Abstract

The cloning of plasmids can be time-consuming or expensive. Yet, cloning is a prerequisite for many standard experiments for the functional analysis of genes, including the generation of deletion mutants and the localization of gene products. Here, we provide Golden Gate vectors for fast and easy cloning of gene fusion as well as gene deletion vectors applicable to diverse fungi. In Golden Gate cloning, restriction and ligation occur simultaneously in a one-pot reaction. Our vector set contains recognition sites for the commonly used type IIS restriction endonuclease BsaI. We generated plasmids for C- as well as N-terminal tagging with GFP, mRFP and 3xFLAG. For gene deletion, we provide five different donor vectors for selection marker cassettes. These include standard cassettes for hygromycin B, nourseothricin and phleomycin resistance genes as well as FLP/FRT-based marker recycling cassettes for hygromycin B and nourseothricin resistance genes. To make cloning most feasible, we provide robust protocols, namely (1) an overview of cloning procedures described in this paper, (2) specific Golden Gate reaction protocols and (3) standard primers for cloning and sequencing of plasmids and generation of deletion cassettes by PCR and split-marker PCR. We show that our vector set is applicable for the biotechnologically relevant Penicillium chrysogenum and the developmental model system Sordaria macrospora. We thus expect these vectors to be beneficial for other fungi as well. Finally, the vectors can easily be adapted to organisms beyond the kingdom fungi.

Highlights

  • The deletion of genes and the generation of gene fusions are important steps for the functional analysis of genes

  • Golden Gate vectors in this study are based on vector pEHN8, which contains a fungal expression cassette with the Aspergillus nidulans gpdA promoter (Punt et al 1992), a multiple cloning site (MCS), and the A. nidulans trpC terminator [trpC(t)] (Mullaney et al 1985). pEHN8 is based on pEHN2 (Pöggeler and Kück 2004), which was cut EcoRI, partially cut Bsp120I, modified by Klenow fill in, followed by religation of a 6365 bp fragment to generate pEHN5, thereby removing telomeric regions interfering with transformation

  • We intended the plasmids to be convenient for a number of different fungi, including Acremonium chrysogenum, P. chrysogenum and S. macrospora, three fungi frequently used in our studies (Bloemendal et al 2014; Teichert et al 2014, 2020; Dahlmann et al 2015; Terfehr et al 2017)

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Summary

Introduction

The deletion of genes and the generation of gene fusions are important steps for the functional analysis of genes.

Materials and methods
Results and discussion
Compliance with ethical standards
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