Asadollahi M, Fekete E, Karaffa L, Flipphi M, Árnyasi M, Esmaeili M, Váczy KZ, Sándor E. 2013. Comparison of Botrytis cinerea populations isolated from two open-field cultivated host plants. Microbiological Research 168:379–388.
Campia P. 2014. Sensitivity to fungicides and genetic structure of Botrytis cinerea populations isolated in Lombardy (Ph.D dissertation, University of Milan).
Decognet V, Bardin M, Troulet C, Nicot P. 2006. Geographic structure of Botrytis cinerea populations from vegetable greenhouses in southern France. In 2. Botrytis genome workshop (pp. 1-p).
Diao Y, Larsen MM, Kamvar ZN, Zhang C, Li S, Wang W, Lin D, Peng Q, Klaus BJ, Foster ZSL, Grunwald NJ, Liu X. 2020. Genetic differentiation and clonal expansion of Chinese Botrytis cinerea populations from tomato and other crops in China. Phytopathology 110:428–439.
Dowling, M. E. 2018. Detection and characterization of the newly described species Botrytis fragariae causing gray mold on strawberries in the United States (Ph.D dissertation, Clemson University).
Ebrahimzadeh F, Abrinbana M. 2016. Investigation of the synergistic effect of carbendazim and iprodione on Botrytis cinerea. 22nd Iranian Plant Protection Congress. College of Agriculture and Natural Resources, Tehran University, Karaj, Iran, P. 353.
El Ghaouth A, Arul J, Wilson C, Benhamou N. 1997. Biochemical and cytochemical aspects of the interactions of chitosan and Botrytis cinerea in bell pepper fruit. Postharvest Biology and Technology 12:183–194.
Fekete É, Fekete E, Irinyi L, Karaffa L, Árnyasi M, Asadollahi M, Sándor E. 2012. Genetic diversity of a Botrytis cinerea cryptic species complex in Hungary. Microbiological Research 167:283–291.
Fournier E, Giraud T. 2008. Sympatric genetic differentiation of a generalist pathogenic fungus, Botrytis cinerea, on two different host plants, grapevine and bramble. Journal of Evolutionary Biology 21:122–132.
Gogoi B, Wann S.B, Saikia SP. 2020. Comparative assessment of ISSR, RAPD, and SCoT markers for genetic diversity in Clerodendrum species of North East India. Molecular Biology Reports 47:7365–7377.
Guo-Xin Q, Guo-Lu L, Jia-Jun L. 2014. Studies on the genetic relationship of Chinese diploid strawberry species based on Scot analysis. Acta Horticulturae 1049:301–304.
Hamada W, Ben Ahmed D. 2005. Genetic diversity of some Tunisian" Botrytis cinerea" isolates using molecular markers. Phytopathologia Mediterranea 44:300–306.
Hu MJ, Dowling ME, Schnabel G. 2018. Genotypic and phenotypic variations in Botrytis spp. isolates from single strawberry flowers. Plant Disease 102:179–184.
Isaza L, Zuluaga YP, Marulanda ML. 2019. Morphological, pathogenic and genetic diversity of Botrytis cinerea Pers. in blackberry cultivations in Colombia. Revista Brasileira de Fruticultura 41 e-490.
Karchani-Balma S, Gautier A, Raies A, Fournier E. 2008. Geography, plants, and growing systems shape the genetic structure of Tunisian Botrytis cinerea populations. Phytopathology 98:1271-1279.
Leyronas C, Bryone F, Duffaud M, Troulet C, Nicot P. 2015. Assessing host specialization of Botrytis cinerea on lettuce and tomato by genotypic and phenotypic characterization. Plant Pathology 64:119–127.
Mirzaei, S., Goltapeh, E. M., Shams‐Bakhsh, M. and Safaie, N. 2008. Identification of Botrytis spp. on plants grown in Iran. Journal of Phytopathology 156: 21-28.
Naeimi S, Zare R. 2013. Evaluation of indigenous Trichoderma spp. isolates in biological control of Botrytis cinerea, the causal agent of strawberry gray mold disease. Biocontrol in Plant Protection 1:55–74.
Nasiri Taleshi SJ, Mahdian S, Tajickghanbari M, Alian S. 2016. Investigation of Strawberry cultivars resistance against Botrytis cinerea and control effect of Anise essence and Iprodione-Carbendazim on it. Biological Control of Pests and Plant Diseases 5:25–37.
Poczai P, Varga I, Laos M, Cseh A, Bell N, Valkonen JP, Hyvönen J. 2013. Advances in plant gene-targeted and functional markers: A review. Plant Methods 9:1–32.
Polat İ, Baysal Ö, Mercati F, Gümrükcü E, Sülü G, Kitapcı A, Araniti F, Carimi F. 2018a. Characterization of Botrytis cinerea isolates collected on pepper in Southern Turkey by using molecular markers, fungicide resistance genes and virulence assay. Infection, Genetics and Evolution 60:151–159.
Polat İ, Görkem S, Kİtapci A, Gümrükcü E, Baysal Ö. 2018b. Molecular fingerprinting of Botrytis cinerea population structure from different hosts. Derim 35:121–134.
Rajaguru B, Shaw MW. 2010. Genetic differentiation between hosts and locations in populations of latent Botrytis cinerea in southern England. Plant Pathology 59:1081–1090.
Rasiukevičiūtė N, Rugienius R. Šikšnianienė J.B. 2018. Genetic diversity of Botrytis cinerea from strawberry in Lithuania. Zemdirbyste-Agriculture 105:265–270.
Reino J, Hernandez‐Galan R, Durán‐Patrón R, Collado I. 2004. Virulence–toxin production relationship in isolates of the plant pathogenic fungus Botrytis cinerea. Journal of Phytopathology 152:563–5566.
Walker AS, Gladieux P, Decognet V, Fermaud M, Confais J, Roudet J, Bardin M, Bout A, C. Nicot P, Poncet C. 2015. Population structure and temporal maintenance of the multihost fungal pathogen Botrytis cinerea: causes and implications for disease management. Environmental Microbiology 17:1261–1274.
Younesi Bane S, Soleimani MJ, Zafari D, Bahramnezhad B. 2014. Identification and study of genetic diversity of Botrytis cinerea isolates caused strawberry grey mold in Kurdistan province. Agricultural Biotechnology 5:1–10.
Zhou F, Hu HY, Song YL, Gao YQ, Liu QL, Song PW, Chen EY, Yu YA, Li DX, Li CW. 2020. Biological Characteristics and Molecular Mechanism of Fludioxonil Resistance in Botrytis cinerea From Henan Province of China. Plant Disease 104:1041–1047.