3 Microbial Endophytes: Sustainable Approach …
71
Rojas-Solis D, Zetter-Salmon E, Contreras-Perez M, del Carmen R-GM, Macías-Rodríguez L,
Santoyo G (2018) Pseudomonas stutzeri E25 and Stenotrophomonas maltophilia CR71 endophytes produce antifungal volatile organic compounds and exhibit additive plant growthpromoting effects. Biocatal Agric Biotechnol 13:46–52
Romero A, Carrion G, Rico-Gray V (2001) Fungal latent pathogens and endophytes from leaves of
Parthenium hysterophorus (Asteraceae). Fungal Divers 7:81–87
Roos IMM, Hattingh MJ (1983) Scanning electron microscopy of Pseudomonas syringae pv.
morspmnorum on sweet cherry leaves. Phytopathol Z 108:18–25
Rosenblueth M, Martínez-Romero E (2006) Bacterial endophytes and their interactions with hosts.
Mol Plant-Microbe Interact 19:827–837
Ryan RP, Germaine K, Franks A, Ryan DJ, Dowling DN (2008) Bacterial endophytes: recent
developments and applications. FEMS Microbiol Lett 278:1–9
Sanderson MA, Adler PR, Boateng AA, Casler MD, Sarath G (2006) Switchgrass as a biofuels
feedstock in the USA. Can J Plant Sci 86:1315–1325
Santos-Beneit F (2015) The Pho regulon: a huge regulatory network in bacteria. Front Microbiol
6:402. https://doi.org/10.3389/fmicb.2015.00402
Santoyo M, Moreno-Hagelsieb G, del Carmen O-MM, Glick BR (2016) Plant growth-promoting
bacterial endophytes. Microbiol Res 183:92–99
Sashidhar B, Podile AR (2009) Transgenic expression of glucose dehydrogenase in Azotobacter
vinelandii enhances mineral phosphate solubilization and growth of sorghum seedlings. Microbiol
Biotechnol 2:521–529
Savary S, Ficke A, Aubertot JN, Hollier C. (2012) Crop losses due to diseases and their implications
for global food production losses and food security. Springer
Scherling C, Ulrich K, Ewald D, Weckwerth W (2009) A metabolic signature of the beneficial
interaction of the endophyte Paenibacillus sp. isolate and in vitro–grown poplar plants revealed
by metabolomics. Mol Plant-Microbe Interact 22:1032–1037
Schmidt CS, Mrnka L, Frantík T, Lovecka P, Vosatka M (2018) Plant growth promotion of
Miscanthus giganteus by endophytic bacteria and fungi on non-polluted and polluted soils. World
J Microbiol Biotechnol 34:48. https://doi.org/10.1007/s11274-018-2426-7
Schulz B, Wanke U, Draeger S, Aust HJ (1993) Endophytes from herbaceous plants and shrubs:
effectiveness of surface sterilization methods. Mycol Res 97:1447–1450
Scott RI, Chard JM, Hocart MJ, Lennard JH, Graham DC (1996) Penetration of potato tuber lenticels
by bacteria in relation to biological control of black leg disease. Potato Res 39:333–344
Sehrawat A, Sindhu SS (2019) Exploitation of rhizosphere microorganisms to reduce pesticide
application for improving food safety. Defence Life Sci J 4(4):220–225
Senthilkumar M, Anandham R, Madhaiyan M, Venkateswaran V, Sa T (2011) Endophytic
895 bacteria: perspectives and applications in agricultural crop production. In: Bacteria in
Agrobiology: Crop 896 Ecosystems: Springer, pp 61–96
Sessitsch A, Coenye T, Sturz AV, Vandamme P, Barka EA, Salles JF, Van Elsas JD, Faure D (2005)
Burkholderia phytofirmans sp. nov., a novel plant associated bacterium with plant-beneficial
properties. Intern J Syst Evol Microbiol 55:1187–1192
Sessitsch A, Hardoim P, Döring J, Weilharter A, Krause A, Woyke T, Mitter B, Hauberg-Lotte L,
Friedrich F, Rahalkar M (2012) Functional characteristics of an endophyte community colonizing
rice roots as revealed by metagenomic analysis. Mol Plant-Microbe Interact 25:28–36
Sessitsch A, Reiter B, Berg G (2004) Endophytic bacterial communities of field-grown potato plants
and their plant-growth-promoting and antagonistic abilities. Can J Microbiol 50:239–249
Sessitsch A, Reiter B, Pfeifer U, Wilhelm E (2002) Cultivation-independent population analysis of
bacterial endophytes in three potato varieties based on eubacterial and Actinomycetes-specific
PCR of 16S rRNA genes. FEMS Microbiol Ecol 39:23–32
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
71
Rojas-Solis D, Zetter-Salmon E, Contreras-Perez M, del Carmen R-GM, Macías-Rodríguez L,
Santoyo G (2018) Pseudomonas stutzeri E25 and Stenotrophomonas maltophilia CR71 endophytes produce antifungal volatile organic compounds and exhibit additive plant growthpromoting effects. Biocatal Agric Biotechnol 13:46–52
Romero A, Carrion G, Rico-Gray V (2001) Fungal latent pathogens and endophytes from leaves of
Parthenium hysterophorus (Asteraceae). Fungal Divers 7:81–87
Roos IMM, Hattingh MJ (1983) Scanning electron microscopy of Pseudomonas syringae pv.
morspmnorum on sweet cherry leaves. Phytopathol Z 108:18–25
Rosenblueth M, Martínez-Romero E (2006) Bacterial endophytes and their interactions with hosts.
Mol Plant-Microbe Interact 19:827–837
Ryan RP, Germaine K, Franks A, Ryan DJ, Dowling DN (2008) Bacterial endophytes: recent
developments and applications. FEMS Microbiol Lett 278:1–9
Sanderson MA, Adler PR, Boateng AA, Casler MD, Sarath G (2006) Switchgrass as a biofuels
feedstock in the USA. Can J Plant Sci 86:1315–1325
Santos-Beneit F (2015) The Pho regulon: a huge regulatory network in bacteria. Front Microbiol
6:402. https://doi.org/10.3389/fmicb.2015.00402
Santoyo M, Moreno-Hagelsieb G, del Carmen O-MM, Glick BR (2016) Plant growth-promoting
bacterial endophytes. Microbiol Res 183:92–99
Sashidhar B, Podile AR (2009) Transgenic expression of glucose dehydrogenase in Azotobacter
vinelandii enhances mineral phosphate solubilization and growth of sorghum seedlings. Microbiol
Biotechnol 2:521–529
Savary S, Ficke A, Aubertot JN, Hollier C. (2012) Crop losses due to diseases and their implications
for global food production losses and food security. Springer
Scherling C, Ulrich K, Ewald D, Weckwerth W (2009) A metabolic signature of the beneficial
interaction of the endophyte Paenibacillus sp. isolate and in vitro–grown poplar plants revealed
by metabolomics. Mol Plant-Microbe Interact 22:1032–1037
Schmidt CS, Mrnka L, Frantík T, Lovecka P, Vosatka M (2018) Plant growth promotion of
Miscanthus giganteus by endophytic bacteria and fungi on non-polluted and polluted soils. World
J Microbiol Biotechnol 34:48. https://doi.org/10.1007/s11274-018-2426-7
Schulz B, Wanke U, Draeger S, Aust HJ (1993) Endophytes from herbaceous plants and shrubs:
effectiveness of surface sterilization methods. Mycol Res 97:1447–1450
Scott RI, Chard JM, Hocart MJ, Lennard JH, Graham DC (1996) Penetration of potato tuber lenticels
by bacteria in relation to biological control of black leg disease. Potato Res 39:333–344
Sehrawat A, Sindhu SS (2019) Exploitation of rhizosphere microorganisms to reduce pesticide
application for improving food safety. Defence Life Sci J 4(4):220–225
Senthilkumar M, Anandham R, Madhaiyan M, Venkateswaran V, Sa T (2011) Endophytic
895 bacteria: perspectives and applications in agricultural crop production. In: Bacteria in
Agrobiology: Crop 896 Ecosystems: Springer, pp 61–96
Sessitsch A, Coenye T, Sturz AV, Vandamme P, Barka EA, Salles JF, Van Elsas JD, Faure D (2005)
Burkholderia phytofirmans sp. nov., a novel plant associated bacterium with plant-beneficial
properties. Intern J Syst Evol Microbiol 55:1187–1192
Sessitsch A, Hardoim P, Döring J, Weilharter A, Krause A, Woyke T, Mitter B, Hauberg-Lotte L,
Friedrich F, Rahalkar M (2012) Functional characteristics of an endophyte community colonizing
rice roots as revealed by metagenomic analysis. Mol Plant-Microbe Interact 25:28–36
Sessitsch A, Reiter B, Berg G (2004) Endophytic bacterial communities of field-grown potato plants
and their plant-growth-promoting and antagonistic abilities. Can J Microbiol 50:239–249
Sessitsch A, Reiter B, Pfeifer U, Wilhelm E (2002) Cultivation-independent population analysis of
bacterial endophytes in three potato varieties based on eubacterial and Actinomycetes-specific
PCR of 16S rRNA genes. FEMS Microbiol Ecol 39:23–32
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
