Works (3)

Updated: July 5th, 2023 15:39

2020 journal article

Engineering Cercospora disease resistance via expression of Cercospora nicotianae cercosporin-resistance genes and silencing of cercosporin production in tobacco

PLOS ONE, 15(3), e0230362.

By: E. Thomas n, S. Herrero n, H. Eng n, N. Gomaa n, J. Gillikin n, R. Noar n, A. Beseli n, M. Daub n

Ed(s): R. Wilson

MeSH headings : Ascomycota / drug effects; Ascomycota / genetics; Disease Resistance / drug effects; Disease Resistance / genetics; Drug Resistance, Fungal / drug effects; Drug Resistance, Fungal / genetics; Gene Expression Regulation, Fungal / drug effects; Gene Silencing / drug effects; Genes, Fungal; Genetic Engineering; Perylene / analogs & derivatives; Perylene / pharmacology; Plants, Genetically Modified; Tobacco / microbiology; Transformation, Genetic; Transgenes
TL;DR: It is concluded that expression of fungal cercosporin autoresistance genes as well as silencing of the cercsporin pathway are both effective strategies for engineering resistance to Cercospora diseases where cercOSporin plays a critical role. (via Semantic Scholar)
Sources: Web Of Science, NC State University Libraries, Crossref
Added: June 8, 2020

2015 journal article

Characterization of Cercospora nicotianae Hypothetical Proteins in Cercosporin Resistance

PLOS ONE, 10(10).

By: A. Beseli n, R. Noar n & M. Daub n

MeSH headings : Ascomycota / genetics; Ascomycota / metabolism; Drug Resistance, Fungal / drug effects; Fungal Proteins / genetics; Fungal Proteins / metabolism; Gene Expression Regulation, Fungal / drug effects; Mutation; Neurospora crassa / genetics; Neurospora crassa / metabolism; Perylene / analogs & derivatives; Perylene / pharmacology
TL;DR: Analysis of 71cR conserved domains and secondary and tertiary structure identify the protein as having an NTF2-like superfamily DUF1348 domain with unknown function, to be intracellular and localized in the cytosol, and to have similarities to proteins in the steroid delta-isomerase family. (via Semantic Scholar)
UN Sustainable Development Goal Categories
15. Life on Land (OpenAlex)
Source: Web Of Science
Added: August 6, 2018

2015 journal article

Membrane transporters in self resistance of Cercospora nicotianae to the photoactivated toxin cercosporin

Current Genetics, 61(4), 601–620.

By: A. Beseli n, A. Amnuaykanjanasin*, S. Herrero n, E. Thomas n & M. Daub n

author keywords: Perylenequinone; Photosensitizer resistance; ABC transporter; MFS transporter; Targeted gene disruption; CRG1; CnATR1; CnCFP
MeSH headings : ATP-Binding Cassette Transporters / genetics; ATP-Binding Cassette Transporters / metabolism; Antifungal Agents / metabolism; Antifungal Agents / pharmacology; Drug Resistance, Fungal / genetics; Fungal Proteins / genetics; Fungal Proteins / metabolism; Gene Expression Regulation, Fungal; Gene Targeting; Membrane Transport Proteins / genetics; Membrane Transport Proteins / metabolism; Neurospora crassa / drug effects; Neurospora crassa / genetics; Neurospora crassa / metabolism; Perylene / analogs & derivatives; Perylene / metabolism; Perylene / pharmacology; Photosensitizing Agents / metabolism; Photosensitizing Agents / pharmacology; Phylogeny; Saccharomycetales / classification; Saccharomycetales / drug effects; Saccharomycetales / genetics; Saccharomycetales / metabolism; Singlet Oxygen / metabolism; Uracil / metabolism; Zinc / metabolism
TL;DR: It is concluded that cercosporin autoresistance in Cercospora is mediated by multiple genes, and that the fungus compensates for mutations by up-regulation of other resistance genes. (via Semantic Scholar)
UN Sustainable Development Goal Categories
Sources: Web Of Science, NC State University Libraries, Crossref
Added: August 6, 2018

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