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Research Article

Two-Year Survey of Botrytis Fruit Rot Levels in Commercial Strawberry Fields in California with and without Fungicide Applications

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References

  • Bolda, M.P., J. Murdock, B. Goodrich, and D.A. Sumner. 2021. Sample costs to produce and harvest strawberries. University of California Division of Agriculture and Natural Resources, Davis, CA. <https://coststudyfiles.ucdavis.edu/uploads/pub/2022/01/04/strawberrycentralcoastfinaldraft-121321.pdf>.
  • Borisova, T., Z. Guan, E. Vorotnikova, N. Peres, and J. Vansickle. 2014. Florida strawberry producers’ experiences with anthracnose and botrytis fruit rot, and producers’ use of the strawberry advisory system. FE957UF/IFAS Extension. <https://edis.ifas.ufl.edu/pdf/FE/FE95700.pdf>
  • Bristow, P.R., R.J. Mcnicol, and B. Williamson. 1986. Infection of strawberry flowers by Botrytis cinerea and its relevance to grey mould development. Ann. Appl. Biol. 109(3):545–554. doi: 10.1111/j.1744-7348.1986.tb03211.x.
  • Bulger, M.A., M.A. Ellis, and L.V. Madden. 1987. Influence of temperature and wetness duration on infection of strawberry flowers by Botrytis cinerea and disease incidence of fruit originating from infected flowers. Phytopathology 77(8):1225–1230. doi: 10.1094/Phyto-77-1225.
  • Cordova, L.G., M.A. Ellis, L.L. Wilson, and N.A. Peres. 2018. Evaluation of the Florida strawberry advisory system for control of botrytis and anthracnose fruit rots in ohio. Plant Health. Prog. 19(2):182–187. doi: 10.1094/PHP-10-17-0062-RS.
  • Cordova, L.G., L.V. Madden, A. Amiri, G. Schnabel, and N.A. Peres. 2017. Meta-analysis of a web-based disease forecast system for control of anthracnose and botrytis fruit rots of strawberry in southeastern United States. Plant Dis. 101(11):1910–1917. doi: 10.1094/PDIS-04-17-0477-RE.
  • Cosseboom, S.D., K.L. Ivors, G. Schnabel, P.K. Bryson, and G.J. Holmes. 2019. Within-season shift in fungicide resistance profiles of Botrytis cinerea in California strawberry fields. Plant Dis. 103(1):59–64. doi: 10.1094/PDIS-03-18-0406-RE.
  • CSC. 2022. National berry report. California Strawberry Commission, Watsonville, CA. <https://calstrawberry1.sharepoint.com/sites/IndustryPortal-Landing/SitePages/MD-National-Berry-Report.aspx>.
  • Dewey, F.M., and R. Grant-Downton. 2016. Botrytis-biology, detection and quantification, p. 17–34. In: S. Fillinger and Y. Elad (eds.). Botrytis-the fungus, the pathogen and its management in agricultural systems. Springer, Dordrecht, The Netherlands.
  • Hu, M., S.D. Cosseboom, A. Schoeneberg, C.S. Johnson, N.A. Peres, and J. Lea-Cox. 2021. Validation of the strawberry advisory system in the mid-Atlantic region. Plant Dis. 105(9):2670–2679. doi: 10.1094/PDIS-10-20-2162-RE.
  • Koike, S.T., and M.P. Bolda. 2016. Botrytis fruit rot of strawberry. California strawberry commission production guildeline. <https://ucanr.edu/blogs/strawberries_caneberries/blogfiles/37846.pdf>.
  • Legard, D.E., C.L. Xiao, J.C. Mertely, and C.K. Chandler. 2000. Effects of plant spacing and cultivar on incidence of botrytis fruit rot in annual strawberry. Plant Dis. 84(5):531–538. doi: 10.1094/PDIS.2000.84.5.531.
  • MacKenzie, S.J., and N.A. Peres. 2012. Use of leaf wetness and temperature to time fungicide applications to control anthracnose fruit rot of strawberry in florida. Plant Dis. 96(4):522–528. doi: 10.1094/PDIS-03-11-0181.
  • Mertely, J.C., S.J. MacKenzie, and D.E. Legard. 2002. Timing of fungicide applications for Botrytis cinerea based on development stage of strawberry flowers and fruit. Plant Dis. 86(9):1019–1024. doi: 10.1094/PDIS.2002.86.9.1019.
  • Petrasch, S., S.J. Knapp, J.A.L. van Kan, and B. Blanco-Ulate. 2019. Grey mould of strawberry, a devastating disease caused by the ubiquitous necrotrophic fungal pathogen Botrytis cinerea. Mol. Plant Pathol. 20(6):877–892. doi: 10.1111/mpp.12794.
  • Strand, L.L. 2008. Integrated pest management for strawberries. 2nd ed. Publ No. 3351. University of California Press, Oakland, CA.
  • Swett, C.L., B.B. Butler, N.A. Peres, E.E. Koivunen, E.M. Hellman, and J.R. Beaulieu. 2020. Using model-based fungicide programing to effectively control botrytis and anthracnose fruit rots in mid-Atlantic strawberry fields and co-manage strawberry sap beetle (Stelidota geminate). Crop Prot. 134. doi: 10.1016/j.cropro.2020.105175.
  • Wang, Y.C., S.S. Hewavitharana, and G.J. Holmes. 2021. Botrytis fruit rot incidence in commercially harvested strawberries throughout California. (Abstr.) Phytopath. 111:S2.103.
  • Xiao, C.L., C.K. Chandler, J.F. Price, J.R. Duval, J.C. Mertely, and D.E. Legard. 2001. Comparison of epidemics of botrytis fruit rot and powdery mildew of strawberry in large plastic tunnel and field production systems. Plant Dis. 85(8):901–909. doi: 10.1094/PDIS.2001.85.8.901.