium/zinc hyperaccumulator Sedum plumbizincicola. Environ Pollut 189:176–183.
  • Liu L, Chen HS, Cai P, Liang W, Huang QY. 2009. Immobilization and phytotoxicity of Cd in contaminated soil amended with chicken manure compost. J Hazard Mater 163:563–567.
  • Liu WT, Zhou QX, Zhang YL, Wei SH. 2010. Lead accumulation in different Chinese cabbage cultivars and screening for pollution-safe cultivars. J Environ Management 91:781–788.
  • Lu RK. 2000. Method of Soil Agricultural Chemistry. Beijing (China): Chinese Agricultural S&T Press.
  • Marques APGC, Oliveira RS, Samardjieva KA, Pissarra J, Rangel AOSS, Castro PML. 2008. DDS and EDTA- enhanced zinc accumulation by Solanum nigrum inoculated with arbuscular mycorrhizal fungi grown in contaminated soil. Chemosphere 70:1002–1014.
  • Mathews S, Ma LQ, Rathinasabapathi B, Natarajan S, Saha UK. 2010. Arsenic transformation in the growth media and biomass of hyperaccumulator Pteris vittata L. Bioresource Tech 101:8024–8030.
  • Munn J, January M, Cutright TJ. 2008. Green house evaluation of EDTA effectiveness at enhancing Cd, Cr, and Ni uptake in helianthus annuus and Thlaspi caerulescens. J Soils Sediments 8:116–122.
  • Qiu RL, Thangavel P, Hu PJ, Senthilkumar P, Ying RR, Tang YT. 2011. Interaction of cadmium and zinc on accumulation and sub-cellular distribution in leaves of hyperaccumulator Potentilla griffithii. J Hazard Mater 186:1425–1430.
  • Quartacci MF, Irtelli B, Baker AJM, Navari-Izzo F. 2007. The use of NTA and EDDS for enhanced phytoextraction of metals from a multiply contaminated soil by Brassica carinata. Chemosphere 68:1920–1928.
  • Schreurs E, Voets T, Thewys T. 2011. GIS-based assessment of the biomass potential from phytoremediation of contaminated agricultural land in the Campine region in Belgium. Biomass Bioenergy 35:4469–4480.
  • Vrkoslavova J, Demnerova K, Mackova M, Zemanova T, Macekb T, Jana H, Jana P, Petra H, Hana S. 2010. Absorption and translocation of polybrominateddiphenyl ethers (PBDEs) by plants from contaminated sewage sludge. Chemosphere 81:381–386.
  • Wan XM, Lei M, Huang ZC, Chen TB. 2010. Sexual propagation of Pteris vittata L. influence by pH, Ca concentration and temperature and its effect on natural distribution. Int J Phytoremediation 12:85–95.
  • Wang K, Huang HG, Zhu ZQ, Li TQ, He ZL, Yang XE, Alva A. 2013. Phytoextraction of metals and rhizoremediation of PAHs in co-contaminated soil by co-planting of Sedum alfredii with ryegrass (Lolium perenne) or castor (Ricinus communis). Int J Phytoremediation 15:283–298.
  • Wei SH, Zhou QX, Zhan J, Wu ZJ, Sun TH, Lyubu Y, Prasad MNV. 2010. Poultry manured Bidens tripartite L. extracting Cd from soil - potential for phytoremediating Cd contaminated soil. Bioresource Tech 101:8907–8910.
  • Wei SH, Zhou QX, Wang X, Zhang KS, Guo GL, Ma LQ. 2005. A newly-discovered Cd-hyperaccumulator Solanum nigrum L. Chin Sci Bulletin 50:33–38.
  • Wei SH, Zhou QX. 2006. Phytoremediation of Cadmium-contaminated soils by Rorippa globosa using two-phase planting. Environ Sci Pollut Res 13:151–155.
  • Wei ZB, Guo XF, Wu QT, Long XX, Penn CJ. 2011. Phytoextraction of heavy metal from contaminated soil by co-cropping with chelator application and assessment of associated leaching risk. Int J Phytoremediation 13:719–729.
  • Wu QT, Wei ZB, Ouyang Y. 2007. Phytorextraction of metal-contaminated soil by hyperaccumulator Sedum alfredii H: effects of chelator and co-planting. Water, Air Soil Pollut 180:131–139.
  • Xiao WD, Wang H, Li TQ, Zhu ZQ, Zhang J, He ZL, Yang XE. 2013. Bioremediation of Cd and carbendazim co-contaminated soil by Cd-hyperaccumulator Sedum alfredii associated with carbendazim-degrading bacterial strains. Environ Sci Pollut Res 20:380–389.
  • Xu J, Sun JH, Du LG, Liu XJ. 2012. Comparative transcriptome analysis of cadmium responses in Solanum nigrum and Solanum torvum. New Phytologist 196:110–124.
  • Xu J, Yin HX, Li X. 2009. Protective effects of proline against cadmium toxicity in micropropagated hyperaccumulator, Solanum nigrum L. Plant Cell Rep 28:325–333.
  • Zhan J, Wei SH, Niu RC, Li YM, Wang SS, Zhu JG. 2013. Identification of rice cultivar with exclusive characteristic to Cd using a field-polluted soil and its foreground application. Environ Sci Pollut Res 20:2645–2650.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.