288
B. N. Aloo et al.
Ribeiro VP, Marriel IE, Sousa SM, Lana UGP, 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. https://doi.org/10.1016/j.bjm.2018.06.005
Rosenblueth M, Martinez-Romero E (2006) Bacterial endophytes and their interactions with hosts.
Mol Plant Microbe Interact 19:827–837
Ryan PR, Germaine KJ, Franks A, Ryan DJ, Dowling DN (2008) Bacterial endophytes: recent
developments and applications. FEMS Microbiol Lett 278:1–9
Saha M, Sarkar S, Sarkar B, Sharma BK, Bhattacharjee S, Tribedi P (2016) Microbial siderophores
and their potential applications: a review. Environ Sci Pollut Res 23:3984–3999
Sahu PK, Shivaprakash MK, Subbarayappa CT, Brahmaprakash GP (2018) Effect of bacterial
Endophytes Lysinibacillus sp. on plant growth and fruit yield of tomato (Solanum lycopersicum).
Int J Curr Microbiol Appl Sci 7:3399–3408
Saini R, Dudeja SS, Giri R, Kumar V (2015) Isolation, characterization, and evaluation of bacterial
root and nodule endophytes from chickpea cultivated in Northern India. J Basic Microbiol 55:74–
81
Sandhya V, Shrivastava M, Ali SZ, Prasad VSK (2017) Endophytes from maize with plant growth
promotion and biocontrol activity under drought stress. Russ Agric Sci 43:22–34
Santoyo G, Moreno-Hagelsieb G, Orozco-Mosqueda MC, Glick BR (2016) Plant growth-promoting
bacterial endophytes. Microbiol Res 183:92–99. https://doi.org/10.1016/j.micres.2015.11.008
Saravanan VS, Madhaiyan M, Thangaraju M (2007) Solubilization of zinc compounds by the
diazotrophic, plant growth promoting bacterium Gluconacetobacter diazotrophicus. Chemosphere 66:1794–1798. https://doi.org/10.1016/j.chemosphere.2006.07.067
Senthilkumar M, Anandham R, Madhaiyan M, Venkateswaran V, Sa T (2011) Endophytic bacteria:
perspectives and applications in agricultural crop production. In: Maheshwari DK (ed) Bacteria
in agribiology: crop ecosystems. Springer, Berlin, Heidelberg, pp 61–96
Sessitsch A, Hardoim PR, Döring J, Weilhater A, Krause A, Woyke T, Mitter B, Hauberg-Lotte
L, Friedrich F, Rahalkar M, Sarkar A, Bodrossy L, Van Overbeek LS, Brar D, Van Elsas JD,
Reinhold-Hurek B (2012) Functional characteristics of an endophyte community colonizing rice
roots as revealed by metagenomic analysis. Mol Plant Microbe Interact 25:28–36
Sev TM, Khai AA, Aung A, Yu SS (2016) Evaluation of endophytic bacteria from some rice varieties
for plant growth promoting activities. J Sci Innov Res 5:144–148
Shabanamol S, Divya K, George TK, Rishad KS, Sreekumar TS, Jisha MS (2018) Characterization
and in planta nitrogen fixation of plant growth promoting endophytic diazotrophic Lysinibacillus
sphaericus isolated from rice (Oryza sativa). Physiol Mol Plant Pathol 102:46–54. https://doi.
org/10.1016/j.pmpp.2017.11.003
Shaikh S, Saraf M (2017) Zinc biofortification: strategy to conquer zinc malnutrition through zinc
solubilizing PGPR’s. Biomed J Sci Tech Res 1:224–226. https://doi.org/10.26717/BJSTR.2017.
01.000158
Shakeela S, Padder SA, Bhat ZA (2017) Isolation of phosphate solubilising rhizobacteria and
endorhizobacteria from medicinal plant Picrorhiza kurroa and their optimization for tricalcium
phosphate solubilization. The Pharma Inn 6:160–170
Sharifi P, Paymozd M (2016) Effect of zinc, iron and manganese on yield and yield components of
green beans. Curr Opin Agric 5:15–18
Sharma SB, Sayyed RZ, Trivedi MH, Gobi TA (2013) Phosphate solubilizing microbes: sustainable
approach for managing phosphorus deficiency in agricultural soils. SpringerPlus 2:587. https://
doi.org/10.1186/2193-1801-2-587
Sharma P, Kumawat KC, Kaur N (2014) Assessment of zinc solubilization by endophytic bacteria
in legume rhizospheres. Microbiology 4:439–441
Shi Y, Yang H, Zhang T, Sun J, Lou K (2014) Illumina-based analysis of endophytic bacterial
diversity and space-time dynamics in sugar beet on the north slope of Tianshan mountain. Appl
Microbiol Biotechnol 98:6375–6385
B. N. Aloo et al.
Ribeiro VP, Marriel IE, Sousa SM, Lana UGP, 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. https://doi.org/10.1016/j.bjm.2018.06.005
Rosenblueth M, Martinez-Romero E (2006) Bacterial endophytes and their interactions with hosts.
Mol Plant Microbe Interact 19:827–837
Ryan PR, Germaine KJ, Franks A, Ryan DJ, Dowling DN (2008) Bacterial endophytes: recent
developments and applications. FEMS Microbiol Lett 278:1–9
Saha M, Sarkar S, Sarkar B, Sharma BK, Bhattacharjee S, Tribedi P (2016) Microbial siderophores
and their potential applications: a review. Environ Sci Pollut Res 23:3984–3999
Sahu PK, Shivaprakash MK, Subbarayappa CT, Brahmaprakash GP (2018) Effect of bacterial
Endophytes Lysinibacillus sp. on plant growth and fruit yield of tomato (Solanum lycopersicum).
Int J Curr Microbiol Appl Sci 7:3399–3408
Saini R, Dudeja SS, Giri R, Kumar V (2015) Isolation, characterization, and evaluation of bacterial
root and nodule endophytes from chickpea cultivated in Northern India. J Basic Microbiol 55:74–
81
Sandhya V, Shrivastava M, Ali SZ, Prasad VSK (2017) Endophytes from maize with plant growth
promotion and biocontrol activity under drought stress. Russ Agric Sci 43:22–34
Santoyo G, Moreno-Hagelsieb G, Orozco-Mosqueda MC, Glick BR (2016) Plant growth-promoting
bacterial endophytes. Microbiol Res 183:92–99. https://doi.org/10.1016/j.micres.2015.11.008
Saravanan VS, Madhaiyan M, Thangaraju M (2007) Solubilization of zinc compounds by the
diazotrophic, plant growth promoting bacterium Gluconacetobacter diazotrophicus. Chemosphere 66:1794–1798. https://doi.org/10.1016/j.chemosphere.2006.07.067
Senthilkumar M, Anandham R, Madhaiyan M, Venkateswaran V, Sa T (2011) Endophytic bacteria:
perspectives and applications in agricultural crop production. In: Maheshwari DK (ed) Bacteria
in agribiology: crop ecosystems. Springer, Berlin, Heidelberg, pp 61–96
Sessitsch A, Hardoim PR, Döring J, Weilhater A, Krause A, Woyke T, Mitter B, Hauberg-Lotte
L, Friedrich F, Rahalkar M, Sarkar A, Bodrossy L, Van Overbeek LS, Brar D, Van Elsas JD,
Reinhold-Hurek B (2012) Functional characteristics of an endophyte community colonizing rice
roots as revealed by metagenomic analysis. Mol Plant Microbe Interact 25:28–36
Sev TM, Khai AA, Aung A, Yu SS (2016) Evaluation of endophytic bacteria from some rice varieties
for plant growth promoting activities. J Sci Innov Res 5:144–148
Shabanamol S, Divya K, George TK, Rishad KS, Sreekumar TS, Jisha MS (2018) Characterization
and in planta nitrogen fixation of plant growth promoting endophytic diazotrophic Lysinibacillus
sphaericus isolated from rice (Oryza sativa). Physiol Mol Plant Pathol 102:46–54. https://doi.
org/10.1016/j.pmpp.2017.11.003
Shaikh S, Saraf M (2017) Zinc biofortification: strategy to conquer zinc malnutrition through zinc
solubilizing PGPR’s. Biomed J Sci Tech Res 1:224–226. https://doi.org/10.26717/BJSTR.2017.
01.000158
Shakeela S, Padder SA, Bhat ZA (2017) Isolation of phosphate solubilising rhizobacteria and
endorhizobacteria from medicinal plant Picrorhiza kurroa and their optimization for tricalcium
phosphate solubilization. The Pharma Inn 6:160–170
Sharifi P, Paymozd M (2016) Effect of zinc, iron and manganese on yield and yield components of
green beans. Curr Opin Agric 5:15–18
Sharma SB, Sayyed RZ, Trivedi MH, Gobi TA (2013) Phosphate solubilizing microbes: sustainable
approach for managing phosphorus deficiency in agricultural soils. SpringerPlus 2:587. https://
doi.org/10.1186/2193-1801-2-587
Sharma P, Kumawat KC, Kaur N (2014) Assessment of zinc solubilization by endophytic bacteria
in legume rhizospheres. Microbiology 4:439–441
Shi Y, Yang H, Zhang T, Sun J, Lou K (2014) Illumina-based analysis of endophytic bacterial
diversity and space-time dynamics in sugar beet on the north slope of Tianshan mountain. Appl
Microbiol Biotechnol 98:6375–6385
