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CRISPR/Cas9 mediated gene editing in non-model nematode Panagrolaimus sp. PS1159

View ORCID ProfileViktoria Hellekes, Denise Claus, Johanna Seiler, Felix Illner, View ORCID ProfilePhilipp H. Schiffer, Michael Kroiher
doi: https://doi.org/10.1101/2022.09.26.509268
Viktoria Hellekes
1Institute for Zoology, University of Cologne, Cologne, NRW, Germany
2worm∼lab, Institute for Zoology, University of Cologne, Cologne, NRW, Germany
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  • For correspondence: v.hellekes@uni-koeln.de
Denise Claus
2worm∼lab, Institute for Zoology, University of Cologne, Cologne, NRW, Germany
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Johanna Seiler
1Institute for Zoology, University of Cologne, Cologne, NRW, Germany
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Felix Illner
1Institute for Zoology, University of Cologne, Cologne, NRW, Germany
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Philipp H. Schiffer
2worm∼lab, Institute for Zoology, University of Cologne, Cologne, NRW, Germany
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Michael Kroiher
1Institute for Zoology, University of Cologne, Cologne, NRW, Germany
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Abstract

The phylum Nematoda harbors a huge diversity of species in a broad range of ecosystems and habitats. Nematodes share a largely conserved Bauplan but major differences have been found in early developmental processes. The development of the nematode model organism Caenorhabditis elegans has been studied in great detail for decades. These efforts have provided the community with a large number of protocols and methods. Unfortunately, many of these tools are not easily applicable in non-Caenorhabditis nematodes. In recent years it has become clear that many crucial genes in the C. elegans developmental toolkit are absent in other nematode species. It is thus necessary to study the developmental program of other nematode species in detail to understand evolutionary conservation and novelty in the phylum.

Panagrolaimus sp. PS1159 is a non-parasitic nematode exhibiting parthenogenetic reproduction and we are establishing the species to comparatively study evolution, biodiversity and alternative reproduction and survival strategies. Here, we demonstrate the first successful application of the CRISPR/Cas9 system for genome editing in Panagrolaimus sp. PS1159 and its closely related hermaphroditic species Propanagrolaimus sp. JU765 with both the non-homologous end joining and the homology-directed repair mechanism. Using microinjections and modifying published protocols from C. elegans and P. pacificus we induced mutations in the orthologue of unc-22, which resulted in a visible uncoordinated twitching phenotype. We also compared the HDR efficiency following the delivery of different repair templates. This work will expand the applicability for a wide range of non-model nematodes from across the tree and facilitate functional analysis into the evolution of parthenogenesis, changes in the developmental program of Nematoda, and cryptobiosis.

Competing Interest Statement

The authors have declared no competing interest.

Footnotes

  • The current version of the manuscript was updated after peer-review. We have corrected typos, revised some content in the introduction and results section to clarify some uncertainties. We have added table 4 and revised figures 1,2,3,5 and 6 and in the supplementary files.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Posted November 28, 2022.
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CRISPR/Cas9 mediated gene editing in non-model nematode Panagrolaimus sp. PS1159
Viktoria Hellekes, Denise Claus, Johanna Seiler, Felix Illner, Philipp H. Schiffer, Michael Kroiher
bioRxiv 2022.09.26.509268; doi: https://doi.org/10.1101/2022.09.26.509268
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CRISPR/Cas9 mediated gene editing in non-model nematode Panagrolaimus sp. PS1159
Viktoria Hellekes, Denise Claus, Johanna Seiler, Felix Illner, Philipp H. Schiffer, Michael Kroiher
bioRxiv 2022.09.26.509268; doi: https://doi.org/10.1101/2022.09.26.509268

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