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PLOS ONE  2013 

Conditional and Specific Cell Ablation in the Marine Annelid Platynereis dumerilii

DOI: 10.1371/journal.pone.0075811

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Abstract:

The marine annelid Platynereis dumerilii has become a model system for evo-devo, neurobiology and marine biology. The functional assessment of its cell types, however, has so far been very limited. Here we report on the establishment of a generally applicable, cell type specific ablation technique to overcome this restriction. Using a transgenic strain expressing the bacterial enzyme nitroreductase (ntr) under the control of the worm’s r-opsin1 locus, we show that the demarcated photoreceptor cells can be specifically ablated by the addition of the prodrug metronidazole (mtz). TUNEL staining indicates that ntr expressing cells undergo apoptotic cell death. As we used a transgenic strain co-expressing ntr with enhanced green fluorescent protein (egfp) coding sequence, we were able to validate the ablation of photoreceptors not only in fixed tissue, using r-opsin1 riboprobes, but also by monitoring eGFP+ cells in live animals. The specificity of the ablation was demonstrated by the normal presence of the eye pigment cells, as well as of neuronal markers expressed in other cells of the brain, such as phc2, tyrosine hydroxylase and brn1/2/4. Additional analyses of the position of DAPI stained nuclei, the brain’s overall neuronal scaffold, as well as the positions and projections of serotonergic neurons further confirmed that mtz treatment did not induce general abnormalities in the worm’s brain. As the prodrug is administered by adding it to the water, targeted ablation of specific cell types can be achieved throughout the life of the animal. We show that ablation conditions need to be adjusted to the size of the worms, likely due to differences in the penetration of the prodrug, and establish ablation conditions for worms containing 10 to 55 segments. Our results establish mtz/ntr mediated conditional cell ablation as a powerful functional tool in Platynereis.

References

[1]  Raible F, Tessmar-Raible K, Osoegawa K, Wincker P, Jubin C et al. (2005) Vertebrate-type intron-rich genes in the marine annelid Platynereis dumerilii. Science 310: 1325-1326. doi:10.1126/science.1119089. PubMed: 16311335.
[2]  Tomer R, Denes AS, Tessmar-Raible K, Arendt D (2010) Profiling by image registration reveals common origin of annelid mushroom bodies and vertebrate pallium. Cell 142: 800-809. doi:10.1016/j.cell.2010.07.043. PubMed: 20813265.
[3]  Tessmar-Raible K, Raible F, Christodoulou F, Guy K, Rembold M et al. (2007) Conserved sensory-neurosecretory cell types in annelid and fish forebrain: insights into hypothalamus evolution. Cell 129: 1389--1400. doi:10.1016/j.cell.2007.04.041. PubMed: 17604726.
[4]  Arendt D, Tessmar-Raible K, Snyman H, Dorresteijn AW, Wittbrodt J (2004) Ciliary photoreceptors with a vertebrate-type opsin in an invertebrate brain. Science 306: 869-871. doi:10.1126/science.1099955. PubMed: 15514158.
[5]  Denes AS, Jékely G, Steinmetz PR, Raible F, Snyman H et al. (2007) Molecular architecture of annelid nerve cord supports common origin of nervous system centralization in bilateria. Cell 129: 277-288. doi:10.1016/j.cell.2007.02.040. PubMed: 17448990.
[6]  Dray N, Tessmar-Raible K, Le Gouar M, Vibert L, Christodoulou F et al. (2010) Hedgehog signaling regulates segment formation in the annelid Platynereis. Science 329: 339-342. doi:10.1126/science.1188913. PubMed: 20647470.
[7]  Jékely G, Colombelli J, Hausen H, Guy K, Stelzer E et al. (2008) Mechanism of phototaxis in marine zooplankton. Nature 456: 395-399. doi:10.1038/nature07590. PubMed: 19020621.
[8]  Curado S, Stainier DY, Anderson RM (2008) Nitroreductase-mediated cell/tissue ablation in zebrafish: a spatially and temporally controlled ablation method with applications in developmental and regeneration studies. Nat Protoc 3: 948-954. doi:10.1038/nprot.2008.58. PubMed: 18536643.
[9]  White YA, Woods DC, Wood AW (2011) A transgenic zebrafish model of targeted oocyte ablation and de novo oogenesis. Dev Dynam 240: 1929-1937. doi:10.1002/dvdy.22695.
[10]  Fernandes AM, Fero K, Arrenberg AB, Bergeron SA, Driever W et al. (2012) Deep brain photoreceptors control light-seeking behavior in zebrafish larvae. Curr Biol 22: 2042-2047. doi:10.1016/j.cub.2012.08.016. PubMed: 23000151.
[11]  Backfisch B, Veedin Rajan VB, Fischer RM, Lohs C, Arboleda E et al. (2013) Stable transgenesis in the marine annelid Platynereis dumerilii sheds new light on photoreceptor evolution. Proc Natl Acad Sci U S A 110: 193-198. doi:10.1073/pnas.1215251110. PubMed: 23284166.
[12]  Hauenschild C, Fischer A (1969) Platynereis dumerilii. Mikroskopische Anatomie, Fortpflanzung, Entwicklung. Gro?es Zoologisches Praktikum: 10b: 1-54.
[13]  Kwan KM, Fujimoto E, Grabher C, Mangum BD, Hardy ME et al. (2007) The Tol2kit: a multisite gateway-based construction kit for Tol2 transposon transgenesis constructs. Developmental Dynam 236: 3088-3099. doi:10.1002/dvdy.21343. PubMed: 17937395.
[14]  Ejsmont RK, Sarov M, Winkler S, Lipinski KA, Tomancak P (2009) A toolkit for high-throughput, cross-species gene engineering in Drosophila. Nat Methods 6: 435-437. doi:10.1038/nmeth.1334. PubMed: 19465918.
[15]  Tang W, Ehrlich I, Wolff SB, Michalski AM, W?lfl S et al. (2009) Faithful expression of multiple proteins via 2A-peptide self-processing: a versatile and reliable method for manipulating brain circuits. J Neurosci 29: 8621-8629. doi:10.1523/JNEUROSCI.0359-09.2009. PubMed: 19587267.
[16]  Fischer AH, Henrich T, Arendt D (2010) The normal development of Platynereis dumerilii (Nereididae, Annelida). Front Zool 7: 31. doi:10.1186/1742-9994-7-31. PubMed: 21192805.
[17]  Curado S, Anderson RM, Jungblut B, Mumm J, Schroeter E et al. (2007) Conditional targeted cell ablation in zebrafish: a new tool for regeneration studies. Developmental Dynamics 236: 1025-1035. doi:10.1002/dvdy.21100. PubMed: 17326133.
[18]  Arendt D, Tessmar K, de Campos-Baptista MI, Dorresteijn A, Wittbrodt J (2002) Development of pigment-cup eyes in the polychaete Platynereis dumerilii and evolutionary conservation of larval eyes in Bilateria. Development 129: 1143-1154. PubMed: 11874910.
[19]  Michal G (1999) Biochemical Pathways. Heidelberg: Spektrum Akademischer Verlag GmbH.
[20]  Palermo AM, Dolores M (2013) Metronidazole induced DNA damage in somatic cells of Drosophila melanogaster. Current. Drug Saf.

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