75
Christensen AB, Cho BH, Nesby M, Gregersen PL, Brandt J, Madriz-Ordenana K, Collinge DB,
Thordal-Christensen H (2002) The molecular characterization of two barley proteins establishes the novel PR-17 family of pathogenesis-related proteins. Mol Plant Pathol 3(3):135–144
Datta S, Singh J, Singh S, Singh J (2016) Earthworms, pesticides, and sustainable agriculture: a
review. Environ Sci Pollut Res Int 23(9):8227–8243
Davis JM, Wu H, Cooke JEK, Reed JM, Luce KS, Michler CH (2002) Pathogen challenge, salicylic acid, and jasmonic acid regulate expression of chitinases gene homologs in pine. Mol
Plant Microbial Interact 15:380–387
Duckworth OW, Bargar JR, Sposito G (2009) Coupled biogeochemical cycling of iron and manganese as mediated by microbial siderophores. Biometals 22(4):605–613
Ferreira CMH, Soares HMVM, Soares EV (2019) Promising bacterial genera for agricultural practices: an insight on plant growth promoting properties and microbial safety aspects. Sci Total
Environ 682:779–799
Fossdal CG, Sharma P, Lonnebong A (2001) Isolation of the first putative peroxidase cDNA from
a conifer and the local and systemic accumulation of related proteins upon pathogen infection.
Plant Mol Biol 47:423–435
Frac M, Hannula SE, Belka M, Jedryczka M (2018) Fungal biodiversity and their role in soil
health. Front Microbiol 9:707
Gaonkar T, Bhosle S (2013) Effect of metals on a siderophore producing bacterial isolate and its
implications on microbial assisted bioremediation of metal contaminated soils. Chemosphere
93(9):1835–1843
Garnica M, Bacaicoa E, Mora V, San Francisco S, Baigorri R, Zamarreno AM, Garcia-Mina JM
(2018) Shoot iron status and auxin are involved in iron deficiency induced phytosiderophores
release in wheat. MC Plant Biol 18(1):105
Gouda S, Kerry RG, Das G, Paramithiotis S, Shin HS, Patra JK (2018) Revitalization of plant
growth promoting rhizobacteria for sustainable development in agriculture. Microbiol Res
206:131–140
Han Y, Zang K, Liu C, Li Y, Ma Q (2018) The putative siderophore-interacting protein from Vibrio
anguillarum: protein production, analysis, crystallization and X-ray crystallographic studies.
Acta Cryst F74:283–287
Harrington JM, Duckworth OW, Haselwandter K (2015) The fate of siderophores: antagonistic environmental interactions in exudates mediated micronutrient uptake. Biometals 28(3):461–472
Hernlem BJ, Vane LM, Sayles GD (1999) The application of siderophores for metal recovery and
waste remediation: examination of correlations for prediction of metal affinities. Water Res
33(4):951–960
Jagtap UB, Bapat VA (2015) Genetic engineering of plants for heavy metal removal from soil. In:
Sherameti I, Varma A (eds) Heavy metal contamination of soils. Soil biology, vol 44. Springer,
Cham
Jin WC, Li GX, Yu XH, Zheng SJ (2010) Plant Fe status affects the composition of siderophore
secreting microbes in the rhizosphere. Ann Bot 105:835–841
Khanna K, Jamwal VL, Sharma A, Gandhi SG, Ohri P, Bhardwaj R, Al-Huqail AA, Siddiqui MH,
Ali HM, Ahmad P (2019) Supplementation with plant growth promoting rhizobacteria (PGPR)
alleviates cadmium toxicity in Solanum lycopersicum by modulating the expression of secondary metabolites. Chemosphere 230:628–629
Kibblewhite MG, Ritz K, Swift MJ (2008) Soil health in agricultural systems. Philos Trans R Soc
Lond Ser B Biol Sci 363(1492):685–701
Liu G, Greenshields DL, Sammynaiken R, Hirji RN, Selvaraj G, Wei Y (2007) Targeted alterations
in iron homeostasis underlie plant defense responses. J Cell Sci 120:596–605
Liu L, Li W, Song W, Guo M (2018) Remediation techniques for heavy metal contaminated soils:
principles and applicability. Sci Total Environ 663:206–219
Manzoor M, Gul I, Kallerhoff J, Arshad M (2019) Fungi assisted phytoextraction of lead: tolerance,
plant growth promoting activities and phytoavailability. Environ Sci Pollut Res 17(5):1–10
5 Application of Siderophore in Crop Productivity and Remediation of Heavy…
Christensen AB, Cho BH, Nesby M, Gregersen PL, Brandt J, Madriz-Ordenana K, Collinge DB,
Thordal-Christensen H (2002) The molecular characterization of two barley proteins establishes the novel PR-17 family of pathogenesis-related proteins. Mol Plant Pathol 3(3):135–144
Datta S, Singh J, Singh S, Singh J (2016) Earthworms, pesticides, and sustainable agriculture: a
review. Environ Sci Pollut Res Int 23(9):8227–8243
Davis JM, Wu H, Cooke JEK, Reed JM, Luce KS, Michler CH (2002) Pathogen challenge, salicylic acid, and jasmonic acid regulate expression of chitinases gene homologs in pine. Mol
Plant Microbial Interact 15:380–387
Duckworth OW, Bargar JR, Sposito G (2009) Coupled biogeochemical cycling of iron and manganese as mediated by microbial siderophores. Biometals 22(4):605–613
Ferreira CMH, Soares HMVM, Soares EV (2019) Promising bacterial genera for agricultural practices: an insight on plant growth promoting properties and microbial safety aspects. Sci Total
Environ 682:779–799
Fossdal CG, Sharma P, Lonnebong A (2001) Isolation of the first putative peroxidase cDNA from
a conifer and the local and systemic accumulation of related proteins upon pathogen infection.
Plant Mol Biol 47:423–435
Frac M, Hannula SE, Belka M, Jedryczka M (2018) Fungal biodiversity and their role in soil
health. Front Microbiol 9:707
Gaonkar T, Bhosle S (2013) Effect of metals on a siderophore producing bacterial isolate and its
implications on microbial assisted bioremediation of metal contaminated soils. Chemosphere
93(9):1835–1843
Garnica M, Bacaicoa E, Mora V, San Francisco S, Baigorri R, Zamarreno AM, Garcia-Mina JM
(2018) Shoot iron status and auxin are involved in iron deficiency induced phytosiderophores
release in wheat. MC Plant Biol 18(1):105
Gouda S, Kerry RG, Das G, Paramithiotis S, Shin HS, Patra JK (2018) Revitalization of plant
growth promoting rhizobacteria for sustainable development in agriculture. Microbiol Res
206:131–140
Han Y, Zang K, Liu C, Li Y, Ma Q (2018) The putative siderophore-interacting protein from Vibrio
anguillarum: protein production, analysis, crystallization and X-ray crystallographic studies.
Acta Cryst F74:283–287
Harrington JM, Duckworth OW, Haselwandter K (2015) The fate of siderophores: antagonistic environmental interactions in exudates mediated micronutrient uptake. Biometals 28(3):461–472
Hernlem BJ, Vane LM, Sayles GD (1999) The application of siderophores for metal recovery and
waste remediation: examination of correlations for prediction of metal affinities. Water Res
33(4):951–960
Jagtap UB, Bapat VA (2015) Genetic engineering of plants for heavy metal removal from soil. In:
Sherameti I, Varma A (eds) Heavy metal contamination of soils. Soil biology, vol 44. Springer,
Cham
Jin WC, Li GX, Yu XH, Zheng SJ (2010) Plant Fe status affects the composition of siderophore
secreting microbes in the rhizosphere. Ann Bot 105:835–841
Khanna K, Jamwal VL, Sharma A, Gandhi SG, Ohri P, Bhardwaj R, Al-Huqail AA, Siddiqui MH,
Ali HM, Ahmad P (2019) Supplementation with plant growth promoting rhizobacteria (PGPR)
alleviates cadmium toxicity in Solanum lycopersicum by modulating the expression of secondary metabolites. Chemosphere 230:628–629
Kibblewhite MG, Ritz K, Swift MJ (2008) Soil health in agricultural systems. Philos Trans R Soc
Lond Ser B Biol Sci 363(1492):685–701
Liu G, Greenshields DL, Sammynaiken R, Hirji RN, Selvaraj G, Wei Y (2007) Targeted alterations
in iron homeostasis underlie plant defense responses. J Cell Sci 120:596–605
Liu L, Li W, Song W, Guo M (2018) Remediation techniques for heavy metal contaminated soils:
principles and applicability. Sci Total Environ 663:206–219
Manzoor M, Gul I, Kallerhoff J, Arshad M (2019) Fungi assisted phytoextraction of lead: tolerance,
plant growth promoting activities and phytoavailability. Environ Sci Pollut Res 17(5):1–10
5 Application of Siderophore in Crop Productivity and Remediation of Heavy…
