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Research ArticleRestoration Notes

Cadmium Uptake and Growth of Three Native California Species Grown in Abandoned Mine Waste Rock

Jeffrey Lauder, Oriana Chafe and Jane Godfrey
Ecological Restoration, September 2017, 35 (3) 210-213; DOI: https://doi.org/10.3368/er.35.3.210
Jeffrey Lauder
Corresponding author: Sierra Streams Institute and University of California, Merced, School of Natural Sciences, 5200 N. Lake Road, Merced, CA 95343,
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  • For correspondence: jlauder{at}ucmerced.edu
Oriana Chafe
Sierra Streams Institute, Nevada City, CA
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Jane Godfrey
Sierra Streams Institute, Nevada City, CA.
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References

    1. Adesodun J.K.,
    2. Atayese M.O.,
    3. Agbaje T.A.,
    4. Osadiaye B.A.,
    5. Mafe O.F.,
    6. Soretire A.A.
    2010. Phytoremediation potentials of sunflowers (Tithonia diversifolia and Helianthus annuus) for metals in soils contaminated with zinc and lead nitrates. Water, Air, and Soil Pollution 207:195–201.
    OpenUrl
    1. Baker A.J.M.
    1981. Accumulators and excluders-strategies in the response of plants to heavy metals. Journal of Plant Nutrition 1:643–654.
    OpenUrl
    1. CalEPA
    . 2010. California human health screening levels (CHHSLs). California Environmental Protection Agency. oehha.ca.gov/media/downloads/risk-assessment/california-human-health-screening-levels-chhsls/chhslstableall_0.pdf.
    1. Chaney R.
    1983. Plant uptake of inorganic waste. Pages 50–76 in Parr J.F., Marsh P.B., Kla J.M. (eds), Land Treatment of Hazardous Waste. Park Ridge, NJ: Noyes Data Corporation.
    1. Chin L.
    2007. Investigations into Lead (Pb) Accumulation in Symphytum officinale L.: A Phytoremediation Study. PhD Dissertation, University of Canterbury, UK.
    1. Cunningham S.D.,
    2. Berti W.R.
    1993. Remediation of contaminated soils with green plants: An overview. In Vitro Cell Developmental Biology 29:207–212.
    OpenUrl
    1. Dhankher O.P.,
    2. Shasti N.A.,
    3. Rosen B.P.,
    4. Fuhrmann M.,
    5. Meagher R.B.
    2003. Increased cadmium tolerance and accumulation by plants expressing bacterial arsenate reductase. New Phytologist 159:431–441.
    OpenUrl
    1. Hansen A.J.,
    2. Knight R.L.,
    3. Marzluff J.M.,
    4. Powell S.,
    5. Gude P.H.,
    6. Jones K.
    2005. Effects of exurban development on biodiversity: patterns, mechanisms, and research needs. Ecological Applications 15:1893–1905.
    OpenUrlCrossRefWeb of Science
    1. Huang J.W.,
    2. Cunningham S.D.
    1996. Lead phytoextraction: species variation in lead uptake and translocation. New Phytologist 134:75–84.
    OpenUrlCrossRefWeb of Science
    1. Lasat M.M.
    2002. Phytoextraction of toxic metals: a review of biological mechanisms. Journal of Environmental Quality 31:109–20.
    OpenUrlCrossRefPubMedWeb of Science
    1. Lauder J.L.
    2013. Phytoremediation of mine waste: Feasibility assessment. Technical Report, Nevada City, CA: Sierra Streams Institute.
    1. Leather G.R.
    1983. Sunflower (Helianthus annuus) are allelopathic to weeds. Weed Science 32:343–347.
    OpenUrl
    1. Leavitt K.J.,
    2. Fernandez G.C.J.,
    3. Nowak R.S.
    2000. Plant establishment on angle of repose mine waste dumps. Journal of Range Management 53: 442–452.
    OpenUrl
    1. Maestri E.,
    2. Marmiroli M.,
    3. Visioli G.,
    4. Marmiroli N.
    2010. Metal tolerance and hyperaccumulation: Costs and trade-offs between traits and environment. Environmental and Experimental Botany 68:1–13.
    OpenUrlCrossRefWeb of Science
    1. McIntyre T.,
    2. McAfee B.J.,
    3. Haber E.
    2003. Phytoremediation reference database. [S.l.]: Environment Canada. www.bib.ub.edu/fileadmin/intra/cdrom/phytorem.ica.
    1. Meharg A.A.
    2003. Variation in arsenic accumulation: Hyperaccumulation in ferns and their allies. New Phytologist 157:25–31.
    OpenUrlCrossRefWeb of Science
    1. Podar D.,
    2. Ramsey M.H.,
    3. Hutchings M.J.
    2004. Effect of cadmium, zinc and substrate heterogeneity on yield, shoot metal concentration and metal uptake by Brassica juncea: Implications for human health risk assessment and phytoremediation. New Phytologist 163:313–324.
    OpenUrl
    1. Rathinasabapathi B.,
    2. Rangasamy M.,
    3. Froeba J.,
    4. Cherry R.H.,
    5. McAuslane H.J.,
    6. Capinera J.L.,
    7. et al.
    2007. Arsenic hyperaccumulation in the Chinese brake fern (Pteris vittata) deters grasshopper (Schistocerca americana) herbivory. New Phytologist 175: 363–9.
    OpenUrlCrossRefPubMedWeb of Science
    1. Vangronsveld J.,
    2. Herzig R.,
    3. Weyens N.,
    4. Boulet J.,
    5. Adriaensen K.,
    6. Ruttens A.,
    7. et al.
    2009. Phytoremediation of contaminated soils and groundwater: Lessons from the field. Environmental Science and Pollution Research 16:765–794.
    OpenUrlCrossRefPubMedWeb of Science
    1. Vassil A.,
    2. Kapulnik Y.,
    3. Raskin I.,
    4. Salt D.
    1998. The role of EDTA in lead transport and accumulation by indian mustard. Plant Physiology 117:447–53.
    OpenUrlAbstract/FREE Full Text
    1. Zhaol F.J.,
    2. Dunham S.J.,
    3. McGrath S.P.
    2002. Arsenic hyperaccumulation by different fern species. New Phytologist 156:27–31.
    OpenUrlCrossRefWeb of Science
    1. Zhou S.,
    2. Liu J.,
    3. Xu M.,
    4. Lv J.,
    5. Sun N.
    2015. Accumulation, availability, and uptake of heavy metals in a red soil after 22-year fertilization and cropping. Environmental Science and Pollution Research International 22:15154–15163.
    OpenUrl
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Ecological Restoration: 35 (3)
Ecological Restoration
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1 Sep 2017
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Cadmium Uptake and Growth of Three Native California Species Grown in Abandoned Mine Waste Rock
Jeffrey Lauder, Oriana Chafe, Jane Godfrey
Ecological Restoration Sep 2017, 35 (3) 210-213; DOI: 10.3368/er.35.3.210

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Cadmium Uptake and Growth of Three Native California Species Grown in Abandoned Mine Waste Rock
Jeffrey Lauder, Oriana Chafe, Jane Godfrey
Ecological Restoration Sep 2017, 35 (3) 210-213; DOI: 10.3368/er.35.3.210
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