Babalola OO, Berner DK, Amusa NA (2007) Evaluation of some bacterial isolates as germination
stimulants of Striga hermonthica. Afr J Agric Res 2(1):27–30
Baker AJM (1987) Metal tolerance. New Phytol 106(suppl):93–111. https://doi.org/10.1111/j.
1469-8137.1987.tb04685
Baker AJM, Brooks RR (1989) Terrestrial higher plants which hyperaccumulate metallic elements:
a review of their distribution. Ecol Phytochem Biorecover 1:81–126
Barber SA, Lee RB (1974) The effect of microorganisms on the absorption of manganese by plants.
New Phytol 73:97–106
Barcelo J, Poschenrieder C (2011) Hyperaccumulation of trace elements: from uptake and tolerance
mechanisms to litter decomposition: selenium as an example. Plant Soil 341:31–35. https://doi.
org/10.1007/s11104-010-0469-0
Bernal MP, Alburquerque JA, Moral R (2009) Composting of animal manures and chemical criteria
for compost maturity assessment: a review. Bioresour Technol 100:5444–5453
Blaylock MJ, Huang JW (1999) Phytoextraction of metals. In: Raskin I, Ensley BD (eds)
Phytoremediation of toxic metals: using plants to clean up the environment. Wiley,
New York, pp 53–70
Brooks RR, Shaw S, Marfil AA (1981) The chemical form and physiological function of nickel in
some Iberian Alyssum species. Physiol Plant 51:167–170
Brown SL, Chaney RL, AngleJS BAM (1995a) Zinc and cadmium uptake by hyperaccumulator
Thlaspi caerulescens and metal-tolerant Silene vulgaris grown on sludge-amended soils. Environ Sci Technol 29:1581–1585
Brown SL, Chaney RL, Angle JS, Baker AJM (1995b) Zinc and cadmium uptake by
hyperaccumulator Thlaspi caerulescens grown in nutrient solution. Soil Sci Soc Am J
59:125–133
Brown GE Jr, Foster AL, Ostergren JD (1999) Mineral surfaces and bioavailability of heavy metals:
a molecular-scale perspective. Proc Natl Acad Sci U S A 96:3388–3395
Burton CH, Turner C (2003) Manure management: treatment strategies for sustainable agriculture,
2nd edn. Silsoe Research Institute, Wrest Park
Chaney RL (1983) Plant uptake of inorganic waste constituents. In: Parr JFEA (ed) Land treatment
of hazardous wastes. Noyes Data Corp, Park Ridge, pp 50–76
Chaney RL, Li YM, Angle JS, Baker AJM, Reeves RD, Brown SL, Homer FA, Malik M, Chin M
(2000) In: Terry N, Banelos G (eds) Phytoremediation of contaminated soil and water. Lewis,
Boca Raton pp 129–158
Chanu LB, Gupta A (2016) Phytoremediation of lead using Ipomoea aquatica Forsk. in hydroponic
solution. Chemosphere 156:407–411
Chen YX, Huang XD, Han ZY, Huang X, Hu B, Shi DZ, Wu WX (2010) Effects of bamboo
charcoal and bamboo vinegar on nitrogen conservation and heavy metals immobility during pig
manure composting. Chemosphere 78:1177–1181
Chiang PN, Chin CY, Wang MK, Chen BT (2011) Low-molecular-weight organic acids exuded by
millet (Setaria italica (L.) Beauv) roots and their effect on the remediation of cadmiumcontaminated soil. Soil Sci 176:33–38. https://doi.org/10.1097/ss.0b013e318202fdc9
Crowley DE, Wang YC, Reid CPP, Szansiszlo PJ (1991) Mechanism of iron acquisition from
siderophores by microorganisms and plants. Plant Soil 130:179–198
Cunningham SD, Ow DW (1996) Promises and prospects of phytoremediation. Plant Physiol
110:715–719
De Sousa C, Ghoshal S (2012) 6-Redevelopment of brownfield sites. In: Zeman F (ed) Metropolitan
sustainability. Taylor & Francis, pp 99–117
Delannay X, Bauman TT, Beighley DH, Buettner MJ, Coble HD, DeFelice MS, Derting CW,
Diedrick TJ, Griffin JL, Hagood ES et al (1995) Yield evaluation of a glyphosate-tolerant
soybean line after treatment with glyphosate. Crop Sci 35:1461–1467
Dhankher OP, Pilon-Smits EAH, Meagher RB, Doty S (2011) Biotechnological approaches for
phytoremediation In: Altmanand A, Hasegawa PM Plant biotechnology and agriculture Academic Oxford, pp 309–328
108
M. K. Awasthi et al.
stimulants of Striga hermonthica. Afr J Agric Res 2(1):27–30
Baker AJM (1987) Metal tolerance. New Phytol 106(suppl):93–111. https://doi.org/10.1111/j.
1469-8137.1987.tb04685
Baker AJM, Brooks RR (1989) Terrestrial higher plants which hyperaccumulate metallic elements:
a review of their distribution. Ecol Phytochem Biorecover 1:81–126
Barber SA, Lee RB (1974) The effect of microorganisms on the absorption of manganese by plants.
New Phytol 73:97–106
Barcelo J, Poschenrieder C (2011) Hyperaccumulation of trace elements: from uptake and tolerance
mechanisms to litter decomposition: selenium as an example. Plant Soil 341:31–35. https://doi.
org/10.1007/s11104-010-0469-0
Bernal MP, Alburquerque JA, Moral R (2009) Composting of animal manures and chemical criteria
for compost maturity assessment: a review. Bioresour Technol 100:5444–5453
Blaylock MJ, Huang JW (1999) Phytoextraction of metals. In: Raskin I, Ensley BD (eds)
Phytoremediation of toxic metals: using plants to clean up the environment. Wiley,
New York, pp 53–70
Brooks RR, Shaw S, Marfil AA (1981) The chemical form and physiological function of nickel in
some Iberian Alyssum species. Physiol Plant 51:167–170
Brown SL, Chaney RL, AngleJS BAM (1995a) Zinc and cadmium uptake by hyperaccumulator
Thlaspi caerulescens and metal-tolerant Silene vulgaris grown on sludge-amended soils. Environ Sci Technol 29:1581–1585
Brown SL, Chaney RL, Angle JS, Baker AJM (1995b) Zinc and cadmium uptake by
hyperaccumulator Thlaspi caerulescens grown in nutrient solution. Soil Sci Soc Am J
59:125–133
Brown GE Jr, Foster AL, Ostergren JD (1999) Mineral surfaces and bioavailability of heavy metals:
a molecular-scale perspective. Proc Natl Acad Sci U S A 96:3388–3395
Burton CH, Turner C (2003) Manure management: treatment strategies for sustainable agriculture,
2nd edn. Silsoe Research Institute, Wrest Park
Chaney RL (1983) Plant uptake of inorganic waste constituents. In: Parr JFEA (ed) Land treatment
of hazardous wastes. Noyes Data Corp, Park Ridge, pp 50–76
Chaney RL, Li YM, Angle JS, Baker AJM, Reeves RD, Brown SL, Homer FA, Malik M, Chin M
(2000) In: Terry N, Banelos G (eds) Phytoremediation of contaminated soil and water. Lewis,
Boca Raton pp 129–158
Chanu LB, Gupta A (2016) Phytoremediation of lead using Ipomoea aquatica Forsk. in hydroponic
solution. Chemosphere 156:407–411
Chen YX, Huang XD, Han ZY, Huang X, Hu B, Shi DZ, Wu WX (2010) Effects of bamboo
charcoal and bamboo vinegar on nitrogen conservation and heavy metals immobility during pig
manure composting. Chemosphere 78:1177–1181
Chiang PN, Chin CY, Wang MK, Chen BT (2011) Low-molecular-weight organic acids exuded by
millet (Setaria italica (L.) Beauv) roots and their effect on the remediation of cadmiumcontaminated soil. Soil Sci 176:33–38. https://doi.org/10.1097/ss.0b013e318202fdc9
Crowley DE, Wang YC, Reid CPP, Szansiszlo PJ (1991) Mechanism of iron acquisition from
siderophores by microorganisms and plants. Plant Soil 130:179–198
Cunningham SD, Ow DW (1996) Promises and prospects of phytoremediation. Plant Physiol
110:715–719
De Sousa C, Ghoshal S (2012) 6-Redevelopment of brownfield sites. In: Zeman F (ed) Metropolitan
sustainability. Taylor & Francis, pp 99–117
Delannay X, Bauman TT, Beighley DH, Buettner MJ, Coble HD, DeFelice MS, Derting CW,
Diedrick TJ, Griffin JL, Hagood ES et al (1995) Yield evaluation of a glyphosate-tolerant
soybean line after treatment with glyphosate. Crop Sci 35:1461–1467
Dhankher OP, Pilon-Smits EAH, Meagher RB, Doty S (2011) Biotechnological approaches for
phytoremediation In: Altmanand A, Hasegawa PM Plant biotechnology and agriculture Academic Oxford, pp 309–328
108
M. K. Awasthi et al.
