12 Endophytic Rhizobacteria for Mineral Nutrients …
287
Ouattara K, Coulibaly K, Konate I, Kebe BI, Tidou AS, Filali-Maltouf A (2019) Selection of
Cocoa tree (Theobroma cacao Linn) endophytic bacteria solubilizing tri-calcium phosphate,
isolated from seedlings grown on soils of six producing regions of Côte d’Ivoire. Biomed Life
Sci 9:842–852
Ouma SO, Magiri EN, Maritu VN, Mugweru J, Ngamau C (2014) Evaluation of nitrogen fixation
ability of endophytic bacteria in Kenyan bananas (Musa Spp.) using biochemical and molecular
techniques. Int J Sci Technoledge 2:156–163
Pandey PK, Singh S, Singh MC, Singh AK, Yadav SK, Pandey AK, Heisnam P (2018) Diversity,
ecology, and conservation of fungal and bacterial endophytes. In: Sharma S, Varma A (eds)
Microbial resource conservation. Springer, Cham, pp 393–430
Patel A, Vyas RV, Mankad M, Subbash N (2017a) Isolation and biochemical characterization of
rhizobia from rice rhizosphere and their effect on rice growth promotion. Int J Pure Appl Biosci
5:441–451
Patel DH, Naik JH, Amaresan N (2017b) Synergistic effect of root-associated bacteria on plant
growth and certain physiological parameters of banana plant (Musa acuminate). Arch Agron Soil
Sci 64:1021–1031. https://doi.org/10.1080/03650340.2017.1410703
Perez-Rosales E, Alcaraz-Melendez L, Puente ME, Vázquez-Juárez R, Quiroz-Guzmán E, ZentenoSavín T, Morales-Bojórquez E (2017) Isolation and characterization of endophytic bacteria associated with roots of jojoba (Simmondsia chinensis [Link] Schneid). Curr Sci 112:396–401. https://
doi.org/10.18520/cs/v112/i02/396-401
Pham VTK, Rediers H, Ghequire MGK, Nguyen HH, De Mot R, Vanderleyden J, Spaepen S (2017)
The plant growth-promoting effect of the nitrogen-fixing endophyte Pseudomonas stutzeri A15.
Arch Microbiol 199:513–517. https://doi.org/10.1007/s00203-016-1332-3
Phi QT, Yu MP, Keyung-Jo S, Choong-Min R, Seung-Hwan P, Jong-Guk K, Sa-Youl G (2010)
Assessment of root-associated Paenibacillus polymyxa groups on growth promotion and induced
systemic resistance in pepper. J Microb Biotechnol 20:1605–1613
Prakash J, Arora NK (2019) Phosphate-solubilizing Bacillus sp. enhances growth, phosphorus
uptake and oil yield of Mentha arvensis L. 3 Biotech 9:126. https://doi.org/10.1007/s13205-0191660-5
Proença DN, Schwab S, Baldani JI, Morais PV (2017) Diversity and function of endophytic microbial community of plants with economical potential. In: De Azevedo JL, Quecine MC (eds)
Diversity and benefits of microorganisms from the tropics. Springer, Cham, pp 209–243
Quecine MC, Araujo WL, Rossetto PB, Ferreira A, Tsui S, Lacava PT, Mondin M, Azevedo JL,
Pizzirani-Kleiner AA (2012) Sugarcane growth promotion by the endophytic bacterium Pantoea
agglomerans 33.1. Appl Environ Microbiol 78:7511–7518. https://doi.org/10.1128/AEM.008
36-12
Rafi MM, Krishnaveni MS, Charyulu PBBN (2019) Phosphate-solubilizing microorganisms and
their emerging role in sustainable agriculture. In: Buddolla V (ed) Recent developments in applied
microbiology and biochemistry. Academic Press, Dordrecht, pp 223–233
Rajkumar M, Ae N, Freitas H (2009) Endophytic bacteria and their potential to enhance heavy
metal phytoextraction. Chemosphere 153e160
Rajkumar M, Ae N, Prasad MNV, Freitas H (2010) Potential of siderophore-producing bacteria for
improving heavy metal phytoextraction. Trends Biotechnol 28:142–149
Ramaswamy V, Boucher O, Haigh J, Hauglustaine D, Haywood J, Myhre G, Nakajina T, Solomon
S (2001) Radiative forcing of climate change. Cambridge University Press, Cambridge, UK, pp
349–416
Ramesh A, Sharma SK, Sharma MP, Yadav N, Joshi OP (2014) Inoculation of zinc solubilizing
Bacillus aryabhattai strains for improved growth, mobilization and biofortification of zinc in
soybean and wheat cultivated in vertisols of central India. Appl Soil Ecol 73:87–96. https://doi.
org/10.1016/j.apsoil.2013.08.009
Rfaki A, Nassiri L, Ibijbijen J (2015) Isolation and characterization of phosphate solubilizing
bacteria from the rhizosphere of faba bean (Vicia faba L.) in Meknes region. Morocco Microbiol
Res J Int 6:247–254. https://doi.org/10.9734/BMRJ/2015/14379
287
Ouattara K, Coulibaly K, Konate I, Kebe BI, Tidou AS, Filali-Maltouf A (2019) Selection of
Cocoa tree (Theobroma cacao Linn) endophytic bacteria solubilizing tri-calcium phosphate,
isolated from seedlings grown on soils of six producing regions of Côte d’Ivoire. Biomed Life
Sci 9:842–852
Ouma SO, Magiri EN, Maritu VN, Mugweru J, Ngamau C (2014) Evaluation of nitrogen fixation
ability of endophytic bacteria in Kenyan bananas (Musa Spp.) using biochemical and molecular
techniques. Int J Sci Technoledge 2:156–163
Pandey PK, Singh S, Singh MC, Singh AK, Yadav SK, Pandey AK, Heisnam P (2018) Diversity,
ecology, and conservation of fungal and bacterial endophytes. In: Sharma S, Varma A (eds)
Microbial resource conservation. Springer, Cham, pp 393–430
Patel A, Vyas RV, Mankad M, Subbash N (2017a) Isolation and biochemical characterization of
rhizobia from rice rhizosphere and their effect on rice growth promotion. Int J Pure Appl Biosci
5:441–451
Patel DH, Naik JH, Amaresan N (2017b) Synergistic effect of root-associated bacteria on plant
growth and certain physiological parameters of banana plant (Musa acuminate). Arch Agron Soil
Sci 64:1021–1031. https://doi.org/10.1080/03650340.2017.1410703
Perez-Rosales E, Alcaraz-Melendez L, Puente ME, Vázquez-Juárez R, Quiroz-Guzmán E, ZentenoSavín T, Morales-Bojórquez E (2017) Isolation and characterization of endophytic bacteria associated with roots of jojoba (Simmondsia chinensis [Link] Schneid). Curr Sci 112:396–401. https://
doi.org/10.18520/cs/v112/i02/396-401
Pham VTK, Rediers H, Ghequire MGK, Nguyen HH, De Mot R, Vanderleyden J, Spaepen S (2017)
The plant growth-promoting effect of the nitrogen-fixing endophyte Pseudomonas stutzeri A15.
Arch Microbiol 199:513–517. https://doi.org/10.1007/s00203-016-1332-3
Phi QT, Yu MP, Keyung-Jo S, Choong-Min R, Seung-Hwan P, Jong-Guk K, Sa-Youl G (2010)
Assessment of root-associated Paenibacillus polymyxa groups on growth promotion and induced
systemic resistance in pepper. J Microb Biotechnol 20:1605–1613
Prakash J, Arora NK (2019) Phosphate-solubilizing Bacillus sp. enhances growth, phosphorus
uptake and oil yield of Mentha arvensis L. 3 Biotech 9:126. https://doi.org/10.1007/s13205-0191660-5
Proença DN, Schwab S, Baldani JI, Morais PV (2017) Diversity and function of endophytic microbial community of plants with economical potential. In: De Azevedo JL, Quecine MC (eds)
Diversity and benefits of microorganisms from the tropics. Springer, Cham, pp 209–243
Quecine MC, Araujo WL, Rossetto PB, Ferreira A, Tsui S, Lacava PT, Mondin M, Azevedo JL,
Pizzirani-Kleiner AA (2012) Sugarcane growth promotion by the endophytic bacterium Pantoea
agglomerans 33.1. Appl Environ Microbiol 78:7511–7518. https://doi.org/10.1128/AEM.008
36-12
Rafi MM, Krishnaveni MS, Charyulu PBBN (2019) Phosphate-solubilizing microorganisms and
their emerging role in sustainable agriculture. In: Buddolla V (ed) Recent developments in applied
microbiology and biochemistry. Academic Press, Dordrecht, pp 223–233
Rajkumar M, Ae N, Freitas H (2009) Endophytic bacteria and their potential to enhance heavy
metal phytoextraction. Chemosphere 153e160
Rajkumar M, Ae N, Prasad MNV, Freitas H (2010) Potential of siderophore-producing bacteria for
improving heavy metal phytoextraction. Trends Biotechnol 28:142–149
Ramaswamy V, Boucher O, Haigh J, Hauglustaine D, Haywood J, Myhre G, Nakajina T, Solomon
S (2001) Radiative forcing of climate change. Cambridge University Press, Cambridge, UK, pp
349–416
Ramesh A, Sharma SK, Sharma MP, Yadav N, Joshi OP (2014) Inoculation of zinc solubilizing
Bacillus aryabhattai strains for improved growth, mobilization and biofortification of zinc in
soybean and wheat cultivated in vertisols of central India. Appl Soil Ecol 73:87–96. https://doi.
org/10.1016/j.apsoil.2013.08.009
Rfaki A, Nassiri L, Ibijbijen J (2015) Isolation and characterization of phosphate solubilizing
bacteria from the rhizosphere of faba bean (Vicia faba L.) in Meknes region. Morocco Microbiol
Res J Int 6:247–254. https://doi.org/10.9734/BMRJ/2015/14379
