Omara RI, El-Kot GA, Fadel FM, Abdelaal KA, Saleh EM (2019) Efficacy of certain bioagents on
patho–physiological characters of wheat plants under wheat leaf rust stress. Physiol Mol Plant P
106:102–108
Onaga G, Wydra K (2016) Advances in plant tolerance to biotic stresses. INTECH Plant
Genomics:229–272. https://doi.org/10.5772/64351
Ongena M, Jacques P (2008) Bacillus lipopeptides: versatile weapons for plant disease biocontrol.
Trends Microbiol 16:115–125
Ongena M, Duby F, Rossignol F, Fauconnier ML, Dommes J, Thonart P (2004) Stimulation of the
lipooxygenase pathway is associated with systemic resistance induced in bean by a nonpathogenic Pseudomonas strain. Mol Plant-Microbe Interact 17:1009–1018
Orlova EV (2012) Bacteriophages and their structural organisation. In: Bacteriophages.
IntechOpen, Rijeka, pp 3–30
Oura H, Tashiro Y, Toyofuku M, Ueda K, Kiyokawa T, Ito S, Takahashi Y, Lee S, Nojiri H,
Nakajima-Kambe T, Uchiyama H, Futamata H, Nomura N (2015) Inhibition of Pseudomonas
aeruginosa swarming motility through 1–naphthol and other bicyclic compounds bearing
hydroxyl groups. Appl Environ Microbiol 81:2808–2818
Pajerowska-Mukhtar KM, Emerine DK, Mukhtar MS (2013) Tell me more: roles of NPRs in plant
immunity. Trends Plant Sci 18:402–411
Palmer CM, Hindt MN, Schmidt H, Clemens S, Guerinot ML (2013) MYB10 and MYB72 are
required for growth under iron–limiting conditions. PLoS Genet 9:e1003953
Park J, Lee GM, Kim D, Park DH, Oh CS (2018) Characterization of the lytic bacteriophage
phiEaP–8 effective against both Erwinia amylovora and Erwinia pyrifoliae causing severe
diseases in apple and pear. Plant Pathol J 34:445–450
Pathak A, Sharma A, Johri BN (2004) Pseudomonas strain GRP3 induces systemic resistance to
sheath blight in rice. Int Rice Res Notes 29:35–36
Pel MJC, Pieterse CMJ (2013) Microbial recognition and evasion of host immunity. J Exp Bot
64:1237–1248
Peng Y, Van Wersch R, Zhang Y (2018) Convergent and divergent signaling in PAMP–triggered
immunity and effector–triggered immunity. MPMI 31:403–409
Pichersky E, Gershenzon J (2002) The formation and function of plant volatiles: perfumes for
pollinator attraction and defense. Curr Opin Plant Biol 5:237–243
Pieterse CMJ, Van Wees SC, Hoffland E, Van Pelt JA, Van Loon LC (1996) Systemic resistance in
Arabidopsis induced by biocontrol bacteria is independent of salicylic acid accumulation and
pathogenesis related gene expression. Plant Cell 8:1225–1237
Pieterse CMJ, Van Wees SC, Van Pelt JA, Knoester M, Laan R, Gerrits H, Weisbeek PJ, van Loon
LC (1998) A novel signaling pathway controlling induced systemic resistance in Arabidopsis.
Plant Cell 10:1571–1580
Pieterse CMJ, Van der Does D, Zamioudis C, Leon-Reyes A, Van Wees SC (2012) Hormonal
modulation of plant immunity. Annu Rev Cell Dev Biol 28:489–521
Pieterse CMJ, Zamioudis C, Berendsen RL, Weller DM, Van Wees SC, Bakker PA (2014) Induced
systemic resistance by beneficial microbes. Annu Rev Phytopathol 52:347–375
Pozo MJ, Van Der Ent S, Van Loon LC, Pieterse CMJ (2008) Transcription factor MYC2 is
involved in priming for enhanced defense during rhizobacteria–induced systemic resistance in
Arabidopsis thaliana. New Phytol 180:511–523
Press CM, Wilson M, Tuzun S, Kloepper JW (1997) Salicylic acid produced by Serratia
marcescens 91–166 is not the primary determinant of induced systemic resistance in cucumber
or tobacco. Mol Plant-Microbe Interact 10:761–768
Raj TS, Muthukumar A, Renganathan P, Kumar RSR, Ann H (2019) Biological control of sheath
blight of rice caused by Rhizoctonia solani Kuhn using marine associated Bacillus subtilis. Int
Arch Appl Sci Technol 10:148–153
Ramegowda V, Senthil-Kumar M (2015) The interactive effects of simultaneous biotic and abiotic
stresses on plants: mechanistic understanding from drought and pathogen combination. J Plant
Physiol 176:47–54
330
L. Thomas and I. Singh
patho–physiological characters of wheat plants under wheat leaf rust stress. Physiol Mol Plant P
106:102–108
Onaga G, Wydra K (2016) Advances in plant tolerance to biotic stresses. INTECH Plant
Genomics:229–272. https://doi.org/10.5772/64351
Ongena M, Jacques P (2008) Bacillus lipopeptides: versatile weapons for plant disease biocontrol.
Trends Microbiol 16:115–125
Ongena M, Duby F, Rossignol F, Fauconnier ML, Dommes J, Thonart P (2004) Stimulation of the
lipooxygenase pathway is associated with systemic resistance induced in bean by a nonpathogenic Pseudomonas strain. Mol Plant-Microbe Interact 17:1009–1018
Orlova EV (2012) Bacteriophages and their structural organisation. In: Bacteriophages.
IntechOpen, Rijeka, pp 3–30
Oura H, Tashiro Y, Toyofuku M, Ueda K, Kiyokawa T, Ito S, Takahashi Y, Lee S, Nojiri H,
Nakajima-Kambe T, Uchiyama H, Futamata H, Nomura N (2015) Inhibition of Pseudomonas
aeruginosa swarming motility through 1–naphthol and other bicyclic compounds bearing
hydroxyl groups. Appl Environ Microbiol 81:2808–2818
Pajerowska-Mukhtar KM, Emerine DK, Mukhtar MS (2013) Tell me more: roles of NPRs in plant
immunity. Trends Plant Sci 18:402–411
Palmer CM, Hindt MN, Schmidt H, Clemens S, Guerinot ML (2013) MYB10 and MYB72 are
required for growth under iron–limiting conditions. PLoS Genet 9:e1003953
Park J, Lee GM, Kim D, Park DH, Oh CS (2018) Characterization of the lytic bacteriophage
phiEaP–8 effective against both Erwinia amylovora and Erwinia pyrifoliae causing severe
diseases in apple and pear. Plant Pathol J 34:445–450
Pathak A, Sharma A, Johri BN (2004) Pseudomonas strain GRP3 induces systemic resistance to
sheath blight in rice. Int Rice Res Notes 29:35–36
Pel MJC, Pieterse CMJ (2013) Microbial recognition and evasion of host immunity. J Exp Bot
64:1237–1248
Peng Y, Van Wersch R, Zhang Y (2018) Convergent and divergent signaling in PAMP–triggered
immunity and effector–triggered immunity. MPMI 31:403–409
Pichersky E, Gershenzon J (2002) The formation and function of plant volatiles: perfumes for
pollinator attraction and defense. Curr Opin Plant Biol 5:237–243
Pieterse CMJ, Van Wees SC, Hoffland E, Van Pelt JA, Van Loon LC (1996) Systemic resistance in
Arabidopsis induced by biocontrol bacteria is independent of salicylic acid accumulation and
pathogenesis related gene expression. Plant Cell 8:1225–1237
Pieterse CMJ, Van Wees SC, Van Pelt JA, Knoester M, Laan R, Gerrits H, Weisbeek PJ, van Loon
LC (1998) A novel signaling pathway controlling induced systemic resistance in Arabidopsis.
Plant Cell 10:1571–1580
Pieterse CMJ, Van der Does D, Zamioudis C, Leon-Reyes A, Van Wees SC (2012) Hormonal
modulation of plant immunity. Annu Rev Cell Dev Biol 28:489–521
Pieterse CMJ, Zamioudis C, Berendsen RL, Weller DM, Van Wees SC, Bakker PA (2014) Induced
systemic resistance by beneficial microbes. Annu Rev Phytopathol 52:347–375
Pozo MJ, Van Der Ent S, Van Loon LC, Pieterse CMJ (2008) Transcription factor MYC2 is
involved in priming for enhanced defense during rhizobacteria–induced systemic resistance in
Arabidopsis thaliana. New Phytol 180:511–523
Press CM, Wilson M, Tuzun S, Kloepper JW (1997) Salicylic acid produced by Serratia
marcescens 91–166 is not the primary determinant of induced systemic resistance in cucumber
or tobacco. Mol Plant-Microbe Interact 10:761–768
Raj TS, Muthukumar A, Renganathan P, Kumar RSR, Ann H (2019) Biological control of sheath
blight of rice caused by Rhizoctonia solani Kuhn using marine associated Bacillus subtilis. Int
Arch Appl Sci Technol 10:148–153
Ramegowda V, Senthil-Kumar M (2015) The interactive effects of simultaneous biotic and abiotic
stresses on plants: mechanistic understanding from drought and pathogen combination. J Plant
Physiol 176:47–54
330
L. Thomas and I. Singh
