Repositorium

What is a repositorium?

The repositorium is a searchable database that provides data on relevant articles from journals, company web pages and web pages of governmental agencies about studies/applications of genome-editing in model plants and agricultural crops in the period January 1996 to May 2018. Search options are article type, technique, plant, traits or free text. The repositorium is based on the systematic map of Dominik Modrzejewski et al., published in the journal environmental evidence. (Download article PDF).

Nuclear gene targeting in Chlamydomonas using engineered zinc-finger nucleases


Typ / Jahr

Journal Article / 2013

Autoren

Sizova, Irina; Greiner, Andre; Awasthi, Mayanka; Kateriya, Suneel; Hegemann, Peter

Abstract

The unicellular green alga Chlamydomonas reinhardtii is a versatile model for fundamental and biotechnological research. A wide range of tools for genetic manipulation have been developed for this alga, but specific modification of nuclear genes is still not routinely possible. Here, we present a nuclear gene targeting strategy for Chlamydomonas that is based on the application of zinc-finger nucleases (ZFNs). Our approach includes (i) design of gene-specific ZFNs using available online tools, (ii) evaluation of the designed ZFNs in a Chlamydomonas in situ model system, (iii) optimization of ZFN activity by modification of the nuclease domain, and (iv) application of the most suitable enzymes for mutagenesis of an endogenous gene. Initially, we designed a set of ZFNs to target the COP3 gene that encodes the light-activated ion channel channelrhodopsin-1. To evaluate the designed ZFNs, we constructed a model strain by inserting a non-functional aminoglycoside 3'-phosphotransferase VIII (aphVIII) selection marker interspaced with a short COP3 target sequence into the nuclear genome. Upon co-transformation of this recipient strain with the engineered ZFNs and an aphVIII DNA template, we were able to restore marker activity and select paromomycin-resistant (Pm-R) clones with expressing nucleases. Of these Pm-R clones, 1% also contained a modified COP3 locus. In cases where cells were co-transformed with a modified COP3 template, the COP3 locus was specifically modified by homologous recombination between COP3 and the supplied template DNA. We anticipate that this ZFN technology will be useful for studying the functions of individual genes in Chlamydomonas.

Keywords
Algal Proteins/genetics; Animals; Antibodies; Cell Nucleus/genetics; Chlamydomonas reinhardtii/drug effects/genetics/immunology; Endonucleases/genetics; Gene Targeting/methods; genetic engineering; homologous recombination; Kanamycin Kinase/genetics; mutagenesis; Organisms, Genetically Modified; Paromomycin/pharmacology; Rabbits; Recombinant Proteins; Transformation, Genetic; Zinc Fingers
Periodical
The Plant journal : for cell and molecular biology
Periodical Number
5
Page range
873–882
Volume
73
DOI
10.1111/tpj.12066

Techniques

ID Corresponding Author
Country
Plant Species GE Technique
Sequence Identifier
Trait
Type of Alteration
Progress in Research
Key Topic
451 Greiner, Andre; Hegemann, Peter
Germany
Chlamydomonas reinhardtii Zinc-finger nucleases
COP3
encodes the light-activated ion channel channelrhodopsin-1
SDN1
Basic research
Basic research
452 Greiner, Andre; Hegemann, Peter
Germany
Chlamydomonas reinhardtii Zinc-finger nucleases
COP3
encodes the light-activated ion channel channelrhodopsin-2
SDN3
Basic research
Basic research