Literature DB >> 26662839

Two separate key enzymes and two pathway-specific transcription factors are involved in fusaric acid biosynthesis in Fusarium fujikuroi.

Lena Studt1, Slavica Janevska1, Eva-Maria Niehaus1, Immo Burkhardt2, Birgit Arndt3, Christian M K Sieber4, Hans-Ulrich Humpf3, Jeroen S Dickschat2, Bettina Tudzynski1.   

Abstract

Fusaric acid (FSA) is a mycotoxin produced by several fusaria, including the rice pathogen Fusarium fujikuroi. Genes involved in FSA biosynthesis were previously identified as a cluster containing a polyketide synthase (PKS)-encoding (FUB1) and four additional genes (FUB2-FUB5). However, the biosynthetic steps leading to FSA as well as the origin of the nitrogen atom, which is incorporated into the polyketide backbone, remained unknown. In this study, seven additional cluster genes (FUB6-FUB12) were identified via manipulation of the global regulator FfSge1. The extended FUB gene cluster encodes two Zn(II)2 Cys6 transcription factors: Fub10 positively regulates expression of all FUB genes, whereas Fub12 is involved in the formation of the two FSA derivatives, i.e. dehydrofusaric acid and fusarinolic acid, serving as a detoxification mechanism. The major facilitator superfamily transporter Fub11 functions in the export of FSA out of the cell and is essential when FSA levels become critical. Next to Fub1, a second key enzyme was identified, the non-canonical non-ribosomal peptide synthetase Fub8. Chemical analyses of generated mutant strains allowed for the identification of a triketide as PKS product and the proposition of an FSA biosynthetic pathway, thereby unravelling the unique formation of a hybrid metabolite consisting of this triketide and an amino acid moiety.
© 2015 Society for Applied Microbiology and John Wiley & Sons Ltd.

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Year:  2016        PMID: 26662839     DOI: 10.1111/1462-2920.13150

Source DB:  PubMed          Journal:  Environ Microbiol        ISSN: 1462-2912            Impact factor:   5.491


  22 in total

Review 1.  Advances in linking polyketides and non-ribosomal peptides to their biosynthetic gene clusters in Fusarium.

Authors:  Mikkel Rank Nielsen; Teis Esben Sondergaard; Henriette Giese; Jens Laurids Sørensen
Journal:  Curr Genet       Date:  2019-05-28       Impact factor: 3.886

2.  Elucidation of the Two H3K36me3 Histone Methyltransferases Set2 and Ash1 in Fusarium fujikuroi Unravels Their Different Chromosomal Targets and a Major Impact of Ash1 on Genome Stability.

Authors:  Slavica Janevska; Leonie Baumann; Christian M K Sieber; Martin Münsterkötter; Jonas Ulrich; Jörg Kämper; Ulrich Güldener; Bettina Tudzynski
Journal:  Genetics       Date:  2017-11-16       Impact factor: 4.562

3.  Gibepyrone Biosynthesis in the Rice Pathogen Fusarium fujikuroi Is Facilitated by a Small Polyketide Synthase Gene Cluster.

Authors:  Slavica Janevska; Birgit Arndt; Eva-Maria Niehaus; Immo Burkhardt; Sarah M Rösler; Nelson L Brock; Hans-Ulrich Humpf; Jeroen S Dickschat; Bettina Tudzynski
Journal:  J Biol Chem       Date:  2016-11-17       Impact factor: 5.157

4.  Botcinic acid biosynthesis in Botrytis cinerea relies on a subtelomeric gene cluster surrounded by relics of transposons and is regulated by the Zn2Cys6 transcription factor BcBoa13.

Authors:  Antoine Porquier; Javier Moraga; Guillaume Morgant; Bérengère Dalmais; Adeline Simon; Hind Sghyer; Isidro G Collado; Muriel Viaud
Journal:  Curr Genet       Date:  2019-03-08       Impact factor: 3.886

5.  Knock-down of the methyltransferase Kmt6 relieves H3K27me3 and results in induction of cryptic and otherwise silent secondary metabolite gene clusters in Fusarium fujikuroi.

Authors:  Lena Studt; Sarah M Rösler; Immo Burkhardt; Birgit Arndt; Michael Freitag; Hans-Ulrich Humpf; Jeroen S Dickschat; Bettina Tudzynski
Journal:  Environ Microbiol       Date:  2016-07-18       Impact factor: 5.491

6.  Microbial Resistance Mechanisms to the Antibiotic and Phytotoxin Fusaric Acid.

Authors:  Frankie K Crutcher; Lorraine S Puckhaber; Robert D Stipanovic; Alois A Bell; Robert L Nichols; Katheryn S Lawrence; Jinggao Liu
Journal:  J Chem Ecol       Date:  2017-10-06       Impact factor: 2.626

7.  Comparative "Omics" of the Fusarium fujikuroi Species Complex Highlights Differences in Genetic Potential and Metabolite Synthesis.

Authors:  Eva-Maria Niehaus; Martin Münsterkötter; Robert H Proctor; Daren W Brown; Amir Sharon; Yifat Idan; Liat Oren-Young; Christian M Sieber; Ondřej Novák; Aleš Pěnčík; Danuše Tarkowská; Kristýna Hromadová; Stanley Freeman; Marcel Maymon; Meirav Elazar; Sahar A Youssef; El Said M El-Shabrawy; Abdel Baset A Shalaby; Petra Houterman; Nelson L Brock; Immo Burkhardt; Elena A Tsavkelova; Jeroen S Dickschat; Petr Galuszka; Ulrich Güldener; Bettina Tudzynski
Journal:  Genome Biol Evol       Date:  2016-12-31       Impact factor: 3.416

8.  Comparative transcriptome and proteome analysis reveals a global impact of the nitrogen regulators AreA and AreB on secondary metabolism in Fusarium fujikuroi.

Authors:  Andreas Pfannmüller; Johannes Leufken; Lena Studt; Caroline B Michielse; Christian M K Sieber; Ulrich Güldener; Susan Hawat; Michael Hippler; Christian Fufezan; Bettina Tudzynski
Journal:  PLoS One       Date:  2017-04-25       Impact factor: 3.240

9.  Establishment of the Inducible Tet-On System for the Activation of the Silent Trichosetin Gene Cluster in Fusarium fujikuroi.

Authors:  Slavica Janevska; Birgit Arndt; Leonie Baumann; Lisa Helene Apken; Lucas Maciel Mauriz Marques; Hans-Ulrich Humpf; Bettina Tudzynski
Journal:  Toxins (Basel)       Date:  2017-04-05       Impact factor: 4.546

10.  Comparative genomics of geographically distant Fusarium fujikuroi isolates revealed two distinct pathotypes correlating with secondary metabolite profiles.

Authors:  Eva-Maria Niehaus; Hee-Kyoung Kim; Martin Münsterkötter; Slavica Janevska; Birgit Arndt; Svetlana A Kalinina; Petra M Houterman; Il-Pyung Ahn; Ilaria Alberti; Stefano Tonti; Da-Woon Kim; Christian M K Sieber; Hans-Ulrich Humpf; Sung-Hwan Yun; Ulrich Güldener; Bettina Tudzynski
Journal:  PLoS Pathog       Date:  2017-10-26       Impact factor: 6.823

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