| dc.relation.references | AHMAD, S.; ALFOUZAN, W. Candida auris: Epidemiology, Diagnosis, Pathogenesis,
Antifungal Susceptibility, and Infection Control Measures to Combat the Spread of Infections
In Healthcare Facilities. Microorganisms, Suiça, v.9, n.4, 2021. DOI:
https://doi.org/10.3390/MICROORGANISMS9040807.
ALTSCHUL, S.F.; MADDEN, T.L.; SCHÄFFER, A.A.; ZHANG, J.; ZHANG, Z.;
MILLER, W.; LIPMAN, D. J. Gapped BLAST and PSI-BLAST: a new generation of protein
database search programs. Nucleic Acids Res, Oxford, v.25, n.17, p.3389-402,
Sept 1997 . DOI: 10.1093/nar/25.17.3389.
ALVES, D. da N.; FERREIRA, A. R.; DUARTE, A. B. S.; MELO, A. K. V.; SOUSA, D. P. de;
CASTRO, R. D. de. Breakpoints for the Classification of Anti-Candida Compounds inAntifungal
Screening. BioMed Research International, New York, 2021. DOI:
https://doi.org/10.1155/2021/6653311.
ARASTEHFAR, A.; LASS-FLÖRL, C.; GARCIA-RUBIO, R.; DANESHNIA, F.; ILKIT,
M.; BOEKHOUT, T.; GABALDON, T.; PERLIN, D. S. The Quiet and Underappreciated
Rise of Drug- Resistant Invasive Fungal Pathogens. Journal of Fungi, Basel, v.6, n.3, p. 1–
34, 2020. DOI: https://doi.org/10.3390/JOF6030138.
ARAUJO, C. R. de; MIRANDA, K. C.; PASSOS, X. S.; SOUZA L.K. H.;, LEMOS J. de A.;
KHRAIS, C. H. A.; COSTA, C. R.; SILVA, M. do R. R.; FERNANDES, O. de F. L.
Identificação das leveduras do gênero candida por métodos manuais convencionaise pelo
métodocromógeno chromagar candid. Revista de Patologia Tropical, v. 34, 2007. DOI:
10.5216/rpt.v34i1.2135.
ARRAES, A. C. P. Detecção da diversidade molecular de Candida spp. Isoladas de
UTI neonatal. Dissertação (Mestrado em Biotecnologia). Salvador: Universidade Federal da Bahia,
Instituto de Ciências da Sáude, 2012. 109p.
BARANTSEVICH, N. E.; VETOKHINA, A.V.; AYUSHINOVA, N. I.; ORLOVA, O. E.;
BARANTSEVICH, E. Candida auris Bloodstream Infections in Russia. Antibiotics, Basel, v. 9, n.9,
p.557, 2020. DOI: https://doi.org/10.3390/antibiotics9090557
BARBERINO, M. G.; SILVA, N.; REBOUÇAS, C.; BARREIRO, K.; ALCÂNTARA, A.P.;
NETTO E.M.; ALBUQUERQUE, L.; BRITES, C. Evaluation of blood stream infections by
Candida in three tertiary hospitals in Salvador, Brazil: a case-control study. Braz J. Infect.
Dis., Espana, v.10, n.1, p.36-40, Feb 2006. DOI: 10.1590/s1413-86702006000100008.
BAUMGARDNER, D. J. Oral Fungal Microbiota: To Thrush and Beyond Oral Fungal
Microbiota: To Thrush and Beyond ILLUSTRATIVE CASE. Journal of Patient-Centered
Research and Reviews, Las Vegas, v.6, n.4, p. 10–28, 2019 DOI:
https://doi.org/10.17294/2330-0698.1705.
79
BENEDETTI, V. P. Isolados de Candida provenientes de pacientes diabéticos e
transplantados renais : análise filogenética, avaliação da resistência ao fluconazol e
polimorfismo do gene ERG11. Tese (Doutorado). Curitiba: Universidade Federal do Paraná,
2014. Disponível em: https://acervodigital.ufpr.br/handle/1884/43551. Acesso em: 12 jun
2023.
BORMAN, A. M.; JOHNSON, E. M. Name changes for fungi of medical importance,2018 to
2019. Journal of Clinical Microbiology, Boston, v.59, n.2, p.1811–1831, 2021. DOI:
https://doi.org/10.1128/JCM.01811-20.
BRANCO, J.; MIRANDA, I. M.; RODRIGUES, A. G. Candida parapsilosis Virulence and
Antifungal Resistance Mechanisms: A Comprehensive Review of Key Determinants.
Journal of Fungi, Basel, v. 9, n. 1, 2023. DOI: https://doi.org/10.3390/jof9010080.
BROOKS, D. R.; BILEWITCH, J.; CONDY, C.; EVANS, D. C.; FOLINSBEE, K. E.;
FRÖBISCH, J.; HALAS,D.; HILL, S.; MCLENNAN, D. A.; MATTERN, M.; TSUJI, L.
A.; WARD, J. L.; WAHLBERG, N.; ZAMPARO, D.; ZANATTA, D. Quantitative
phylogenetic analysis in the 21st century. Revista Mexicana de Biodiversidad, México, v.
78, n. 2, 2007.
CALDART, E. T.; MATA, H.; CANAL, C. W.; RAVAZZOLO, A. P. Análise filogenética:
conceitos básicos e suas utilizações como ferramenta para virologia e epidemiologia
molecular Phylogenetic Analysis: Basic Concepts and Its Use as a Tool for Virology and
Molecular Epidemiology. Acta Scientiae Veterinariae, Rio Grande do Sul, v.44, p.1392,
2016.
CHEW, K. L.; ACHIK, R.; OSMAN, N. H.; OCTAVIA, S.; TEO, J. W. P. Genomic
epidemiology of human candidaemia isolates in a tertiary hospital. Microb Genom, Oxford,
v.9, n.7, 2023. DOI: https://doi.org/10.1099/mgen.0.001047.
CORNWELL, W.; NAKAGAWA, S. Current Biology Phylogenetic comparative methods.
Current Biology, Philadelphia, v.27, p. R333–R336, 2017. DOI:
https://doi.org/10.1016/j.cub.2017.03.049
CZECHOWICZ, P.; NOWICKA, J.; GOŚCINIAK, G. Virulence Factors of Candida spp. and
Host Immune Response Important in the Pathogenesis of Vulvovaginal Candidiasis.
International Journal of Molecular Sciences, Basel, v.23, n. 11, 2022. DOI:
https://doi.org/10.3390/ijms23115895
DANESHNIA, F.; ARASTEHFAR, A.; LOMBARDI, L.; BINDER, U.; SCHELER, J.;
SHAHANDASHTI, R. V.; LASS-FLÖRL, C.; MANSOUR, M. K.; BUTLER, G.; PERLIN,
D. S. Candida parapsilosis isolates carrying mutations outside FKS1 hotspot regions confer
high echinocandin tolerance and facilitate the development of echinocandin resistance.
International Journal Antimicrobial Agents, Amsterdam, v. 62, p. 106831, 2023. DOI:
https://doi.org/10.1016/j.ijantimicag.2023.106831
80
78
DE HOOG, G.S., GERRITS VAN DEN ENDE, A.H.G. Molecular diagnostics of clinical
strains of filamentous basidiomycetes. Mycoses, Manaus, v. 41, n.5-6, p. 183-189, 1998.
DEORUKHKAR, S. C.; SAINI, S.; MATHEW, S. Virulence Factors Contributing to
Pathogenicity of Candida tropicalis and Its Antifungal Susceptibility Profile. Int. J.
Microbiol., São Paulo, v.2014, p.456878, 2014. DOI:
https://doi.org/10.1155/2014/456878.
PINCUS, D.H.; ORENGA, S. S.; CHATELLIER, S. Yeast identification--past, present, and future
methods. Medical Mycology, [s.l.], v 45, n. 2, p. 97–121, Mar 2007. DOI:
https://doi.org/10.1080/13693780601059936.
DHALIWAL, J. S.; MURANG, Z. R.; RAMASAMY, D. T. R.; VENKATASALU, M. R.
Oral Microbiological Evidence among Palliative Patients: An Integrated Systematic
Review. Indian Journal of Palliative Care, Estados Unidos, v.26, n.1, p.110-115, 2020.
DOI: https://doi.org/10.4103/IJPC.IJPC_178_19.
DOMÁN, M.; MAKRAI L.; BÁNYAI K. Molecular Phylogenetic Analysis of Candida
krusei. Mycopathologia, [s.l.], v.187, n.4, p. 333-343, 2022. DOI:
https://doi.org/10.1007/s11046-022-00640-x.
DOMÁN, M.; MAKRAI, L.; VÁSÁRHELYI, B.; BALKA, G.; BÁNYAI, K. Molecular
epidemiology of Candida albicans infections revealed dominant genotypes in waterfowls
diagnosed with esophageal mycosis. Frontiers in Veterinary Science, Lausanne, v.10,
2023. DOI: https://doi.org/10.3389/FVETS.2023.1215624.
DU, H.; BING, J.; HU, T.; ENNIS, C. L.; NOBILE, C. J.; HUANG, G. Candida auris:
Epidemiology, biology, antifungal resistance, and virulence. PLoS Pathogens, United
States, v.16, n.10, p.e1008921, 2020. DOI:
https://doi.org/10.1371/JOURNAL.PPAT.1008921.
FAN, X.; DAI, R. C.; ZHANG, S.; GENG, Y. Y.; KANG, M.; GUO, D. W.; MEI, Y. N.;
PAN, Y. H.; SUN, Z. Y.; GONG, J.; XU, Y. C.; XIAO, M. Tandem gene duplications
contributedto high-level azole resistance in a rapidly expanding Candida tropicalis
population. Nature Communications, [s.l], v.14, n.1, 2023. DOI:
https://doi.org/10.1038/S41467-023-43380-2.
FARMER, D. J.; SYLVIA, D. M. Variation in the ribosomal DNA internal transcribed
spacer of a diverse collection of ectomycorrhizal fungi. Mycological Research, v.102, n.7,
p. 859–865, 1998. DOI: https://doi.org/10.1017/s0953756297005601.
FELSENSTEIN, J. Limites de confiança nas filogenias: uma abordagem usando o
bootstrap. Evolução, [s.l], v.39, p.783-791, 1985.
FITZPATRICK, D. A. et al. Uma filogenia fúngica baseada em 42genomas completos
derivados de superárvore e análise de genes combinados. BMC Evol. Biol., [s.l.], v. 6, p.99,
2006. DOI: https://doi.org/10.1186/1471-2148-6-99.
81
79
GABALDÓN, T.; FAIRHEAD, C. Genomas lançam luz sobre a vida secreta de Candida
glabrata : nem tão assexuada, nem tão comensal. Curr. Genet., [s.l], v. 65, p. 93–98, 2019.
DOI: https://doi.org/10.1007/s00294-018-0867-z.
GAMA, T. M. Micobiota oral e fungemia: análise da possível relação em pacientes
neonatais e pediátricos internados em UTI. 2022. 137 f. Dissertação (Mestrado em Saúde
Pública) - Instituto Leônidas e Maria Deane, Fundação Oswaldo Cruz, Manaus, 2022.
GALINDO, L. J.; LÓPEZ-GARCÍA, P.; TORRUELLA, G.; KARPOV, S.; MOREIRA, D.
Phylogenomics of a new fungal phylum reveals multiple waves of reductive evolution
across Holomycota. Nature Communications, v.12, n.1, p.1–14, 2021. DOI:
https://doi.org/10.1038/s41467-021-25308-w.
GAUTAM, A. K.; VERMA, R.K.; AVASTHI, S.; SUSHMA, B. Y.; DEVADATHA, B.;
NIRANJAN, M.; SUWANNARACH, N. Visão atual sobre métodos tradicionais e
modernos em estimativas de diversidade fúngica. Journal of Fungi, Basel, v.8, n.3, p.226,
2022. DOI: https://doi.org/10.3390/jof8030226.
GERBI, S. A. The evolution of eukaryotic ribosomal DNA. Biosystems, [s.l.], v.19, n.4,
p.247–258, 1986. DOI: https://doi.org/10.1016/0303-2647(86)90001-8.
GEISER, D. M.; PITT, J. I.; TAYLOR, J. W. Cryptic speciation and recombination in the
aflatoxin-producing fungus Aspergillus flavus. Proceedings of the National Academy of
Sciences, [s.l.], v. 95, n.1, p. 388–393, 1998. DOI: https://doi.org/10.1073/pnas.95.1.388.
GHOYOUNCHI, R.; MAHAMI-OSKOUEI, M.; REZAMAND, A.; SPOTIN, A.;
AMINISANI, N.; NAMI, S.; PIRESTANI, M.; BERAHMAT, R.; MADADI, S. Molecular
Phylodiagnosis of Enterocytozoon bieneusi and Encephalitozoon intestinalis in Children
with Cancer: Microsporidia in Malignancies as an Emerging Opportunistic Infection. Acta
Parasitologica, Poland, v. 64, n.1, p.103–111, 2019. DOI: https://doi.org/10.2478/S11686-
018-00012-W.
GIDDINGS, L. A.; NEWMAN, D. J. Extremophilic Fungi from Marine Environments:
Underexplored Sources of Antitumor, Anti-Infective and Other Biologically Active Agents.
Marine Drugs, Basel, v.20, n.1, p.62, 2022. DOI: https://doi.org/10.3390/MD20010062.
GONG,J. et al. Emergence of Antifungal Resistant Subcladesin the Global Predominant
Phylogenetic Population of Candida albicans. Microbiology Spectrum, United States,v.11,
n.1, 2023. DOI: https://doi.org/10.1128/SPECTRUM.03807-22.
GRISOLIA, A. Molecular Methods Developed for the Identification and Characterization
of Candida Species. International Journal of Genetic Science, [s.l], v.4, n.1, p.1–6, 2017.
DOI: https://doi.org/10.15226/2377-4274/4/1/00114
GUPTA, S.; PAUL, K.; KAUR, S. Diverse species in the genus Cryptococcus:Pathogens
and their non-pathogenic ancestors. IUBMB Life, Phyladelphia, v.72, n.11, p. 2303–2312,
2020. DOI: https://doi.org/10.1002/IUB.2377.
82
80
HALL, T.A. BioEdit version 7.2.5. Raleigh, 1997-2001. 1 arquivo (11,5M). 2013.
Disponível em: BioEdit: a user friendly biological sequence alignment editor and analysis
program for Windows 7/8/Vista/XP/2000/NT. 2013. Acesso em: 10 jan. 2023.
HARMON, L. Phylogenetic Comparative Methods. 2019. 234 p. Disponível em:
https://lukejharmon.github.io/pcm/pdf/phylogeneticComparativeMethods.pdf. Acesso em: 12
Jun 2023.
JACQUES, F.; BOLIVAR, P.; PIETRAS, K.; HAMMARLUND, E. U. Roteiro para o estudo
da filogeniae evolução de genes e proteínas — Um guia prático. PLoS ONE, Estados
Unidos, v.18, n.2, p.e0279597, 2023. DOI: https://doi.org/10.1371/journal.pone.0279597.
JILL HARRISON, C.; LANGDALE,J. A. A step by step guide to phylogeny reconstruction.
The Plant Journal : For Cell and Molecular Biology, [s.l.], v.45, n.4, p.561–572, 2006.
DOI: https://doi.org/10.1111/J.1365-313X.2005.02611.X.
JIN, E.; WANG, L. M.; LI, Q. Y.; FENG, X.; MA, S. L. Chronic necrotizing pulmonary
aspergillosis in an immunocompetent patient: report of a rare case. Infection, [s.l.], v.42, n.3,
p. 565–568, 2014. DOI: https://doi.org/10.1007/S15010-013-0575-Z.
KADOSH, D.; MUNDODI, V. A Re-Evaluation of the Relationship between Morphology
and Pathogenicity in Candida Species. Journal of Fungi, Basel, v.6, n.1, 2020. DOI:
https://doi.org/10.3390/JOF6010013
KEAN, R.; RAMAGE, G. Combined Antifungal Resistance and Biofilm Tolerance: the
Global Threat of Candida auris. MSphere, United States, v. 4, n.4, 2019. DOI:
https://doi.org/10.1128/MSPHERE.00458-19.
KIMURA, M. Um método simples para estimar a taxa evolutiva de substituições de bases
através de estudos comparativos de sequências de nucleotídeos. Jornal de Evolução
Molecular, New York, v.16, p.111-120, 1980.
KOLACZKOWSKI, B.; THORNTON, J. W. Long-Branch Attraction Bias and Inconsistency
in Bayesian Phylogenetics. PLoS ONE, United States, v. 4, n.12, p.e7891, 2009. DOI:
https://doi.org/10.1371/journal.pone.0007891.
KOTEY, F. C.; DAYIE, N. T.; TETTEH-UARCOO, P. B.; DONKOR, E. S. Candida
Bloodstream Infections: Changes in Epidemiology and Increase in Drug Resistance.
Infectious Diseases, [s.l.], v.14, p.117863372110269, 2021. DOI:
https://doi.org/10.1177/11786337211026927
KUMAR, S.; NEI, M.; DUDLEY, J.; TAMURA, K. MEGA: a biologist-centric softwarefor
evolutionary analysis of DNA and protein sequences. Briefings in Bioinformatics, Oxford,
v.9, n.4, p.299–306, 2008. DOI: https://doi.org/10.1093/BIB/BBN017.
LEES, J. A.; KENDALL, M.; PARKHILL, J.; COLIJN, C.; BENTLEY, S. D.; HARRIS, S.
R. Evaluation of phylogenetic reconstruction methods using bacterial whole genomes: a
simulation based study. Wellcome Open Research, [s.l.], v . 3, n.33, 2018. DOI:
https://doi.org/10.12688/WELLCOMEOPENRES.14265.2.
83
81
LOPES, J. P.; LIONAKIS, M. S. Pathogenesis and virulence of Candida albicans. Virulence,
[s.l.], v.13, n.1, p. 89-121, 2022. DOI: https://doi.org/10.1080/21505594.2021.2019950.
LUPATINI, M.; MELLO, A. H. de; ANTONIOLLI, Z. I. Caracterização do dna ribossômicodo
isolado de Scleroderma UFSMSc1 de Eucalyptus grandis W. Hill ex-maiden. Revista
Brasileira de Ciência Do Solo, [s.l], v.32, n.spe, p.2677–2682, 2008. DOI:
https://doi.org/10.1590/S0100- 06832008000700010
MACEDO, E. C. O ensino de fungos e a abordagem de conteúdos conceituais,
procedimentais e atitudinais nos livros didáticos de biologia aprovados pelo PNLD 2015.
São Paulo: [s.n.], 2017.
MATUTE, D. R.; SEPÚLVEDA, V. E. Fungal species boundaries in the genomics era.
Fungal Genetics and Biology, [s.l.], v.131, p.103249, 2019. DOI:
https://doi.org/10.1016/J.FGB.2019.103249.
MBA, I.E.; NWEZE, E.I.; EZE, E.A.; ANYAEGBUNAM, Z. K.G. Genome plasticity in
Candida albicans: A cutting-edge strategy for evolution, adaptation, and survival. Infect.
Genet. Evol., Amsterdam, v.99, p. 105256, Apr. 2022. DOI: 10.1016/j.meegid.2022.105256.
MELO, L. F de. A utilização da espectrometria de massa MALDI-TOF na identificação
de microrganismos no controle de qualidade farmacêutico. Monografia - Universidade
Federal de Minas Gerais, Belo Horizonte, 2014. Disponível em:.
http://hdl.handle.net/1843/BUBD-9ZLG5P. Acesso em: 12 jun 2023.
MENDOZA, I. L-I, de; CAYERO-GARAY, A.; QUINDÓS-ANDRÉS, G.;
AGUIRRE-URIZAR, J. M. A systematic review on the implication of Candida in
peri-implantitis. International Journal of Implant Dentistry, [s.l], v.7, n.1, 2021. DOI:
https://doi.org/10.1186/S40729-021- 00338-7.
MERSEGUEL, K.B. et al. Diversidade genética de espécies de Candida emergentes e
clinicamente importantes que causam infecção invasiva. BMC Infect Dis., [s.l], v.15, p.57 2015.
DOI: https://doi.org/10.1186/s12879-015-0793-3.
MINH, B. Q.; SCHMIDT, H. A.; CHERNOMOR, O.; SCHREMPF, D.; WOODHAMS,
M. D.; Von HAESELER, A.; LANFEAR, R.; TEELING, E. IQ-TREE 2: New Models and
Efficient Methods for Phylogenetic Inference in the Genomic Era. Molecular Biology and
Evolution, [s.l.], v.37, n.5, p. 1530–1534, 2020.
DOI: https://doi.org/10.1093/MOLBEV/MSAA015.
MOHR, J.; JOHNSON, M.; COOPER, T.; LEWIS, J. S.; OSTROSKY-ZEICHNER, L.
Current options in antifungal pharmacotherapy. Pharmacotherapy, [s.l.], v.28, n.5,
p. 614–645, 2008. DOI: https://doi.org/10.1592/PHCO.28.5.614.
MOUNT, D. W. Choosing a method for phylogenetic prediction. CSH Protocols,
United Kingdom, v.4, 2008. DOI: https://doi.org/10.1101/PDB.IP49.
NASCIMENTO, F. F.; REIS, M. dos; YANG, Z. A biologist’s guide to Bayesian phylogenetic
analysis. Nature ecology & evolution, London, v. 1, n. 10, p. 1446–1454, 2017.
84
82
NISKANEN, T.; LÜCKING, R.; DAHLBERG, A.; GAYA, E.; SUZ, L. M.;
MIKRYUKOV, V.; LIIMATAINEN,K.; DRUZHININA, I.; WESTRIP, J. R. S.;
MUELLER, G. M.; MARTINS-CUNHA, K.; KIRK, P.; TEDERSOO, L.; ANTONELLI, A.
Pushing the Frontiers of Biodiversity Research: Unveiling the Global Diversity, Distribution,
and Conservation of Fungi. Annual Review of Environmentand Resources, [s.l],v.48,
149–176, 2023. DOI: https://doi.org/10.1146/ANNUREV- ENVIRON-112621-090937/1.
NOVICK, L. R..; STULL, A. T.; CATLEY, K. M. Leitura de árvores filogenéticas: os
efeitos da orientação da árvore e do processamento de texto na compreensão, BioScience,
[s.l], v. 62, n. 8, ago. 2012, p.757-764. DOI: https://doi.org/10.1525/bio.2012.62.8.8.
PALLOTTA, F.; VIALE, P.; BARCHIESI, F. Candida auris: the new fungal threat. Le
Infezioni in Medicina, Italy, v.31, n.3, p. 323, 2023. DOI: https://doi.org/10.53854/LIIM 3103-6.
PAVLOPOULOS, G. A.; SOLDATOS, T. G.; BARBOSA-SILVA, A.; SCHNEIDER, R. A
referenceguide for tree analysis and visualization. BioData Mining, [s,l.], v.3, n.1, p.1–24,
2010. DOI: https://doi.org/10.1186/1756-0381-3-1/TABLES/6.
PEREIRA, C. de Q. M.Identificação de espécies de fungos causadores de onicomicosesem
idosos institucionalizados no município de São Bernardo do Campo. 2012. 87f.
Dissertação (Mestrado em Medicina)- Universidade de São Paulo, São Paulo, 2012.
Disponível em: https://doi.org/10.11606/D.5.2012.TDE-27072012-135045. Acesso em:12 jan
2023.
PFALLER, M. A.; DIEKEMA, D. J. Epidemiology of Invasive Candidiasis: a PersistentPublic
Health Problem. Clinical Microbiology Reviews, [s.l], v.20, n.1, p. 133, 2007. DOI:
https://doi.org/10.1128/CMR.00029-06.
PONDE, N. O.; LORTAL, L.; RAMAGE, G.; NAGLIK, J. R.; RICHARDSON, J. P. Candida
albicans Biofilms and Polymicrobial Interactions. Critical Reviews in Microbiology, [s.l],
v.47, n.1 p.91, 2021. DOI: https://doi.org/10.1080/1040841X.2020.1843400
PORTER, T.M.; GOLDING, G.B. Are similarity- or phylogeny-based methods more
appropriate for classifying internal transcribed spacer (ITS) metagenomic amplicons? New
Phytologyst, London, v. 192, n.3, p. 775-782, 2011.
PREZOTTO, L. F. Análise do ITS1 do DNA ribossômico em espécies do complexo
Anastrepha fraterculus (Diptera: Tephritidae). 2008. Dissertação (Mestrado)- Instituto de
Biociências, Universidade de São Paulo, São Paulo, 2008. DOI:10.11606/D.41.2008.tde 02062008-135324.
PRISTOV, K. E.; GHANNOUM, M. A. Resistance of Candida to azoles and echinocandins
worldwide. Clinical Microbiology and Infection, [s.l], v.25, n.7, p.792–798, 2019. DOI:
https://doi.org/10.1016/J.CMI.2019.03.028
85
83
QURASHI, S.; SALEEM, T.; KOVALENKO, I.; GOLUBYKH, K.; HOLLERAN, L.
Cryptococcusneoformans Presenting as a Lung Mass in an Immunocompromised Patient. The
AmericanJournal of Case Reports, States United, v.23, 2022. DOI:
https://doi.org/10.12659/AJCR.936968.
ARYA, N. R.; RAFIQ, N. B. Candidiasis, [s.l], p.131–136, 2023. DOI:
https://doi.org/10.1007/978-3-031-15130-9_12.
RAMAGE, G.; MARTÍNEZ, J. P.; LÓPEZ-RIBOT, J. L.Candida biofilms on implanted
biomaterials: a clinically significant problem. FEMS Yeast Research, [s.l.], v.6, n.7,
p.979–986, 2006. DOI: https://doi.org/10.1111/J.1567-1364.2006.00117.X
REIS, E. M.; REIS, A. C. Nomenclatura de fungos – novo rumo “One fungus - onename”
Implicações fitopatológicas do código de Melbourne. Summa Phytopathologica, São Paulo,
v.50, 2024. DOI: https://doi.org/10.1590/0100-5405/282516.
ROCHA, W. R. V. da; NUNES, L. E.; NEVES, M. L. R.; XIMENES, E. C. P. de A.;
ALBUQUERQUE, C. P. de A. Candida genus - Virulence factores, Epidemiology,
Candidiasis andResistance mechanisms. Research, Society and Development, [s.l],
v.10, n.4, p.e43910414283, 2021. DOI: https://doi.org/10.33448/RSD-V10I4.14283.
RODRÍGUEZ-CERDEIRA, C.; MARTÍNEZ-HERRERA, E.; CARNERO-GREGORIO, M.;
LÓPEZ-BARCENAS, A.; ; FABBROCINI, G.; FIDA, M.; EL-SAMAHY, M.; GONZÁLEZ CESPÓN, J. L. Pathogenesis and Clinical Relevance of Candida Biofilms in Vulvovaginal
Candidiasis. Frontiers in Microbiology, Irlanda, v.11, 2020. DOI:
https://doi.org/10.3389/FMICB.2020.544480.
ROY, S. S.; DASGUPTA, R.; BAGCHI, A. A Review on Phylogenetic Analysis: A Journey
through Modern Era. Computational Molecular Bioscience, [s.l], v.4, n.3, p.39–45, 2014.
DOI: https://doi.org/10.4236/CMB.2014.43005.
SACHIVKINA, N.; PODOPRIGORA, I.; BOKOV, D. Morphological characteristics of
Candida albicans, Candida krusei, Candida guilliermondii, and Candida glabrata biofilms, and
response to farnesol. Veterinary World, [s.l.], v.14, n.6, p.1608–1614, 2021. DOI:
https://doi.org/10.14202/VETWORLD.2021.1608-1614
SALAZAR, S. B.; SIMÕES, R. S.; PEDRO, N. A.; PINHEIRO, M. J.; CARVALHO,
M. F. N. N.; MIRA, P. An Overview on Conventional and Non-Conventional
Therapeutic Approaches for the Treatment of Candidiasis and Underlying Resistance
Mechanisms in Clinical Strains. Journal of Fungi, Basel, Switzerland, v.6, n.1, 2020.
DOI:https://doi.org/10.3390/JOF6010023
SANGUINETTI, M.; POSTERARO, B.; LASS-FLÖRL, C. Antifungal drug resistance
among Candida species: mechanisms and clinical impact. Mycoses, v.58, Suppl 2, p.2–13,
2015. DOI: https://doi.org/10.1111/MYC.12330.
86
84
SANTOS, G. C. de O.; VASCONCELOS, C. C.; LOPES, A. J.O.; Cartágenes, M. do S. de S.;
FILHO, A. K. D.; NASCIMENTO, F. R. do; RAMOS, R. M.; PIRES, E. R. R. B.;
ANDRADE, M. S. de; ROCHA, F. M. G.; MONTEIRO, C. de A. Candida Infections and
Therapeutic Strategies: Mechanisms of Action for Traditional and Alternative Agents. Front
Microbiol., [s.l.], v. 9, 2018. DOI: https://doi.org/10.3389/fmicb.2018.01351.
SANYAOLU, A.; OKORIE, C.; MARINKOVIC, A.; ABBASI, A. F.; PRAKASH, S.;
MANGAT, J.; HOSEIN, Z.; HAIDER, N.; CHAN, J. Candida auris: An Overview of the
Emerging Drug- Resistant Fungal Infection. Infection & Chemotherapy, Taiwan, v.54, n.2,
p. 236–246, 2022. DOI: https://doi.org/10.3947/IC.2022.0008.
SARVER, B. A. J.; PENNELL, M. W.; BROWN, J.W.; KEEBLE, S.; HARDWICK K.M.;
SULLIVAN J.; HARMO, L. J. The choice of tree prior and molecular clock does not
substantiallyaffect phylogenetic inferences of diversification rates. PeerJ, [s.l.], v. 7, p.
e6334, 2019.
SCHOCH, C. L.; SEIFERT, K. A.; HUHNDORF, S.; ROBERT, V.; SPOUGE, J. L.;
LEVESQUE, C. A.; CHEN, W. Nuclear ribosomal internal transcribed spacer (ITS) region as
a universal DNA barcode marker for Fungi. Proceedings of the National Academy of
Sciences of the United States of America, Oman, v.109, n.16, p.6241–6246, 2012. DOI:
https://doi.org/10.1073/pnas.1117018109
SCHUTZ, K.; MELIE, T.; SMITH, S. D.; QUANDT, C. A. Patterns recovered in
phylogenomic analysis of Candida auris and close relatives implicate broad environmental
flexibility in Candida/Clavispora clade yeasts. Microbial Genomics, [s.l.],v.10, n.4, 2024.
DOI: https://doi.org/10.1099/MGEN.0.001233.
SHARMA, M., Chakrabarti, A. Candidiasis and Other Emerging Yeasts. Current Fungal
Infection Reports, [s.l.], v.17, n.1, p.15–24, 2023. DOI: https://doi.org/10.1007/S12281-023-
00455-3.
SILVEIRA, F. P.; HUSAIN, S. Fungal infections in solid organ transplantation. Medical
Mycology, [s.l.], v.45,n. 4, p.305–320, 2007. DOI:
https://doi.org/10.1080/13693780701200372.
SINGH, H. P.; BANSAL, P.; SH, T. Denture Stomatitis and Candida albicans in the Indian
Population: A Systematic Review and Meta-Analysis. Cureus, [s.l], v.15, n.9, p.e45182,
2023. DOI: https://doi.org/10.7759/cureus.45182
SOLER, J. A. V.; CAMACHO, W. J. M.; RODRÍGUEZ, C. X. F.; MEJÍA, J. A. N.;
GUERRERO, C. F.;CAMACHO, M. A. M. Aspergillus flavus endocarditis in an
immunocompetent child.Case report. Medical Mycology Case Reports, [s.l.], v.22, p.48–51,
2018. DOI: https://doi.org/10.1016/J.MMCR.2018.08.003.
SOKOLONSKI, A R. Activity of Propolis Extracts and Silver Nanoparticles on Candida
spp. Obtained from Prosthetic Stomatitis Cases. 2019. 165f. Thesis (PhD) – Instituto de
Ciências da Saúde, Universidade Federal da Bahia, Salvador, 2019
SUVOROV, A.; SCHRIDER, D. R.Estimativa confiável de comprimentos de galhos de
árvoresusando redes neurais profundas. PLoS Comput Biol., [s.l], v.20, n.8, p.e1012337,
2024. DOI: https://doi.org/10.1371/journal.pcbi.1012337.
87
85
TALAPKO, J.; JUZBAŠIĆ, M.; MATIJEVIĆ, T.; PUSTIJANAC, E.; BEKIĆ, S.;
KOTRIS, I.; ŠKRLEC, I. Candida albicans- The Virulence Factors and Clinical
Manifestations of Infection. Journal of Fungi (Basel, Switzerland), v.7, n.2, p.1–19,
2021. DOI: https://doi.org/10.3390/JOF7020079
TAYLOR, M.; BRIZUELA, M.; RAJA, A. Oral Candidiasis. StatPearls, 2023.
Disponível em: https://www.ncbi.nlm.nih.gov/books/NBK545282/. Acesso em: 12 jan 2023.
TORTORA, G. J.; FUNKE, B. R.;CASE, C. L. Microbiologia. Porto Alegre: Artmed, 2012.
TORTORANO, A. M.; PRIGITANO, A;MORRONI, G.; BRESCINI, L.; BARCHIESI, F.
Candidemia: Evolution of Drug Resistance and Novel Therapeutic Approaches. Infection
and Drug Resistance, [s.l], v.14, p. 5543–5553, 2021. DOI:
https://doi.org/10.2147/IDR.S274872.
VAGHEFI, N.; KUSCH, S.; NÉMETH, M.Z.; SERESS, D.; BRAUN, U.;
TAKAMATSU, S.; PANSTRUGA, R.; KISS, L. Beyond Nuclear Ribosomal DNA
Sequences: Evolution, Taxonomy, and Closest KnownSaprobic Relatives of Powdery
Mildew Fungi (Erysiphaceae) Inferred From Their First Comprehensive Genome-Scale
Phylogenetic Analyses. Front Microbiol., Lausanne, v.13, p.903024, June 2022. DOI:
10.3389/fmicb.2022.903024.
VAN THIEL, D. H.; GEORGE, M.; MOORE, C. M. Fungal Infections: Their Diagnosisand
Treatment in Transplant Recipients. International Journal of Hepatology, Netherlands, v.
2012, p.1–19, 2012. DOI: https://doi.org/10.1155/2012/106923.
VILGALYS, R.; HESTER, M. Rapid Genetic Identification and Mapping ofEnzymatically
Amplified Ribosomal DNA from Several Cryptococcus Species. Journal of Bacteriology,
United States, v.172, n.8,p.4238-4246, 1990. DOI: 10.1128/jb.172.8.4238-4246.1990.
VON LILIENFELD-TOAL, M.; WAGENER, J.; EINSELE, H.; CORNELY, O. A.; KURZAI,
O. Invasive Fungal Infection. Deutsches Arzteblatt International, v.116, n.16, p.271–278,
2019. DOI: https://doi.org/10.3238/ARZTEBL.2019.0271.
WALL, G.; MONTELONGO-JAUREGUI, D.; VIDAL BONIFACIO, B.; LOPEZ-RIBOT, J.
L.; UPPULURI, P. Candida albicans biofilm growth and dispersal: contributions to
pathogenesis. Current opinion in microbiology, London, v. 52, p. 1–6, 2019. DOI:
https://doi.org/10.1016/j.mib.2019.04.001.
WANG, H. Y.; KIM, J.; KIM, S.; PARK, S. D.; KIM, H. Y.; CHOI, H. K.; UH, Y.;
LEE, H. Performance of PCR-REBA assay for screening and identifying pathogens
directly in whole blood of patients with suspected sepsis. Journal of applied
microbiology, Oxford, v.119, n.5, p.1433–1442, 2015. DOI:
https://doi.org/10.1111/jam.12941.
WARNASURIYA, S. D.; UDAYANGA, D.; MANAMGODA, D. S.; BILES, C. Fungi as
environmental bioindicators. Sci. Total Environ., Amsterdam, v. 892, 2023. DOI:
https://doi.org/10.1016/J.SCITOTENV.2023.164583.
88
WEE, L. E.; WONG, C. S. L.; TAN, A. L.; OH, H. M. L. Negative cerebrospinalfluid β-d glucan levels as an indicator for treatment cessation ahead of biochemical resolution: A case
report of Candida glabrata meningitis. Medical Mycology Case Reports, [s.l.], v.32, p.47–
49, 2021. DOI: https://doi.org/10.1016/J.MMCR.2021.03.003.
WHO fungal priority pathogens list to guide research, development and public health action.
(n.d.). OMS, 2022. Disponível em:. https://www.who.int/publications/i/item/9789240060241.
Acesso em: 12 Jan 2023.
WIEDERHOLD, N. P. Emerging Fungal Infections: New Species, New Names, and
Antifungal Resistance. Clinical Chemistry, Baltimore, v. 68, n.1, p. 83, 2022. DOI:
https://doi.org/10.1093/CLINCHEM/HVAB217.
WIJAYAWARDENE, N. N. et al. Outline of Fungi and fungus-like taxa – 2021.
Mycosphere, [s.l.], v.13, n.1, p. 53–453, 2022. DOI:
https://doi.org/10.5943/MYCOSPHERE/13/1/2.
WILKENDORF L.S.; BOWLES, E.; BUIL, J.B.; VAN DER LEE H. A. L.; POSTERARO,
B.; SANGUINETTI M.; VERWEIJ, P. E. Update on Matrix-Assisted Laser Desorption
Ionization-Time of Flight Mass Spectrometry Identification of Filamentous Fungi. J. Clin.
Microbiol., United States, v.58, n.12, p. e01263-20, Nov 2020. doi: 10.1128/JCM.01263-
20.
WHITE JUNIOR, J. F.; MORROW, A.C. Endophyte-host associations in forage grasses.
XII. A fungal endophyte ot Trichachne insularis belonging to Psedocercosporella.
Mycologia, [s.l.], v. 82, n.2, p.218-226, 1990.
WOESE, C. R. Bacterial evolution. Microbiological Reviews, Washington, v. 51, n.2, p.
221–271, 1987. DOI: https://doi.org/10.1128/MR.51.2.221-271.1987.
YOUNG, A. D.; GILLUNG, J. P. Phylogenomics — principles, opportunities andpitfalls of
big-data phylogenetics. Systematic Entomology, [s.l.], v. 45, n.2, p.225–247, 2020. DOI:
https://doi.org/10.1111/SYEN.12406.
ZOU, Y.; ZHANG, Z.; ZENG, Y.; HU, H.; HAO, Y.; HUANG, S.; LI, B. Métodos comuns
para construção de árvores filogenéticas e sua implementação em R. Bioengenharia, [s.l.],
v.11, n.5, p.480, 2024. DOI: https://doi.org/10.3390/bioengineering11050480 | pt_BR |