Ramey BE, Matthysse AG, Fuqua C (2004) The FNR–type transcriptional regulator SinR controls
maturation of Agrobacterium tumefaciens biofilms. Mol Microbiol 52:1495–1511
Ran LX, Van Loon LC, Bakker PAHM (2005) No role for bacterially produced salicylic acid in
rhizobacterial induction of systemic resistance in Arabidopsis. Phytopathology 95:1349–1355
Ranjani P, Gowthami Y, Gnanamanickam SS, Palani P (2018) Bacteriophages: a new weapon for
the control of bacterial blight disease in Rice caused by Xanthomonas oryzae. MBL 46:346–359
Reinhold-Hurek B, Hurek T (2011) Living inside plants: bacterial endophytes. Curr Opin Plant Biol
14:435–443
Rosendahl S (1985) Interactions between the vesicular–arbuscular mycorrhizal fungus Glomus
fasciculatum and Aphanomyces eutieches root rot of peas. Phytopathol Z 114:31–41
Rossi M, Goggin FL, Milligan SB, Kaloshian I, Ullman DE, Williamson VM (1998) The nematode
resistance gene Mi of tomato confers resistance against the potato aphid. Proc Natl Acad Sci U S
A 95:9750–9754
Ryals JA, Neuenschwander UH, Willits MG, Molina A, Steiner HY, Hunt MD (1996) Systemic
acquired resistance. Plant Cell 8:1809–1819
Ryu CM, Hu CH, Reddy MS, Kloepper JW (2003) Different signaling pathways of induced
resistance by rhizobacteria in Arabidopsis thaliana against two pathovars of Pseudomonas
syringae. New Phytol 160:413–420
Ryu CM, Farag MA, Hu CH, Reddy MS, Kloepper JW, Paré PW (2004) Bacterial volatiles induce
systemic resistance in Arabidopsis. Plant Physiol 134:1017–1026
Salas-Marina MA, Silva-Flores MA, Uresti-Rivera EE, Castro-Longoria E, Herrera-Estrella A,
Casas-Flores S (2011) Colonization of Arabidopsis roots by Trichoderma atroviride promotes
growth and enhances systemic disease resistance through jasmonic acid/ethylene and salicylic
acid pathways. Eur J Plant Pathol 131:15–26
Santamaria ME, Martínez M, Cambra I, Grbic V, Diaz I (2013) Understanding plant defence
responses against herbivore attacks: an essential first step towards the development of sustainable resistance against pests. Transgenic Res 22:697–708
Sarwar A, Latif Z, Zhang S, Hao J, Bechthold A (2019) A potential biocontrol agent Streptomyces
violaceusniger AC12AB for managing potato common scab. Front Microbiol 10:202. https://
doi.org/10.3389/fmicb.2019.00202
Sathiyabama M, Balasubramanian R (2018) Protection of groundnut plants from rust disease by
application of glucan isolated from a biocontrol agent Acremonium obclavatum. Int J Biol
Macromol 116:316–319
Savci S (2012) An agricultural pollutant: chemical fertilizer. Int J Environ Sci Technol 3:73–80
Schumann GL, D’Arcy CJ (2006) Essential plant pathology. APS Press, St. Paul
Segaran G, Sathiavelu M (2019) Fungal endophytes: a potent biocontrol agent and a bioactive
metabolites reservoir. Biocatal Agric Biotechnol 21:101284
Segarra G, Van der Ent S, Trillas I, Pieterse CMJ (2009) MYB72, a node of convergence in induced
systemic resistance triggered by a fungal and a bacterial beneficial microbe. Plant Biol 11:90–96
Sharma MP, Gaur A, Tanu U, Sharma OP (2004) Prospects of arbuscular mycorrhiza in sustainable
management of root and soil borne diseases of vegetable crops. In: Mukerji KG (ed) Disease
management of fruits and vegetables, fruit and vegetable diseases. Kluwer Academic
Publishers, Dordrecht, pp 501–539
Sharma A, Wray V, Johri BN (2007) Molecular characterization of plant growth promoting
rhizobacteria that enhance peroxidase and phenylalanine ammonia lyase activities in Chile
(Capsicum annuum L.) and tomato (Lycopersicon esculentum Mill.). Arch Microbiol
188:483–494
Sharma M, Guleria S, Singh K, Chauhan A, Kulshrestha S (2018) Mycovirus associated
hypovirulence, a potential method for biological control of Fusarium species. Virus 29:134–140
Shoresh M, Gal-On A, Leibman D, Chet I (2006) Characterization of a mitogen–activated protein
kinase gene from cucumber required for Trichoderma–conferred plant resistance. Plant Physiol
142:1169–1179
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