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Transposable elements (TEs) are viewed as major contributors to the evolution of fungal genomes.
Our results are in agreement with previous studies in suggesting HGT as a likely mechanism in the evolution of fungal 6-MSAS-type PKS genes.
Studies on various biosynthetic pathways in fungi propose that HGT has played an important role in the evolution of fungal genomes, and more generally in metabolic adaption in eukaryotes [44], [45].
Our data are consistent with the rapid polyphyletic evolution of fungal stress responses.
Mating-type genes play an important role in the evolution of fungal species.
Transposable elements (TEs) contribute largely to the evolution of fungal genomes [ 30, 31].
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The dendrogram for the fungal cyclophilins and FKBPs show evidence that this has probably occurred during the evolution of the fungal PPIase repertoires.
It is a valuable organism from an evolutionary standpoint because the zygomycetes diverged early in the evolution of the fungal kingdom [15].
It is striking that the Phycomyces form of α-IPMS clusters with others found in photosynthetic organisms, perhaps suggesting that there were two horizontal gene transfer events for this gene during evolution of the fungal kingdom.
One example is the evolution of the fungal SRP21 protein.
Changes in cell wall may have underlain the evolution of different fungal forms.
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