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Fusarium: more than a node or a foot-shaped basal cell

Recent publications have argued that there are potentially serious consequences for researchers in recognising distinct genera in the terminal fusarioid clade of the family Nectriaceae. Thus, an alternate hypothesis, namely a very broad concept of the genus Fusarium was proposed. In doing so, howeve...

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Autores principales: Crous, P.W., Lombard, L., Sandoval-Denis, M., Seifert, K.A., Schroers, H.-J., Chaverri, P., Gené, J., Guarro, J., Hirooka, Y., Bensch, K., Kema, G.H.J., Lamprecht, S.C., Cai, L., Rossman, A.Y., Stadler, M., Summerbell, R.C., Taylor, J.W., Ploch, S., Visagie, C.M., Yilmaz, N., Frisvad, J.C., Abdel-Azeem, A.M., Abdollahzadeh, J., Abdolrasouli, A., Akulov, A., Alberts, J.F., Araújo, J.P.M., Ariyawansa, H.A., Bakhshi, M., Bendiksby, M., Ben Hadj Amor, A., Bezerra, J.D.P., Boekhout, T., Câmara, M.P.S., Carbia, M., Cardinali, G., Castañeda-Ruiz, R.F., Celis, A., Chaturvedi, V., Collemare, J., Croll, D., Damm, U., Decock, C.A., de Vries, R.P., Ezekiel, C.N., Fan, X.L., Fernández, N.B., Gaya, E., González, C.D., Gramaje, D., Groenewald, J.Z., Grube, M., Guevara-Suarez, M., Gupta, V.K., Guarnaccia, V., Haddaji, A., Hagen, F., Haelewaters, D., Hansen, K., Hashimoto, A., Hernández-Restrepo, M., Houbraken, J., Hubka, V., Hyde, K.D., Iturriaga, T., Jeewon, R., Johnston, P.R., Jurjević, Ž., Karalti, İ., Korsten, L., Kuramae, E.E., Kušan, I., Labuda, R., Lawrence, D.P., Lee, H.B., Lechat, C., Li, H.Y., Litovka, Y.A., Maharachchikumbura, S.S.N., Marin-Felix, Y., Matio Kemkuignou, B., Matočec, N., McTaggart, A.R., Mlčoch, P., Mugnai, L., Nakashima, C., Nilsson, R.H., Noumeur, S.R., Pavlov, I.N., Peralta, M.P., Phillips, A.J.L., Pitt, J.I., Polizzi, G., Quaedvlieg, W., Rajeshkumar, K.C., Restrepo, S., Rhaiem, A., Robert, J., Robert, V., Rodrigues, A.M., Salgado-Salazar, C., Samson, R.A., Santos, A.C.S., Shivas, R.G., Souza-Motta, C.M., Sun, G.Y., Swart, W.J., Szoke, S., Tan, Y.P., Taylor, J.E., Taylor, P.W.J., Tiago, P.V., Váczy, K.Z., van de Wiele, N., van der Merwe, N.A., Verkley, G.J.M., Vieira, W.A.S., Vizzini, A., Weir, B.S., Wijayawardene, N.N., Xia, J.W., Yáñez-Morales, M.J., Yurkov, A., Zamora, J.C., Zare, R., Zhang, C.L., Thines, M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Westerdijk Fungal Biodiversity Institute 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8379525/
https://www.ncbi.nlm.nih.gov/pubmed/34466168
http://dx.doi.org/10.1016/j.simyco.2021.100116
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author Crous, P.W.
Lombard, L.
Sandoval-Denis, M.
Seifert, K.A.
Schroers, H.-J.
Chaverri, P.
Gené, J.
Guarro, J.
Hirooka, Y.
Bensch, K.
Kema, G.H.J.
Lamprecht, S.C.
Cai, L.
Rossman, A.Y.
Stadler, M.
Summerbell, R.C.
Taylor, J.W.
Ploch, S.
Visagie, C.M.
Yilmaz, N.
Frisvad, J.C.
Abdel-Azeem, A.M.
Abdollahzadeh, J.
Abdolrasouli, A.
Akulov, A.
Alberts, J.F.
Araújo, J.P.M.
Ariyawansa, H.A.
Bakhshi, M.
Bendiksby, M.
Ben Hadj Amor, A.
Bezerra, J.D.P.
Boekhout, T.
Câmara, M.P.S.
Carbia, M.
Cardinali, G.
Castañeda-Ruiz, R.F.
Celis, A.
Chaturvedi, V.
Collemare, J.
Croll, D.
Damm, U.
Decock, C.A.
de Vries, R.P.
Ezekiel, C.N.
Fan, X.L.
Fernández, N.B.
Gaya, E.
González, C.D.
Gramaje, D.
Groenewald, J.Z.
Grube, M.
Guevara-Suarez, M.
Gupta, V.K.
Guarnaccia, V.
Haddaji, A.
Hagen, F.
Haelewaters, D.
Hansen, K.
Hashimoto, A.
Hernández-Restrepo, M.
Houbraken, J.
Hubka, V.
Hyde, K.D.
Iturriaga, T.
Jeewon, R.
Johnston, P.R.
Jurjević, Ž.
Karalti, İ.
Korsten, L.
Kuramae, E.E.
Kušan, I.
Labuda, R.
Lawrence, D.P.
Lee, H.B.
Lechat, C.
Li, H.Y.
Litovka, Y.A.
Maharachchikumbura, S.S.N.
Marin-Felix, Y.
Matio Kemkuignou, B.
Matočec, N.
McTaggart, A.R.
Mlčoch, P.
Mugnai, L.
Nakashima, C.
Nilsson, R.H.
Noumeur, S.R.
Pavlov, I.N.
Peralta, M.P.
Phillips, A.J.L.
Pitt, J.I.
Polizzi, G.
Quaedvlieg, W.
Rajeshkumar, K.C.
Restrepo, S.
Rhaiem, A.
Robert, J.
Robert, V.
Rodrigues, A.M.
Salgado-Salazar, C.
Samson, R.A.
Santos, A.C.S.
Shivas, R.G.
Souza-Motta, C.M.
Sun, G.Y.
Swart, W.J.
Szoke, S.
Tan, Y.P.
Taylor, J.E.
Taylor, P.W.J.
Tiago, P.V.
Váczy, K.Z.
van de Wiele, N.
van der Merwe, N.A.
Verkley, G.J.M.
Vieira, W.A.S.
Vizzini, A.
Weir, B.S.
Wijayawardene, N.N.
Xia, J.W.
Yáñez-Morales, M.J.
Yurkov, A.
Zamora, J.C.
Zare, R.
Zhang, C.L.
Thines, M.
author_facet Crous, P.W.
Lombard, L.
Sandoval-Denis, M.
Seifert, K.A.
Schroers, H.-J.
Chaverri, P.
Gené, J.
Guarro, J.
Hirooka, Y.
Bensch, K.
Kema, G.H.J.
Lamprecht, S.C.
Cai, L.
Rossman, A.Y.
Stadler, M.
Summerbell, R.C.
Taylor, J.W.
Ploch, S.
Visagie, C.M.
Yilmaz, N.
Frisvad, J.C.
Abdel-Azeem, A.M.
Abdollahzadeh, J.
Abdolrasouli, A.
Akulov, A.
Alberts, J.F.
Araújo, J.P.M.
Ariyawansa, H.A.
Bakhshi, M.
Bendiksby, M.
Ben Hadj Amor, A.
Bezerra, J.D.P.
Boekhout, T.
Câmara, M.P.S.
Carbia, M.
Cardinali, G.
Castañeda-Ruiz, R.F.
Celis, A.
Chaturvedi, V.
Collemare, J.
Croll, D.
Damm, U.
Decock, C.A.
de Vries, R.P.
Ezekiel, C.N.
Fan, X.L.
Fernández, N.B.
Gaya, E.
González, C.D.
Gramaje, D.
Groenewald, J.Z.
Grube, M.
Guevara-Suarez, M.
Gupta, V.K.
Guarnaccia, V.
Haddaji, A.
Hagen, F.
Haelewaters, D.
Hansen, K.
Hashimoto, A.
Hernández-Restrepo, M.
Houbraken, J.
Hubka, V.
Hyde, K.D.
Iturriaga, T.
Jeewon, R.
Johnston, P.R.
Jurjević, Ž.
Karalti, İ.
Korsten, L.
Kuramae, E.E.
Kušan, I.
Labuda, R.
Lawrence, D.P.
Lee, H.B.
Lechat, C.
Li, H.Y.
Litovka, Y.A.
Maharachchikumbura, S.S.N.
Marin-Felix, Y.
Matio Kemkuignou, B.
Matočec, N.
McTaggart, A.R.
Mlčoch, P.
Mugnai, L.
Nakashima, C.
Nilsson, R.H.
Noumeur, S.R.
Pavlov, I.N.
Peralta, M.P.
Phillips, A.J.L.
Pitt, J.I.
Polizzi, G.
Quaedvlieg, W.
Rajeshkumar, K.C.
Restrepo, S.
Rhaiem, A.
Robert, J.
Robert, V.
Rodrigues, A.M.
Salgado-Salazar, C.
Samson, R.A.
Santos, A.C.S.
Shivas, R.G.
Souza-Motta, C.M.
Sun, G.Y.
Swart, W.J.
Szoke, S.
Tan, Y.P.
Taylor, J.E.
Taylor, P.W.J.
Tiago, P.V.
Váczy, K.Z.
van de Wiele, N.
van der Merwe, N.A.
Verkley, G.J.M.
Vieira, W.A.S.
Vizzini, A.
Weir, B.S.
Wijayawardene, N.N.
Xia, J.W.
Yáñez-Morales, M.J.
Yurkov, A.
Zamora, J.C.
Zare, R.
Zhang, C.L.
Thines, M.
author_sort Crous, P.W.
collection PubMed
description Recent publications have argued that there are potentially serious consequences for researchers in recognising distinct genera in the terminal fusarioid clade of the family Nectriaceae. Thus, an alternate hypothesis, namely a very broad concept of the genus Fusarium was proposed. In doing so, however, a significant body of data that supports distinct genera in Nectriaceae based on morphology, biology, and phylogeny is disregarded. A DNA phylogeny based on 19 orthologous protein-coding genes was presented to support a very broad concept of Fusarium at the F1 node in Nectriaceae. Here, we demonstrate that re-analyses of this dataset show that all 19 genes support the F3 node that represents Fusarium sensu stricto as defined by F. sambucinum (sexual morph synonym Gibberella pulicaris). The backbone of the phylogeny is resolved by the concatenated alignment, but only six of the 19 genes fully support the F1 node, representing the broad circumscription of Fusarium. Furthermore, a re-analysis of the concatenated dataset revealed alternate topologies in different phylogenetic algorithms, highlighting the deep divergence and unresolved placement of various Nectriaceae lineages proposed as members of Fusarium. Species of Fusarium s. str. are characterised by Gibberella sexual morphs, asexual morphs with thin- or thick-walled macroconidia that have variously shaped apical and basal cells, and trichothecene mycotoxin production, which separates them from other fusarioid genera. Here we show that the Wollenweber concept of Fusarium presently accounts for 20 segregate genera with clear-cut synapomorphic traits, and that fusarioid macroconidia represent a character that has been gained or lost multiple times throughout Nectriaceae. Thus, the very broad circumscription of Fusarium is blurry and without apparent synapomorphies, and does not include all genera with fusarium-like macroconidia, which are spread throughout Nectriaceae (e.g., Cosmosporella, Macroconia, Microcera). In this study four new genera are introduced, along with 18 new species and 16 new combinations. These names convey information about relationships, morphology, and ecological preference that would otherwise be lost in a broader definition of Fusarium. To assist users to correctly identify fusarioid genera and species, we introduce a new online identification database, Fusarioid-ID, accessible at www.fusarium.org. The database comprises partial sequences from multiple genes commonly used to identify fusarioid taxa (act1, CaM, his3, rpb1, rpb2, tef1, tub2, ITS, and LSU). In this paper, we also present a nomenclator of names that have been introduced in Fusarium up to January 2021 as well as their current status, types, and diagnostic DNA barcode data. In this study, researchers from 46 countries, representing taxonomists, plant pathologists, medical mycologists, quarantine officials, regulatory agencies, and students, strongly support the application and use of a more precisely delimited Fusarium (= Gibberella) concept to accommodate taxa from the robust monophyletic node F3 on the basis of a well-defined and unique combination of morphological and biochemical features. This F3 node includes, among others, species of the F. fujikuroi, F. incarnatum-equiseti, F. oxysporum, and F. sambucinum species complexes, but not species of Bisifusarium [F. dimerum species complex (SC)], Cyanonectria (F. buxicola SC), Geejayessia (F. staphyleae SC), Neocosmospora (F. solani SC) or Rectifusarium (F. ventricosum SC). The present study represents the first step to generating a new online monograph of Fusarium and allied fusarioid genera (www.fusarium.org).
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spelling pubmed-83795252021-08-30 Fusarium: more than a node or a foot-shaped basal cell Crous, P.W. Lombard, L. Sandoval-Denis, M. Seifert, K.A. Schroers, H.-J. Chaverri, P. Gené, J. Guarro, J. Hirooka, Y. Bensch, K. Kema, G.H.J. Lamprecht, S.C. Cai, L. Rossman, A.Y. Stadler, M. Summerbell, R.C. Taylor, J.W. Ploch, S. Visagie, C.M. Yilmaz, N. Frisvad, J.C. Abdel-Azeem, A.M. Abdollahzadeh, J. Abdolrasouli, A. Akulov, A. Alberts, J.F. Araújo, J.P.M. Ariyawansa, H.A. Bakhshi, M. Bendiksby, M. Ben Hadj Amor, A. Bezerra, J.D.P. Boekhout, T. Câmara, M.P.S. Carbia, M. Cardinali, G. Castañeda-Ruiz, R.F. Celis, A. Chaturvedi, V. Collemare, J. Croll, D. Damm, U. Decock, C.A. de Vries, R.P. Ezekiel, C.N. Fan, X.L. Fernández, N.B. Gaya, E. González, C.D. Gramaje, D. Groenewald, J.Z. Grube, M. Guevara-Suarez, M. Gupta, V.K. Guarnaccia, V. Haddaji, A. Hagen, F. Haelewaters, D. Hansen, K. Hashimoto, A. Hernández-Restrepo, M. Houbraken, J. Hubka, V. Hyde, K.D. Iturriaga, T. Jeewon, R. Johnston, P.R. Jurjević, Ž. Karalti, İ. Korsten, L. Kuramae, E.E. Kušan, I. Labuda, R. Lawrence, D.P. Lee, H.B. Lechat, C. Li, H.Y. Litovka, Y.A. Maharachchikumbura, S.S.N. Marin-Felix, Y. Matio Kemkuignou, B. Matočec, N. McTaggart, A.R. Mlčoch, P. Mugnai, L. Nakashima, C. Nilsson, R.H. Noumeur, S.R. Pavlov, I.N. Peralta, M.P. Phillips, A.J.L. Pitt, J.I. Polizzi, G. Quaedvlieg, W. Rajeshkumar, K.C. Restrepo, S. Rhaiem, A. Robert, J. Robert, V. Rodrigues, A.M. Salgado-Salazar, C. Samson, R.A. Santos, A.C.S. Shivas, R.G. Souza-Motta, C.M. Sun, G.Y. Swart, W.J. Szoke, S. Tan, Y.P. Taylor, J.E. Taylor, P.W.J. Tiago, P.V. Váczy, K.Z. van de Wiele, N. van der Merwe, N.A. Verkley, G.J.M. Vieira, W.A.S. Vizzini, A. Weir, B.S. Wijayawardene, N.N. Xia, J.W. Yáñez-Morales, M.J. Yurkov, A. Zamora, J.C. Zare, R. Zhang, C.L. Thines, M. Stud Mycol Research Paper Recent publications have argued that there are potentially serious consequences for researchers in recognising distinct genera in the terminal fusarioid clade of the family Nectriaceae. Thus, an alternate hypothesis, namely a very broad concept of the genus Fusarium was proposed. In doing so, however, a significant body of data that supports distinct genera in Nectriaceae based on morphology, biology, and phylogeny is disregarded. A DNA phylogeny based on 19 orthologous protein-coding genes was presented to support a very broad concept of Fusarium at the F1 node in Nectriaceae. Here, we demonstrate that re-analyses of this dataset show that all 19 genes support the F3 node that represents Fusarium sensu stricto as defined by F. sambucinum (sexual morph synonym Gibberella pulicaris). The backbone of the phylogeny is resolved by the concatenated alignment, but only six of the 19 genes fully support the F1 node, representing the broad circumscription of Fusarium. Furthermore, a re-analysis of the concatenated dataset revealed alternate topologies in different phylogenetic algorithms, highlighting the deep divergence and unresolved placement of various Nectriaceae lineages proposed as members of Fusarium. Species of Fusarium s. str. are characterised by Gibberella sexual morphs, asexual morphs with thin- or thick-walled macroconidia that have variously shaped apical and basal cells, and trichothecene mycotoxin production, which separates them from other fusarioid genera. Here we show that the Wollenweber concept of Fusarium presently accounts for 20 segregate genera with clear-cut synapomorphic traits, and that fusarioid macroconidia represent a character that has been gained or lost multiple times throughout Nectriaceae. Thus, the very broad circumscription of Fusarium is blurry and without apparent synapomorphies, and does not include all genera with fusarium-like macroconidia, which are spread throughout Nectriaceae (e.g., Cosmosporella, Macroconia, Microcera). In this study four new genera are introduced, along with 18 new species and 16 new combinations. These names convey information about relationships, morphology, and ecological preference that would otherwise be lost in a broader definition of Fusarium. To assist users to correctly identify fusarioid genera and species, we introduce a new online identification database, Fusarioid-ID, accessible at www.fusarium.org. The database comprises partial sequences from multiple genes commonly used to identify fusarioid taxa (act1, CaM, his3, rpb1, rpb2, tef1, tub2, ITS, and LSU). In this paper, we also present a nomenclator of names that have been introduced in Fusarium up to January 2021 as well as their current status, types, and diagnostic DNA barcode data. In this study, researchers from 46 countries, representing taxonomists, plant pathologists, medical mycologists, quarantine officials, regulatory agencies, and students, strongly support the application and use of a more precisely delimited Fusarium (= Gibberella) concept to accommodate taxa from the robust monophyletic node F3 on the basis of a well-defined and unique combination of morphological and biochemical features. This F3 node includes, among others, species of the F. fujikuroi, F. incarnatum-equiseti, F. oxysporum, and F. sambucinum species complexes, but not species of Bisifusarium [F. dimerum species complex (SC)], Cyanonectria (F. buxicola SC), Geejayessia (F. staphyleae SC), Neocosmospora (F. solani SC) or Rectifusarium (F. ventricosum SC). The present study represents the first step to generating a new online monograph of Fusarium and allied fusarioid genera (www.fusarium.org). Westerdijk Fungal Biodiversity Institute 2021-08-17 /pmc/articles/PMC8379525/ /pubmed/34466168 http://dx.doi.org/10.1016/j.simyco.2021.100116 Text en © 2021 Westerdijk Fungal Biodiversity Institute. Production and hosting by ELSEVIER B.V. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Paper
Crous, P.W.
Lombard, L.
Sandoval-Denis, M.
Seifert, K.A.
Schroers, H.-J.
Chaverri, P.
Gené, J.
Guarro, J.
Hirooka, Y.
Bensch, K.
Kema, G.H.J.
Lamprecht, S.C.
Cai, L.
Rossman, A.Y.
Stadler, M.
Summerbell, R.C.
Taylor, J.W.
Ploch, S.
Visagie, C.M.
Yilmaz, N.
Frisvad, J.C.
Abdel-Azeem, A.M.
Abdollahzadeh, J.
Abdolrasouli, A.
Akulov, A.
Alberts, J.F.
Araújo, J.P.M.
Ariyawansa, H.A.
Bakhshi, M.
Bendiksby, M.
Ben Hadj Amor, A.
Bezerra, J.D.P.
Boekhout, T.
Câmara, M.P.S.
Carbia, M.
Cardinali, G.
Castañeda-Ruiz, R.F.
Celis, A.
Chaturvedi, V.
Collemare, J.
Croll, D.
Damm, U.
Decock, C.A.
de Vries, R.P.
Ezekiel, C.N.
Fan, X.L.
Fernández, N.B.
Gaya, E.
González, C.D.
Gramaje, D.
Groenewald, J.Z.
Grube, M.
Guevara-Suarez, M.
Gupta, V.K.
Guarnaccia, V.
Haddaji, A.
Hagen, F.
Haelewaters, D.
Hansen, K.
Hashimoto, A.
Hernández-Restrepo, M.
Houbraken, J.
Hubka, V.
Hyde, K.D.
Iturriaga, T.
Jeewon, R.
Johnston, P.R.
Jurjević, Ž.
Karalti, İ.
Korsten, L.
Kuramae, E.E.
Kušan, I.
Labuda, R.
Lawrence, D.P.
Lee, H.B.
Lechat, C.
Li, H.Y.
Litovka, Y.A.
Maharachchikumbura, S.S.N.
Marin-Felix, Y.
Matio Kemkuignou, B.
Matočec, N.
McTaggart, A.R.
Mlčoch, P.
Mugnai, L.
Nakashima, C.
Nilsson, R.H.
Noumeur, S.R.
Pavlov, I.N.
Peralta, M.P.
Phillips, A.J.L.
Pitt, J.I.
Polizzi, G.
Quaedvlieg, W.
Rajeshkumar, K.C.
Restrepo, S.
Rhaiem, A.
Robert, J.
Robert, V.
Rodrigues, A.M.
Salgado-Salazar, C.
Samson, R.A.
Santos, A.C.S.
Shivas, R.G.
Souza-Motta, C.M.
Sun, G.Y.
Swart, W.J.
Szoke, S.
Tan, Y.P.
Taylor, J.E.
Taylor, P.W.J.
Tiago, P.V.
Váczy, K.Z.
van de Wiele, N.
van der Merwe, N.A.
Verkley, G.J.M.
Vieira, W.A.S.
Vizzini, A.
Weir, B.S.
Wijayawardene, N.N.
Xia, J.W.
Yáñez-Morales, M.J.
Yurkov, A.
Zamora, J.C.
Zare, R.
Zhang, C.L.
Thines, M.
Fusarium: more than a node or a foot-shaped basal cell
title Fusarium: more than a node or a foot-shaped basal cell
title_full Fusarium: more than a node or a foot-shaped basal cell
title_fullStr Fusarium: more than a node or a foot-shaped basal cell
title_full_unstemmed Fusarium: more than a node or a foot-shaped basal cell
title_short Fusarium: more than a node or a foot-shaped basal cell
title_sort fusarium: more than a node or a foot-shaped basal cell
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8379525/
https://www.ncbi.nlm.nih.gov/pubmed/34466168
http://dx.doi.org/10.1016/j.simyco.2021.100116
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AT abdollahzadehj fusariummorethananodeorafootshapedbasalcell
AT abdolrasoulia fusariummorethananodeorafootshapedbasalcell
AT akulova fusariummorethananodeorafootshapedbasalcell
AT albertsjf fusariummorethananodeorafootshapedbasalcell
AT araujojpm fusariummorethananodeorafootshapedbasalcell
AT ariyawansaha fusariummorethananodeorafootshapedbasalcell
AT bakhshim fusariummorethananodeorafootshapedbasalcell
AT bendiksbym fusariummorethananodeorafootshapedbasalcell
AT benhadjamora fusariummorethananodeorafootshapedbasalcell
AT bezerrajdp fusariummorethananodeorafootshapedbasalcell
AT boekhoutt fusariummorethananodeorafootshapedbasalcell
AT camaramps fusariummorethananodeorafootshapedbasalcell
AT carbiam fusariummorethananodeorafootshapedbasalcell
AT cardinalig fusariummorethananodeorafootshapedbasalcell
AT castanedaruizrf fusariummorethananodeorafootshapedbasalcell
AT celisa fusariummorethananodeorafootshapedbasalcell
AT chaturvediv fusariummorethananodeorafootshapedbasalcell
AT collemarej fusariummorethananodeorafootshapedbasalcell
AT crolld fusariummorethananodeorafootshapedbasalcell
AT dammu fusariummorethananodeorafootshapedbasalcell
AT decockca fusariummorethananodeorafootshapedbasalcell
AT devriesrp fusariummorethananodeorafootshapedbasalcell
AT ezekielcn fusariummorethananodeorafootshapedbasalcell
AT fanxl fusariummorethananodeorafootshapedbasalcell
AT fernandeznb fusariummorethananodeorafootshapedbasalcell
AT gayae fusariummorethananodeorafootshapedbasalcell
AT gonzalezcd fusariummorethananodeorafootshapedbasalcell
AT gramajed fusariummorethananodeorafootshapedbasalcell
AT groenewaldjz fusariummorethananodeorafootshapedbasalcell
AT grubem fusariummorethananodeorafootshapedbasalcell
AT guevarasuarezm fusariummorethananodeorafootshapedbasalcell
AT guptavk fusariummorethananodeorafootshapedbasalcell
AT guarnacciav fusariummorethananodeorafootshapedbasalcell
AT haddajia fusariummorethananodeorafootshapedbasalcell
AT hagenf fusariummorethananodeorafootshapedbasalcell
AT haelewatersd fusariummorethananodeorafootshapedbasalcell
AT hansenk fusariummorethananodeorafootshapedbasalcell
AT hashimotoa fusariummorethananodeorafootshapedbasalcell
AT hernandezrestrepom fusariummorethananodeorafootshapedbasalcell
AT houbrakenj fusariummorethananodeorafootshapedbasalcell
AT hubkav fusariummorethananodeorafootshapedbasalcell
AT hydekd fusariummorethananodeorafootshapedbasalcell
AT iturriagat fusariummorethananodeorafootshapedbasalcell
AT jeewonr fusariummorethananodeorafootshapedbasalcell
AT johnstonpr fusariummorethananodeorafootshapedbasalcell
AT jurjevicz fusariummorethananodeorafootshapedbasalcell
AT karaltii fusariummorethananodeorafootshapedbasalcell
AT korstenl fusariummorethananodeorafootshapedbasalcell
AT kuramaeee fusariummorethananodeorafootshapedbasalcell
AT kusani fusariummorethananodeorafootshapedbasalcell
AT labudar fusariummorethananodeorafootshapedbasalcell
AT lawrencedp fusariummorethananodeorafootshapedbasalcell
AT leehb fusariummorethananodeorafootshapedbasalcell
AT lechatc fusariummorethananodeorafootshapedbasalcell
AT lihy fusariummorethananodeorafootshapedbasalcell
AT litovkaya fusariummorethananodeorafootshapedbasalcell
AT maharachchikumburassn fusariummorethananodeorafootshapedbasalcell
AT marinfelixy fusariummorethananodeorafootshapedbasalcell
AT matiokemkuignoub fusariummorethananodeorafootshapedbasalcell
AT matocecn fusariummorethananodeorafootshapedbasalcell
AT mctaggartar fusariummorethananodeorafootshapedbasalcell
AT mlcochp fusariummorethananodeorafootshapedbasalcell
AT mugnail fusariummorethananodeorafootshapedbasalcell
AT nakashimac fusariummorethananodeorafootshapedbasalcell
AT nilssonrh fusariummorethananodeorafootshapedbasalcell
AT noumeursr fusariummorethananodeorafootshapedbasalcell
AT pavlovin fusariummorethananodeorafootshapedbasalcell
AT peraltamp fusariummorethananodeorafootshapedbasalcell
AT phillipsajl fusariummorethananodeorafootshapedbasalcell
AT pittji fusariummorethananodeorafootshapedbasalcell
AT polizzig fusariummorethananodeorafootshapedbasalcell
AT quaedvliegw fusariummorethananodeorafootshapedbasalcell
AT rajeshkumarkc fusariummorethananodeorafootshapedbasalcell
AT restrepos fusariummorethananodeorafootshapedbasalcell
AT rhaiema fusariummorethananodeorafootshapedbasalcell
AT robertj fusariummorethananodeorafootshapedbasalcell
AT robertv fusariummorethananodeorafootshapedbasalcell
AT rodriguesam fusariummorethananodeorafootshapedbasalcell
AT salgadosalazarc fusariummorethananodeorafootshapedbasalcell
AT samsonra fusariummorethananodeorafootshapedbasalcell
AT santosacs fusariummorethananodeorafootshapedbasalcell
AT shivasrg fusariummorethananodeorafootshapedbasalcell
AT souzamottacm fusariummorethananodeorafootshapedbasalcell
AT sungy fusariummorethananodeorafootshapedbasalcell
AT swartwj fusariummorethananodeorafootshapedbasalcell
AT szokes fusariummorethananodeorafootshapedbasalcell
AT tanyp fusariummorethananodeorafootshapedbasalcell
AT taylorje fusariummorethananodeorafootshapedbasalcell
AT taylorpwj fusariummorethananodeorafootshapedbasalcell
AT tiagopv fusariummorethananodeorafootshapedbasalcell
AT vaczykz fusariummorethananodeorafootshapedbasalcell
AT vandewielen fusariummorethananodeorafootshapedbasalcell
AT vandermerwena fusariummorethananodeorafootshapedbasalcell
AT verkleygjm fusariummorethananodeorafootshapedbasalcell
AT vieirawas fusariummorethananodeorafootshapedbasalcell
AT vizzinia fusariummorethananodeorafootshapedbasalcell
AT weirbs fusariummorethananodeorafootshapedbasalcell
AT wijayawardenenn fusariummorethananodeorafootshapedbasalcell
AT xiajw fusariummorethananodeorafootshapedbasalcell
AT yanezmoralesmj fusariummorethananodeorafootshapedbasalcell
AT yurkova fusariummorethananodeorafootshapedbasalcell
AT zamorajc fusariummorethananodeorafootshapedbasalcell
AT zarer fusariummorethananodeorafootshapedbasalcell
AT zhangcl fusariummorethananodeorafootshapedbasalcell
AT thinesm fusariummorethananodeorafootshapedbasalcell