Cortada, L., Sorribas, F. J., Ornat, C., Kaloshian, I., & Verdejo-Lucas, S. (2008). Variability in infection and reproduction ofMeloidogyne javanicaon tomato rootstocks with theMiresistance gene. Plant Pathology, 57(6), 1125-1135. doi:10.1111/j.1365-3059.2008.01906.x
Davis, A. R., Perkins-Veazie, P., Hassell, R., Levi, A., King, S. R., & Zhang, X. (2008). Grafting Effects on Vegetable Quality. HortScience, 43(6), 1670-1672. doi:10.21273/hortsci.43.6.1670
Devran, Z., & Söğüt, M. A. (2010). Occurrence of virulent root-knot nematode populations on tomatoes bearing the Mi gene in protected vegetable-growing areas of Turkey. Phytoparasitica, 38(3), 245-251. doi:10.1007/s12600-010-0103-y
[+]
Cortada, L., Sorribas, F. J., Ornat, C., Kaloshian, I., & Verdejo-Lucas, S. (2008). Variability in infection and reproduction ofMeloidogyne javanicaon tomato rootstocks with theMiresistance gene. Plant Pathology, 57(6), 1125-1135. doi:10.1111/j.1365-3059.2008.01906.x
Davis, A. R., Perkins-Veazie, P., Hassell, R., Levi, A., King, S. R., & Zhang, X. (2008). Grafting Effects on Vegetable Quality. HortScience, 43(6), 1670-1672. doi:10.21273/hortsci.43.6.1670
Devran, Z., & Söğüt, M. A. (2010). Occurrence of virulent root-knot nematode populations on tomatoes bearing the Mi gene in protected vegetable-growing areas of Turkey. Phytoparasitica, 38(3), 245-251. doi:10.1007/s12600-010-0103-y
Djian-Caporalino, C., Palloix, A., Fazari, A., Marteu, N., Barbary, A., Abad, P., … Castagnone-Sereno, P. (2014). Pyramiding, alternating or mixing: comparative performances of deployment strategies of nematode resistance genes to promote plant resistance efficiency and durability. BMC Plant Biology, 14(1), 53. doi:10.1186/1471-2229-14-53
Giné, A., & Sorribas, F. J. (2016). Effect of plant resistance and BioAct WG (Purpureocillium lilacinumstrain 251) onMeloidogyne incognitain a tomato-cucumber rotation in a greenhouse. Pest Management Science, 73(5), 880-887. doi:10.1002/ps.4357
Giné, A., & Sorribas, F. J. (2017). Quantitative approach for the early detection of selection for virulence of Meloidogyne incognita
on resistant tomato in plastic greenhouses. Plant Pathology, 66(8), 1338-1344. doi:10.1111/ppa.12679
Giné, A., López-Gómez, M., Vela, M. D., Ornat, C., Talavera, M., Verdejo-Lucas, S., & Sorribas, F. J. (2014). Thermal requirements and population dynamics of root-knot nematodes on cucumber and yield losses under protected cultivation. Plant Pathology, 63(6), 1446-1453. doi:10.1111/ppa.12217
Giné, A., González, C., Serrano, L., & Sorribas, F. J. (2017). Population dynamics of Meloidogyne incognita on cucumber grafted onto the Cucurbita hybrid RS841 or ungrafted and yield losses under protected cultivation. European Journal of Plant Pathology, 148(4), 795-805. doi:10.1007/s10658-016-1135-z
Gisbert C Sorribas FJ Martínez EM Gammoudi N Bernat G Picó B 2014 Grafting melons onto potential Cucumis spp. rootstocks http://upcommons.upc.edu/bitstream/handle/2117/27982/Grafting%20melons.pdf?sequence=1
Gisbert, C., Gammoudi, N., Munera, M., Giné, A., Pocurull, M., Sorribas, F. J., & Picó, M. B. (2017). Evaluation of two potentialCucumisspp. resources for grafting melons. Acta Horticulturae, (1151), 157-162. doi:10.17660/actahortic.2017.1151.25
Guan, W., Zhao, X., Dickson, D. W., Mendes, M. L., & Thies, J. (2014). Root-knot Nematode Resistance, Yield, and Fruit Quality of Specialty Melons Grafted onto Cucumis metulifer. HortScience, 49(8), 1046-1051. doi:10.21273/hortsci.49.8.1046
Hadisoeganda, W. W. (1982). Resistance of Tomato, Bean, Southern Pea, and Garden Pea Cultivars to Root-Knot Nematodes Based on Host Suitability. Plant Disease, 66(1), 145. doi:10.1094/pd-66-145
Lee, J.-M., & Oda, M. (2010). Grafting of Herbaceous Vegetable and Ornamental Crops. Horticultural Reviews, 61-124. doi:10.1002/9780470650851.ch2
Leonardi, C., Kyriacou, M. C., Gisbert, C., Oztekin, G. B., Mourão, I., & Rouphael, Y. (s. f.). Quality of grafted vegetables. Vegetable grafting: principles and practices, 216-244. doi:10.1079/9781780648972.0216
Liu, B., Ren, J., Zhang, Y., An, J., Chen, M., Chen, H., … Ren, H. (2014). A new grafted rootstock against root-knot nematode for cucumber, melon, and watermelon. Agronomy for Sustainable Development, 35(1), 251-259. doi:10.1007/s13593-014-0234-5
López-Gómez, M., Gine, A., Vela, M. D., Ornat, C., Sorribas, F. J., Talavera, M., & Verdejo-Lucas, S. (2014). Damage functions and thermal requirements ofMeloidogyne javanicaandMeloidogyne incognitaon watermelon. Annals of Applied Biology, 165(3), 466-473. doi:10.1111/aab.12154
López-Gómez, M., Flor-Peregrín, E., Talavera, M., Sorribas, F. J., & Verdejo-Lucas, S. (2015). Population dynamics of Meloidogyne javanica and its relationship with the leaf chlorophyll content in zucchini. Crop Protection, 70, 8-14. doi:10.1016/j.cropro.2014.12.015
López-Gómez, M., Talavera, M., & Verdejo-Lucas, S. (2015). Differential reproduction ofMeloidogyne incognitaandM. javanicain watermelon cultivars and cucurbit rootstocks. Plant Pathology, 65(1), 145-153. doi:10.1111/ppa.12394
Omwega, C. O. (1988). A Nondestructive Technique for Screening Bean Germ Plasm for Resistance to Meloidogyne incognita. Plant Disease, 72(11), 970. doi:10.1094/pd-72-0970
Ornat, C., Verdejo-Lucas, S., & Sorribas, F. J. (2001). A Population of Meloidogyne javanica in Spain Virulent to the Mi Resistance Gene in Tomato. Plant Disease, 85(3), 271-276. doi:10.1094/pdis.2001.85.3.271
Seinhorst, J. W. (1965). The Relation Between Nematode Density and Damage To Plants. Nematologica, 11(1), 137-154. doi:10.1163/187529265x00582
Sikora, R. A., & Fernández, E. (s. f.). Nematode parasites of vegetables. Plant parasitic nematodes in subtropical and tropical agriculture, 319-392. doi:10.1079/9780851997278.0319
Sorribas, F. J., Ornat, C., Verdejo-Lucas, S., Galeano, M., & Valero, J. (2005). Effectiveness and profitability of the Mi-resistant tomatoes to control root-knot nematodes. European Journal of Plant Pathology, 111(1), 29-38. doi:10.1007/s10658-004-1982-x
Soteriou, G. A., Kyriacou, M. C., Siomos, A. S., & Gerasopoulos, D. (2014). Evolution of watermelon fruit physicochemical and phytochemical composition during ripening as affected by grafting. Food Chemistry, 165, 282-289. doi:10.1016/j.foodchem.2014.04.120
Talavera, M., Verdejo-Lucas, S., Ornat, C., Torres, J., Vela, M. D., Macias, F. J., … Sorribas, F. J. (2009). Crop rotations with Mi gene resistant and susceptible tomato cultivars for management of root-knot nematodes in plastic houses. Crop Protection, 28(8), 662-667. doi:10.1016/j.cropro.2009.03.015
Talavera, M., Sayadi, S., Chirosa-Ríos, M., Salmerón, T., Flor-Peregrín, E., & Verdejo-Lucas, S. (2012). Perception of the impact of root-knot nematode-induced diseases in horticultural protected crops of south-eastern Spain. Nematology, 14(5), 517-527. doi:10.1163/156854112x635850
Thies, J. A., Ariss, J. J., Hassell, R. L., Olson, S., Kousik, C. S., & Levi, A. (2010). Grafting for Management of Southern Root-Knot Nematode, Meloidogyne incognita, in Watermelon. Plant Disease, 94(10), 1195-1199. doi:10.1094/pdis-09-09-0640
Trionfetti Nisini, P., Colla, G., Granati, E., Temperini, O., Crinò, P., & Saccardo, F. (2002). Rootstock resistance to fusarium wilt and effect on fruit yield and quality of two muskmelon cultivars. Scientia Horticulturae, 93(3-4), 281-288. doi:10.1016/s0304-4238(01)00335-1
Tzortzakakis, E. A., Adam, M. A. M., Blok, V. C., Paraskevopoulos, C., & Bourtzis, K. (2005). Occurrence of Resistance-breaking Populations of Root-knot Nematodes on Tomato in Greece. European Journal of Plant Pathology, 113(1), 101-105. doi:10.1007/s10658-005-1228-6
Verdejo-Lucas, S., Cortada, L., Sorribas, F. J., & Ornat, C. (2009). Selection of virulent populations ofMeloidogyne javanicaby repeated cultivation ofMiresistance gene tomato rootstocks under field conditions. Plant Pathology, 58(5), 990-998. doi:10.1111/j.1365-3059.2009.02089.x
Verdejo-Lucas, S., Talavera, M., & Andrés, M. F. (2012). Virulence response to the Mi.1 gene of Meloidogyne populations from tomato in greenhouses. Crop Protection, 39, 97-105. doi:10.1016/j.cropro.2012.03.025
WHITEHEAD, A. G., & HEMMING, J. R. (1965). A comparison of some quantitative methods of extracting small vermiform nematodes from soil. Annals of Applied Biology, 55(1), 25-38. doi:10.1111/j.1744-7348.1965.tb07864.x
Ye, D.-Y., Qi, Y.-H., Cao, S.-F., Wei, B.-Q., & Zhang, H.-S. (2017). Histopathology combined with transcriptome analyses reveals the mechanism of resistance to Meloidogyne incognita in Cucumis metuliferus. Journal of Plant Physiology, 212, 115-124. doi:10.1016/j.jplph.2017.02.002
Donkers-Venne, D. T. H. M., Fargette, M., & Zijlstra, C. (2000). Identification of Meloidogyne incognita, M. javanica and M. arenaria using sequence characterised amplified region (SCAR) based PCR assays. Nematology, 2(8), 847-853. doi:10.1163/156854100750112798
[-]