Barchietto T, Saindrenan P, Bompeix G, 1989. Characterization of phosphonate uptake in two Phytophthora spp. and its inhibition by phosphate. Archives of Microbiology 151:54–58.
Barchietto T, Saindrenan P, Bompeix G, 1992. Physiological responses of Phytophthora citrophthora to a sub-inhibitory concentration of phosphonate. Pesticide Biochemistry & Physiology 42: 151–166.
Benson DM, Grand LF, 2000. Incidence of Phytophthora root rot of Fraser fir in North Carolina and sensitivity of isolates of Phytophthora cinnamomi to metalaxyl. Plant Disease 84: 661–664.
Boesewinkel HJ, 1976. Storage of fungal cultures in water. Transactions of the British Mycological Society 66(1): 183–185.
Browne GT, Leslie CA, Grant JA, Bhat RG, Schmidt LS, et al., 2015. Resistance to species of Phytophthora identified among clones of Juglans microcarpa × J. regia. HortScience 50(8): 1136–1142.
Cohen Y, Coffey MD, 1986. Systemic fungicides and the control of Oomycetes. Annual Review of Phytopathology 24: 311–338.
Erwin DC, Ribeiro OK, 1996. Phytophthora Diseases Worldwide. APS Press, USA. 562 pp.
Fani SR, Zamanizadeh HR, Mirabolfathy M, 2005. Isolation and identification of the causal agents of root and crown rot of pistachio trees in the Sistan and Baluchistan provinces. Acta Horticulture (ISHS) 726: 647–650.
Fani SR, Moradi M, Mirabolfathy M, 2019. A review of the pistachio gummosis disease. Plant Pathology Science 8(2): 16–30 (In Persian with English abstract).
Fenn ME, Coffey MD, 1984. Studies on the in vitro and in vivo antifungal activity of Fosetyl-Al and phosphorous acid. Phytopathology 74(5): 606–611.
Fenn ME, Coffey MD, 1985. Further evidence for the direct mode of action of fosetyl-Al and phosphorous acid. Phytopathology 75(9): 1064–1068.
Grant BR, Dunstan RH, Griffith JM, Niere JO, Smillie RH, 1990. The mechanism of phosphonic (phosphorous) acid action in Phytophthora. Australasian Plant Pathology 19: 115–121.
Guest DI, Anderson RD, Ford HJ, Philips D, 1994. Long-term control of Phytophthora disease of cocoa using trunk-injected phosphonate. Plant Pathology 43:479–492.
Griffith JM, Akins LA, Grant BR, 1989. Properties of the phosphate and phosphite transport systems of Phytophthora palmivora. Archives of Microbiology 152: 430–436.
Lobato MC, Olivieri FP, Daleo GR, Andreu AB, 2010. Antimicrobial activity of phosphites against different potato pathogens. Journal of Plant Diseases & Protection 117(3): 102–109.
Mbaka1 JN, Wamocho LS, Turoop L, Waiganjo MM, 2009. In vitro growth inhibition of Kenyan Phytophthora cinnamomi isolates by different fungicide formulations. Journal of Applied Biosciences 20: 1159 – 1165.
McGrath MT, 2004. What are Fungicides? The plant health instructor. The American Phytopathological Society 10: 109–115.
McMahon PJ, Purwantara A, Wahab A, Imron M, Lambert S, et al., 2010. Phosphonate applied by trunk injection controls stem canker and decreases Phytophthora pod rot (black pod) incidence in cocoa in Sulawesi. Australasian Plant Pathology 39: 170–175.
Mirabolfathy M, Cooke DE, Duncan JM, Williams NA, Ershad D, et al., 2001. Phytophthora pistaciae sp. nov. and P. melonis: the principal causes of pistachio gummosis in Iran. Mycological Research 105(10): 1166–1175.
Mirabolfathy M, Ershad D, Hejaroud G, 1990. Evaluation of several fungicides in control of crown and root rot of pistachio. Iranian Journal of Plant Pathology 26: 47–56 (In Persian with English abstract).
Moradi M, Masoumi H, 2011. Pistachio crown and root rot. Journal of Iranian Pistachio Association 70: 28-30. (In Persian)
Moradi M, Masoumi H, 2013. Familiarization with gummosis disease or pistachio black sap. Journal of Iranian Pistachio Association 70: 28–30.
Mostowfizadeh-Ghalamfarsa R, Cooke DEL, Banihashemi Z, 2008. Phytophthora parsiana sp. nov., a new high-temperature tolerant species. Mycological Research 112(7): 783–794.
Nemestothy GS, Guest DI, 1990. Phytoalexin accumulation, phenylalanine ammonia lyase activity and ethylene biosynthesis in fosetyl-Al treated resistant and susceptible tobacco cultivars infected with Phytophthora nicotianae var. nicotianae. Physiological & Molecular Plant Pathology 37: 207–219.
Rekanović E, Potočnik I, Milijašević-Marčić S, Stepanović M, Todorović B, et al., 2012. Toxicity of metalaxyl, azoxystrobin, dimethomorph, cymoxanil, zoxamide and mancozeb to Phytophthora infestans isolates from Serbia. Journal of Environmental Science & Health, Part B 47(5): 403–409.
Smillie R, Grant BR, Guest D, 1989. The mode of action of phosphite: evidence for both direct and indirect modes of action on three Phytophthora spp. in plants. Phytopathology 79: 921–926.
Staub TH, Dahmen H, Schwinn FJ, 1978. Biological characterization of uptake and translocation of fungicidal acylalanines in grape and tomato plants. Journal of Plant Diseases & Protection 85: 162–168.
Türkölmez Ş, Derviş S, 2017. Activity of metalaxyl-m+ mancozeb, fosetyl-al, and phosphorous acid against Phytophthora crown and root rot of apricot and cherry caused by Phytophthora palmivora. Plant Protection Science 53(4): 216–225.
Varadarajan DK, Karthikeyan AS, Matilda PD, Raghothama KG, 2002. Phosphite, an analog of phosphate, suppresses the coordinated expression of genes under phosphate starvation. Plant Physiology 129(3): 1232–1240.
Whiley AW, Hargreaves PA, Pegg KG, Doogan VJ, Ruddle LJ, et al., 1995. Changing sink strengths influence translocation of phosphonate in Avocado (Persea americana Mill.) trees. Australian Journal of Agricultural Research 46: 1079–1990.