Loomad (Estonian Wikipedia)

Analysis of information sources in references of the Wikipedia article "Loomad" in Estonian language version.

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annualreviews.org

  • Nigel E. Stork. How Many Species of Insects and Other Terrestrial Arthropods Are There on Earth?. – Annual Review of Entomology, 2018, 63 (1), lk 31–45.Täistekst. Stork märgib, et miljonile putukaliigile on pandud nimi, ja hindab putukaliikide koguarvu palju suuremaks.

biorxiv.org

  • Kraemer-Eis, Andrea; Ferretti, Luca; Schiffer, Philipp; Heger, Peter; Wiehe, Thomas. A catalogue of Bilaterian-specific genes – their function and expression profiles in early development. – bioRxiv, 2016.Täistekst.

biotaxa.org

  • Zhi-Qiang Zhang. Animal biodiversity: An update of classification and diversity in 2013. – Z.-Q. Zhang (toim). Animal Biodiversity: An Outline of Higher-level Classification and Survey of Taxonomic Richness (Addenda 2013). – Zootaxa, 2013, kd 3703, nr 1. Kokkuvõte.

cell.com

  • Omar Rota-Stabelli, Allison C. Daley, Davide Pisani. Molecular Timetrees Reveal a Cambrian Colonization of Land and a New Scenario for Ecdysozoan Evolution. – Current Biology, 2013, 23 (5), lk 392–398.Täistekst.
  • Maximilian J. Telford. Resolving Animal Phylogeny: A Sledgehammer for a Tough Nut?. – Developmental Cell, 2008, 14 (4), lk 457–459. Täistekst.

nature.com

  • D. Charlesworth, J. H. Willis. The genetics of inbreeding depression. Nature Reviews Genetics, 2009, 10 (11), lk 783–796. Kokkuvõte.
  • Edward B. Daeschler, Neil H. Shubin, Farish A. Jr. Jenkins. A Devonian tetrapod-like fish and the evolution of the tetrapod body plan. – Nature, 2006, 440 (7085), lk 757–763. Täistekst.
  • Schultz, Darrin T.; Haddock, Steven H. D.; Bredeson, Jessen V.; Green, Richard E.; Simakov, Oleg; Rokhsar, Daniel S. Ancient gene linkages support ctenophores as sister to other animals". – Nature, 2023, 618 (7963), lk 110–117. Täistekst.
  • Srivastava, Mansi; Begovic, Emina; Chapman, Jarrod; Putnam, Nicholas H.; Hellsten, Uffe; Kawashima, Takeshi; Kuo, Alan; Mitros, Therese; Salamov, Asaf; Carpenter, Meredith L.; Signorovitch, Ana Y.; Moreno, Maria A.; Kamm, Kai; Grimwood, Jane; Schmutz, Jeremy. The Trichoplax genome and the nature of placozoans". – Nature, 2008, 454 (7207), lk 955–960.Täistekst.

nerc.ac.uk

nora.nerc.ac.uk

  • Andrew Clarke. The thermal limits to life on Earth. – International Journal of Astrobiology, 2014, 13 (2), lk 141–154.Täistekst.

nih.gov

ncbi.nlm.nih.gov

  • Limaeosloomal Henneguya zschokkei ei ole mitokondriaalset DNAd ega aeroobset hingamist. Marek Mentel, William Martin. Anaerobic animals from an ancient, anoxic ecological niche. – BMC Biology, 2010, 8, lk 32. Täistekst.
  • Bruce Alberts, Alexander Johnson, Julian Lewis, Martin Raff, Keith Roberts, Peter Walter. Molecular Biology of the Cell, 4. trükk, Garland Science 2002, ISBN 78-0-8153-3218-3, [ https://www.ncbi.nlm.nih.gov/books/NBK26810/ peatükk "The Extracellular Matrix of Animals"].
  • H. Kaur, R. Singh. Two new species of Myxobolus (Myxozoa: Myxosporea: Bivalvulida) infecting an Indian major carp and a cat fish in wetlands of Punjab, India. – Journal of Parasitic Diseases, 2011. 35 (2), lk 169–176. Täistekst.
  • Camilo Mora, Derek P. Tittensor, Sina Adl, Alastair G.B. Simpson, Boris Worm. Georgina M. Mace (toim). How Many Species Are There on Earth and in the Ocean?, 2011, PLOS Biology, 9 (8), e1001127.Täistekst.
  • DNA triipkoodimise rakendamine taksonoomias teeb selle veel keerukamaks: üks triipkoodimisel põhinev analüüs hindas putukaliikid arvuks ainuüksi Kanadas umbes 100 000 ning ekstrapoleeris, et maailmas peab olema üle 10 miljoni putukaliigi, kellest umbes 2 miljonit kuuluvad pahksääsklaste sugukonda. Vt: Paul D. N. Hebert, Sujeevan Ratnasingham, Evgeny V. Zakharov, Angela C. Telfer, Valerie Levesque-Beaudin, Megan A. Milton, Stephanie Pedersen, Paul Jannetta, Jeremy R. deWaard. Counting animal species with DNA barcodes: Canadian insects. – Philosophical Transactions of the Royal Society B: Biological Sciences, 2016, 371 (1702), 20150333. Täistekst.
  • Peterson, Kevin J.; Cotton, James A.; Gehling, James G.; Pisani, Davide. The Ediacaran emergence of bilaterians: congruence between the genetic and the geological fossil records. – Philosophical Transactions of the Royal Society of London B: Biological Sciences, 2008, 363 (1496), lk 1435–1443.Täistekst.
  • Laura Wegener Parfrey, Daniel J. G. Lahr, Andrew H. Knoll, Laura A. Katz. Estimating the timing of early eukaryotic diversification with multigene molecular clocks. – Proceedings of the National Academy of Sciences, 2011, 108 (33), lk 13624–13629.Täistekst.
  • Laumer, Christopher E.; Gruber-Vodicka, Harald; Hadfield, Michael G.; Pearse, Vicki B.; Riesgo, Ana; Marioni, John C.; Giribet, Gonzalo. Support for a clade of Placozoa and Cnidaria in genes with minimal compositional bias. – eLife, 2018, 7, e36278.Täistekst.
  • Adl, Sina M.; Bass, David; Lane, Christopher E.; Lukeš, Julius; Schoch, Conrad L.; Smirnov, Alexey; Agatha, Sabine; Berney, Cedric; Brown, Matthew W. Revisions to the Classification, Nomenclature, and Diversity of Eukaryotes. – Journal of Eukaryotic Microbiology, 66 (1), lk 4–119.Täistekst.
  • Ros-Rocher, Núria; Pérez-Posada, Alberto; Leger, Michelle M.; Ruiz-Trillo, Iñaki. The origin of animals: an ancestral reconstruction of the unicellular-to-multicellular transition. – Open Biology, 2021, 11 (2), 200359.Täistekst.
  • Kapli, Paschalia; Telford, Maximilian J. Topology-dependent asymmetry in systematic errors affects phylogenetic placement of Ctenophora and Xenacoelomorpha. – Science Advances, 2020, 6 (10), eabc5162.Täistekst.
  • Jordi Paps, Peter W. H. Holland. Reconstruction of the ancestral metazoan genome reveals an increase in genomic novelty. – Nature Communications, 2018, 9, 1730. Täistekst.
  • Täistekst.
  • Philippe, H.; Brinkmann, H.; Copley, R.R.; Moroz, L. L.; Nakano, H.; Poustka, A.J.; Wallberg, A.; Peterson, K. J.; Telford, M.J.. Acoelomorph flatworms are deuterostomes related to Xenoturbella. – Nature, 2011, 470 (7333), lk 255–258. Täistekst.
  • Valentine, James W. Cleavage patterns and the topology of the metazoan tree of life. – PNAS, 1997, 94 (15), lk 8001–8005.Täistekst
  • Simakov, Oleg; Kawashima, Takeshi; Marlétaz, Ferdinand; Jenkins, Jerry; Koyanagi, Ryo; Mitros, Therese; Hisata, Kanako; Bredeson, Jessen; Shoguchi, Eiichi. Hemichordate genomes and deuterostome origins. – Nature, 2015, 527 (7579), lk 459–465.Täistekst.
  • Shankland, M.; Seaver, E.C. Evolution of the bilaterian body plan: What have we learned from annelids? – Proceedings of the National Academy of Sciences, 2000, 97 (9): 4434–4437.Täistekst.
  • Täistekst. Fröbius, Andreas C.; Funch, Peter. Rotiferan Hox genes give new insights into the evolution of metazoan bodyplans. – Nature Communications, 2017, 8 (1), lk 9.

pubmed.ncbi.nlm.nih.gov

  • Anne Meylan. Spongivory in Hawksbill Turtles: A Diet of Glass. – Science, 1988, 239 (4838), lk 393–395. Kokkuvõte.

nytimes.com

oup.com

academic.oup.com

  • Struck, Torsten H.; Wey-Fabrizius, Alexandra R.; Golombek, Anja; Hering, Lars; Weigert, Anne; Bleidorn, Christoph; Klebow, Sabrina; Iakovenko, Nataliia; Hausdorf, Bernhard; Petersen, Malte; Kück, Patrick; Herlyn, Holger; Hankeln, Thomas. Platyzoan Paraphyly Based on Phylogenomic Data Supports a Noncoelomate Ancestry of Spiralia. – Molecular Biology and Evolution, 2014, 31 (7), lk 1833–1849. Täistekst.
  • Hervé, Philippe; Lartillot, Nicolas; Brinkmann, Henner. Multigene Analyses of Bilaterian Animals Corroborate the Monophyly of Ecdysozoa, Lophotrochozoa, and Protostomia. – Molecular Biology and Evolution, 2005, 22 (5), lk 1246–1253.Täistekst.
  • Giribet, G.; Distel, D.L.; Polz, M.; Sterrer, W.; Wheeler, W.C. Triploblastic relationships with emphasis on the acoelomates and the position of Gnathostomulida, Cycliophora, Plathelminthes, and Chaetognatha: a combined approach of 18S rDNA sequences and morphology. – Syst Biol., 2000, 49 (3), lk 539–562.Täistekst.

researchgate.net

  • Peter Uetz. A Quarter Century of Reptile and Amphibian Databases. – Herpetological Review, 2021, 52, lk 246–255. Täistekst.
  • A. V. Chernyshev. An updated classification of the phylum Nemertea. – Invertebrate Zoology, 2021, kd 18, nr 3, lk 188–196. Täistekst.
  • Hookabe, Natsumi; Kajihara, Hiroshi; Chernyshev, Alexei V.; Jimi, Naoto; Hasegawa, Naohiro; Kohtsuka, Hisanori; Okanishi, Masanori; Tani, Kenichiro; Fujiwara, Yoshihiro; Tsuchida, Shinji; Ueshima, Rei. Molecular Phylogeny of the Genus Nipponnemertes (Nemertea: Monostilifera: Cratenemertidae) and Descriptions of 10 New Species, With Notes on Small Body Size in a Newly Discovered Clade. – Frontiers in Marine Science. 9, 2022.Täistekst.
  • Hejnol, A.; Martindale, M. Q. The mouth, the anus, and the blastopore – open questions about questionable openings. – Telford, M.J.; Littlewood, D.J. (eds.). Animal Evolution – Genomes, Fossils, and Trees, Oxford University Press 2009, lk 33–40. ISBN 978-0-19-957030-0.Täistekst.

sciencedaily.com

scientificamerican.com

web.archive.org

wiley.com

onlinelibrary.wiley.com

  • Budd, Graham E.; Jensen, Sören. The origin of the animals and a 'Savannah' hypothesis for early bilaterian evolution". – Biological Reviews, 2015, 92 (1), lk 446–473.Täistekst.
  • Gonzalo Giribet. Genomics and the animal tree of life: conflicts and future prospects. – Zoologica Scripta, 2016, 45, lk 14–21.Täistekst.