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1 ets of genomic information for the sequenced aspergilli.
2 is and/or function during conidiation in the aspergilli.
3 ng the genetics and molecular biology of the Aspergilli.
4 enables echinocandin tolerance in pathogenic aspergilli.
5 he newly genome sequenced species with other aspergilli.
6 tro, distinguishing it from other pathogenic aspergilli.
7 ost common cause of IA, and other pathogenic aspergilli.
8 roduction genes being a key feature of black aspergilli, alternative approaches for degrading plant b
9 wide view of the biological diversity of the aspergilli and in many, but not all, cases linked genome
10 referenced strains and clinical isolates of aspergilli and other fungi were amplified, sequenced, an
11 encompass annotated sequence for eight other Aspergilli and provides much needed support to the inter
12 mpared to other heterothallic or homothallic aspergilli and require unusually fastidious environmenta
13 to be conserved between ST- and AF-producing aspergilli, as are most of the other genes in the cluste
14 repressing conidiation is conserved in other aspergilli, as deleting nsdD causes enhanced and precoci
15 and the phylogenetic relationship with other aspergilli based on the sequence analysis of Mcm7, RPB2,
16 idal for candida strains and fungistatic for aspergilli by targeting cell wall 1,3-beta-glucan syntha
18 mining the genetics and molecular biology of Aspergilli, cutting-edge comparative genomics approaches
21 acecraft may frequently be contaminated with aspergilli (including A. penicillioides) and other organ
22 otype for the a-factor-like pheromone of the aspergilli, including expression of ppgB in a MAT1-2-1-d
25 aggregate collection of clinical isolates of aspergilli (n = 218) from transplant patients with prove
30 erstanding of the fundamental biology of the Aspergilli, together with applications within the biotec