Gadd GM (2010) Metals: minerals and microbes: geomicrobiology and bioremediation. Microbiology 156:609–643
Garcia de Salamon IE, Hynes RK, Nelson LM (2001) Cytokinin production by plant growth
promoting rhizobacteria and selected mutants. Can J Microbiol 47:404–411
Glick BR (1995) The enhancement of plant growth by free-living bacteria. Can J Microbiol
41:109–117
Glick BR (2010) Using soil bacteria to facilitate phytoremediation. Biotechnol Adv 28:367–374
Glick BR (2014) Bacteria with ACC deaminase can promote plant growth and help to feed the
world. Microbiol Res 169:30–39
Glick BR, Karaturovic DM, Newell PC (1995) A novel procedure for rapid isolation of plant growth
promoting pseudomonas. Can J Microbiol 41:533–536
Göhre V, Paszkowski U (2006) Contribution of the arbuscular mycorrhizal symbiosis to heavy
metal phytoremediation. Planta 223:1115–1122
Griffiths BS, Ritz K, Bardgett RD, Cook R, Christensen S, Ekelund F, Sørensen SJ, Bååth E,
Bloem J, De Ruiter PC, Dolfing J, Nicolardot B (2000) Ecosystem response of pasture soil
communities to fumigation-induced microbial diversity reductions: an examination of the
biodiversity–ecosystem function relationship. Oikos 90:279–294
Griffiths BS, Ritz K, Wheatley R, Kuan HL, Boag B, Christensen S, Ekelund F, Sørensen SJ,
Muller S, Bloem J (2001) An examination of the biodiversity–ecosystem function relationship
in arable soil microbial communities. Soil Biol Biochem 33:1713–1722
Guiffre L, Romaniuk R, Conti ME, Bartoloni N (2006) Multivariate evaluation by quality indicators
of no-tillage system in Argiudolls of rolling pampa (Argentina). Biol Fertil Soils 42:556–560
He H, Ye Z, Yang D, Yan J, Xiao L, Zhong T, Yuan M, Cai X, Fang Z, Jing Y (2013)
Characterization of endophytic Rahnella sp. JN6 from Polygonum pubescens and its potential
in promoting growth and Cd, Pb, Zn uptake by Brassica napus. Chemosphere 90:1960–1965
Hector A, Schmid B, Beierkuhnlein C, Caldeira MC, Diemer M, Dimitrakopoulos PG, Finn JA,
Freitas H, Giller PS, Good J, Harris R, Högberg P, Huss-Danell K, Joshi J, Jumpponen A,
Körner C, Leadley PW, Loreau M, Minns A, Mulder CPH, O’Donovan G, Otway SJ, Pereira JS,
Prinz A, Read DJ, Scherer-Lorenzen M, Schulze ED, Siamantziouras ASD, Spehn EM, Terry
AC, Troumbis AY, Woodward FI, Yachi S, Lawton JH (1999) Plant diversity and productivity
experiments in European grassland. Science 286:1123–1127
Hooper DU (1998) The role of complementarity and competition in ecosystem responses to
variation in plant diversity. Ecology 79:704–719
Hughes JB, Hellmann JJ, Ricketts TH, Bohannan BJM (2001) Minireview: counting the
uncountable: statistical approaches to estimating microbial diversity. Appl Environ Microbiol
67:4399–4406
Kebede YK, Kebedee T (2012) Application of principal component analysis in surface water
quality monitoring. In: Sanguansat P.(Ed.), Principal component analysis – engineering applications. In Tech
Khan AG (2005) Role of soil microbes in the rhizospheres of plants growing on trace metal
contaminated soils in phytoremediation. J Trace Elem Med Biol 18:355–364
Khan MS, Zaidi A, Aamil M (2002) Biocontrol of fungal pathogens by the use of plant growth
promoting rhizobacteria and nitrogen fixing microorganisms. Indian J Bot Soc 81:255–263
Khan MS, Zaidi A, Wani PA, Ahemad M, Oves M (2009) Functional diversity among plant growthpromoting rhizobacteria: current status. In: Khan MS (ed) Microbial strategies for crop improvement. Springer, Berlin/Heidelberg
Kidd P, Barcelo J, Bernal MP, Navari-Izzo F, Poschenrieder C, Shilev S, Rafael C, Monterroso C
(2009) Trace element behaviour at the root-soil interface: implications in phytoremediation.
Environ Exp Bot 67:243–259
Kirk JL, Beaudette LA, Hart M, Moutoglis P, Klironomos JN, Lee H, Trevors JA (2004) Methods
of studying soil microbial diversity. J Microbiol Meth 58:169–188
Kloepper JW, Schroth MN (1978) Plant growth-promoting rhizobacteria on radishes. Fourth
International Conference on Plant Pathogen Bacteria, Angers, France, Vol 2. pp 879–882
252
A. L. Guerrero-Zúñiga et al.
Garcia de Salamon IE, Hynes RK, Nelson LM (2001) Cytokinin production by plant growth
promoting rhizobacteria and selected mutants. Can J Microbiol 47:404–411
Glick BR (1995) The enhancement of plant growth by free-living bacteria. Can J Microbiol
41:109–117
Glick BR (2010) Using soil bacteria to facilitate phytoremediation. Biotechnol Adv 28:367–374
Glick BR (2014) Bacteria with ACC deaminase can promote plant growth and help to feed the
world. Microbiol Res 169:30–39
Glick BR, Karaturovic DM, Newell PC (1995) A novel procedure for rapid isolation of plant growth
promoting pseudomonas. Can J Microbiol 41:533–536
Göhre V, Paszkowski U (2006) Contribution of the arbuscular mycorrhizal symbiosis to heavy
metal phytoremediation. Planta 223:1115–1122
Griffiths BS, Ritz K, Bardgett RD, Cook R, Christensen S, Ekelund F, Sørensen SJ, Bååth E,
Bloem J, De Ruiter PC, Dolfing J, Nicolardot B (2000) Ecosystem response of pasture soil
communities to fumigation-induced microbial diversity reductions: an examination of the
biodiversity–ecosystem function relationship. Oikos 90:279–294
Griffiths BS, Ritz K, Wheatley R, Kuan HL, Boag B, Christensen S, Ekelund F, Sørensen SJ,
Muller S, Bloem J (2001) An examination of the biodiversity–ecosystem function relationship
in arable soil microbial communities. Soil Biol Biochem 33:1713–1722
Guiffre L, Romaniuk R, Conti ME, Bartoloni N (2006) Multivariate evaluation by quality indicators
of no-tillage system in Argiudolls of rolling pampa (Argentina). Biol Fertil Soils 42:556–560
He H, Ye Z, Yang D, Yan J, Xiao L, Zhong T, Yuan M, Cai X, Fang Z, Jing Y (2013)
Characterization of endophytic Rahnella sp. JN6 from Polygonum pubescens and its potential
in promoting growth and Cd, Pb, Zn uptake by Brassica napus. Chemosphere 90:1960–1965
Hector A, Schmid B, Beierkuhnlein C, Caldeira MC, Diemer M, Dimitrakopoulos PG, Finn JA,
Freitas H, Giller PS, Good J, Harris R, Högberg P, Huss-Danell K, Joshi J, Jumpponen A,
Körner C, Leadley PW, Loreau M, Minns A, Mulder CPH, O’Donovan G, Otway SJ, Pereira JS,
Prinz A, Read DJ, Scherer-Lorenzen M, Schulze ED, Siamantziouras ASD, Spehn EM, Terry
AC, Troumbis AY, Woodward FI, Yachi S, Lawton JH (1999) Plant diversity and productivity
experiments in European grassland. Science 286:1123–1127
Hooper DU (1998) The role of complementarity and competition in ecosystem responses to
variation in plant diversity. Ecology 79:704–719
Hughes JB, Hellmann JJ, Ricketts TH, Bohannan BJM (2001) Minireview: counting the
uncountable: statistical approaches to estimating microbial diversity. Appl Environ Microbiol
67:4399–4406
Kebede YK, Kebedee T (2012) Application of principal component analysis in surface water
quality monitoring. In: Sanguansat P.(Ed.), Principal component analysis – engineering applications. In Tech
Khan AG (2005) Role of soil microbes in the rhizospheres of plants growing on trace metal
contaminated soils in phytoremediation. J Trace Elem Med Biol 18:355–364
Khan MS, Zaidi A, Aamil M (2002) Biocontrol of fungal pathogens by the use of plant growth
promoting rhizobacteria and nitrogen fixing microorganisms. Indian J Bot Soc 81:255–263
Khan MS, Zaidi A, Wani PA, Ahemad M, Oves M (2009) Functional diversity among plant growthpromoting rhizobacteria: current status. In: Khan MS (ed) Microbial strategies for crop improvement. Springer, Berlin/Heidelberg
Kidd P, Barcelo J, Bernal MP, Navari-Izzo F, Poschenrieder C, Shilev S, Rafael C, Monterroso C
(2009) Trace element behaviour at the root-soil interface: implications in phytoremediation.
Environ Exp Bot 67:243–259
Kirk JL, Beaudette LA, Hart M, Moutoglis P, Klironomos JN, Lee H, Trevors JA (2004) Methods
of studying soil microbial diversity. J Microbiol Meth 58:169–188
Kloepper JW, Schroth MN (1978) Plant growth-promoting rhizobacteria on radishes. Fourth
International Conference on Plant Pathogen Bacteria, Angers, France, Vol 2. pp 879–882
252
A. L. Guerrero-Zúñiga et al.
