3 Microbial Endophytes: Sustainable Approach …
65
Goldstein AH (2007) Future trends in research on microbial phosphate solubilization: one hundred
years of insolubility. In: Velazquez E, Roderguez-Barrueco C (eds) Proc First International
Meeting on Microbial Phosphate Solubilization. Springer-Verlag, Berlin, pp 91–96
Goldstein AH, Liu ST (1987) Molecular cloning and regulation of a mineral phosphate solubilizing
gene from Erwinia herbicola. Biotechnology 5:72–74
Govindasamy V, George P, Raina SK, Kumar M, Rane J, Annapurna K. (2018) Plant-associated
microbial interactions in the soil environment: role of endophytes in imparting abiotic stress
tolerance to crops. In: Advances in Crop Environment Interaction (pp. 245–284). Springer,
Singapore
Graner G, Persson P, Meijer J, Alstrom S (2003) A study on microbial diversity in different cultivars
of Brassica napus in relation to its wilt pathogen, Verticillium longisporum. FEMS Microbiol
Lett 224:269–276
Grossmann K (2010) Auxin herbicides: current status of mechanism and mode of action. Pest
Manag Sci 66:113–120
Gupta G, Panwar J, Jha PN (2013) Natural occurrence of Pseudomonas aeruginosa, a dominant
cultivable diazotrophic endophytic bacterium colonizing Pennisetum glaucum (L.) R. Br. Appl
Soil Ecol 64:252–261
Gusain YS, Kamal R, Mehta CM, Singh US, Sharma AK (2015) Phosphate solubilizing and indole3-acetic acid producing bacteria from the soil of Garhwal Himalaya aimed to improve the growth
of rice. J Environ Biol 36:307
Hallmann J, Berg G (2006) Spectrum and population dynamics of bacterial root endophytes.
Springer, In Microbial root endophytes, pp 15–31
Hallmann J, Quadt-Hallmann A, Mahaffee W, Kloepper J (1997) Bacterial endophytes in
agricultural crops. Can J Microbiol 43:895–914
Hansen M, Kragelund L, Nybroe O, Sørensen J (1997) Early colonization of barley roots by
Pseudomonas fluorescens studied by immunofluorescence technique and confocal laser scanning
microscopy. FEMS Microbiol Ecol 23:353–360
Hardoim PR, van Overbeek LS, van Elsas JD (2008) Properties of bacterial endophytes and their
proposed role in plant growth. Trends Microbiol 16:463–471
Haas D, Keel C (2003) Regulation of antibiotic production in root-colonizing Pseudomonas spp.
and relevance for biological control of plant disease. Ann Rev Phytopathol 41(1):117–153
Hasan R (1994) Phosphorus fertility status of soils in India. Phosphorus research in India. In: Dev
G (ed) Proceedings of Group Discussion, Indian Agricultural Research Institute, New Delhi.
Principal Publications, Gurgaon, pp 8–12
Huang JS (1986) Ultrastructure of bacterial penetration in plants. Ann Rev Phytopathol 24:141–157
Hernandez T, Carrion G, Heredia G (2011) Solubilizacion in vitro de fosfatos por una cepa de
Paecilomyces lilacinus (Thom) Samson. Agrociencia 45:881–892
Heydari MM, Brook RM, Jones DL (2019) The role of phosphorus sources on root diameter, root
length and root dry matter of barley (Hordeum vulgare L.). J Plant Nutr 42(1):1–5
Hilda R, Fraga R (1999) Phosphate solubilizing bacteria and their role in plant growth promotion.
Biotechnol Adv 17:319–339
Holford ICR (1997) Soil phosphorus: its measurement and its uptake by plants. Aust J Soil Res
35:227–239
Hurek T, Reinhold-Hurek B (2003) Azoarcus sp. strain BH72 as a model for nitrogen-fixing grass
endophytes. J Biotechnol 106:169–178
Ivleva NB, Groat J, Staub JM, Stephens M (2016) Expression of active subunit of nitrogenase via
integration into plant organelle genome. PLoS ONE 11:e0160951
Jilani G, Akram A, Ali RM, Hafeez FY, Shams IH, Chaudhry AN (2007) Enhancing crop growth,
nutrients availability, economics and beneficial rhizosphere microflora through organic and
biofertilizers. Ann Microbiol 57:177–183
Joe MM, Devaraj S, Benson A, Sa T (2016) Isolation of phosphate solubilizing endophytic bacteria
from Phyllanthus amarus Schum & Thonn: Evaluation of plant growth promotion and antioxidant
activity under salt stress. J Appl Res Med Aromat Plants 3(2):71–77
65
Goldstein AH (2007) Future trends in research on microbial phosphate solubilization: one hundred
years of insolubility. In: Velazquez E, Roderguez-Barrueco C (eds) Proc First International
Meeting on Microbial Phosphate Solubilization. Springer-Verlag, Berlin, pp 91–96
Goldstein AH, Liu ST (1987) Molecular cloning and regulation of a mineral phosphate solubilizing
gene from Erwinia herbicola. Biotechnology 5:72–74
Govindasamy V, George P, Raina SK, Kumar M, Rane J, Annapurna K. (2018) Plant-associated
microbial interactions in the soil environment: role of endophytes in imparting abiotic stress
tolerance to crops. In: Advances in Crop Environment Interaction (pp. 245–284). Springer,
Singapore
Graner G, Persson P, Meijer J, Alstrom S (2003) A study on microbial diversity in different cultivars
of Brassica napus in relation to its wilt pathogen, Verticillium longisporum. FEMS Microbiol
Lett 224:269–276
Grossmann K (2010) Auxin herbicides: current status of mechanism and mode of action. Pest
Manag Sci 66:113–120
Gupta G, Panwar J, Jha PN (2013) Natural occurrence of Pseudomonas aeruginosa, a dominant
cultivable diazotrophic endophytic bacterium colonizing Pennisetum glaucum (L.) R. Br. Appl
Soil Ecol 64:252–261
Gusain YS, Kamal R, Mehta CM, Singh US, Sharma AK (2015) Phosphate solubilizing and indole3-acetic acid producing bacteria from the soil of Garhwal Himalaya aimed to improve the growth
of rice. J Environ Biol 36:307
Hallmann J, Berg G (2006) Spectrum and population dynamics of bacterial root endophytes.
Springer, In Microbial root endophytes, pp 15–31
Hallmann J, Quadt-Hallmann A, Mahaffee W, Kloepper J (1997) Bacterial endophytes in
agricultural crops. Can J Microbiol 43:895–914
Hansen M, Kragelund L, Nybroe O, Sørensen J (1997) Early colonization of barley roots by
Pseudomonas fluorescens studied by immunofluorescence technique and confocal laser scanning
microscopy. FEMS Microbiol Ecol 23:353–360
Hardoim PR, van Overbeek LS, van Elsas JD (2008) Properties of bacterial endophytes and their
proposed role in plant growth. Trends Microbiol 16:463–471
Haas D, Keel C (2003) Regulation of antibiotic production in root-colonizing Pseudomonas spp.
and relevance for biological control of plant disease. Ann Rev Phytopathol 41(1):117–153
Hasan R (1994) Phosphorus fertility status of soils in India. Phosphorus research in India. In: Dev
G (ed) Proceedings of Group Discussion, Indian Agricultural Research Institute, New Delhi.
Principal Publications, Gurgaon, pp 8–12
Huang JS (1986) Ultrastructure of bacterial penetration in plants. Ann Rev Phytopathol 24:141–157
Hernandez T, Carrion G, Heredia G (2011) Solubilizacion in vitro de fosfatos por una cepa de
Paecilomyces lilacinus (Thom) Samson. Agrociencia 45:881–892
Heydari MM, Brook RM, Jones DL (2019) The role of phosphorus sources on root diameter, root
length and root dry matter of barley (Hordeum vulgare L.). J Plant Nutr 42(1):1–5
Hilda R, Fraga R (1999) Phosphate solubilizing bacteria and their role in plant growth promotion.
Biotechnol Adv 17:319–339
Holford ICR (1997) Soil phosphorus: its measurement and its uptake by plants. Aust J Soil Res
35:227–239
Hurek T, Reinhold-Hurek B (2003) Azoarcus sp. strain BH72 as a model for nitrogen-fixing grass
endophytes. J Biotechnol 106:169–178
Ivleva NB, Groat J, Staub JM, Stephens M (2016) Expression of active subunit of nitrogenase via
integration into plant organelle genome. PLoS ONE 11:e0160951
Jilani G, Akram A, Ali RM, Hafeez FY, Shams IH, Chaudhry AN (2007) Enhancing crop growth,
nutrients availability, economics and beneficial rhizosphere microflora through organic and
biofertilizers. Ann Microbiol 57:177–183
Joe MM, Devaraj S, Benson A, Sa T (2016) Isolation of phosphate solubilizing endophytic bacteria
from Phyllanthus amarus Schum & Thonn: Evaluation of plant growth promotion and antioxidant
activity under salt stress. J Appl Res Med Aromat Plants 3(2):71–77
