76
Meena MD, Yadav RK, Narjary B, Yadav G, Jat HS, Sheoran P, Meena MK, Antil RS, Meena BL,
Singh HV, Singh MV, Rai PK, Ghosh A, Moharan PC (2019) Municipal solid waste (MSW):
strategies to improve salt affected soil sustainability: a review. Waste Manag 84:38–53
Meyer JM, Geoffroy VA, Baida N, Gardan L, Izard D, Lemanceau P, Achouak W, Palleroni NJ
(2002) Siderophore typing, a powerful tool for the identification of fluorescent and nonfluorescent pseudomonas. Appl Environ Microbiol 68(6):2745–2753
Mulet M, Gomila M, Gruffaz C, Meyer JM, Palleroni NJ, Lalucat J, Garcia-Valdes E (2008)
Phylogenetic analysis and siderophore typing as useful tools in the taxonomy of Pseudomonas
stutzeri: description of a novel genomovar. Int J Syst Evol Microbiol 58(10):2309–2315
Munir I, Bano A, Faisal M (2019) Impact of phosphate solubilizing bacteria on wheat (Triticum
aestivum) in the presence of pesticides. Braz J Biol 79(1):29–37
Pandey P, Kang SC, Gupta CP, Maheshwari DK (2005) Rhizosphere competent Pseudomonas
aeruginosa GrC1 produces characteristic siderophore and enhances growth of Indian mustard.
Curr Microbiol 51(5):303–309
Paul I, Buttinger R (2005) Interactions between iron availability, aluminium toxicity and fungal
siderophore. Biometals 19:367–377
Pii Y, Borrusetti L, Crecchio C, Cesco S, Mimmo T (2016) The interaction between iron nutrition, plant species and soil type shapes the rhizosphere microbiome. Plant Physiol Biochem
99:39–48
Rajkumar M, Ae N, Prasad MN, Freitas H (2010) Potential of siderophore producing bacteria for
improving heavy metal phytoextraction. Trends Biotechnol 28(3):142–149
Raklami A, Bechtaoui N, Tahiri AI, Anli M, Meddich A, Oufdou K (2019) Use of rhizobacteria and
mycorrhizae consortium in the open field as a strategy for improving crop nutrition, productivity and soil fertility. Front Microbiol 10:1106
Reid RT, Livet DH, Faulkner DJ, Butler A (1993) A siderophore from a marine bacterium with an
exceptional ferric ion affinity constant. Nature 366(6454):455–458
Renshaw JC, Robson GD, Trinci APJ, Wiebe MG, Livens FR, Collison D, Taylor RJ (2002) Fungal
siderophores: structures, functions and applications. Mycol Res 106(10):1123–1142
Rout G (2015) Role of iron in plant growth and metabolism. Rev Agric Syst 3:1–2
Saha M, Sarkar S, Sarkar B, Sharma BK, Battacharjee S, Tribedi P (2016) Microbial siderophore
and their potential applications: a review. Environ Sci Pollut Res Int 23(5):3984–3999
Sarfraz R, Hussain A, Sabir A, BenFekih I, Ditta A, Xing S (2019) Role of biochar and plant
growth promoting rhizobacteria to enhance soil carbon sequestration: a review. Environ Monit
Assess 191(4):251
Sasirekha B, Srividya S (2016) Siderophore production by Pseudomonas aeruginosa FP6, a biocontrol strain for Rhizoctonia solani and Colletotrichum gloeosporioides causing diseases in
chilli. Agric Nat Resour 50(4):250–256
Saxena A (2003) Transcript accumulation of defense related enzymes during induction of systemic
resistance by rhizobacteria in pearl millet against downy mildew disease. In: Visiting fellowship report submitted to Indian Academy of Sciences, Bangalore
Saxena A, Raj N, Sarosh BR, Kini R, Shetty HS (2013) Rhizobacteria mediated growth enhancement in pearl millet. Indian J Sci Res 4(2):41–44
Sinha AK, Venkateswaran B, Tripathi SC, Sarkar A, Prabhakaran S (2019) Effects of growth conditions on siderophore producing bacteria and siderophore production from Indian ocean sector
of southern ocean. J Basic Microbiol 59(4):412–424
Sipahutar MK, Piapukiew J, Vangnai AS (2018) Efficiency of formulated plant growth promoting
Pseudomonas fluorescens MC46 inoculant on triclocarban treatment in soil and its effect on
Vigna radiate growth and soil enzyme activities. J Hazard Mater 344:883–892
Sockwell AK, Wetzler M (2019) Beyond biological chelation: coordination of f-block elements by
polyhydroxamate ligands. Chemistry 26(10):2380–2388
Sridhar PR, Venkatesh BC, Kalesha S, Sudharani C (2018) The first total synthesis of gobichelin B: a mixed ligand siderophore of Streptomyces sp. NRRL F-4415. Org Biomol Chem
16(20):3732–3740
A. Saxena
Meena MD, Yadav RK, Narjary B, Yadav G, Jat HS, Sheoran P, Meena MK, Antil RS, Meena BL,
Singh HV, Singh MV, Rai PK, Ghosh A, Moharan PC (2019) Municipal solid waste (MSW):
strategies to improve salt affected soil sustainability: a review. Waste Manag 84:38–53
Meyer JM, Geoffroy VA, Baida N, Gardan L, Izard D, Lemanceau P, Achouak W, Palleroni NJ
(2002) Siderophore typing, a powerful tool for the identification of fluorescent and nonfluorescent pseudomonas. Appl Environ Microbiol 68(6):2745–2753
Mulet M, Gomila M, Gruffaz C, Meyer JM, Palleroni NJ, Lalucat J, Garcia-Valdes E (2008)
Phylogenetic analysis and siderophore typing as useful tools in the taxonomy of Pseudomonas
stutzeri: description of a novel genomovar. Int J Syst Evol Microbiol 58(10):2309–2315
Munir I, Bano A, Faisal M (2019) Impact of phosphate solubilizing bacteria on wheat (Triticum
aestivum) in the presence of pesticides. Braz J Biol 79(1):29–37
Pandey P, Kang SC, Gupta CP, Maheshwari DK (2005) Rhizosphere competent Pseudomonas
aeruginosa GrC1 produces characteristic siderophore and enhances growth of Indian mustard.
Curr Microbiol 51(5):303–309
Paul I, Buttinger R (2005) Interactions between iron availability, aluminium toxicity and fungal
siderophore. Biometals 19:367–377
Pii Y, Borrusetti L, Crecchio C, Cesco S, Mimmo T (2016) The interaction between iron nutrition, plant species and soil type shapes the rhizosphere microbiome. Plant Physiol Biochem
99:39–48
Rajkumar M, Ae N, Prasad MN, Freitas H (2010) Potential of siderophore producing bacteria for
improving heavy metal phytoextraction. Trends Biotechnol 28(3):142–149
Raklami A, Bechtaoui N, Tahiri AI, Anli M, Meddich A, Oufdou K (2019) Use of rhizobacteria and
mycorrhizae consortium in the open field as a strategy for improving crop nutrition, productivity and soil fertility. Front Microbiol 10:1106
Reid RT, Livet DH, Faulkner DJ, Butler A (1993) A siderophore from a marine bacterium with an
exceptional ferric ion affinity constant. Nature 366(6454):455–458
Renshaw JC, Robson GD, Trinci APJ, Wiebe MG, Livens FR, Collison D, Taylor RJ (2002) Fungal
siderophores: structures, functions and applications. Mycol Res 106(10):1123–1142
Rout G (2015) Role of iron in plant growth and metabolism. Rev Agric Syst 3:1–2
Saha M, Sarkar S, Sarkar B, Sharma BK, Battacharjee S, Tribedi P (2016) Microbial siderophore
and their potential applications: a review. Environ Sci Pollut Res Int 23(5):3984–3999
Sarfraz R, Hussain A, Sabir A, BenFekih I, Ditta A, Xing S (2019) Role of biochar and plant
growth promoting rhizobacteria to enhance soil carbon sequestration: a review. Environ Monit
Assess 191(4):251
Sasirekha B, Srividya S (2016) Siderophore production by Pseudomonas aeruginosa FP6, a biocontrol strain for Rhizoctonia solani and Colletotrichum gloeosporioides causing diseases in
chilli. Agric Nat Resour 50(4):250–256
Saxena A (2003) Transcript accumulation of defense related enzymes during induction of systemic
resistance by rhizobacteria in pearl millet against downy mildew disease. In: Visiting fellowship report submitted to Indian Academy of Sciences, Bangalore
Saxena A, Raj N, Sarosh BR, Kini R, Shetty HS (2013) Rhizobacteria mediated growth enhancement in pearl millet. Indian J Sci Res 4(2):41–44
Sinha AK, Venkateswaran B, Tripathi SC, Sarkar A, Prabhakaran S (2019) Effects of growth conditions on siderophore producing bacteria and siderophore production from Indian ocean sector
of southern ocean. J Basic Microbiol 59(4):412–424
Sipahutar MK, Piapukiew J, Vangnai AS (2018) Efficiency of formulated plant growth promoting
Pseudomonas fluorescens MC46 inoculant on triclocarban treatment in soil and its effect on
Vigna radiate growth and soil enzyme activities. J Hazard Mater 344:883–892
Sockwell AK, Wetzler M (2019) Beyond biological chelation: coordination of f-block elements by
polyhydroxamate ligands. Chemistry 26(10):2380–2388
Sridhar PR, Venkatesh BC, Kalesha S, Sudharani C (2018) The first total synthesis of gobichelin B: a mixed ligand siderophore of Streptomyces sp. NRRL F-4415. Org Biomol Chem
16(20):3732–3740
A. Saxena
