222
P. T. Lacava et al.
Ghosh R, Barman S, Mukherjee R, Mandal NC (2016) Role of phosphate solubilizing Burkholderia
spp. for successful colonization and growth promotion of Lycopodium cernuum L. (Lycopodiaceae) in lateritic belt of Birbhum district of West Bengal, India. Microbiol Res 183:80–91
Golinska P, Wypij M, Agarkar G, Rathod D, Dahm H, Rai M (2015) Endophytic actinobacteria of
medicinal plants: diversity and bioactivity. Anton Leeuw Int J G 108:267–289
Gomes EA, Silva UC, Marriel IE, Oliveira CA et al (2014) Rock phosphate solubilizing
microorganisms isolated from maize rhizosphere soil. Rev. Bras. Milho Sorgo 13:69–81
Gurikar C, Naik MK, Sreenivasa MY (2016) Azotobacter: PGPR activities with special reference
to effect of pesticides and biodegradation. In: Singh DP, Singh HB, Prabha R (eds) Microbial
inoculants in sustainable agricultural productivity: research perspectives. Springer, New Delhi
Gyaneshwar P, Kumar GN, Parekh LJ, Poodel PS (2002) Role of soil microorganisms in improving
P nutrition of plants. Plant Soil 245:83–93
Hallmann J, Quadt-Hallmann A, Mahaffee WF, Kloepper JW (1997) Bacterial endophytes in
agricultural crops. Can J Microbiol 43:895–914
Hilda R, Fraga R (2000) Phosphate solubilizing bacteria and their role in plant growth promotion.
Biotech Adv 17:319–359
Holguin G, Vazquez P‚ Bashan Y (2001) The role of sediment microorganisms in the productivity,
conservation, and rehabilitation of mangrove ecosystems: an overview. Biol Fertil Soils 33:265–
278. https://doi.org/10.1007/s003740000319
Islam MR, Sultana T, Joe MM, Yim W, Cho JC, Sa T (2013) Nitrogen-fixing bacteria with multiple
plant growth-promoting activities enhance growth of tomato and red pepper. J Basic Microb
53:1004–1015
Islam AA, Yaakob Z, Ghani JA, Anuar N (2014) Jatropha curcas L.: a future energy crop with
enormous potential. In: Biomass and bioenergy. Springer, p 31–61
Janarthine SRS, Eganathan P (2012) Plant growth promoting of endophytic Sporosarcina aquimarina SjAM16103 isolated from the pneumatophores of Avicennia marina L. Int J Microbiol
2012:532060. https://doi.org/10.1155/2012/532060
Johnston-Monje D, Raizada MN (2011) Conservation and diversity of seed associated endophytes
in Zea across boundaries of evolution, ethnography and ecology. PLoS ONE 6:e20396
Kämpfer, P (2003) Taxonomy of phosphate solubilizing bacteria. In: Development in Plant and soil
science: First International Meeting on Microbial phosphate Solubilization, Salamanca, Spain,
Anais. Netherlands, p 10–106
Kang SM, Khan AL, You YH, Kim JG, Kamran M, Lee IJ (2014) Gibberellin production by newly
isolated strain Leifsonia solise and its potential to promote plant growth. J Microbiol Biotechn
24:106–112
Karpagam T, Nagalakshmi PK (2014) Isolation and characterization of phosphate solubilizing
microbes from agricultural soil. Int J Curr Microbiol Appl Sci 3:601–614
Khan AA, Jilani G, Akhtar MS, Naqvi SMS, Rasheed M (2009) Phosphorus solubilizing bacteria:
occurrence, mechanisms and their role in crop production. J Agric Biol Sci 1:48–58
Khan KS, Joergensen RG (2009) Changes in microbial biomass and P fractions in biogenic
household waste compost amended with inorganic P fertilizers. Bioresour Technol 100:303–309
Khiari L, Parent LE (2005) Phosphorus transformations in acid light-textured soils treated with dry
swine manure. Can J Soil Sci 85:75–87
Kang S, Radhakrishnan R, You YH‚ et al (2014) Phosphate solubilizing bacillus megaterium mj1212
regulates endogenous plant carbohydrates and amino acids contents to promote mustard plant
growth. Indian J Microbiol 54:427–433. https://doi.org/10.1007/s12088-014-0476-6
Kuklinsky-Sobral J, Araújo WL, Mendes R, Geraldi IO, Pizzirani-Kleiner AA, Azevedo JL (2004)
Isolation and characterization of soybean-associated bacteria and their potential for plant growth
promotion. Environ Microbiol 6:1244–1251
Ku´ zniar A, Włodarczyk K, Woli´ nska A (2019) Agricultural and other biotechnological applications
resulting from trophic plant-endophyte interactions. Agronomy 9:779. https://doi.org/10.3390/
agronomy9120779
P. T. Lacava et al.
Ghosh R, Barman S, Mukherjee R, Mandal NC (2016) Role of phosphate solubilizing Burkholderia
spp. for successful colonization and growth promotion of Lycopodium cernuum L. (Lycopodiaceae) in lateritic belt of Birbhum district of West Bengal, India. Microbiol Res 183:80–91
Golinska P, Wypij M, Agarkar G, Rathod D, Dahm H, Rai M (2015) Endophytic actinobacteria of
medicinal plants: diversity and bioactivity. Anton Leeuw Int J G 108:267–289
Gomes EA, Silva UC, Marriel IE, Oliveira CA et al (2014) Rock phosphate solubilizing
microorganisms isolated from maize rhizosphere soil. Rev. Bras. Milho Sorgo 13:69–81
Gurikar C, Naik MK, Sreenivasa MY (2016) Azotobacter: PGPR activities with special reference
to effect of pesticides and biodegradation. In: Singh DP, Singh HB, Prabha R (eds) Microbial
inoculants in sustainable agricultural productivity: research perspectives. Springer, New Delhi
Gyaneshwar P, Kumar GN, Parekh LJ, Poodel PS (2002) Role of soil microorganisms in improving
P nutrition of plants. Plant Soil 245:83–93
Hallmann J, Quadt-Hallmann A, Mahaffee WF, Kloepper JW (1997) Bacterial endophytes in
agricultural crops. Can J Microbiol 43:895–914
Hilda R, Fraga R (2000) Phosphate solubilizing bacteria and their role in plant growth promotion.
Biotech Adv 17:319–359
Holguin G, Vazquez P‚ Bashan Y (2001) The role of sediment microorganisms in the productivity,
conservation, and rehabilitation of mangrove ecosystems: an overview. Biol Fertil Soils 33:265–
278. https://doi.org/10.1007/s003740000319
Islam MR, Sultana T, Joe MM, Yim W, Cho JC, Sa T (2013) Nitrogen-fixing bacteria with multiple
plant growth-promoting activities enhance growth of tomato and red pepper. J Basic Microb
53:1004–1015
Islam AA, Yaakob Z, Ghani JA, Anuar N (2014) Jatropha curcas L.: a future energy crop with
enormous potential. In: Biomass and bioenergy. Springer, p 31–61
Janarthine SRS, Eganathan P (2012) Plant growth promoting of endophytic Sporosarcina aquimarina SjAM16103 isolated from the pneumatophores of Avicennia marina L. Int J Microbiol
2012:532060. https://doi.org/10.1155/2012/532060
Johnston-Monje D, Raizada MN (2011) Conservation and diversity of seed associated endophytes
in Zea across boundaries of evolution, ethnography and ecology. PLoS ONE 6:e20396
Kämpfer, P (2003) Taxonomy of phosphate solubilizing bacteria. In: Development in Plant and soil
science: First International Meeting on Microbial phosphate Solubilization, Salamanca, Spain,
Anais. Netherlands, p 10–106
Kang SM, Khan AL, You YH, Kim JG, Kamran M, Lee IJ (2014) Gibberellin production by newly
isolated strain Leifsonia solise and its potential to promote plant growth. J Microbiol Biotechn
24:106–112
Karpagam T, Nagalakshmi PK (2014) Isolation and characterization of phosphate solubilizing
microbes from agricultural soil. Int J Curr Microbiol Appl Sci 3:601–614
Khan AA, Jilani G, Akhtar MS, Naqvi SMS, Rasheed M (2009) Phosphorus solubilizing bacteria:
occurrence, mechanisms and their role in crop production. J Agric Biol Sci 1:48–58
Khan KS, Joergensen RG (2009) Changes in microbial biomass and P fractions in biogenic
household waste compost amended with inorganic P fertilizers. Bioresour Technol 100:303–309
Khiari L, Parent LE (2005) Phosphorus transformations in acid light-textured soils treated with dry
swine manure. Can J Soil Sci 85:75–87
Kang S, Radhakrishnan R, You YH‚ et al (2014) Phosphate solubilizing bacillus megaterium mj1212
regulates endogenous plant carbohydrates and amino acids contents to promote mustard plant
growth. Indian J Microbiol 54:427–433. https://doi.org/10.1007/s12088-014-0476-6
Kuklinsky-Sobral J, Araújo WL, Mendes R, Geraldi IO, Pizzirani-Kleiner AA, Azevedo JL (2004)
Isolation and characterization of soybean-associated bacteria and their potential for plant growth
promotion. Environ Microbiol 6:1244–1251
Ku´ zniar A, Włodarczyk K, Woli´ nska A (2019) Agricultural and other biotechnological applications
resulting from trophic plant-endophyte interactions. Agronomy 9:779. https://doi.org/10.3390/
agronomy9120779
