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Peered Review Publications
*Corresponding Author
You can also see my publications in my ResearchGate

Pozo MJ, Albrectsen B, Bejarano E, de la Pena E, Herrero S, Martinez-Medina A, Pastor V, Ravnskov S, Biere A (2020). Teaching tools in Plant Biology: Three-way interactions between plants, microbes and arthropods (PMA): Impacts, mechanisms and prospects for sustainable plant protection. The Plant Cell; Accepted

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Pineda A, Martinez-Medina A (2020). El poder de lo minúsculo: el uso de microorganismos beneficiosos del suelo en el control de plagas. Phytoma; Accepted                                           

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Martinez-Medina A, Pescador L, Terrón-Camero L, Pozo MJ, Romero-Puertas MC (2019). Nitric oxide in plant-fungal interactions. Journal of Experimental Botany 70 : 4489-4503 Link

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Martinez-Medina A, Pescador l, Fernandez I, Rodríguez-Serrano M, García JM, Romero-Puertas MC, Pozo MJ (2019) Nitric oxide and PHYTOGLOBIN 1 are regulatory elements in the Solanum lycopersicum-Rhizophagus irregularis mycorrhizal symbiosis. New Phytologist  223:1560-1574                  

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Ibrahim HMM, Ahmad EM, Martinez-Medina A, Aly MAM (2019). Effective approaches to study the plant-root knot nematode interaction. Plant Physiology and Biochemistry 141:332-342           

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Thakur MP, Quast V, van Dam NM, Eisenhauer N, Roscher C, Biere A, Martinez-Medina A (2019). Interactions between functionally diverse fungal mutualists inconsistently affect plant performance and competition. Oikos 128: 1136 -1146             

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​​Martinez-Medina A, Fernandez I, Pescador L, Romero-Puertas MC, Pozo MJ (2019) Trichoderma harzianum triggers an early and transient burst of nitric oxide and the upregulation of PHYTOGB1 in tomato roots. Plant Signaling and Behavior 14:1640564                

 

Shelef O, Hahn PG, Pineda A, Tejesvi MV, Martinez-Medina A (2019) As above so below? progress in understanding the role of belowground interactions in ecological processes. Frontiers in Ecology and Evolution 7:318                   

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Romera FJ, García MJ, Lucena C, Martinez-Medina A, Aparicio MA, Ramos J, Alcántara E, Angulo M, Pérez-Vicente R (2019). Induced systemic resistance (ISR) and Fe deficiency responses in dicot plants. Frontiers in Plant Sciences 10:287

                                                      

Shelef O, Hahn PG, Getman-Pickering Z, Martinez-Medina A (2019) Coming to common ground: the challenges of applying ecological theory developed aboveground to rhizosphere interactions. Frontiers in Ecology and Evolution 7:58

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Ferlian O, Biere A, Bonfante P, Buscot F, Eisenhauer N, Fernandez I, Hause B, Herrmann S, Krajinski-Barth F, Meier IC, Pozo MJ, Rasmann S, Rillig MC, Tarkka MT, van Dam NM, Wagg C, Martinez-Medina A (2018) Growing Research Networks on Mycorrhizae for Mutual Benefits. Trends in Plant Science 23: 975-984                                                    

 

Papadopoulou G, Maedicke A, Grosser K, van Dam NM, Martinez-Medina A (2018). Defence signalling marker gene responses to hormonal elicitation differ between roots and shoots. AoB Plants 10: ply031                     

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Martinez-Medina A, Van Wees SCM, Pieterse CMJ (2017). Airborne signals from Trichoderma fungi stimulate iron uptake responses in roots resulting in priming of jasmonic acid-dependent defenses in shoots of Arabidopsis thaliana and Solanum lycopresicum. Plant Cell and Environment 40: 2691-2705                     

              

Martinez-Medina A, Apple F, Van Wees SCM (2017). Impact of salicylic acid- and jasmonic acid-regulated defenses on root colonization by Trichoderma harzinum T-78 . Plant Signaling and Behavior 12 (8): e1345404                  

                                   

​Martinez-Medina A, Fernandez I, Lok GB, Pozo MJ, Pieterse CMJ, Van Wees SCM (2017). Shifting from priming of salicylic acid- to jasmonic acid-regulated defences by Trichoderma protects tomato against the root knot nematode Meloidogyne incognita. New Phytologist 213 : 1363–1377

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Martinez-Medina A, Pozo MJ, Cammue BPA, Vos CMF (2016). The Plant–Trichoderma Dialogue. Belowground Defence Strategies in Plants (Eds: CMF Vos y Kemal Kazan). ISBN 978-3-319-42319-7. Springer. Pages 301-328

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Martinez-Medina A, Flors V, Heil M, Mauch-Mani B, Pieterse CMJ, Pozo MJ, Ton J, van Dam NV, Conrath U (2016). Recognizing plant defense priming. Trends in Plant Science 21 : 818-822

 

Pozo MJ, Rivero J, Martinez-Medina A, Jung S, Fernández I, Pozo J, García JM, López-Ráez JA, Azcón-Aguilar C, Barea JM (2016). Boosting plant defenses by beneficial soil fungi . Proceedings of the 43rd annual meeting of the plant growth regulation society of America. Pages 89-97

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Pascual Valero JA, Bernal-Vicente A, Martinez-Medina A, Ros M, Sanchez C (2016). Bioestimulant and suppressive effect of Trichoderma harzianum enriched compost for melon cultivation from greenhouse nursery to field production. Acta Horticulturae (Accepted)

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Martinez-Medina A, Alguacil MM, Pascual JA, Van Wees SCM (2014). Profiles induced by Trichoderma isolates correspond with their biocontrol and plant growth promoting activities in melon plants. Journal of Chemical Ecology 40 : 804-815

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Fernández I, Merlos M, López-Ráez JA, Martinez-Medina A, Ferrol N, Azcón C, Bonfante P, Flors V, Pozo MJ (2014). Defense related phytohormones regulation in arbuscular mycorrhizal symbioses depends on the partner genotypes. Journal of Chemical Ecology 40 : 791-803

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Martinez-Medina A, Fernández I, Sánchez-Guzmán MJ, Jung SC, Pascual JA, Pozo MJ (2013). Deciphering the hormonal signalling network behind the systemic resistance induced by Trichoderma harzianum in tomato. Frontiers in Plant Sciences 4, 206

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Pozo MJ, Jung SC, Martinez-Medina A, López-Ráez JA, Azcon-Aguilar C, Barea JM (2013). Root allies: Arbuscular mycorrhizal fungi help plants to cope with biotic stresses. Symbiotic Endophytes (Ed: R Aroca). ISBN 978-3-642-39314-4. Springer. Pages 298-307

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Jung SC, Martinez-Medina A, Lopez-Raez JA, Pozo MJ (2012). Mycorrhiza-induced resistance and priming of plant defenses. Journal of Chemical Ecology 38 : 651-64

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Lloret E, Pastor L, Martinez-Medina A, Blaya J, Pascual JA (2012). Evaluation of the removal of pathogens included in the proposal for a European Directive on spreading of sludge on land during autothermal thermophilic aerobic digestion (ATAD). Chemical Engineering Journal 198-199: 171-179

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Pozo MJ, Martinez-Medina A, Jung SC, Fernández I, López-Ráez JA, Azcon-Aguilar C (2011). Priming plant defences by beneficial soil fungi. Induccion de resistecia en plantas a patogenos (Eds. FA Rodrigues, Fortunato AA, Resende RS). ISBN 9788581790250. Pages 139 - 175

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Martinez-Medina A, Roldan A, Pascual JA (2011). Interaction between arbuscular mycorrhizal fungi and Trichoderma harzianum under conventional and low input fertilization field condition in melon crops: Growth response and Fusarium wilt biocontrol. Applied Soil Ecology 47 : 98-105

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Martinez-Medina A, Roldan A, Albacete A, Pérez-Alfocea F, Pascual JA (2011). Hormonal signalling of the Trichoderma harzianum-induced resistance to Fusarium oxysporum and growth promotion effect in melon plants. Acta Horticulturae 898: 61-68

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Martinez-Medina A, Roldan A, Albacete A, Pascual JA (2011). The interaction with arbuscular mycorrhizal fungi or Trichoderma harzianum alters the shoot hormonal profile in melon plants. Phytochemistry 72 : 223-229

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Martinez-Medina A, Pascual JA, Pérez-Alfocea F, Albacete A, Roldan A (2010). Trichoderma harzianum and Glomus intraradices modify the hormone disruption induced by Fusarium oxysporum in melon plants. Phytopathology 100 : 682-688

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Martinez-Medina A, Pascual JA, Lloret E, Roldan A (2009). Interactions between arbuscular mycorrhizal fungi and Trichoderma harzianum, and their effects on fusarium wilt in melon plants grown in seedling nurseries. Journal of the Science of Food and Agriculture 89 : 1843-1850

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Martinez-Medina A, Roldan A, Pascual JA (2009). Performance of a Trichoderma harzianum bentonite-vermiculite formulation against fusarium wilt in seedling-nursery melon plants. Hortscience 44 : 2025-2027

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Venu RC, Beaulieu RA, Graham TL, Martinez-Medina A, Boehm MJ (2009). Dollar spot fungus Sclerotinia homoeocarpa produces oxalic acid. International Turfgrass Society Research Journal  11: 263 - 270.

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Martínez-Medina A, Roldan A, Lloret E, Pascual JA (2008). Formulación de Trichoderma harzianum Rifai en la producción ecológica de plántulas de melón en semillero para el control de la fusariosis vascular. Libro de Actas del VIII CONGRESO SEAE sobre "Cambio climático, biodiversidad y desarrollo rural sostenible”. (Eds Sociedad Española de Agricultura Ecológica). ISBN 978-84-612-5722-5. Pages 1-9

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PUBLICATIONS

Patents

Solid product effective for biocontrol of vascular fusariosis of melon, method for preparation thereof and method for use of same. WO/2008/07798. Priority 2006.

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