At the dated check, the references listed below either did not resolve in
Crossref or DataCite, or carried a retraction notice. Each one is shown with the
registry record that put it there.
The 74 checked references that resolve
resolves10.2307/3760315Molecular Phylogeny of Northern Hemisphere Species of Armillaria
resolves10.2307/3760392Low-Level Bioluminescence Detected in Mycena haematopus Basidiocarps
resolves10.1111/mec.12646Low host specificity of root‐associated fungi at an Arctic site
resolves10.3852/11-097<i>Neonothopanus gardneri</i>
: a new combination for a bioluminescent agaric from Brazil
resolves10.3852/13-009Taxonomic and phylogenetic re-evaluation of
<i>Mycena illuminans</i>
resolves10.3852/13-274Four new bioluminescent taxa of
<i>Mycena</i>
sect.
<i>Calodontes</i>
from Peninsular Malaysia
resolves10.2307/3761754Phylogenetic Relationships of Australian and New Zealand Armillaria Species
resolves10.11646/phytotaxa.487.3.4Bioluminescent fungus Roridomyces viridiluminus sp. nov. and the first Chinese record of the genus Roridomyces, from Southwestern China
resolves10.1016/j.funeco.2013.02.003Host- and tissue-specificity of moss-associated Galerina and Mycena determined from amplicon pyrosequencing data
resolves10.1002/bio.985Bioluminescence characteristics of a tropical terrestrial fungus (Basidiomycetes)
resolves10.3852/09-197Luminescent<i>Mycena</i>: new and noteworthy species
resolves10.1371/journal.pone.0154794Phylogenetic Analyses of Armillaria Reveal at Least 15 Phylogenetic Lineages in China, Seven of Which Are Associated with Cultivated Gastrodia elata
resolves10.11646/phytotaxa.459.2.6Roridomyces phyllostachydis (Agaricales, Mycenaceae), a new bioluminescent fungus from Northeast India
resolves10.1093/molbev/mst010MAFFT Multiple Sequence Alignment Software Version 7: Improvements in Performance and Usability
resolves10.3390/pathogens10010076Epidemiology, Biotic Interactions and Biological Control of Armillarioids in the Northern Hemisphere
resolves10.1186/s12862-017-0877-3Resolved phylogeny and biogeography of the root pathogen Armillaria and its gasteroid relative, Guyanagaster
resolves10.1111/brv.12672Multi‐level convergence of complex traits and the evolution of bioluminescence
resolves10.1111/1462-2920.12619Metatranscriptomic analysis of ectomycorrhizal roots reveals genes associated with
<scp>
<i>P</i>
</scp>
<i>iloderma–</i>
<scp>
<i>P</i>
</scp>
<i>inus</i>
symbiosis: improved methodologies for assessing gene expression
<i>in situ</i>
resolves10.1007/s00572-017-0767-yDoes warming by open-top chambers induce change in the root-associated fungal community of the arctic dwarf shrub Cassiope tetragona (Ericaceae)?
resolves10.1016/j.funbio.2018.08.007Bioluminescence expression during the transition from mycelium to mushroom in three North American Armillaria and Desarmillaria species
resolves10.1093/molbev/msu300IQ-TREE: A Fast and Effective Stochastic Algorithm for Estimating Maximum-Likelihood Phylogenies
resolves10.1098/rspb.2008.1225Evidence for novel and specialized mycorrhizal parasitism: the orchid
<i>Gastrodia confusa</i>
gains carbon from saprotrophic
<i>Mycena</i>
resolves10.1039/c2pp25032bEvidence that a single bioluminescent system is shared by all known bioluminescent fungal lineages
resolves10.1007/s11557-019-01483-5Progress on the phylogeny of the Omphalotaceae: Gymnopus s. str., Marasmiellus s. str., Paragymnopus gen. nov. and Pusillomyces gen. nov.
resolves10.1006/mpev.1997.0485Molecular Phylogeny and Evolutionary Divergence of North American Biological Species ofArmillaria
resolves10.1134/S1607672917030176Why does the bioluminescent fungus Armillaria mellea have luminous mycelium but nonluminous fruiting body?
resolves10.1007/BF00327810Short communication: In vitro evaluation of a Bacillus sp. for the biological control of the coffee phytopathogen Mycena citricolor
resolves10.1094/Phyto-77-780Production of Oxalic Acid by<i>Mycena citricolor,</i>Causal Agent of the American Leaf Spot of Coffee
resolves10.1007/s11557-013-0939-xMycena kentingensis, a new species of luminous mushroom in Taiwan, with reference to its culture method
resolves10.1038/356428a0The fungus Armillaria bulbosa is among the largest and oldest living organisms
resolves10.1126/science.1174269Bioluminescence in the Ocean: Origins of Biological, Chemical, and Ecological Diversity
The 23 references without a DOI — listed, not checked
no DOI — not checkedBerkeley MJ (1844) Decades of fungi London J Bot 3:185–194
no DOI — not checkedBigelow HE, Miller JOK, Thiers HD (1976) A new species of Omphalotus. Mycotaxon 3(3):363–372
no DOI — not checkedCorner EJH (1981) The agaric genera Lentinus, Panus, and Pleurotus: with particular reference to Malaysian species. Beihefte zur Nova Hedwigia; Heft 69. J. Cramer, Vaduz
no DOI — not checkedDesjardin DE, Capelari M, Stevani CV (2005) A new bioluminescent agaric from Sao Paulo, Brazil. Fungal Divers 18:9–14
no DOI — not checkedHaneda Y (1955) Luminous organisms of Japan and the Far East. The Luminescence of Biological Systems. American Association for the Advancement of Science, Washington DC
no DOI — not checkedHarvey EN (1952) Bioluminescence. Academic Press, New York
no DOI — not checkedHorak E (1978) Mycena rorida (Fr.) Quél. And related species from the southern hemisphere. Ber Schweiz Bot Ges 88(1/2):20–29
no DOI — not checkedJosserand M (1953) Sur la luminescence de “Mycena rorida” en Europe occidentale. Bull Mens Soc Linn Lyon 22(4):99–102
no DOI — not checkedKirk PM, Ainsworth GC, Bisby GR, Bioscience C (2008) Dictionary of the fungi. 10th / prepared by CABI Bioscience, 10th edn. CAB International, Wallingford
no DOI — not checkedKobayasi Y (1951) Contributions to the luminous fungi from Japan. J Hattori Bot Lab 5:1–6
no DOI — not checkedLéveillé JH (1844) Champignons exotiques. Annales des Sciences Naturelles Botanique 3:167–221
no DOI — not checkedLi J, Hu X (1993) A new species of Lampteromyces from Hunan. Act Sci Nat Univ Norm Hunan 16(2):188–189
no DOI — not checkedMaas Geesteranus RA (1992) Filoboletus manipularis and some related species. Proceedings of the Koninklijke Nederlandse Akademie van Wetenschappen 95(2):267–274
no DOI — not checkedMiller OK Jr (1994) Observations on the genus Omphalotus in Australia. Mycol Helv 6:91–100
no DOI — not checkedRedhead SA, Moncalvo JM, Vilgalys R, Desjardin DE, Perry BA (2012) Index Fungorum 14:1–1
no DOI — not checkedSaccardo PA (1887) Sylloge Hymenomycetum, Vol. I. Agaricineae. Sylloge Fungorum 5:1–1146
no DOI — not checkedShaw CG, Kile GA, United States. Forest Service (1991) Armillaria root disease. Agriculture handbook, vol 691. Forest Service, U.S. Dept. of Agriculture, Washington, DC
no DOI — not checkedTerashima Y, Takahashi H, Taneyama Y (2016) The fungal flora in southwestern Japan: agarics and boletes. Tokai University Press, Japan
no DOI — not checkedTreu R, Agerer R (1990) Culture characteristics of some Mycena species. Mycotaxon 38:279–309
no DOI — not checkedWassink EC (1948) Observations on the luminescence in fungi, 1, including a critical review of the species mentioned as luminescent in literature. Recueil des travaux botaniques néerlandais 41(1):150–212
no DOI — not checkedWassink EC (1978) Luminescence in fungi. In: Herring PJ (ed) Bioluminescence in action. Academic Press, London, pp 171–197
no DOI — not checkedWassink EC (1979) On fungus luminescence. Meded Landbouwhogeschool Wageningen 79 (5)
no DOI — not checkedZang M (1979) Some new species of higher fungi from Xizang (Tibet) of China. Acta Bot Yunnanica 1(2):101–105
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