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1.
Appl Microbiol Biotechnol ; 102(15): 6357-6372, 2018 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-29860590

RESUMO

In industry, filamentous fungi have a prominent position as producers of economically relevant primary or secondary metabolites. Particularly, the advent of genetic engineering of filamentous fungi has led to a growing number of molecular tools to adopt filamentous fungi for biotechnical applications. Here, we summarize recent developments in fungal biology, where fungal host systems were genetically manipulated for optimal industrial applications. Firstly, available inducible promoter systems depending on carbon sources are mentioned together with various adaptations of the Tet-Off and Tet-On systems for use in different industrial fungal host systems. Subsequently, we summarize representative examples, where diverse expression systems were used for the production of heterologous products, including proteins from mammalian systems. In addition, the progressing usage of genomics and functional genomics data for strain improvement strategies are addressed, for the identification of biosynthesis genes and their related metabolic pathways. Functional genomic data are further used to decipher genomic differences between wild-type and high-production strains, in order to optimize endogenous metabolic pathways that lead to the synthesis of pharmaceutically relevant end products. Lastly, we discuss how molecular data sets can be used to modify products for optimized applications.


Assuntos
Fungos/genética , Engenharia Genética/métodos , Genômica , Microbiologia Industrial/métodos , Regiões Promotoras Genéticas/genética , Engenharia Genética/tendências , Microbiologia Industrial/tendências
2.
Curr Genet ; 64(3): 713-727, 2018 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-29209784

RESUMO

The filamentous fungus Acremonium chrysogenum is the primordial producer of the ß-lactam antibiotic cephalosporin C. This antibiotic is of major biotechnological and medical relevance because of its antibacterial activity against Gram-positive and Gram-negative bacteria. Antibiotic production during the lag phase of fermentation is often accompanied by a typical morphological feature of A. chrysogenum, the fragmentation of the mycelium into arthrospores. Here, we sought to identify factors that regulate the hyphal septation process and present the first comparative functional characterization of the type I integral plasma membrane protein Axl2 (axial budding pattern protein 2), a central component of the bud site selection system (BSSS) and Mst1 (mammalian Sterile20-like kinase), a septation initiation network (SIN)-associated germinal center kinase (GCK). Although an Acaxl2 deletion strain showed accelerated arthrospore formation after 96 h in liquid culture, deletion of Acmst1 led to a 24 h delay in arthrospore development. The overexpression of Acaxl2 resulted in an arthrospore formation similar to the A3/2 strain. In contrast to this, A3/2::Acmst1 OE strain displayed an enhanced arthrospore titer. Large-scale stress tests revealed an involvement of AcAxl2 in controlling osmotic, endoplasmic reticulum, and cell wall stress response. In a similar approach, we found that AcMst1 plays an essential role in regulating growth under osmotic, cell wall, and oxidative stress conditions. Microscopic analyses and plating assays on media containing Calcofluor White and NaCl showed that arthrospore development is a stress-dependent process. Our results suggest the potential for identifying candidate genes for strain improvement programs to optimize industrial fermentation processes.


Assuntos
Acremonium/metabolismo , Cefalosporinas/biossíntese , Proteínas Fúngicas/fisiologia , Esporos Fúngicos/crescimento & desenvolvimento , Acremonium/genética , Acremonium/crescimento & desenvolvimento , Parede Celular/metabolismo , Meios de Cultura , Estresse do Retículo Endoplasmático , Regulação Fúngica da Expressão Gênica , Genes Fúngicos , Pressão Osmótica , Transcrição Gênica
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