8 Biotechnology and Bioinformatics of Endophytes …
203
Ramette A, Frapolli M, Défago G, Moënne-Loccoz Y (2003) Phylogeny of HCN synthase-encoding
hcnBC genes in biocontrol fluorescent pseudomonads and its relationship with host plant species
and HCN synthesis ability. MPMI 16:525–535. https://doi.org/10.1094/MPMI.2003.16.6.525
Rasmussen S, Lane GA, Mace W, Parsons AJ, Fraser K, Xue H (2011) The use of genomics
and metabolomics methods to quantify fungal endosymbionts and alkaloids in grasses. In: Plant
metabolomics. Springer, Cham, pp 213–226
Rekik I, Chaabane Z, Missaoui A, Chenari Bouket A, Luptakova L, Elleuch E, Belbahri L (2017)
Effects of untreated and treated wastewater at the morphological, physiological and biochemical
levels on seed germination and development of sorghum (Sorghum bicolor L.), alfalfa (Medicago
sativa L.) and fescue (Festuca arundinacea Schreb.). J Hazard Mat 326:165–176. https://doi.org/
10.1016/j.jhazmat.2016.12.033
Ritika K, Mohinder KG (2016) Cytokinins production by fluorescent Pseudomonas isolated from
rhizospheric soils of Malus and Pyrus. Afr J Microbiol Res 10(32):1274–1279. https://doi.org/
10.5897/AJMR2016.8211
Sah SK, Reddy KR, Li J (2016) Abscisic acid and abiotic stress tolerance in crop plants. Front Plant
Sci 7:571. https://doi.org/10.3389/fpls.2016.00571
Sakakibara H, Takei K, Hirose N (2006) Interactions between nitrogen and cytokinin in the regulation of metabolism and development. Trends Plant Sci 11:440–448. https://doi.org/10.1016/j.tpl
ants.2006.07.004
Santi C, Bogusz D, Franche C (2013) Biological nitrogen fixation in non-legume plants. Ann Bot
111:743–767. https://doi.org/10.1093/aob/mct048
Santoyo G, Moreno-Hagelsieb G, del Carmen Orozco-Mosqueda M, Glick BR (2016) Plant
growth-promoting bacterial endophytes. Microbiol Res 183:92–99. https://doi.org/10.1016/j.mic
res.2015.11.008
Sarethy IP, Srivastava N, Pan S (2019) Endophytes: the unmapped repository for natural products.
In: Natural bio-active compounds. Springer, Singapore, pp 41–70
Sathish L, Pavithra N, Ananda K (2012) Antimicrobial activity and biodegrading enzymes of
endophytic fungi from eucalyptus. Int J Pharmaceut Sci Res 3:2574
Schulz B (2006) What are endophytes? In: Schulz BJE, Boyle CIC, Sieber TN (eds) Microbial root
endophytes. Springer-Verlag, Berlin, pp 1–13
Schulz B, Boyle C (2006) What are endophytes? In: Microbial root endophytes. Springer, New
York, pp 1–13
Selim KA, Nagia MM, Ghwas DEE (2017) Endophytic fungi are multifunctional biosynthesizers:
ecological role and chemical diversity. In: Endophytic fungi: diversity, characterization and
biocontrol. Nova Publishers, New York, The United States, 39–91 pp
Sengupta S, Ganguli S, Singh PK (2017) Metagenome analysis of the root endophytic microbial
community of Indian rice (O. sativa L.). Genom Data 12:41–43
Sharma M, Kansal R, Singh D (2018) Endophytic microorganisms: their role in plant growth
and crop improvement. Crop improvement through microbial biotechnology. Elsevier, India, pp
391–413
Sharma S, Kaur ASM (2018) Extraction and evaluation of gibberellic acid from Pseudomonas sp.:
plant growth promoting rhizobacteria. J Pharmacogn Phytochem 7:2790–2795
Sheoran N, Valiya Nadakkakath A, Munjal V, Kundu A, Subaharan K, Venugopal V, Rajamma
S, Eapen SJ, Kumar A (2015) Genetic analysis of plant endophytic Pseudomonas putida BP25
and chemo-profiling of its antimicrobial volatile organic compounds. Microbiol Res 173:66–78.
https://doi.org/10.1016/j.micres.2015.02.001
Shin M-N, Shim J, You Y, Myung H, Bang K-S, Cho M, Kamala-Kannan S, Oh B-T (2012)
Characterization of lead resistant endophytic Bacillus sp. MN3-4 and its potential for promoting
lead accumulation in metal hyperaccumulator Alnus firma. J Hazard Mat 199:314–320
Shukla ST, Habbu PV, Kulkarni VH, Jagadish KS, Pandey AR, Sutariya VN (2014) Endophytic
microbes: a novel source for biologically/pharmacologically active secondary metabolites. Asian
J Pharmacol Toxicol 2:1–6
203
Ramette A, Frapolli M, Défago G, Moënne-Loccoz Y (2003) Phylogeny of HCN synthase-encoding
hcnBC genes in biocontrol fluorescent pseudomonads and its relationship with host plant species
and HCN synthesis ability. MPMI 16:525–535. https://doi.org/10.1094/MPMI.2003.16.6.525
Rasmussen S, Lane GA, Mace W, Parsons AJ, Fraser K, Xue H (2011) The use of genomics
and metabolomics methods to quantify fungal endosymbionts and alkaloids in grasses. In: Plant
metabolomics. Springer, Cham, pp 213–226
Rekik I, Chaabane Z, Missaoui A, Chenari Bouket A, Luptakova L, Elleuch E, Belbahri L (2017)
Effects of untreated and treated wastewater at the morphological, physiological and biochemical
levels on seed germination and development of sorghum (Sorghum bicolor L.), alfalfa (Medicago
sativa L.) and fescue (Festuca arundinacea Schreb.). J Hazard Mat 326:165–176. https://doi.org/
10.1016/j.jhazmat.2016.12.033
Ritika K, Mohinder KG (2016) Cytokinins production by fluorescent Pseudomonas isolated from
rhizospheric soils of Malus and Pyrus. Afr J Microbiol Res 10(32):1274–1279. https://doi.org/
10.5897/AJMR2016.8211
Sah SK, Reddy KR, Li J (2016) Abscisic acid and abiotic stress tolerance in crop plants. Front Plant
Sci 7:571. https://doi.org/10.3389/fpls.2016.00571
Sakakibara H, Takei K, Hirose N (2006) Interactions between nitrogen and cytokinin in the regulation of metabolism and development. Trends Plant Sci 11:440–448. https://doi.org/10.1016/j.tpl
ants.2006.07.004
Santi C, Bogusz D, Franche C (2013) Biological nitrogen fixation in non-legume plants. Ann Bot
111:743–767. https://doi.org/10.1093/aob/mct048
Santoyo G, Moreno-Hagelsieb G, del Carmen Orozco-Mosqueda M, Glick BR (2016) Plant
growth-promoting bacterial endophytes. Microbiol Res 183:92–99. https://doi.org/10.1016/j.mic
res.2015.11.008
Sarethy IP, Srivastava N, Pan S (2019) Endophytes: the unmapped repository for natural products.
In: Natural bio-active compounds. Springer, Singapore, pp 41–70
Sathish L, Pavithra N, Ananda K (2012) Antimicrobial activity and biodegrading enzymes of
endophytic fungi from eucalyptus. Int J Pharmaceut Sci Res 3:2574
Schulz B (2006) What are endophytes? In: Schulz BJE, Boyle CIC, Sieber TN (eds) Microbial root
endophytes. Springer-Verlag, Berlin, pp 1–13
Schulz B, Boyle C (2006) What are endophytes? In: Microbial root endophytes. Springer, New
York, pp 1–13
Selim KA, Nagia MM, Ghwas DEE (2017) Endophytic fungi are multifunctional biosynthesizers:
ecological role and chemical diversity. In: Endophytic fungi: diversity, characterization and
biocontrol. Nova Publishers, New York, The United States, 39–91 pp
Sengupta S, Ganguli S, Singh PK (2017) Metagenome analysis of the root endophytic microbial
community of Indian rice (O. sativa L.). Genom Data 12:41–43
Sharma M, Kansal R, Singh D (2018) Endophytic microorganisms: their role in plant growth
and crop improvement. Crop improvement through microbial biotechnology. Elsevier, India, pp
391–413
Sharma S, Kaur ASM (2018) Extraction and evaluation of gibberellic acid from Pseudomonas sp.:
plant growth promoting rhizobacteria. J Pharmacogn Phytochem 7:2790–2795
Sheoran N, Valiya Nadakkakath A, Munjal V, Kundu A, Subaharan K, Venugopal V, Rajamma
S, Eapen SJ, Kumar A (2015) Genetic analysis of plant endophytic Pseudomonas putida BP25
and chemo-profiling of its antimicrobial volatile organic compounds. Microbiol Res 173:66–78.
https://doi.org/10.1016/j.micres.2015.02.001
Shin M-N, Shim J, You Y, Myung H, Bang K-S, Cho M, Kamala-Kannan S, Oh B-T (2012)
Characterization of lead resistant endophytic Bacillus sp. MN3-4 and its potential for promoting
lead accumulation in metal hyperaccumulator Alnus firma. J Hazard Mat 199:314–320
Shukla ST, Habbu PV, Kulkarni VH, Jagadish KS, Pandey AR, Sutariya VN (2014) Endophytic
microbes: a novel source for biologically/pharmacologically active secondary metabolites. Asian
J Pharmacol Toxicol 2:1–6
