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1 induction of fl expression in the developing conidiophore.
2 t of the asexual reproductive structure, the conidiophore.
3 nd bore lateral and terminal, erect, septate conidiophores.
4 ing phase of development required to produce conidiophores.
5 dia, formed on specialized structures called conidiophores.
6 ation and frequent reinitiation of secondary conidiophores.
7 ptum formation in both hyphae and developing conidiophores.
10 AfuvelB results in the abundant formation of conidiophores and highly increased AfubrlA mRNA accumula
11 on of multicellular reproductive structures (conidiophores) and chains of uninucleate conidia (spores
12 he fungus forms a stroma-like structure with conidiophores arising in tufts outside the cuticle on ae
13 n of asexual spore-forming structures called conidiophores but does not hinder vegetative hyphal grow
16 lopment was further supported by analysis of conidiophore development and septation in cell cycle spe
17 -like sterigmatal cells during multicellular conidiophore development requires correct StuAp-regulate
25 mation of the development specific structure conidiophores even at 12 h of liquid culture, and near c
29 Thirteen sfgA and 1 sfgC mutants elaborated conidiophores in liquid submerged culture, indicating th
31 pression of flbC (OEflbC) does not elaborate conidiophores, it inhibits hyphal growth and activates e
41 oxyurea, while snxC1 causes septation in the conidiophore stalk and aberrant conidiophore structure.
44 ulture and leads to the formation of complex conidiophores that are remarkably similar to wild-tye co
45 ced elaborate sporulation structures, called conidiophores, under environmental conditions that block
46 al modifier medusa (medA) result in aberrant conidiophores with branching chains of reiterated reprod