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References
Aryantha IP, Cross R, Guest DI (2000). Suppression of Phytophthora cinnamomi in Potting Mixes Amended with Uncomposted and Composted Animal Manures. Phytopathology 90(7):775-782. |
|
Bejarano-Alcazar J, Termorshuizen AJ, Jimenez-Diaz RM (1999). Single-site root inoculations on eggplant with microsclerotia of Verticillium dahliae. Phytoparasitica 27(4):279-289. |
|
Benlioğlu S, Boz O, Yıldız A, Kavalcı G, Benlioğlu K (2005). Alternative Soil Solarization Treatments for the Control of Soil-borne Diseases and Weeds of Strawberry in the Western Anatolia of Turkey. J. Phytopathol. 153:423-430. |
|
Boz O (2009). Effects of olive processing waste, chicken manure and Dazomet on weeds with or without soil solarisation. Afr. J. Biotechnol. 8(19):4946-4952. |
|
Buchenauer HD, Erwin C (1976). Effect of the plant growth retardant Pydanon on Verticillium wilt of cotton and tomato. Phytopathology 49:68-72. |
|
Candido V, D'addabbo T, Basile M, Castronuovo D, Miccolis V (2008). Greenhouse soil solarization effect on weeds, nematodes and yield of tomato and melon. Agron. Sustain. Dev. 28:221-230. |
|
Cimen I, Pirinc V, Sagir A (2010a). Determination of long-term effects of consecutive effective soil solarization with vesicular arbuscular mycorrhizal (VAM) on white rot disease (Sclerotium cepivorum Berk.) and yield of onion. Res. Crops 11(1):109-117. |
|
Cimen I, Turgay B, Pirinç V (2010b). Effect of solarization and vesicular arbuscular mychorrizal on weed density and yield of lettuce (Lactuca sativa L.) in autumn season. Afr. J. Biotechnol. 9(24):3520-3526. |
|
Cimen I, Pirinç V, Sagır A, Akpinar C, Guzel S (2009). Effects of solarization and vesicular arbuscular mycorrhizal fungus (VAM) on phytopthora blight (Phytophthora capsici leonian) and yield in pepper. Afr. J. Biotechnol. 8(19):4884-4894. |
|
Green RJ (1967). Control of verticillium wilt of peppermint by crop rotation sequences. Plant Dis. Rep. 51:449-453. |
|
Grogan RG, Ioannou N, Schneider RW, Sall MA, Kimble KA (1979). Verticillium wilt on resistant tomato cultivars in California: Virulence of isolates from plants and soil and relationship of inoculum density to disease incidence. Phytopathology 69:1176-1180. |
|
Hassing JE, Motsenbocker CA, Monlezun CJ (2004). Agroeconomic Effect of Soil Solarization of Fall-Planted Lettuce. Sci. Hortic. 101:223-233. |
|
Jarvis WR (1993). Managing diseases in greenhouse crops. American Phytopathological Society Press, St. Paul Minnesota. |
|
Katan J (1987). Soil Solarization John Willey and Sons, Inc, London, Pp. 77-105. |
|
Lalitha BS, Nagaraj KH, Anand TN (2001). Effect of soil solarization on weed dynamics and yield of groundnut-tomato sequence. Mysore J. Agric. Sci. 35:226-231. |
|
Lalitha BS, Nanjappa HV, Ramachandrappa BK (2003). Effect of Soil Solarization on Soil Microbial Population and the Germination of Weed Seeds in the Soil. J. Ecobiol. 15:169-173. |
|
Malandraki I, Tjamos SE, Pantelides I, Paplomatas EJ (2008). Thermal inactivation of compost suppressiveness implicates possible biological factors in disease management. Biol. Control 44:180-187. |
|
Ozaslan C, Cimen I, Kizmaz MZ, Pirinc V, Kara A (2015). Determination of long-term effects of consecutive effective fresh chicken manure with solarization and verticillium wilt (Verticillium dahlia Klebb) on weed and its control in eggplant. Afr. J. Biotechnol. 14(19):1614-1623. |
|
Paplomatas EJ, Basset DM, Broome JC, DeVay JE (1992). Incidence of Verticillium wilt and yield losses of cotton cultivars (Gossypium hirsutum) based on soil inoculum density of Verticillium dahliae. Phytopathology 82:1417-1420. |
|
Pegg GF, Brady BL (2002). Verticillium wilts. CABI Publishing, New York. |
|
Pullman GS, DeVay JE (1982). Epidemiology of Verticillium wilt of cotton. A relationship between inoculum density and disease progression. Phytopathology 72:549-554. |
|
Ragon D, Vilson JB (1985). Control of Weeds, Nematodes and Soil- Borne Pathogens by Soil Solarization. Alafua Agric. Bull. 13(1):13-20. |
|
Schreiner RP, Ivors KL, Pinkerton JN (2001). Soil solarization reduces arbuscular mycorrhizal fungi as a consequence of weed suppression. Mycorrhiza 11(6):265-311. |
|
Speth JG (2004). Red Sky at Morning: America and the Crisis of the Global Environment, New Haven: Yale University Press, 95. |
|
Tamietti G, Valentino D (2001). Soil solarızatıon: A useful tool for control of vertıcıllıum wılt and weeds in eggplant crops under plastıc in the po valley. J. Plant Pathol. 83(3):173-180. |
|
Xiao CL, Subbarao KV (1998). Relationship between Verticillium dahliae inoculum density and wilt incidence, severity and growth of cauliflower. Phytopathology 88:1108-1115. |
|
Yucel S, Ozarslandan A, Colak A, Ay T, Can C (2007). Effect of solarization and fumigant applications on soilborne pathogens and root-knot nematodes in greenhouse grown tomato in Turkey. Phytoparasitica 35:450-456. |
|
Zayed MS, Hassanein MKK, Nahed HE, Abdallah MMF (2013). Productivity of pepper crop (Capsicum annuum L.) as affected by organic fertilizer, soil solarization, and endomycorrhizae. Ann. Agric. Sci. 58(2):131-137. |
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