28. Šišić A, Baćanović-Šišić J, Al-Hatmi AMS et al (2018) The ‘forma specialis’ issue in
Fusarium: a case study in Fusarium solani f. sp. pisi. Sci Rep 8:1252
29. Moretti ANM (2009) Taxonomy of Fusarium genus: a continuous fight between lumpers and
splitters. Proc Nat Sci Matica Srpska Novi Sad 117:7–13
30. Aoki T, O’Donnell K (1999) Morphological and molecular characterization of Fusarium
pseudograminearum sp.nov., formerly recognized as the group 1 population of F.
graminearum. Mycologia 91:597–609
31. Taylor JW, Jacobson DJ, Kroken S et al (2000) Phylogenetic species recognition and species
concepts in fungi. Fungal Genet Biol 31:21–32
32. Marasas WF, Rheeder JP, Lamprecht SC et al (2001) Fusarium andiyazi sp.nov., a new species
from sorghum. Mycologia 93:1203–1210
33. Zeller KA, Summerell BA, Bullock S, Leslie JF (2003) Gibberella konza (Fusarium konzum)
sp.nov. from prairie grasses, a new species in the Gibberella fujikuroi species complex.
Mycologia 95:943–954
34. Kulik T (2008) Detection of Fusarium tricinctum from cereal grain using PCR assay. J Appl
Genet 49:305–311
35. Jurado M, Marin P, Callejas C et al (2010) Genetic variability and fumonisin production by
Fusarium proliferatum. Food Microbiol 27:50–57
36. O’Donnell K, Ward TJ, Geiser DM et al (2004) Genealogical concordance between the mating
type locus and seven other nuclear genes supports formal recognition of nine phylogenetically
distinct species within the Fusarium graminearum clade. Fungal Genet Biol 41:600–623
37. Summerell BA, Leslie JF (2011) Fifty years of Fusarium: how could nine species have ever
been enough? Fungal Divers 50:135–144
38. O’Donnell K, Nirenberg HI, Aoki T, Cigelnik E (2000) A multigene phylogeny of the
Gibberella fujikuroi species complex: detection of additional phylogenetically distinct species.
Mycoscience 41:61–78
39. Mule G, Gonzalez-Jaen MT, Hornok L et al (2005) Advances in molecular diagnosis of
toxigenic Fusarium species: a review. Food Addit Contam 22:316–323
40. Waalwijk C, de Koning JRA, Baayen RP, Gams W (1996) Discordant groupings of Fusarium
spp. from sections Elegans, Liseola and Dlaminia based on ribosomal ITS1 and ITS2
sequences. Mycologia 88:361–368
41. O’Donnell K, Cigelnik E (1997) Two divergent intragenomic rDNA ITS2 types within
a monophyletic lineage of the fungus Fusarium are nonorthologous. Mol Phylogenet Evol
7:103–116
42. Yli-Mattila T, Gagkaeva T (2010) Molecular chemotyping of Fusarium gramineaum, F.
culmorum and F. cerealis isolates from Finland and Russia. In: Gherbawy Y, Voigt K (eds)
Molecular identification of fungi. Springer, Berlin
43. O’Donnell K, Cigelnik E, Nirenberg HI (1998) Molecular systematics and phylogeography of
the Gibberella fujikuroi species complex. Mycologia 90:465–493
44. Wulff EG, Sørensen JS, Lübeck M et al (2010) Fusarium spp. associated with rice Bakanae:
ecology, genetic diversity, pathogenicity and toxigenicity. Environ Microbiol 12:649–657
45. Stępień Ł, Waśkiewicz A, Urbaniak M (2016) Wildly growing asparagus (Asparagus
officinalis L.) hosts pathogenic Fusarium species and accumulates their mycotoxins. Microbial
Ecol 71:927–937
46. Gräfenhan T, Schroers H-J, Nirenberg HI, Seifert KA (2011) An overview of the taxonomy,
phylogeny, and typification of nectriaceous fungi in Cosmospora, Acremonium, Fusarium,
Stilbella, and Volutella. Stud Mycol 68:79–113
47. Sampietro DA, Marín P, Iglesias J et al (2010) A molecular based strategy for rapid diagnosis
of toxigenic Fusarium species associated to cereal grains from Argentina. Fungal Biol
114:74–81
48. Geiser DM, del Mar J-GM, Kang S et al (2004) FUSARIUM ID v.1.0: a DNA sequence
database for identifying Fusarium. Eur J Plant Pathol 110:473–479
238
Ł. Stępień et al.
Fusarium: a case study in Fusarium solani f. sp. pisi. Sci Rep 8:1252
29. Moretti ANM (2009) Taxonomy of Fusarium genus: a continuous fight between lumpers and
splitters. Proc Nat Sci Matica Srpska Novi Sad 117:7–13
30. Aoki T, O’Donnell K (1999) Morphological and molecular characterization of Fusarium
pseudograminearum sp.nov., formerly recognized as the group 1 population of F.
graminearum. Mycologia 91:597–609
31. Taylor JW, Jacobson DJ, Kroken S et al (2000) Phylogenetic species recognition and species
concepts in fungi. Fungal Genet Biol 31:21–32
32. Marasas WF, Rheeder JP, Lamprecht SC et al (2001) Fusarium andiyazi sp.nov., a new species
from sorghum. Mycologia 93:1203–1210
33. Zeller KA, Summerell BA, Bullock S, Leslie JF (2003) Gibberella konza (Fusarium konzum)
sp.nov. from prairie grasses, a new species in the Gibberella fujikuroi species complex.
Mycologia 95:943–954
34. Kulik T (2008) Detection of Fusarium tricinctum from cereal grain using PCR assay. J Appl
Genet 49:305–311
35. Jurado M, Marin P, Callejas C et al (2010) Genetic variability and fumonisin production by
Fusarium proliferatum. Food Microbiol 27:50–57
36. O’Donnell K, Ward TJ, Geiser DM et al (2004) Genealogical concordance between the mating
type locus and seven other nuclear genes supports formal recognition of nine phylogenetically
distinct species within the Fusarium graminearum clade. Fungal Genet Biol 41:600–623
37. Summerell BA, Leslie JF (2011) Fifty years of Fusarium: how could nine species have ever
been enough? Fungal Divers 50:135–144
38. O’Donnell K, Nirenberg HI, Aoki T, Cigelnik E (2000) A multigene phylogeny of the
Gibberella fujikuroi species complex: detection of additional phylogenetically distinct species.
Mycoscience 41:61–78
39. Mule G, Gonzalez-Jaen MT, Hornok L et al (2005) Advances in molecular diagnosis of
toxigenic Fusarium species: a review. Food Addit Contam 22:316–323
40. Waalwijk C, de Koning JRA, Baayen RP, Gams W (1996) Discordant groupings of Fusarium
spp. from sections Elegans, Liseola and Dlaminia based on ribosomal ITS1 and ITS2
sequences. Mycologia 88:361–368
41. O’Donnell K, Cigelnik E (1997) Two divergent intragenomic rDNA ITS2 types within
a monophyletic lineage of the fungus Fusarium are nonorthologous. Mol Phylogenet Evol
7:103–116
42. Yli-Mattila T, Gagkaeva T (2010) Molecular chemotyping of Fusarium gramineaum, F.
culmorum and F. cerealis isolates from Finland and Russia. In: Gherbawy Y, Voigt K (eds)
Molecular identification of fungi. Springer, Berlin
43. O’Donnell K, Cigelnik E, Nirenberg HI (1998) Molecular systematics and phylogeography of
the Gibberella fujikuroi species complex. Mycologia 90:465–493
44. Wulff EG, Sørensen JS, Lübeck M et al (2010) Fusarium spp. associated with rice Bakanae:
ecology, genetic diversity, pathogenicity and toxigenicity. Environ Microbiol 12:649–657
45. Stępień Ł, Waśkiewicz A, Urbaniak M (2016) Wildly growing asparagus (Asparagus
officinalis L.) hosts pathogenic Fusarium species and accumulates their mycotoxins. Microbial
Ecol 71:927–937
46. Gräfenhan T, Schroers H-J, Nirenberg HI, Seifert KA (2011) An overview of the taxonomy,
phylogeny, and typification of nectriaceous fungi in Cosmospora, Acremonium, Fusarium,
Stilbella, and Volutella. Stud Mycol 68:79–113
47. Sampietro DA, Marín P, Iglesias J et al (2010) A molecular based strategy for rapid diagnosis
of toxigenic Fusarium species associated to cereal grains from Argentina. Fungal Biol
114:74–81
48. Geiser DM, del Mar J-GM, Kang S et al (2004) FUSARIUM ID v.1.0: a DNA sequence
database for identifying Fusarium. Eur J Plant Pathol 110:473–479
238
Ł. Stępień et al.
