70
A. Dahiya et al.
Picollo SL, Ferraro V, Alfonzo A, Settanni L, Ercolini D, Burruano S, Moschetti G (2010) Presence
of endophytic bacteria in Vitis vinifera leaves as detected by fluorescence in situ hybridization.
Ann Microbiol 60:161–167
Pillay V, Nowak J (1997) Inoculum density, temperature, and genotype effects on in vitro growth
promotion and epiphytic and endophytic colonization of tomato (Lycopersicon esculentum L.)
seedlings inoculated with a pseudomonad bacterium. Can J Microbiol 43:354–361
Pirhadi M, Enayatizamir N, Motamedi H, Sorkheh K (2018) Impact of soil salinity on diversity and
community of sugarcane endophytic plant growth promoting bacteria (Saccharum officinarum l.
Var. Cp48). Appl Ecol Environ Res 16(1):725–739
Priyadharsini P, Muthukumar T (2017) The root endophytic fungus Curvularia geniculata from
Parthenium hysterophorus roots improves plant growth through phosphate solubilization and
phytohormone production. Fungal Ecol 27:69–77
Puente ME, Li CY, Bashan Y (2009a) Rock-degrading endophytic bacteria in cacti. Environ Exp
Bot 66:389–401
Puente ME, Li CY, Bashan Y (2009b) Endophytic bacteria in cacti seeds can improve the
development of cactus seedlings. Environ Exp Bot 66:402–408
Rai R, Dash PK, Prasanna BM, Singh A (2007) Endophytic bacterial flora in the stem tissue of
a tropical maize (Zea mays L.) genotype: isolation, identification and enumeration. World J
Microbiol Biotechnol 23(6):853–858
Rajamanickam V, Rajasekaran A, Anandarajagopal K, Sridharan D, Selvakumar K, Rathinaraj BS
(2010) Anti-diarrheal activity of Dodonaea viscosa root extracts. Int J Pharm Biol 1(4):182–185
Rashid S, Charles TC, Glick BR (2012) Isolation and characterization of new plant growth promoting
bacterial endophytes. Appl Soil Ecol 61:217–224
Reinhold-Hurek B, Hurek T (2011) Living inside plants: bacterial endophytes. Curr Opin Plant Biol
14:435–443
Reissinger A, Vilich V, Sikora RA (2001) Detection of fungi in planta: effectiveness of surface
sterilization methods. Mycol Res 105(5):563–566
Reiter B, Sessitsch A (2006) Bacterial endophytes of the wildflower Crocus albiflorus analyzed by
characterization of isolates and by a cultivation-independent approach. Can J Microbiol 52:140–
149
Rheinhold-Hurek B, Maes T, Gemmer S, Van Montagu M, Hurek T (2006) An endoglucanase
is involved in infection of rice roots by the not-cellulose-metabolizing endophyte Azoarcus sp.
strain BH72. Mol Plant Microbe Interact 19:181–188
Ribeiro CM, Cardoso EJBN (2012) Isolation, selection and characterization of root-associated
growth promoting bacteria in Brazil pine (Araucaria angustifolia). Microbiol Res 167:69–78
Ribeiro VP, Marriel IE, Sousa SM, Lana UG, Mattos BB, Oliveira CA, Gomes EA (2018) Endophytic
Bacillus strains enhance pearl millet growth and nutrient uptake under low-P. Braz J Microbiol
49:40–46
Richardson AE (2001) Prospects for using soil microorganisms to improve the acquisition of
phosphorus by plants. Aust J Plant Physiol 28:897–906
Richardson AE, Barea JM, McNeill AM (2009) Acquisition of phosphorus and nitrogen in the
rhizosphere and plant growth promotion by microorganisms. Plant Soil 321:305–339
Rinu K, Malviya MK, Sati P, Tiwari SC, Pandey A (2013) Response of cold tolerant Aspergillus
spp. to solubilization of Fe and Al phosphate in presence of different nutritional sources. ISRN
Soil Sci. 10. http://dx.doi.org/10.1155/ 2013/598541
Rinu K, Pandey A (2010) Temperature-dependent phosphate solubilization by cold- and pH-tolerant
species of Aspergillus isolated from Himalayan soil. Mycoscience 51:263–271
Rodriguez H, Fraga R, Gonzalez T, Bashan Y (2006) Genetics of phosphate solubilization and its
potential applications for improving plant growth promoting bacteria. Plant Soil 287:15–21
Rodrıguez H, Gonzalez T, Selman G (2001) Expression of a mineral phosphate solubilizing gene
from Erwinia herbicola in two rhizobacterial strains. J Biotechnol 84(2):155–161
Rodriguez RJ, White JF, Arnold AE, Redman RS (2009) Fungal endophytes: diversity and functional
roles. New Phytol 182:314–330
A. Dahiya et al.
Picollo SL, Ferraro V, Alfonzo A, Settanni L, Ercolini D, Burruano S, Moschetti G (2010) Presence
of endophytic bacteria in Vitis vinifera leaves as detected by fluorescence in situ hybridization.
Ann Microbiol 60:161–167
Pillay V, Nowak J (1997) Inoculum density, temperature, and genotype effects on in vitro growth
promotion and epiphytic and endophytic colonization of tomato (Lycopersicon esculentum L.)
seedlings inoculated with a pseudomonad bacterium. Can J Microbiol 43:354–361
Pirhadi M, Enayatizamir N, Motamedi H, Sorkheh K (2018) Impact of soil salinity on diversity and
community of sugarcane endophytic plant growth promoting bacteria (Saccharum officinarum l.
Var. Cp48). Appl Ecol Environ Res 16(1):725–739
Priyadharsini P, Muthukumar T (2017) The root endophytic fungus Curvularia geniculata from
Parthenium hysterophorus roots improves plant growth through phosphate solubilization and
phytohormone production. Fungal Ecol 27:69–77
Puente ME, Li CY, Bashan Y (2009a) Rock-degrading endophytic bacteria in cacti. Environ Exp
Bot 66:389–401
Puente ME, Li CY, Bashan Y (2009b) Endophytic bacteria in cacti seeds can improve the
development of cactus seedlings. Environ Exp Bot 66:402–408
Rai R, Dash PK, Prasanna BM, Singh A (2007) Endophytic bacterial flora in the stem tissue of
a tropical maize (Zea mays L.) genotype: isolation, identification and enumeration. World J
Microbiol Biotechnol 23(6):853–858
Rajamanickam V, Rajasekaran A, Anandarajagopal K, Sridharan D, Selvakumar K, Rathinaraj BS
(2010) Anti-diarrheal activity of Dodonaea viscosa root extracts. Int J Pharm Biol 1(4):182–185
Rashid S, Charles TC, Glick BR (2012) Isolation and characterization of new plant growth promoting
bacterial endophytes. Appl Soil Ecol 61:217–224
Reinhold-Hurek B, Hurek T (2011) Living inside plants: bacterial endophytes. Curr Opin Plant Biol
14:435–443
Reissinger A, Vilich V, Sikora RA (2001) Detection of fungi in planta: effectiveness of surface
sterilization methods. Mycol Res 105(5):563–566
Reiter B, Sessitsch A (2006) Bacterial endophytes of the wildflower Crocus albiflorus analyzed by
characterization of isolates and by a cultivation-independent approach. Can J Microbiol 52:140–
149
Rheinhold-Hurek B, Maes T, Gemmer S, Van Montagu M, Hurek T (2006) An endoglucanase
is involved in infection of rice roots by the not-cellulose-metabolizing endophyte Azoarcus sp.
strain BH72. Mol Plant Microbe Interact 19:181–188
Ribeiro CM, Cardoso EJBN (2012) Isolation, selection and characterization of root-associated
growth promoting bacteria in Brazil pine (Araucaria angustifolia). Microbiol Res 167:69–78
Ribeiro VP, Marriel IE, Sousa SM, Lana UG, Mattos BB, Oliveira CA, Gomes EA (2018) Endophytic
Bacillus strains enhance pearl millet growth and nutrient uptake under low-P. Braz J Microbiol
49:40–46
Richardson AE (2001) Prospects for using soil microorganisms to improve the acquisition of
phosphorus by plants. Aust J Plant Physiol 28:897–906
Richardson AE, Barea JM, McNeill AM (2009) Acquisition of phosphorus and nitrogen in the
rhizosphere and plant growth promotion by microorganisms. Plant Soil 321:305–339
Rinu K, Malviya MK, Sati P, Tiwari SC, Pandey A (2013) Response of cold tolerant Aspergillus
spp. to solubilization of Fe and Al phosphate in presence of different nutritional sources. ISRN
Soil Sci. 10. http://dx.doi.org/10.1155/ 2013/598541
Rinu K, Pandey A (2010) Temperature-dependent phosphate solubilization by cold- and pH-tolerant
species of Aspergillus isolated from Himalayan soil. Mycoscience 51:263–271
Rodriguez H, Fraga R, Gonzalez T, Bashan Y (2006) Genetics of phosphate solubilization and its
potential applications for improving plant growth promoting bacteria. Plant Soil 287:15–21
Rodrıguez H, Gonzalez T, Selman G (2001) Expression of a mineral phosphate solubilizing gene
from Erwinia herbicola in two rhizobacterial strains. J Biotechnol 84(2):155–161
Rodriguez RJ, White JF, Arnold AE, Redman RS (2009) Fungal endophytes: diversity and functional
roles. New Phytol 182:314–330
