Genome Editing (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Genome Editing" in German language version.

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biooekonomierat.de

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doi.org

  • J. Lee et al.: Designed nucleases for targeted genome editing. In: Plant Biotechnology Journal. Band 14, Nr. 2. Wiley, 2016, S. 448–462, doi:10.1111/pbi.12465.
  • Christien Bednarski, Toni Cathomen: Maßgeschneidertes Genom — Designer-Nukleasen im Einsatz. In: BIOspektrum. Band 21, Nr. 1, 2015, ISSN 1868-6249, S. 22–24, doi:10.1007/s12268-015-0528-4.
  • Royce Wilkinson, Blake Wiedenheft: A CRISPR method for genome engineering. In: F1000Prime Rep. Band 6, Nr. 3, 2014, S. 3, doi:10.12703/P6-3, PMID 24592315, PMC 3883426 (freier Volltext) – (facultyopinions.com).
  • Method of the Year 2011. In: Nature Methods. Band 9, Nr. 1, Januar 2012, S. 1, doi:10.1038/nmeth.1852, PMID 22312634.
  • K. M. Esvelt, H. H. Wang: Genome-scale engineering for systems and synthetic biology. In: Mol Syst Biol. Band 9, Nr. 1, 2013, S. 641, doi:10.1038/msb.2012.66, PMID 23340847, PMC 3564264 (freier Volltext).
  • W. S. Tan, D. F. Carlson, M. W. Walton, S. C. Fahrenkrug, P. B. Hackett: Precision editing of large animal genomes. In: Adv Genet. Band 80, 2012, S. 37–97, doi:10.1016/B978-0-12-404742-6.00002-8, PMID 23084873, PMC 3683964 (freier Volltext).
  • H. Puchta, F. Fauser: Gene targeting in plants: 25 years later. In: Int. J. Dev. Biol. Band 57, 2013, S. 629–637, doi:10.1387/ijdb.130194hp.
  • Timothy R. Sampson, David S. Weiss: Exploiting CRISPR/Cas systems for biotechnology. In: BioEssays. Band 36, Nr. 1, 2014, S. 34–38, doi:10.1002/bies.201300135, PMID 24323919.
  • Daniel F. Voytas, Caixia Gao: Precision Genome Engineering and Agriculture: Opportunities and Regulatory Challenges. In: PLOS Biology. Band 12, Nr. 6, 2014, S. e1001877, doi:10.1371/journal.pbio.1001877, PMID 24915127.
  • Götz Laible, Jingwei Wei, Stefan Wagner: Improving livestock for agriculture – technological progress from random transgenesis to precision genome editing heralds a new era. In: Biotechnology Journal. Band 10, Nr. 1, 2015, S. 109–112, doi:10.1002/biot.201400193.
  • David Benjamin Turitz Cox, Randall Jeffrey Platt, Feng Zhang: Therapeutic genome editing: prospects and challenges. In: Nature Medicine. Band 21, Nr. 2, 2015, S. 121–131, doi:10.1038/nm.3793, PMID 25654603.
  • Andrew May: Base editing on the rise. In: Nature Biotechnology. Band 35, Nr. 5, 2017, S. 428–429, doi:10.1038/nbt.3871.
  • Nicole M. Gaudelli, et al.: Programmable base editing of A•T to G•C in genomic DNA without DNA cleavage. In: Nature. Band 551, Nr. 7681, 2017, S. 464–471, doi:10.1038/nature24644, PMID 29160308.
  • Jin-Soo Kim: Precision genome engineering through adenine and cytosine base editing. In: Nature Plants. Band 4, Nr. 3, 2018, S. 148–151, doi:10.1038/s41477-018-0115-z.
  • Md Mahmudul Hassan, et al.: Prime Editing Technology and Its Prospects for Future Applications in Plant Biology Research. In: sciencemag.org. 2020, S. 1–14, doi:10.34133/2020/9350905 (englisch).
  • Beverly Y. Mok, Marcos H. de Moraes, Jun Zeng, Dustin E. Bosch, Anna V. Kotrys, Aditya Raguram, FoSheng Hsu, Matthew C. Radey, S. Brook Peterson, Vamsi K. Mootha, Joseph D. Mougous, David R. Liu: A bacterial cytidine deaminase toxin enables CRISPR-free mitochondrial base editing. In: Nature. 583. Jahrgang, Nr. 7817, Juli 2020, ISSN 1476-4687, S. 631–637, doi:10.1038/s41586-020-2477-4, PMID 32641830, PMC 7381381 (freier Volltext) – (englisch).
  • Robin Fears, Volker ter Meulen: How should the applications of genome editing be assessed and regulated? In: eLife. Band 6, 2017, ISSN 2050-084X, S. e26295, doi:10.7554/eLife.26295, PMID 28375079.
  • Sanwen Huang, et al.: A proposed regulatory framework for genome-edited crops. In: Nature Genetics. Band 48, Nr. 2, 2016, S. 109–111, doi:10.1038/ng.3484.
  • Lutz Grohmann, et al.: Detection and Identification of Genome Editing in Plants: Challenges and Opportunities. In: Frontiers in Plant Science. Band 10, 2019, S. 236, doi:10.3389/fpls.2019.00236, PMID 30930911.
  • Ann Ehrenhofer-Murray: Chance verpasst: ein rückwärtsgewandtes Urteil des EuGH zu Genom-editierten Organismen. In: BIOspektrum. Band 24, Nr. 6, 2018, ISSN 1868-6249, S. 573–575, doi:10.1007/s12268-018-0959-9.
  • Eva Gelinsky, Angelika Hilbeck: European Court of Justice ruling regarding new genetic engineering methods scientifically justified: a commentary on the biased reporting about the recent ruling. In: Environmental Sciences Europe. Band 30, Nr. 1, 2018, ISSN 2190-4715, S. 52, doi:10.1186/s12302-018-0182-9, PMID 30613460.
  • Emily Waltz: With a free pass, CRISPR-edited plants reach market in record time. In: Nature Biotechnology. Band 36, Nr. 1, 2018, S. 6–7, doi:10.1038/nbt0118-6b.
  • Stefan Jansson: Gene-edited plants: What is happening now? In: Physiologia Plantarum. Band 164, Nr. 4, 2018, S. 370–371, doi:10.1111/ppl.12853.
  • Heidi Ledford: CRISPR conundrum: Strict European court ruling leaves food-testing labs without a plan. In: Nature. Band 572, Nr. 7767, 2019, S. 15, doi:10.1038/d41586-019-02162-x.
  • P. Chhalliyil, et al.: A Real-Time Quantitative PCR Method Specific for Detection and Quantification of the First Commercialized Genome-Edited Plant. In: Foods. Nr. 9, 2020, S. 1245 ff., doi:10.3390/foods9091245.
  • Robin Lovell-Badge: CRISPR babies: a view from the centre of the storm. In: Development. Band 146, Nr. 3, 2019, ISSN 0950-1991, doi:10.1242/dev.175778, PMID 30728161 (biologists.org).
  • Sheldon Krimsky: Ten ways in which He Jiankui violated ethics. In: Nature Biotechnology. Band 37, Nr. 1, 2019, S. 19–20, doi:10.1038/nbt.4337.
  • Jon Cohen: What now for human genome editing? In: Science. Band 362, Nr. 6419, 2018, S. 1090–1092, doi:10.1126/science.362.6419.1090, PMID 30523087.

europa.eu

curia.europa.eu

facultyopinions.com

gentechnikfreie-saat.org

gentechnologiebericht.de

newscientist.com

nih.gov

ncbi.nlm.nih.gov

nzz.ch

the-scientist.com

zdb-katalog.de

  • Christien Bednarski, Toni Cathomen: Maßgeschneidertes Genom — Designer-Nukleasen im Einsatz. In: BIOspektrum. Band 21, Nr. 1, 2015, ISSN 1868-6249, S. 22–24, doi:10.1007/s12268-015-0528-4.
  • Beverly Y. Mok, Marcos H. de Moraes, Jun Zeng, Dustin E. Bosch, Anna V. Kotrys, Aditya Raguram, FoSheng Hsu, Matthew C. Radey, S. Brook Peterson, Vamsi K. Mootha, Joseph D. Mougous, David R. Liu: A bacterial cytidine deaminase toxin enables CRISPR-free mitochondrial base editing. In: Nature. 583. Jahrgang, Nr. 7817, Juli 2020, ISSN 1476-4687, S. 631–637, doi:10.1038/s41586-020-2477-4, PMID 32641830, PMC 7381381 (freier Volltext) – (englisch).
  • Robin Fears, Volker ter Meulen: How should the applications of genome editing be assessed and regulated? In: eLife. Band 6, 2017, ISSN 2050-084X, S. e26295, doi:10.7554/eLife.26295, PMID 28375079.
  • Ann Ehrenhofer-Murray: Chance verpasst: ein rückwärtsgewandtes Urteil des EuGH zu Genom-editierten Organismen. In: BIOspektrum. Band 24, Nr. 6, 2018, ISSN 1868-6249, S. 573–575, doi:10.1007/s12268-018-0959-9.
  • Eva Gelinsky, Angelika Hilbeck: European Court of Justice ruling regarding new genetic engineering methods scientifically justified: a commentary on the biased reporting about the recent ruling. In: Environmental Sciences Europe. Band 30, Nr. 1, 2018, ISSN 2190-4715, S. 52, doi:10.1186/s12302-018-0182-9, PMID 30613460.
  • Robin Lovell-Badge: CRISPR babies: a view from the centre of the storm. In: Development. Band 146, Nr. 3, 2019, ISSN 0950-1991, doi:10.1242/dev.175778, PMID 30728161 (biologists.org).

zeit.de

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