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Memorial

Donald Thomas Wicklow, 1940–2021: Distinguished fungal ecologist and model scientist

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LITERATURE CITED

  • Angawi RF, Swenson DC, Gloer JB, Wicklow DT. 2003. Malettinin A: a new antifungal tropolone from an unidentified fungal colonist of Hypoxylon stromata (NRRL 29110). Tetrahedron Lett. 44:7593–7596.
  • Anonymous. 2016. Inoculum. 67:5.
  • Anonymous. 2021. Donald Wicklow. Peoria Journal Star. Available online at https://www.pjstar.com/obituaries/pils0107445.
  • Calabon MS, Hyde KD, Gentekaki E, Gareth Jones EB, Phookamsak R, Doilom M, Boonmee S, Promputtha I. 2020. Wicklowia phuketensis (Wicklowiaceae, Pleosporales), a novel freshwater taxon from Thailand. Phytotaxa. 452:55–64.
  • Carroll GC, Wicklow DT, editors. 1992. The fungal community—Its organization and role in the ecosystem. 2nd ed. New York (NY): Marcel Dekker; p. 976.
  • Dighton J, White JF, editors. 2017. The fungal community—Its organization and role in the ecosystem. 4th ed. New York (NY): CRC Press; p. 597.
  • Dighton J, White JF, Oudemans P, editors. 2005. The fungal community—Its organization and role in the ecosystem. 3rd ed. New York (NY): CRC Press; p. 960.
  • Gloer JB. 1995. Antiinsectan natural products from fungal sclerotia. Accts Chem Res. 28:343–350.
  • Gloer JB. 2007. Applications of fungal ecology in the search for new bioactive natural products. In: Kubicek CP, Druzhinina IS, editors. The mycota. Vol. IV. 2nd ed. New York (NY): Springer-Verlag. p. 257–283.
  • Gloer JB, TePaske MR, Sima JR, Wicklow DT, Dowd PF. 1988. Antiinsectan aflavinine derivatives from the sclerotia of Aspergillus flavus. J Org Chem. 53:5457–5460.
  • Hesseltine CW. 1979. Dorothy I. Fennell Mycologia. 71:889–891.
  • Joshi BK, Gloer JB, Wicklow DT. 1999. New verticilllin and glisoprenin analogues from Gliocladium catenulatum, a mycoparasite of Aspergillus flavus sclerotia. J Nat Prod. 62:730–733.
  • Li C, Gloer JB, Wicklow DT, Dowd PF. 2002. Thiersinines A and B: novel antiinsectan indole diterpenoids from a new fungicolous Penicillium species (NRRL 28147). Org Lett. 4:3095–3098.
  • Li C, Gloer JB, Wicklow DT, Dowd PF. 2005. Antiinsectan decaturin and oxalicine analogs from Penicillium thiersii. J Nat Prod. 68:319–322.
  • Lussenhop J, Wicklow DT. 1990. Nitidulid beetles (Nitidulidae: coleoptera) as vectors of Aspergillus flavus in pre-harvest maize. Trans Mycol Soc Japan. 31:63–74.
  • Mudur SV, Gloer JB, Wicklow DT. 2006. Sporminarins A and B: antifungal metabolites from a fungicolous isolate of Sporormiella minimoides. J Antibiot. 59:500–506.
  • Naumann TA, Wicklow DT. 2010. Allozyme-specific modification of a maize seed chitinase by a protein secreted by the fungal pathogen Stenocarpella maydis. Phytopathology. 100:645–654.
  • Naumann TA, Wicklow DT. 2013. Chitinase modifying proteins from phylogenetically distinct lineages of Brassica pathogens. Physiol Mol Plant Pathol. 82:1–9.
  • Naumann TA, Wicklow DT, Kendra DF. 2009. Maize seed chitinase is modified by a protein secreted by Bipolaris zeicola. Physiol Mol Plant Pathol. 74:134–141.
  • Naumann TA, Wicklow DT, Price NPJ. 2011. Identification of a chitinase-modifying protein from Fusarium verticillioides: truncation of a host resistance protein by a fungalysin metalloprotease. J Biol Chem. 286:35358–35366.
  • Peterson SW, Bayer EM, Wicklow DT. 2004. Penicillium thiersii, Penicillium angulare and Penicillium decaturense, new species isolated from wood-decay fungi in North America and their phylogenetic placement from multilocus DNA sequences. Mycologia. 96:1280–1293.
  • Raja HA, Ferrer A, Miller AN, Shearer CA. 2010. Freshwater ascomycetes: wicklowia aquatica, a new genus and species in the Pleosporales from Florida and Costa Rica. Mycoscience. 51:208–214.
  • Raper KB, Fennell DI. 1965. The Genus Aspergillus. Baltimore (MD): Williams and Wilkins; p. 686.
  • Thiers BM, Halling RE. 2003. Harry D. Thiers, 1919-2000. Mycologia. 95:1271–1275.
  • Wang H-J, Gloer JB, Wicklow DT, Dowd PF. 1995. Aflavinines and other antiinsectan metabolites from the ascostromata of Eupenicillium crustaceum and related species. Appl Environ Microbiol. 61:4429–4435.
  • Whyte AC, Gloer JB, Wicklow DT, Dowd PF. 1996. Sclerotiamide: a new member of the paraherquamide class with potent antiinsectan activity from the sclerotia of Aspergillus sclerotiorum NRRL 5167. J Nat Prod. 59:1093–1095.
  • Wicklow DT 1964. A biotic factor in serpentine endemism [M.A. thesis]. San Francisco (CA): San Francisco State College. p. 122.
  • Wicklow DT 1971. Soil microfungal changes associated with some disturbed conifer-hardwood forests [Ph.D. dissertation]. Madison: University of Wisconsin. p. 147.
  • Wicklow DT. 1987. Survival of Aspergillus flavus sclerotia in soil. Trans Brit Mycol Soc. 89:131–134.
  • Wicklow DT 1989. Role of fungal sclerotia in the epidemiology of Aspergillus flavus in maize. In: Aibara K, Kumagai S, Ohtsubo K, Yoshizawa T, editors. Proceedings of the Japanese Association of Mycotoxicology, Supplement No. 1, Tokyo, p. 155–159.
  • Wicklow DT, Bobell JR, Palmquist DE. 2003. Effect of intraspecific competition by Aspergillus flavus on aflatoxin formation in suspended disc culture. Mycol Res. 107:617–623.
  • Wicklow DT, Carroll GC, editors. 1981. The fungal community—Its organization and role in the ecosystem. New York (NY): Marcel Dekker; p. 855.
  • Wicklow DT, Dowd PF, TePaske MR, Gloer JB. 1988. Sclerotial metabolites of Aspergillus flavus toxic to a detritivorous maize insect (Carpophilus hemipterus, Nitidulidae). Trans Brit Mycol Soc. 91:433–438.
  • Wicklow DT, Hesseltine CW, Shotwell OL, Adams G. 1980. Interference competition and aflatoxin levels in corn. Phytopathology. 70:761–764.
  • Wicklow DT, Hirschfield BJ. 1979. Evidence of a competitive hierarchy among coprophilous fungal populations. Can J Microbiol. 25:855–858.
  • Wicklow DT, Jordan AM, Gloer JB. 2009. Antifungal metabolites (monorden, monocillins I, II, III, IV) from Colletotrichum graminicola (Ces.) G.W. Wils. NRRL 47511, a systemic vascular pathogen of maize. Mycol Res. 113:1433–1442.
  • Wicklow DT, Joshi BK, Gamble WR, Gloer JB, Dowd PF. 1998. Antifungal metabolites (monorden, monocillin IV, and cerebrosides) from Humicola fuscoatra Traaen NRRL 22980, a mycoparasite of Aspergillus flavus sclerotia. Appl Environ Microbiol. 64:4482–4484.
  • Wicklow DT, Poling SM. 2009. Antimicrobial activity of pyrrocidines from Acremonium zeae against endophytes and pathogens of maize. Phytopathology. 99:109–115.
  • Wicklow DT, Roth S, Deyrup ST, Gloer JB. 2005. A protective endophyte of maize: acremonium zeae antibiotics inhibitory to Aspergillus flavus and Fusarium verticillioides. Mycol Res. 109:610–618.
  • Wicklow DT, Zak JC. 1979. Ascospore germination of carbonicolous ascomycetes in fungistatic soils: an ecological interpretation. Mycologia. 71:238–242.

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