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Acidophilic and acid-tolerant fungi and yeasts

https://doi.org/10.1023/a:1004014603333
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46/46 checkable references clean · checked 2026-07-22

Every reference with a DOI in the deposited reference list resolved to a known work in Crossref or DataCite at the dated check, and none carried a retraction, withdrawal, or removal notice.

29 without a DOI — not checked. A reference deposited without a DOI is never matched by title or guessed at; it stays outside the checked set, and this line discloses that.

The 46 checked references that resolve
resolves10.1097/00010694-192309000-00005
THE OCCURRENCE AND ACTION OF FUNGI IN SOILS
resolves10.2307/2990083
Studies in the Physiology of the Fungi XIV. Sulphur Nutrition: The Use of Thiosulphate as Influenced by Hydrogen-Ion Concentration
resolves10.1128/aem.33.3.681-695.1977
Sensitivity of Various Bacteria, Including Actinomycetes, and Fungi to Cadmium and the Influence of pH on Sensitivity
resolves10.1080/00275514.1959.12024858
Studies on the Genus Phycomyces
resolves10.1139/b58-074
STUDIES ON SLIME ACCUMULATIONS IN PULP AND PAPER MILLS: I. SOME FUNGI ISOLATED FROM MILLS IN NEW BRUNSWICK AND NEWFOUNDLAND
resolves10.2307/2257543
Soil Fungi of Some British Sand Dunes in Relation to Soil Type and Succession
resolves10.1002/j.1537-2197.1940.tb10927.x
GROWTH OF PHYCOMYCES BLAKESLEEANUS IN RELATION TO VARIED ENVIRONMENTAL CONDITIONS
resolves10.1002/j.1537-2197.1950.tb08184.x
STUDIES OF THE RESPIRATION OF THE MYCELIUM OF THE FUNGUS MYROTHECIUM VERRUCARIA
resolves10.1016/S0007-1536(80)80198-7
Influence of pH on toxicity and uptake of copper in Aureobasidium pullulans
resolves10.1139/m74-158
A soil fungus tolerant to extreme acidity and high salt concentrations
resolves10.1016/S0007-1536(68)80064-6
Chitin decomposition in soil
resolves10.1038/301023a0
The Smoking Hills: natural acidification of an aquatic ecosystem
resolves10.1139/v82-350
The mechanism of sulphide oxidation by <i>Mortierella</i><i>isabellina</i> NRRL 1757
resolves10.1128/aem.43.3.643-647.1982
Single-Cell Protein Production by the Acid-Tolerant Fungus <i>Scytalidium acidophilum</i> from Acid Hydrolysates of Waste Paper
resolves10.1097/00010694-192203000-00002
PRELIMINARY STUDIES ON THE ISOLATION OF SULFUR-OXIDIZING BACTERIA FROM SULFUR-FLOATS-SOIL COMPOSTS1
resolves10.1139/m62-085
SOIL FUNGI OF A COPPER SWAMP
resolves10.1007/BF00128634
Thermal stability of an acidic inulinase from Scytalidium acidophilum
resolves10.1007/BF00411250
Properties of an enzymatic complex active in sulfite and thiosulfate oxidation by Rhodotorula sp.
resolves10.2307/4582638
The Flora and Fauna of Surface Waters Polluted by Acid Mine Drainage
resolves10.2307/2257887
Comparative Studies on the Microbiology of Four Moorland Soils in the Northern Pennines
resolves10.1007/BF00009539
Degradation of benzene compounds by yeasts in acidic soils
resolves10.1099/00207713-47-2-324
Rhodotorula cresolica sp. nov., a Cresol-Assimilating Yeast Species Isolated from Soil
resolves10.2307/3753001
A New Genus of Fungi
resolves10.1007/BF00492902
A 31P NMR study of the internal pH of yeast peroxisomes
resolves10.1007/978-3-642-71954-7_8
Ecological Potentials for Planktonic Development and Food Web Interactions in Extremely Acidic Mining Lakes in Lusatia
resolves10.1515/9781501509247-013
Chapter 11. GEOMICROBIOLOGY OF SULFIDE MINERAL OXIDATION
resolves10.1080/00021369.1974.10861344
Copper Tolerance of a New Strain of <i>Penicillium ochro-chloron</i>
resolves10.1099/00221287-10-1-177
Factors affecting the Growth of some Fungi associated with Sewage Purification
resolves10.1016/S0016-2361(98)00147-1
Hydrobiogeochemical interactions in `anoxic' limestone drains for neutralization of acidic mine drainage
resolves10.1038/375741b0
Life at extremely low pH
resolves10.1002/jobm.19650050507
Geomikrobiologische Untersuchungen VII: Über das Vorkommen von Mikroorganismen in Solfataren und heißen Quellen
resolves10.1111/j.1469-8137.1959.tb05329.x
THE ECOLOGY OF FUNGI IN <i>CALLUNA‐HEATHLAND</i> SOILS
resolves10.1139/m74-043
A new acidophilic <i>Scytalidium</i>
resolves10.1080/00275514.1969.12018697
Perfect States of Stemphylium
resolves10.1007/BF00431172
Isolation of Penicillium corylophium Dierckx from acid mine water and its optimal growth on hydrocarbons at acid pH
resolves10.1080/00275514.1977.12020119
Effect of <i>p</i> H on the Tolerance of <i>Penicillium Nigricans</i> to Copper and Other Heavy Metals
resolves10.1128/jb.56.5.679-681.1948
Fungi Capable of Growing in Strongly Acid Media and in Concentrated Copper Sulfate Solutions
resolves10.1111/j.1744-7348.1963.tb03710.x
The uptake of copper by fungal cells
resolves10.1099/00221287-78-2-217
Effect of pH on Toxicity of Copper to Scytalidium sp., a Copper-tolerant Fungus, and Some Other Fungi
resolves10.1128/jb.45.5.509-519.1943
Fungi Tolerant to Extreme Acidity and High Concentrations of Copper Sulfate
resolves10.1080/00275514.1979.12021072
Copper Tolerance and Accumulation in <i>Penicillium Ochro-Chloron</i> Isolated from Copper-Plating Solution
resolves10.1128/aem.52.5.1107-1111.1986
Heterotrophic Nitrification in an Acid Forest Soil and by an Acid-Tolerant Fungus
resolves10.1038/242202a0
Dactylaria gallopava, a Cause of Avian Encephalitis, in Hot Spring Effluents, Thermal Soils and Self-heated Coal Waste Piles
resolves10.1002/bit.260130106
Utilization of cellulose from waste paper by <i>Myrothecium verrucaria</i>
resolves10.1016/S0007-1536(84)80197-7
Sulphur oxidation by some thermophilous fungi
The 29 references without a DOI — listed, not checked
no DOI — not checkedAlexopoulos, C. J., C. W. Mims & M. Blackwell, 1996. Introductory Mycology. Wiley, New York: 880 pp.
no DOI — not checkedBarnett, H. L. & B. B. Hunter, 1987. Illustrated Genera of Imperfect Fungi. 4th edn, McMillian, New York: 218 pp.
no DOI — not checkedBarnett, J. A., R. W. Payne & D. Yarrow, 1983. Yeasts: Characteristics and Identification. Cambridge Univ. Press, Cambridge: 811 pp.
no DOI — not checkedBarron, G. L., 1962. New species and new records of Oidiodendron. Can. J. Bot. 40: 606–607.
no DOI — not checkedBatra, L. R., 1991. World species of Monilinia (Fungi): their ecology, biosystematics and control. Cramer, Berlin: 246 pp.
no DOI — not checkedBedford, C. L., 1936. Morphological and physiological studies upon a Penicillium sp. tolerant to saturated copper sulfate. Z. Bakteriol. 94: 102–112.
no DOI — not checkedBelly, R. T., M. R. Tansey & T. D. Brock, 1973. Algal excretion of 14C-labeled compounds and microbial interactions in Cyanidium caldarium mats. J. Phycol. 9: 123–127.
no DOI — not checkedChristensen, M. & W. F. Wittingham, 1965. The soil microfungi of open bogs and conifer swamps in Wisconsin. Mycologia 57: 883–896.
no DOI — not checkedDe Hoog, G. S. 1985. Taxonomy of the Dactylaria complex, IV-VI. Stud. Mycol. 26: 53 pp.
no DOI — not checkedDomsch, K. H., W. Gams & T. H. Anderson, 1993. Compendium of soil fungi. Vol. I, IHW-Verlag, Eching, Germany: 1264 pp.
no DOI — not checkedEhrlich, H. L., 1996. Geomicrobiology, 3. Marcel Dekker, New York: 719 pp.
no DOI — not checkedGadd, G. M., J. A. Chudek, R. Foster & R. H. Reed, 1984. The osmotic response of Penicillium ochro-chloron: Changes in internal solute levels in response to copper and salt stress. J. gen. Microbiol. 130: 1969–1975.
no DOI — not checkedGadd, G. M. & C. White, 1985. Copper uptake by Penicillium ochro-chloron: Influence of pH on toxicity and demonstration of energy-dependent copper influx using protoplasts. J. gen. Microbiol. 131: 1875–1879.
no DOI — not checkedGilman, J. C, 1957. A manual of soil fungi. 2nd edn. Iowa State College Press, Ames, Iowa: 450 pp.
no DOI — not checkedGrayston, S. J., 1987. Sulphur oxidation and nitrification by fungi in vitro and in soils: PhD Thesis, University of Sheffield, U.K.
no DOI — not checkedHawker, L. E., 1950. Physiology of Fungi. University of London Press, London: 360 pp.
no DOI — not checkedHawksworth, D. L., P. M. Kirk, B. C. Sutton & D. N. Pegler, 1995. Ainsworth and Bisby's Dictionary of the Fungi, Including the Lichens, 8. CAB International, University Press Cambridge, U.K.: 616 pp.
no DOI — not checkedJackson, L. W. R., 1940. Effects of H-ion and Al-ion concentration damping-off of conifers, and certain causative fungi. Phytopathology 30: 363–379.
no DOI — not checkedJohnson, J. W., 1923. Relationships between hydrogen-ion, hydroxy-ion and salt concentration and the growth of seven soil moulds. Iowa agr. Exp. Sta. Res. Bull. 76: 307–344.
no DOI — not checkedKreger-van Rij, N. J. W., 1998. The Yeasts. Elsevier, Amsterdam, 1055 pp.
no DOI — not checkedLinnemann, G., 1941. Die Mucorineen Gattung Mortierella Coemans. Pflanzenforschung 23: 1–64.
no DOI — not checkedMowll, J. L. & G. M. Gadd, 1984. Cadmium uptake by Aureobasidium pullulans. J. gen. Microbiol. 130: 279–284.
no DOI — not checkedPitt, J. I., 1979. The Genus Penicillium and its Teleomorphic States Eupenicillium and Talaromyces. AcademicPress, London. 634 pp.
no DOI — not checkedRao, S. S. (ed.), 1989. Acid Stress and Aquatic Microbial Interactions. CRC Press, Boca Raton (FL): 176 pp.
no DOI — not checkedRawlings, D. E. (ed.), 1997. Biomining: Theory, Microbes and Industrial Processes. Springer-Verlag, New York: 302 pp.
no DOI — not checkedRossi, G. & A. E. Torma (eds), 1983. Recent Progress in Biohydrometallurgy. Ass. Mineraria Sarda, Iglesias (Italy): 752 pp.
no DOI — not checkedWainwright, M., 1988. Inorganic sulphur oxidation by fungi. In Boddy, L., R. Marchant & J. J. Read (eds), Nitrogen, Phosphorus and Sulphur Utilization by Fungi. Cambridge University Press, Cambridge: 71–88.
no DOI — not checkedWainwright, M. & S. J. Grayston, 1989. Accumulation and oxidation of metal sulphides by fungi, Chapter 8. In Poole, R. K. & G. M. Gadd (eds), Metal-Microbe Interactions. IRL Press at Oxford University, New York: 119–130.
no DOI — not checkedWebb, R. W., 1922. Studies in the physiology of the fungi. XV. Germination of certain fungi in relation to hydrogen-ion concentration. Ann. Missouri Bot. Garden 8: 238–241.
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