9 Phosphate Solubilization by Endophytes from the Tropical Plants
221
Azevedo JL, Araújo WL (2007) Diversity and applications of endophytic fungi isolated from tropical
plants. In: Ganguli BN, Deshmukh SK (eds) Fungi: multifaceted microbes. CRC Press, Boca
Raton, pp 189–207
Azevedo JL, Quecine MC (2019) Biodiversity and biotechnological applications of microorganisms
associated with tropical plants. Microbiome in plant health and disease, pp 293–313
Azevedo JL, Maccheroni W, Pereira JO, Araújo WL (2000) Endophytic microorganisms: a review
on insect control and recent advances on tropical plants. Electron J Biotechnol 3:40–65
Baliah NT, Pandiarajan G, Kumar BM (2016) Isolation, identification and characterization of phosphate solubilizing bacteria from different crop soils of Srivilliputtur Taluk, Virudhunagar District,
Tamil Nadu. Trop Ecol 57:465–474
Behera SK, Srivastava P, Tripathi R, Singh JP, Singh N (2010) Evaluation of plant performance of
Jatropha curcas L. under different agro-practices for optimizing biomass—a case study. Biomass
Bioenergy 34:30–41
Brasil. (2015) Ministério da Agricultura. Café: Saiba mais. http://www.agricultura.gov.br/vegetal/
culturas/cafe/saiba-mais
Castro RC, Quecine MC, Lacava PT, Batista BD, Luvizotto DM, Marcon J, Ferreira A, Melo IS,
Azevedo JL (2014) Isolation and enzyme bioprospection of endophytic bacteria associated with
plants of Brazilian mangrove ecosystem. Springerplus 3:1–9
Castro RA, Dourado MN, Almeida JR, Lacava PT, Nave A, Melo IS, Azevedo JL, Quecine MC
(2018) Mangrove endophyte promotes reforestation tree (Acacia polyphylla) growth. Braz J
Microbiol 49:59–66
Chai B, Wu Y, Liu P, Liu B, Gao M (2011) Isolation and phosphate-solubilizing ability of a fungus,
Penicillium sp. from soil of an alum mine. J Basic Microbiol 51:5–14
Dias AC, Costa FE, Andreote FD, Lacava PT, Teixeira MA, Assumpção LC, Araújo WL, Azevedo
JL, Melo IS (2009a) Isolation of micropropagated strawberry endophytic bacteria and assessment
of their potential for plant growth promotion. World J Microbiol Biotechnol 25:189–195
Dias AC, Andreote FD, Dini-Andreote F et al (2009b) Diversity and biotechnological potential of
culturable bacteria from Brazilian mangrove sediment. World J Microbiol Biotechnol 25:1305–
1311
de Abreu CS, Figueiredo JEF, Oliveira CA, dos Santos VL, Gomes EA, Ribeiro VP, Barros BA,
Lana UGP, Marriel IE (2017) Maize endophytic bacteria as mineral phosphate solubilizers. Genet
Mol Res 16:gmr16019294
Edrisi SA, Dubey RK, Tripathi V, Bakshi M, Srivastava P, Jamil S et al (2015) Jatropha curcas L.:
a crucified plant waiting for resurgence. Renew Sustain Energy Rev 41:855–862
Ezawa T, Smith SE, Smith FA (2002) P metabolism and transport in AM fungi. Plant Soil 244:221–
230
Farrar K, Bryant D, Cope-Selby N (2014) Understanding and engineering beneficial plant-microbe
interactions: plant growth promotion in energy crops. Plant Biotechnol J 12:1193–1206
Forchetti G, Masciarelli O, Alemano S, Alvarez D, Abdala G (2007) Endophytic bacteria in
sunflower (Helianthus annuus L.): isolation, characterization, and production of jasmonates and
abscisic acid in culture medium. Appl Microbiol Biotechnol 76:1145–1152
Gaiero JR, McCall CA, Thompson KA, Day NJ et al (2013) Inside the root microbiome: bacterial
root endophytes and plant growth promotion. Am J Bot 100:1738–1750
Gautam AK, Avasthi S (2019) Fungal endophytes: Potential biocontrol agents in agriculture. In:
Kumar A, Singh AK, Choudhary KK (eds) Role of plant growth promoting microorganisms in
sustainable agriculture and nanotechnology. Woodhead Publishing, USA., pp 241–283
Gayathri S, Saravanan D, Radhakrishnan M, Balagurunathan R, Kathiresan K (2010) Bioprospecting
potential of fast growing endophytic bacteria from leaves of mangrove and salt-marsh plant
species. Indian J Biotechnol 9:397–402
Gayathri P, Muralikrishnan V (2013) Isolation of endophytic bacteria from mangrove, bananas and
sugarcane for their biological activities. AJRBPS 1:19–27
221
Azevedo JL, Araújo WL (2007) Diversity and applications of endophytic fungi isolated from tropical
plants. In: Ganguli BN, Deshmukh SK (eds) Fungi: multifaceted microbes. CRC Press, Boca
Raton, pp 189–207
Azevedo JL, Quecine MC (2019) Biodiversity and biotechnological applications of microorganisms
associated with tropical plants. Microbiome in plant health and disease, pp 293–313
Azevedo JL, Maccheroni W, Pereira JO, Araújo WL (2000) Endophytic microorganisms: a review
on insect control and recent advances on tropical plants. Electron J Biotechnol 3:40–65
Baliah NT, Pandiarajan G, Kumar BM (2016) Isolation, identification and characterization of phosphate solubilizing bacteria from different crop soils of Srivilliputtur Taluk, Virudhunagar District,
Tamil Nadu. Trop Ecol 57:465–474
Behera SK, Srivastava P, Tripathi R, Singh JP, Singh N (2010) Evaluation of plant performance of
Jatropha curcas L. under different agro-practices for optimizing biomass—a case study. Biomass
Bioenergy 34:30–41
Brasil. (2015) Ministério da Agricultura. Café: Saiba mais. http://www.agricultura.gov.br/vegetal/
culturas/cafe/saiba-mais
Castro RC, Quecine MC, Lacava PT, Batista BD, Luvizotto DM, Marcon J, Ferreira A, Melo IS,
Azevedo JL (2014) Isolation and enzyme bioprospection of endophytic bacteria associated with
plants of Brazilian mangrove ecosystem. Springerplus 3:1–9
Castro RA, Dourado MN, Almeida JR, Lacava PT, Nave A, Melo IS, Azevedo JL, Quecine MC
(2018) Mangrove endophyte promotes reforestation tree (Acacia polyphylla) growth. Braz J
Microbiol 49:59–66
Chai B, Wu Y, Liu P, Liu B, Gao M (2011) Isolation and phosphate-solubilizing ability of a fungus,
Penicillium sp. from soil of an alum mine. J Basic Microbiol 51:5–14
Dias AC, Costa FE, Andreote FD, Lacava PT, Teixeira MA, Assumpção LC, Araújo WL, Azevedo
JL, Melo IS (2009a) Isolation of micropropagated strawberry endophytic bacteria and assessment
of their potential for plant growth promotion. World J Microbiol Biotechnol 25:189–195
Dias AC, Andreote FD, Dini-Andreote F et al (2009b) Diversity and biotechnological potential of
culturable bacteria from Brazilian mangrove sediment. World J Microbiol Biotechnol 25:1305–
1311
de Abreu CS, Figueiredo JEF, Oliveira CA, dos Santos VL, Gomes EA, Ribeiro VP, Barros BA,
Lana UGP, Marriel IE (2017) Maize endophytic bacteria as mineral phosphate solubilizers. Genet
Mol Res 16:gmr16019294
Edrisi SA, Dubey RK, Tripathi V, Bakshi M, Srivastava P, Jamil S et al (2015) Jatropha curcas L.:
a crucified plant waiting for resurgence. Renew Sustain Energy Rev 41:855–862
Ezawa T, Smith SE, Smith FA (2002) P metabolism and transport in AM fungi. Plant Soil 244:221–
230
Farrar K, Bryant D, Cope-Selby N (2014) Understanding and engineering beneficial plant-microbe
interactions: plant growth promotion in energy crops. Plant Biotechnol J 12:1193–1206
Forchetti G, Masciarelli O, Alemano S, Alvarez D, Abdala G (2007) Endophytic bacteria in
sunflower (Helianthus annuus L.): isolation, characterization, and production of jasmonates and
abscisic acid in culture medium. Appl Microbiol Biotechnol 76:1145–1152
Gaiero JR, McCall CA, Thompson KA, Day NJ et al (2013) Inside the root microbiome: bacterial
root endophytes and plant growth promotion. Am J Bot 100:1738–1750
Gautam AK, Avasthi S (2019) Fungal endophytes: Potential biocontrol agents in agriculture. In:
Kumar A, Singh AK, Choudhary KK (eds) Role of plant growth promoting microorganisms in
sustainable agriculture and nanotechnology. Woodhead Publishing, USA., pp 241–283
Gayathri S, Saravanan D, Radhakrishnan M, Balagurunathan R, Kathiresan K (2010) Bioprospecting
potential of fast growing endophytic bacteria from leaves of mangrove and salt-marsh plant
species. Indian J Biotechnol 9:397–402
Gayathri P, Muralikrishnan V (2013) Isolation of endophytic bacteria from mangrove, bananas and
sugarcane for their biological activities. AJRBPS 1:19–27
