©2023 International Society of Arboriculture Arboriculture & Urban Forestry 49(1): January 2023 13 Haugen L, Stennes M. 1999. Fungicide injection to control Dutch elm disease: Understanding the options. Plant Diag- nosticians Quarterly. 20(2):29-38. Hughes M, Smith JA, Mayfield AE III, Minno MC, Shin K. 2011. First report of laurel wilt disease caused by Raffaelea lauricola on pondspice in Florida. Plant Disease. 95(12):1588. https://doi.org/10.1094/PDIS-06-11-0528 Hulcr J, Lou Q-Z. 2013. The redbay ambrosia beetle (Coleoptera: Curculionidae) prefers Lauraceae in its native range: Records from the Chinese National Insect Collection. Florida Ento- mologist. 96(4):1595-1596. https://doi.org/10.1653/024.096 .0444 Immel DL. 2016. Plant guide: Sassafras: Sassafras albidum (Nutt.) Nees. Lincoln (NE, USA): USDA, NRCS National Plant Data Center. [Accessed 2022 June 2]. https://plants .usda.gov/DocumentLibrary/plantguide/pdf/cs_saal5.pdf Inch SA, Ploetz RC. 2011. Impact of laurel wilt, caused by Raf- faelea lauricola, on xylem function in avocado, Persea americana. Forest Pathology. 42(3):239-245. https://doi.org/ 10.1111/j.1439-0329.2011.00749.x Inch S, Ploetz R, Held B, Blanchette R. 2012. Histological and anatomical responses in avocado, Persea americana, induced by the vascular wilt pathogen, Raffaelea lauricola. Botany. 90(7):627-635. https://doi.org/10.1139/b2012-015 Mayfield AE III, Barnard EL, Smith JA, Bernick SC, Eickwort JM, Dreaden TJ. 2008a. Effect of propiconazole on laurel wilt disease development in redbay trees and on the pathogen in vitro. Arboriculture & Urban Forestry. 34(5):317-324. https://doi.org/10.48044/jauf.2008.043 Mayfield AE III, Smith JA, Hughes M, Dreaden TJ. 2008b. First report of laurel wilt disease caused by a Raffaelea sp. on avo- cado in Florida. Plant Disease. 92(6):976. https://doi.org/10 .1094/PDIS-92-6-0976A Mayfield AE, Villari C, Hamilton JL, Slye J, Langston W, Oten K, Fraedrich SW. 2019. First report of laurel wilt disease caused by Raffaelea lauricola on sassafras in North Carolina. Plant Disease. 103(1):155. https://doi.org/10.1094/PDIS-05 -18-0871-PDN Olatinwo R, Hwang J, Johnson W, Fraedrich SW. 2019. First report of laurel wilt disease caused by Raffaelea lauricola on swamp bay in Louisiana. Plant Disease. 103(7):1777. https:// doi.org/10.1094/PDIS-02-19-0284-PDN Olatinwo R, Hwang J, Johnson W. 2021. First report of laurel wilt disease caused by Raffaelea lauricola on spicebush in Louisiana. Plant Disease. 105(8):2250. https://doi.org/10 .1094/PDIS-11-20-2511-PDN Ploetz RC, Pérez-Martínez JM, Evans EA, Inch SA. 2011. Toward fungicidal management of laurel wilt of avocado. Plant Disease. 95(8):977-982. https://doi.org/10.1094/pdis -08-10-0595 Ploetz RC, Hughes MA, Kendra PE, Fraedrich SW, Carrillo D, Stelinski LL, Hulcr J, Mayfield AE III, Dreaden T, Crane JH, Evans EA, Schaffer BA, Rollins J. 2017. Recovery plan for laurel wilt of avocado, caused by Raffaelea lauricola. Plant Health Progress. 18(2):51-77. https://doi.org/10.1094/PHP -12-16-0070-RP Rabaglia RJ, Dole SA, Cognato AI. 2006. Review of American Xyleborina (Coleoptera: Curculionidae: Scolytinae) occur- ring north of Mexico, with an illustrated key. Annals of the populations in southeast Georgia. Southeast Naturalist. 14(4): 650-674. https://doi.org/10.1656/058.014.0408 Cochran WG. 1954. Some methods for strengthening the common x2 tests. Biometrics. 10(4):417-451. https://doi.org/10.2307/ 3001616 de Beer ZW, Procter M, Wingfield MJ, Marincowitz S, Duong TA. 2022. Generic boundaries in the Ophiostomatales recon- sidered and revised. Studies in Mycology. 101(1):57-120. https://doi.org/10.3114/sim.2022.101.02 Eggers J, Juzwik J, Bernick S, Morduant L. 2005. Evaluation of propiconazole operational treatments of oaks for oak wilt control. Saint Paul (MN, USA): USDA Forest Service, North Central Research Station. Research Note (RN) NC-390. 6 p. https://doi.org/10.2737/NC-RN-390 Forest Products Laboratory. 1999. Wood handbook: Wood as an engineering material. Madison (WI, USA): USDA Forest Service, Forest Products Laboratory. General technical report FPL; GTR-113. 463 p. https://doi.org/10.2737/FPL-GTR-113 Formby JP, Rodgers JC, Koch FH, Krishnan N, Duerr DA, Rig- gins JJ. 2017. Cold tolerance and invasive potential of the redbay ambrosia beetle (Xyleborus glabratus) in the eastern United States. Biological Invasions. 20:995-1007. https://doi .org/10.1007/s10530-017-1606-y Fraedrich SW, Harrington TC, Rabaglia RJ, Ulyshen MD, May- field AE III, Hanula JL, Eickwort JM, Miller DR. 2008. A fungal symbiont of the redbay ambrosia beetle causes a lethal wilt in redbay and other Lauraceae in the southeastern United States. Plant Disease. 92(2):215-224. https://doi.org/10.1094/ pdis-92-2-0215 Fraedrich SW, Johnson CW, Menard RD, Harrington TC, Olat- inwo R, Best GS. 2015. First report of Xyleborus glabratus (Coleoptera: Curculionidae: Scolytinae) and laurel wilt in Louisiana, USA: The disease continues westward on sassafras. Florida Entomologist. 98(4):1266-1268. https://doi.org/10 .1653/024.098.0445 Fraedrich SW, Harrington TC, McDaniel BA, Best GS. 2016. First report of laurel wilt, caused by Raffaelea lauricola, on spicebush (Lindera benzoin) in South Carolina. Plant Disease. 100(11):2330. https://doi.org/10.1094/PDIS-05-16-0674-PDN Griggs MM. 1990. Sassafras albidum (Nutt.) Nees. In: Burns RM, Honkala BH, technical coordinators. Silvics of North America: Volume 2, hardwoods. Agriculture handbook 654. Washington (DC, USA): USDA Forest Service. p. 773-777. https://www .srs.fs.usda.gov/pubs/misc/ag_654_vol2.pdf Grosman DM, Eskalen A, Brownie C. 2019. Evaluation of ema- mectin benzoate and propiconazole for management of a new invasive shot hole borer (Euwallacea nr. fornicatus, Coleoptera: Curculionidae) and symbiotic fungi in California sycamores. Journal of Economic Entomology. 112(3):1267-1273. https:// doi.org/10.1093/jee/toy423 Harrington TC, Fraedrich SW, Aghayeva DN. 2008. Raffaelea lauricola, a new ambrosia beetle symbiont and pathogen on the Lauraceae. Mycotaxon. 104:399-404. https://www.srs.fs .usda.gov/pubs/ja/ja_harrington008.pdf Harrington TC, Yun HY, Lu S-S, Goto H, Aghayeva DN, Fraed- rich SW. 2011. Isolations from the redbay ambrosia beetle, Xyleborus glabratus, confirm that the laurel wilt pathogen, Raffaelea lauricola, originated in Asia. Mycologia. 103(5): 1028-1036. https://doi.org/10.3852/10-417
January 2023
Title Name |
Pages |
Delete |
Url |
Empty |
Search Text Block
Page #page_num
#doc_title
Hi $receivername|$receiveremail,
$sendername|$senderemail wrote these comments for you:
$message
$sendername|$senderemail would like for you to view the following digital edition.
Please click on the page below to be directed to the digital edition:
$thumbnail$pagenum
$link$pagenum
Your form submission was a success. You will be contacted by Washington Gas with follow-up information regarding your request.
This process might take longer please wait