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by Richards, Stephen and Gibbs, Richard A and Weinstock, George M and Brown, Susan J and Denell, Robin and Beeman, Richard W and Gibbs, Richard and Bucher, Gregor and Friedrich, Markus and Grimmelikhuijzen, Cornelis J. P and Klingler, Martin and Lorenzen, Marce and Roth, Siegfried and Schröder, Reinhard and Tautz, Diethard and Zdobnov, Evgeny M and Muzny, Donna and Attaway, Tony and Bell, Stephanie and Buhay, Christian J and Chandrabose, Mimi N and Chavez, Dean and Clerk-Blankenburg, Kerstin P and Cree, Andrew and Dao, Marvin and Davis, Clay and Chacko, Joseph and Dinh, Huyen and Dugan-Rocha, Shannon and Fowler, Gerald and Garner, Toni T and Garnes, Jeffrey and Gnirke, Andreas and Hawes, Alica and Hernandez, Judith and Hines, Sandra and Holder, Michael and Hume, Jennifer and Jhangiani, Shalini N and Joshi, Vandita and Khan, Ziad Mohid and Jackson, Laronda and Kovar, Christie and Kowis, Andrea and Lee, Sandra and Lewis, Lora R and Margolis, Jon and Morgan, Margaret and Nazareth, Lynne V and Nguyen, Ngoc and Okwuonu, Geoffrey and Parker, David and Ruiz, San-Juana and Santibanez, Jireh and Savard, Joël and Scherer, Steven E and Schneider, Brian and Sodergren, Erica and Vattahil, Selina and Villasana, Donna and White, Courtney S and Wright, Rita and Park, Yoonseong and Lord, Jeff and Oppert, Brenda and Wang, Liangjiang and Weinstock, George and Liu, Yue and Worley, Kim and Elsik, Christine G and Reese, Justin T and Elhaik, Eran and Landan, Giddy and Graur, Dan and Arensburger, Peter and Atkinson, Peter and Beidler, Jim and Demuth, Jeffery P and Drury, Douglas W and Du, Yu-Zhou and Fujiwara, Haruhiko and Maselli, Vincenza and Osanai, Mizuko and Robertson, Hugh M and Tu, Zhijian and Wang, Jian-Jun and Wang, Suzhi and Song, Henry and Zhang, Lan and Werner, Doreen and Stanke, Mario and Morgenstern, Burkhard and Solovyev, Victor and Kosarev, Peter and Brown, Garth and Chen, Hsiu-Chuan and Ermolaeva, Olga and Hlavina, Wratko and Kapustin, Yuri and Kiryutin, Boris and ... and unav and Tribolium Genome Sequencing Consortium
Nature (London), ISSN 1476-4687, 2008, Volume 452, Issue 7190, pp. 949 - 955
Tribolium facilitates genetic analysis with ease of culture, a short life cycle, high fecundity, and facility for genetic crosses (see ref. 2... 
SHORT-GERM INSECT | RED FLOUR BEETLE | GENE SUPERFAMILY | BOMBYX-MORI | PROTEIN | APIS-MELLIFERA | MESSENGER-RNA | DROSOPHILA-MELANOGASTER | MULTIDISCIPLINARY SCIENCES | SEGMENTATION | HONEY-BEE | Proteome - genetics | Genes, Insect - genetics | Humans | Phylogeny | Neurotransmitter Agents - genetics | RNA Interference | DNA Transposable Elements - genetics | Tribolium - physiology | Taste - genetics | Telomere - genetics | Insecticides - pharmacology | Repetitive Sequences, Nucleic Acid - genetics | Tribolium - classification | Genome, Insect - genetics | Oogenesis - genetics | Vision, Ocular - genetics | Animals | Base Composition | Tribolium - embryology | Receptors, Odorant - genetics | Cytochrome P-450 Enzyme System - genetics | Tribolium - genetics | Receptors, G-Protein-Coupled - genetics | Growth and Development - genetics | Body Patterning - genetics | Physiological aspects | Genetic aspects | Research | Nucleotide sequencing | Gene expression | Methods | Flour beetles | Evolutionary biology | Insects | Genes | Genomics | Genetics | RNA polymerase | Chemicals | Index Medicus | Environmental Sciences | Cytochrome P-450 Enzyme System/genetics | Genes, Insect/genetics | Genome, Insect/genetics | Telomere/genetics | DNA Transposable Elements/genetics | Vision, Ocular/genetics | Repetitive Sequences, Nucleic Acid/genetics | Receptors, G-Protein-Coupled/genetics | Body Patterning/genetics | Neurotransmitter Agents/genetics | Growth and Development/genetics | Insecticides/pharmacology | Proteome/genetics | Oogenesis/genetics | Receptors, Odorant/genetics | Tribolium/classification | Taste/genetics
Journal Article
by Weinstock, George M and Robinson, Gene E and Gibbs, Richard A and Worley, Kim C and Evans, Jay D and Maleszka, Ryszard and Robertson, Hugh M and Weaver, Daniel B and Beye, Martin and Bork, Peer and Elsik, Christine G and Hartfelder, Klaus and Hunt, Greg J and Zdobnov, Evgeny M and Amdam, Gro V and Bitondi, Mrcia M. G and Collins, Anita M and Cristino, Alexandre S and Lattorff, H. Michael G and Lobo, Carlos H and Moritz, Robin F. A and Nunes, Francis M. F and Page Jr, Robert E and Simões, Zilá L. P and Wheeler, Diana and Carninci, Piero and Fukuda, Shiro and Hayashizaki, Yoshihide and Kai, Chikatoshi and Kawai, Jun and Sakazume, Naoko and Sasaki, Daisuke and Tagami, Michihira and Albert, Stefan and Baggerman, Geert and Beggs, Kyle T and Bloch, Guy and Cazzamali, Giuseppe and Cohen, Mira and Drapeau, Mark David and Eisenhardt, Dorothea and Emore, Christine and Ewing, Michael A and Fahrbach, Susan E and Forêt, Sylvain and Grimmelikhuijzen, Cornelis J. P and Hauser, Frank and Hummon, Amanda B and Huybrechts, Jurgen and Jones, Andrew K and Kadowaki, Tatsuhiko and Kaplan, Noam and Kucharski, Robert and Leboulle, Grard and Linial, Michal and Littleton, J. Troy and Mercer, Alison R and Richmond, Timothy A and Rodriguez-Zas, Sandra L and Rubin, Elad B and Sattelle, David B and Schlipalius, David and Schoofs, Liliane and Shemesh, Yair and Sweedler, Jonathan V and Velarde, Rodrigo and Verleyen, Peter and Vierstraete, Evy and Williamson, Michael R and Ament, Seth A and Brown, Susan J and Corona, Miguel and Dearden, Peter K and Dunn, W. Augustine and Elekonich, Michelle M and Fujiyuki, Tomoko and Gattermeier, Irene and Gempe, Tanja and Hasselmann, Martin and Kage, Eriko and Kamikouchi, Azusa and Kubo, Takeo and Kunieda, Takekazu and Lorenzen, Marcé and Milshina, Natalia V and Morioka, Mizue and Ohashi, Kazuaki and Overbeek, Ross and Ross, Christian A and Schioett, Morten and Shippy, Teresa and Takeuchi, Hideaki and Toth, Amy L and Willis, Judith H and Wilson, Megan J and Gordon, Karl H. J and Letunic, Ivica and Hackett, Kevin and Peterson, Jane and Felsenfeld, Adam and ... and unav and Honeybee Genome Sequencing Consort and Honeybee Genome Sequencing Consortium and The Honeybee Genome Sequencing Consortium
Nature (London), ISSN 1476-4687, 2006, Volume 443, Issue 7114, pp. 931 - 949
Journal Article
PLoS genetics, ISSN 1553-7404, 2019, Volume 15, Issue 2, p. e1007900
Most of the current knowledge on the genetic basis of adaptive evolution is based on the analysis of single nucleotide polymorphisms (SNPs... 
GENETIC-VARIATION | POPULATION | EVOLUTION | POSITIVE SELECTION | GENOME-WIDE PATTERNS | INSECTICIDE RESISTANCE | REFERENCE PANEL | ADAPTATION | SEQUENCE | GENETICS & HEREDITY | MELANOGASTER | Gene Frequency - genetics | Animals | Stress, Physiological - genetics | DNA Transposable Elements - genetics | Genome, Insect - genetics | Gene Expression Regulation, Developmental - genetics | Polymorphism, Single Nucleotide - genetics | Behavior, Animal - physiology | Mutation - genetics | Drosophila melanogaster - genetics | Evolution, Molecular | Selection, Genetic - genetics | Transposons | Gene mutations | Analysis | Drosophila | Genetic research | Influence | Genetic aspects | Adaptation (Biology) | Research | Recombination | Positive selection | Genomics | Genomes | Single-nucleotide polymorphism | Genetic diversity | Gene expression | Natural selection | Environmental conditions | Insects | Evolutionary biology | DNA methylation | Evolution | Mutation | Stress response | Bioinformatics | Evolution & development | Supervision | Adaptation | Fitness | Invertebrate genomics | Gene ontologies | Genome analysis | Evolutionary adaptation | Chi square tests | Drosophila melanogaster | Alcohols | Polymorphism, Single Nucleotide: genetics | Populations and Evolution | Gene Frequency: genetics | Genome, Insect: genetics | Mutation: genetics | Life Sciences | Stress, Physiological: genetics | Gene Expression Regulation, Developmental: genetics | DNA Transposable Elements: genetics | Genetics | Behavior, Animal: physiology | Drosophila melanogaster: genetics | Selection, Genetic: genetics
Journal Article
Journal Article