| Literature DB >> 31890232 |
Mikkel Rank Nielsen1, Anna Karolina Rilana Holzwarth1, Emmett Brew1, Natalia Chrapkova1, Samba Evelyne Kabemba Kaniki1, Kenneth Kastaniegaard2, Trine Sørensen2, Klaus Ringsborg Westphal2, Reinhard Wimmer2, Teis Esben Sondergaard2, Jens Laurids Sørensen1.
Abstract
BACKGROUND: Besides their ability to produce several interesting bioactive secondary metabolites, members of the Fusarium solani species complex comprise important pathogens of plants and humans. One of the major obstacles in understanding the biology of this species complex is the lack of efficient molecular tools for genetic manipulation.Entities:
Keywords: Agrobacterium tumefaciens-mediated transformation; Bostrycoidin; Fluorescence; Fusarium; Fusarubin; Heterologous expression; Polyketides; Secondary metabolites; Transformation
Year: 2019 PMID: 31890232 PMCID: PMC6905090 DOI: 10.1186/s40694-019-0089-2
Source DB: PubMed Journal: Fungal Biol Biotechnol ISSN: 2054-3085
Fig. 1Illustration and an actual agarose of the four PCR fragments, which are subsequently assembled into pSHUT4-eYFP via yeast recombinational assembly
Fig. 2Construction and validation of eYFP overexpression mutant Fs OE::eYFP-6. a Integration of pSHUT4-eYFP T-DNA cassette into a non-coding position of the F. solani genome through homologous recombination between identical segments (blue). Primer positions are marked, and a full list of primers is found in Additional file 1. b DIC pictures and EFI projections comparing parental and mutant strain phenotypes. Scale bar = 100 µm. c Genome sequencing validation displays correct integration of the pSHUT4-eYFP T-DNA cassette via homologous recombination. d Growth and eYFP induction of F. solani wild type and OE::eYFP-6 during growth on nine different media. The left panel illustrates growth (optical density) over a 7 days period. The right panel illustrates fluorescence at excitation/emission wavelength of 514/526. All data points are the average of four biological replicates, expressed as a percentage of the maximum observed value
Fig. 3Construction and validation of overexpression mutant Fs OE::fsr6. a Illustration of fsr gene cluster orthologues in Fusarium solani, F. fujikuroi and F. graminearum. b Workflow for replacement of the eYFP gene for fsr6 in the agrobacterium shuttle vector pSHUT4 via yeast mediated recombinational assembly. c Photographs of F. solani wild type and fsr6 overexpression mutant. d growth diameter test on Czapek dox and yeast sucrose agar media. e genome sequencing of Fs OE::fsr6 reveals correct integration of the pSHUT4-fsr6 T-DNA cassette in the locus via homologous recombination. f HPLC–MS total ion chromatograms for metabolite extracts from F. solani wild type and the fsr6 overexpression mutant in triplicates. The compounds javanicin [M + H]+ = 291.0868 and bostrycoidin [M + H]+ = 286.0715 were observed in the mutant extracts