Artbildung (German Wikipedia)

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

refsWebsite
Global rank German rank
2nd place
3rd place
123rd place
6th place
4th place
7th place
3rd place
67th place
low place
low place
222nd place
272nd place
485th place
715th place
1,293rd place
678th place

bionity.com

  • Stichwort Unterart auf bionity.de, abgerufen am 3. November 2024.

books.google.com

doi.org

  • Jean-Jacques Hublin: How to build a Neandertal. In: Science. Band 44, Nr. 6190, 2014, S. 1338–1339, doi:10.1126/science.1255554
  • Chung-I Wu: The genic view of the process of speciation. In: Journal of Evolutionary Biology, Band 14, Nr. 6, 2001 S. 851–865, doi:10.1046/j.1420-9101.2001.00335.x
  • Peter W. de Jong, Hanne O. Frandsen, Lena Rasmussen, Jens Kvist Nielsen: Genetics of resistance against defences of the host plant Barbarea vulgaris in a Danish flea beetle population. In: Proceedings of the Royal Society London Series B, Band 267, 2000, S. 1663–1670. doi:10.1098/rspb.2000.1193
  • H. Frederik Nijhout: Polymorphic mimicry in Papilio dardanus: mosaic dominance, big effects, and origins. In: Evolution & Development, Band 5, Nr. 6, 2003, S. 579–592. doi:10.1046/j.1525-142X.2003.03063.x
  • R. E. Naisbit, C. D. Jiggins, J. Mallet: Mimicry: developmental genes that contribute to speciation. In: Evolution & Development, Band 5, 2003, S. 269–280. doi:10.1046/j.1525-142X.2003.03034.x
  • vgl. z. B. Jeffery P. Demuth & Matthew W. Hahn: The life and death of gene families. In: BioEssays, Band 31, 2009, S. 29–39. doi:10.1002/bies.080085
  • Dannie Durand (2003): Vertebrate evolution: doubling and shuffling with a full deck. Trends in Genetics Band 19 Nr. 1, S. 2–5 doi:10.1016/S0168-9525(02)00008-2
  • Patrícia Beldade & Paul M. Brakefield: The genetics and evo–devo of butterfly wing patterns. In: Nature Reviews Genetics, Band 3, 2003, S. 442–452. doi:10.1038/nrg818
  • Eric H. Davidson & Douglas H. Erwin: Gene Regulatory Networks and the Evolution of Animal Body Plans. In: Science, Band 311, 2006, S. 796–800. doi:10.1126/science.1113832
  • Antónia Monteiro & Ondrej Podlaha (2009): Wings, horns, and butterfly eyespots: How do complex traits evolve? In: PLoS Biology Band 7, Nr. 2, S. 209–216. doi:10.1371/journal.pbio.1000037
  • P. Bierzychudek (1985): Patterns in plant parthenogenesis. In: Experientia, Band 41, Nr. 10, 1985, S. 1255–1264. doi:10.1007/BF01952068
  • E. Hörandl: The complex causality of geographical parthenogenesis. In: New Phytologist, Band 171, 2006, S. 525–538. doi:10.1111/j.1469-8137.2006.01769.x
  • Timothy G. Barraclough (2009): Evolving entities: towards a unified framework for understanding diversity at the species and higher levels. Philosophical Transactions of the Royal Society Series B 12 June 2010, Band 365, Nr. 1547, S. 1801–1813. doi:10.1098/rstb.2009.0276
  • D. Fontaneto, E. A. Herniou, C. Boschetti, M. Caprioli, G. Melone, C. Ricci, T. G. Barraclough: Independently evolving species in asexual bdelloid rotifers. PLoS Biology Band 5, 2007, S. 914–921. doi:10.1371/journal.pbio.0050087
  • Andrew Kitchena, Laura A. Shackelton, Edward C. Holmes: Family level phylogenies reveal modes of macroevolution in RNA viruses. In: Proceedings of the National Academy of Science USA. Band 108, Nr. 1, 2011, S. 238–243. doi:10.1073/pnas.1011090108
  • Wataru Iwasaki & Toshihisa Takagi: Rapid Pathway Evolution Facilitated by Horizontal Gene Transfers across Prokaryotic Lineages. In: PLoS Genetics. Band 5, Nr. 3, 2009, S. e1000402. doi:10.1371/journal.pgen.1000402
  • Eugene V. Koonin & Yuri I. Wolf: Genomics of bacteria and archaea: the emerging dynamic view of the prokaryotic world. Nucleic Acids Research (2008) Band 36, Nr. 21, 2008, S. 6688–6719. doi:10.1093/nar/gkn668
  • Pere Puigbò, Yuri I. Wolf, Eugene V. Koonin: The tree and net components of prokaryote evolution. In: Genome Biology and Evolution. Band 2, 2010, S. 745–756. doi:10.1093/gbe/evq062
  • Emilie J. Richards, Maria R. Servedio, Christopher H. Martin: Searching for Sympatric Speciation in the Genomic Era. In: BioEssays. Band 41, Nr. 7, Juli 2019, ISSN 0265-9247, doi:10.1002/bies.201900047, PMID 31245871, PMC 8175013 (freier Volltext) – (wiley.com [abgerufen am 18. November 2023]).
  • Ning Sun, Liandong Yang, Fei Tian, Honghui Zeng, Ziwen He, Kai Zhao, Cheng Wang, Minghui Meng, Chenguang Feng, Chengchi Fang, Wenqi Lv, Jing Bo, Yongtao Tang, Xiaoni Gan, Zuogang Peng, Yiyu Chen, Shunping He: Sympatric or micro-allopatric speciation in a glacial lake? Genomic islands support neither. In: National Science Review. Band 9, Nr. 12, 12. Dezember 2022, ISSN 2095-5138, doi:10.1093/nsr/nwac291, PMID 36778108, PMC 9905650 (freier Volltext) – (oup.com [abgerufen am 18. November 2023]).
  • J. John Sepkoski Jr.: Rates of speciation in the fossil record. In: Philosophical Transactions of the Royal Society London Series B. Band 353, 1998, S. 315–326. doi:10.1098/rstb.1998.0212

nih.gov

ncbi.nlm.nih.gov

  • Emilie J. Richards, Maria R. Servedio, Christopher H. Martin: Searching for Sympatric Speciation in the Genomic Era. In: BioEssays. Band 41, Nr. 7, Juli 2019, ISSN 0265-9247, doi:10.1002/bies.201900047, PMID 31245871, PMC 8175013 (freier Volltext) – (wiley.com [abgerufen am 18. November 2023]).
  • Ning Sun, Liandong Yang, Fei Tian, Honghui Zeng, Ziwen He, Kai Zhao, Cheng Wang, Minghui Meng, Chenguang Feng, Chengchi Fang, Wenqi Lv, Jing Bo, Yongtao Tang, Xiaoni Gan, Zuogang Peng, Yiyu Chen, Shunping He: Sympatric or micro-allopatric speciation in a glacial lake? Genomic islands support neither. In: National Science Review. Band 9, Nr. 12, 12. Dezember 2022, ISSN 2095-5138, doi:10.1093/nsr/nwac291, PMID 36778108, PMC 9905650 (freier Volltext) – (oup.com [abgerufen am 18. November 2023]).

oup.com

academic.oup.com

  • Ning Sun, Liandong Yang, Fei Tian, Honghui Zeng, Ziwen He, Kai Zhao, Cheng Wang, Minghui Meng, Chenguang Feng, Chengchi Fang, Wenqi Lv, Jing Bo, Yongtao Tang, Xiaoni Gan, Zuogang Peng, Yiyu Chen, Shunping He: Sympatric or micro-allopatric speciation in a glacial lake? Genomic islands support neither. In: National Science Review. Band 9, Nr. 12, 12. Dezember 2022, ISSN 2095-5138, doi:10.1093/nsr/nwac291, PMID 36778108, PMC 9905650 (freier Volltext) – (oup.com [abgerufen am 18. November 2023]).

pnas.org

  • S. Nee, A. O. Mooers, P. H. Harvey: Tempo and mode of evolution revealed from molecular phylogenies. In: PNAS. Band 89, Nr. 17, 1992, S. 8322–8326, Volltext (PDF).

wiley.com

onlinelibrary.wiley.com

zdb-katalog.de

  • Emilie J. Richards, Maria R. Servedio, Christopher H. Martin: Searching for Sympatric Speciation in the Genomic Era. In: BioEssays. Band 41, Nr. 7, Juli 2019, ISSN 0265-9247, doi:10.1002/bies.201900047, PMID 31245871, PMC 8175013 (freier Volltext) – (wiley.com [abgerufen am 18. November 2023]).
  • Ning Sun, Liandong Yang, Fei Tian, Honghui Zeng, Ziwen He, Kai Zhao, Cheng Wang, Minghui Meng, Chenguang Feng, Chengchi Fang, Wenqi Lv, Jing Bo, Yongtao Tang, Xiaoni Gan, Zuogang Peng, Yiyu Chen, Shunping He: Sympatric or micro-allopatric speciation in a glacial lake? Genomic islands support neither. In: National Science Review. Band 9, Nr. 12, 12. Dezember 2022, ISSN 2095-5138, doi:10.1093/nsr/nwac291, PMID 36778108, PMC 9905650 (freier Volltext) – (oup.com [abgerufen am 18. November 2023]).