El-Sharkawy HHA, Ibrahim SA, Rashad YM (2018b) Biocontrol of stem rust disease of wheat
using arbuscular mycorrhizal fungi and Trichoderma spp. Physiol Mol Plant Pathol 103:84–91
Erbs G, Newmann MA (2003) The role of lipopolysaccharides in induction of plant defense
responses. Mol Plant Pathol 4:421–425
Falardeau J, Wise C, Novitsky L, Avis TJ (2013) Ecological and mechanistic insights into the direct
and indirect antimicrobial properties of Bacillus subtilis lipopeptides on plant pathogens. J
Chem Ecol 39:869–878
Fan YT, Chung KR, Huang JW (2019) Fungichromin production by Streptomyces padanus PMS–
702 for controlling cucumber downy mildew. Plant Pathol J 35:341–350
Farace G, Fernandez O, Jacquens L, Coutte F, Krier F, Jacques P, Clément C, Barka EA,
Jacquard C, Dorey S (2015) Cyclic lipopeptides from Bacillus subtilis activate distinct patterns
of defence responses in grapevine. Mol Plant Pathol 16:177–187
Farag MA, Zhang H, Ryu CM (2013) Dynamic chemical communication between plants and
bacteria through airborne signals: induced resistance by bacterial volatiles. J Chem Ecol
39:1007–1018
Foyer CH, Verrall SR, Hancock RD (2015) Systematic analysis of phloem–feeding insect–induced
transcriptional reprogramming in Arabidopsis highlights common features and reveals distinct
responses to specialist and generalist insects. J Exp Bot 66:495–512
Fu ZQ, Yan S, Saleh A, Wang W, Ruble J, Oka N, Mohan R, Spoel SH, Tada Y, Zheng N, Dong X
(2012) NPR3 and NPR4 are receptors for the immune signal salicylic acid in plants. Nature
486:228–232
Fürstenberg-Hägg J, Zagrobelny M, Bak S (2013) Plant defense against insect herbivores. Int J Mol
Sci 14:10242–10297
Gaiero JR, McCall CA, Thompson KA, Day NJ, Best AS, Dunfield KE (2013) Inside the root
microbiome: bacterial root endophytes and plant growth promotion. Am J Bot 100:1738–1750
Gamalero E, Marzachì C, Galetto L, Veratti F, Massa N, Bona E, D’Agostino G (2017) An 1–
Aminocyclopropane–1–carboxylate (ACC) deaminase–expressing endophyte increases plant
resistance to flavescence dorée phytoplasma infection. Plant Biosyst 151:331–340
Geurts R, Lillo A, Bisseling T (2012) Exploiting an ancient signalling machinery to enjoy a nitrogen
fixing symbiosis. Curr Opin Plant Biol 15:438–443
Gómez-Gómez L (2004) Plant perception systems for pathogen recognition and defence. Mol
Immunol 41:1055–1062
Gómez-Lama Cabanás C, Legarda G, Ruano-Rosa D, Pizarro-Tobías P, Valverde-Corredor A,
Niqui JL, Mercado-Blanco J (2018) Indigenous Pseudomonas spp. strains from the olive (Olea
europaea L.) rhizosphere as effective biocontrol agents against Verticillium dahliae: from the
host roots to the bacterial genomes. Front Microbiol 9:277. https://doi.org/10.3389/fmicb.2018.
00277
Gouhier-Darimont C, Schmiesing A, Bonnet C, Lassueur S, Reymond P (2013) Signalling of
Arabidopsis thaliana response to Pieris brassicae eggs shares similarities with PAMP triggered
immunity. J Exp Bot 64:665–674
Green TR, Ryan CA (1972) Wound–induced proteinase inhibitor in plant leaves: a possible defense
mechanism against insects. Science 175:776–777
Griebel T, Maekawa T, Parker JE (2014) NOD–like receptor cooperativity in effector–triggered
immunity. Trends Immunol 35:562–570
Heil M, Ibarra-Laclette E, Adame-Alvarez RM, Martinez O, Ramirez-Chavez E, Molina-Torres J,
Herrera-Estrella L (2012) How plants sense wounds: damaged–self recognition is based on
plant–derived elicitors and induces octadecanoid signaling. PLoS One 7:e30537
Hernández M, Dumont MG, Yuan Q, Conrad R (2015) Different bacterial populations associated
with the roots and rhizosphere of rice incorporate plant–derived carbon. Appl Environ Microbiol
81:2244–2253
Hernandez-Montiel LG, Gutierrez-Perez ED, Murillo-Amador B, Vero S, Chiquito-Contreras RG,
Rincon-Enriquez G (2018) Mechanisms employed by Debaryomyces hansenii in biological
control of anthracnose disease on papaya fruit. Postharvest Biol Tech 139:31–37
326
L. Thomas and I. Singh
Précédent

- 338/518

Suivant