Preger AC, Rillig MC, Johns AR, Du Preez CC, Lobe I, Amelung W (2007) Losses of glomalinrelated soil protein under prolonged arable cropping: a chronosequence study in sandy soils of
the South African Highveld. Soil Biol Biochem 39:445–453
Prince RC, Lessard RR, Clark JR (2003) Bioremediation of marine oil spills stimulated biodegradation of oil slicks using oleophilic fertilizers. Oil Gas Sci Technol 58:463–468
Radziemska M, Koda E, Bilgin A, Vaverkova MD (2007) Concept of aided phytostabilization of
contaminated soils in postindustrial areas. Int J Environ Res Public Health 15(24):1–15
Raskin I, Smith RD, Salt DE (1997) Phytoremediation of metals: using plants to remove pollutants
from the environment. Curr Opin Biotechnol 8(2):221–226
Rillig MC, Mummey DL (2006) Mycorrhizas and soil structure. New Phytol 171:41–53
Roach N, Reddy KR, Al-Hamdan AZ (2009) Particle morphology and mineral structure of heavy
metal-contaminated kaolin soil before and after electrokinetic remediation. J Hazard Mater
165:548–557
Rosestolato D, Bagatin R, Ferro S (2015) Electrokinetic remediation of soils polluted by heavy
metals (mercury in particular). Chem Eng J 264:16–23
Ross IS (1975) Some effects of heavy metals on fungal cells. Trans Br Mycol Soc 64:175–193
Rufyikiria G, Huysmansa L, Wannijna J, Heesa MV, Leyvalb C, Jakobsenc L (2004) Arbuscular
mycorrhizal fungi can decrease the uptake of uranium by subterranean clover grown at high
levels of uranium in soil. Environ Pollut 130:427–436
Salt DE, Blaylock MJ, Kumar PBAN, Dushenkov V, Ensley BD, Chet I, Raskin L (1995)
Phytoremediation: a novel strategy for the removal of toxic metals from the environment
using plants. Biotechnology 13:468–474
Scanferla P, Ferrari G, Pellay R, Ghirardini ZG, Libralato G (2009) An innovative stabilization/
solidification treatment For contaminated soil remediation: demonstration project results. J Soils
Sediments 9:229–236
Schipper LA, Williamson JC, Kettles HA, Speir TW (1996) Impact of land-applied tertiary-treated
effluent on soil biochemical properties. J Environ Qual 25:1073–1077
Seguel A, Barea JM, Cornejo P, Borie F (2015) Role of arbuscular mycorrhizal propagules and
glomalin related soil protein in Al tolerance of two barley cultivars growing in acid soils with
high Al levels. Crop Past Sci 66:696–705
Seguel A, Castillo CG, Morales A, Campos P, Cornejo P, Borie F (2016a) Arbuscular Mycorrhizal
symbiosis in four Al-tolerant wheat genotypes grown in an acidic andisol. J Soil Sci Plant Nutr
16:164–173
Seguel A, Cumming J, Cornejo P, Borie F (2016b) Aluminum tolerance of wheat cultivars and
relation to arbuscular mycorrhizal colonization in a non-limed and limed andisol. Appl Soil Ecol
108:228–237
Shalaby AM (2003) Responses of arbuscular mycorrhizal fungal spores isolated from heavy metalpolluted and unpolluted soil to Zn, Cd, Pb and their interactions in vitro. Pak J Biol Sci 6
(16):1416–1422
Sharma DC, Sharma CP (1993) Chromium uptake and its effects on growth and biological yield of
wheat. Cereal Res Commun 21(4):317–322
Shekar CHC, Sammaiah D, Shasthree T, Reddy KJ (2011) Effect of mercury on tomato growth and
yield attributes. Int J Pharm Bio Sci 2(2):B358–B364
Sheldon AR, Menzies NW (2005) The effect of copper toxicity on the growth and root morphology
of Rhodes grass (Chloris gayana Knuth.) in resin buffered solution culture. Plant Soil 278
(1-2):341–349
Shenker M, Plessner OE, Tel-Or E (2004) Manganese nutrition effects on tomato growth, chlorophyll concentration, and superoxide dismutase activity. J Plant Physiol 161(2):197–202
Sheoran IS, Singal HR, Singh R (1990) Effect of cadmium and nickel on photosynthesis and the
enzymes of the photosynthetic carbon reduction cycle in pigeon pea (Cajanus cajan L.).
Photosynth Res 23(3):345–351
Sieverding E (1991) Vesicular-arbuscular mycorrhiza management in tropical agrosystems. GTZ,
Eschborn. 371 p
6 VAM: An Alternate Strategy for Bioremediation of Polluted Environment
181
the South African Highveld. Soil Biol Biochem 39:445–453
Prince RC, Lessard RR, Clark JR (2003) Bioremediation of marine oil spills stimulated biodegradation of oil slicks using oleophilic fertilizers. Oil Gas Sci Technol 58:463–468
Radziemska M, Koda E, Bilgin A, Vaverkova MD (2007) Concept of aided phytostabilization of
contaminated soils in postindustrial areas. Int J Environ Res Public Health 15(24):1–15
Raskin I, Smith RD, Salt DE (1997) Phytoremediation of metals: using plants to remove pollutants
from the environment. Curr Opin Biotechnol 8(2):221–226
Rillig MC, Mummey DL (2006) Mycorrhizas and soil structure. New Phytol 171:41–53
Roach N, Reddy KR, Al-Hamdan AZ (2009) Particle morphology and mineral structure of heavy
metal-contaminated kaolin soil before and after electrokinetic remediation. J Hazard Mater
165:548–557
Rosestolato D, Bagatin R, Ferro S (2015) Electrokinetic remediation of soils polluted by heavy
metals (mercury in particular). Chem Eng J 264:16–23
Ross IS (1975) Some effects of heavy metals on fungal cells. Trans Br Mycol Soc 64:175–193
Rufyikiria G, Huysmansa L, Wannijna J, Heesa MV, Leyvalb C, Jakobsenc L (2004) Arbuscular
mycorrhizal fungi can decrease the uptake of uranium by subterranean clover grown at high
levels of uranium in soil. Environ Pollut 130:427–436
Salt DE, Blaylock MJ, Kumar PBAN, Dushenkov V, Ensley BD, Chet I, Raskin L (1995)
Phytoremediation: a novel strategy for the removal of toxic metals from the environment
using plants. Biotechnology 13:468–474
Scanferla P, Ferrari G, Pellay R, Ghirardini ZG, Libralato G (2009) An innovative stabilization/
solidification treatment For contaminated soil remediation: demonstration project results. J Soils
Sediments 9:229–236
Schipper LA, Williamson JC, Kettles HA, Speir TW (1996) Impact of land-applied tertiary-treated
effluent on soil biochemical properties. J Environ Qual 25:1073–1077
Seguel A, Barea JM, Cornejo P, Borie F (2015) Role of arbuscular mycorrhizal propagules and
glomalin related soil protein in Al tolerance of two barley cultivars growing in acid soils with
high Al levels. Crop Past Sci 66:696–705
Seguel A, Castillo CG, Morales A, Campos P, Cornejo P, Borie F (2016a) Arbuscular Mycorrhizal
symbiosis in four Al-tolerant wheat genotypes grown in an acidic andisol. J Soil Sci Plant Nutr
16:164–173
Seguel A, Cumming J, Cornejo P, Borie F (2016b) Aluminum tolerance of wheat cultivars and
relation to arbuscular mycorrhizal colonization in a non-limed and limed andisol. Appl Soil Ecol
108:228–237
Shalaby AM (2003) Responses of arbuscular mycorrhizal fungal spores isolated from heavy metalpolluted and unpolluted soil to Zn, Cd, Pb and their interactions in vitro. Pak J Biol Sci 6
(16):1416–1422
Sharma DC, Sharma CP (1993) Chromium uptake and its effects on growth and biological yield of
wheat. Cereal Res Commun 21(4):317–322
Shekar CHC, Sammaiah D, Shasthree T, Reddy KJ (2011) Effect of mercury on tomato growth and
yield attributes. Int J Pharm Bio Sci 2(2):B358–B364
Sheldon AR, Menzies NW (2005) The effect of copper toxicity on the growth and root morphology
of Rhodes grass (Chloris gayana Knuth.) in resin buffered solution culture. Plant Soil 278
(1-2):341–349
Shenker M, Plessner OE, Tel-Or E (2004) Manganese nutrition effects on tomato growth, chlorophyll concentration, and superoxide dismutase activity. J Plant Physiol 161(2):197–202
Sheoran IS, Singal HR, Singh R (1990) Effect of cadmium and nickel on photosynthesis and the
enzymes of the photosynthetic carbon reduction cycle in pigeon pea (Cajanus cajan L.).
Photosynth Res 23(3):345–351
Sieverding E (1991) Vesicular-arbuscular mycorrhiza management in tropical agrosystems. GTZ,
Eschborn. 371 p
6 VAM: An Alternate Strategy for Bioremediation of Polluted Environment
181
