In vivo rearrangement of foreign DNA by Fusarium oxysporum produces linear self-replicating plasmids.

Abstract:

:Particular combinations of fungal strains and transformation vectors allow for fungal rearrangement of normally integrative plasmids, resulting in the creation of linear self-replicating plasmids in Fusarium oxysporum. The rearrangement results in the addition of fungal DNA, including telomere consensus sequences, to plasmid termini. The mechanism by which this rearrangement occurs is unclear, but it has similarities to extrachromosomal gene amplification. A DNA fragment which allows for linear autonomous replication upon reintroduction to the fungus was subcloned and sequenced. This DNA sequence contains the repeated telomeric sequence TTAGGG flanked by a region of twofold symmetry consisting primarily of pUC12 DNA. Isolation and identification of this sequence is the first step toward development of vectors that function as artificial chromosomes in filamentous fungi. This sequence was shown to promote autonomous replication and enhance transformation in several strains of F. oxysporum, Nectria haematococca, and Cryphonectria parasitica.

journal_name

J Bacteriol

journal_title

Journal of bacteriology

authors

Powell WA,Kistler HC

doi

10.1128/jb.172.6.3163-3171.1990

subject

Has Abstract

pub_date

1990-06-01 00:00:00

pages

3163-71

issue

6

eissn

0021-9193

issn

1098-5530

journal_volume

172

pub_type

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