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by Dasmahapatra, Kanchon K and Dasmahapatra, Kanchon K and Walters, James R and Briscoe, Adriana D and Davey, John W and Whibley, Annabel and Whibley, Annabel and Nadeau, Nicola J and Zimin, Aleksey V and Salazar, Camilo and Hughes, Daniel S. T and Ferguson, Laura C and Martin, Simon H and Salazar, Camilo and Salazar, Camilo and Lewis, James J and Adler, Sebastian and Ahn, Seung-Joon and Ahn, Seung-Joon and Baker, Dean A and Baxter, Simon W and Chamberlain, Nicola L and Chauhan, Ritika and Ritika, Chauhan and Counterman, Brian A and Counterman, Brian A and Dalmay, Tamas and Gilbert, Lawrence E and Gordon, Karl and Heckel, David G and Heckel, David G and Hines, Heather M and Hines, Heather M and Hoff, Katharina J and Holland, Peter W. H and Holland, Peter W. H and Jacquin-Joly, Emmanuelle and Jacquin-Joly, Emmanuelle and Jiggins, Francis M and Jones, Robert T and Jones, Robert T and Kapan, Durrell D and Kersey, Paul and Lamas, Gerardo and Lawson, Daniel and Lawson, Daniel and Mapleson, Daniel and Maroja, Luana S and Maroja, Luana S and Martin, Arnaud and Moxon, Simon and Palmer, William J and Papa, Riccardo and Papanicolaou, Alexie and Pauchet, Yannick and Pauchet, Yann ick and Ray, David A and Ray, David A and Rosser, Neil and Rosser, Neil and Salzberg, Steven L and Supple, Megan A and Supple, Megan A and Surridge, Alison and Tenger-Trolander, Ayse and Vogel, Heiko and Vogel, Heiko and Wilkinson, Paul A and Wilson, Derek and Wilson, Derek and Yorke, James A and Yuan, Furong and Balmuth, Alexi L and Balmuth, Alexi L and Eland, Cathlene and Eland, Cathlene and Gharbi, Karim and Gharbi, Karim and Thomson, Marian and Thomson, Marian and Gibbs, Richard A and Han, Yi and Han, Yi and Jayaseelan, Joy C and Kovar, Christie and Mathew, Tittu and Muzny, Donna M and Ongeri, Fiona and Pu, Ling-Ling and Qu, Jiaxin and Thornton, Rebecca L and Worley, Kim C and Wu, Yuan-Qing and Linares, Mauricio and Linares, Mauricio and Blaxter, Mark L and Blaxter, Mark L and Ffrench-Constant, Richard H and ffrench-Constant, Richard H and Joron, Mathieu and ... and Heliconius Genome Consortium and The Heliconius Genome Consortium
Nature, ISSN 0028-0836, 2012, Volume 486, Issue 7405, pp. 94 - 98
Journal Article
Cladistics, ISSN 0748-3007, 10/2019, Volume 35, Issue 5, pp. 573 - 575
Here, we define a sequence file format that allows for multi‐character elements (FASTC). The format is derived from the FASTA format and the custom alphabet... 
Gene expression | Analysis | Synteny
Journal Article
Nature, ISSN 0028-0836, 2010, Volume 464, Issue 7287, pp. 367 - 373
Journal Article
Plant Biotechnology Journal, ISSN 1467-7644, 01/2016, Volume 14, Issue 1, pp. 177 - 185
Journal Article
PLoS ONE, ISSN 1932-6203, 2011, Volume 6, Issue 4, p. e19315
Restriction-site associated DNA (RAD) sequencing is a powerful new method for targeted sequencing across the genomes of many individuals. This approach has... 
CHROMOSOME | SYNTENY | BOMBYX-MORI | EVOLUTION | BIOLOGY | GENETIC ARCHITECTURE | DIAMONDBACK MOTH | SILKWORM | HELICONIUS-MELPOMENE | MAP | LEPIDOPTERA | Macrolides - toxicity | Synteny - drug effects | Male | Chromosome Segregation - drug effects | Restriction Mapping | Moths - genetics | Base Sequence | Chromosome Mapping - methods | Chromosomes, Insect - genetics | Sex Chromosomes - genetics | Female | Insecticide Resistance - drug effects | Genomics - methods | Synteny - genetics | Genome, Insect - genetics | Genetic Linkage - drug effects | Genotype | Bombyx - drug effects | Bombyx - genetics | Genetic Markers | Open Reading Frames - genetics | DNA - genetics | Animals | Models, Biological | Alleles | Contig Mapping | Sequence Analysis, DNA - methods | Drug Combinations | Chromosome Segregation - genetics | Moths - drug effects | Genetic aspects | Genomes | Comparative analysis | Chromosomes | Population genetics | Genomics | Sex chromosomes | Spinosad | Zoology | Genes | Chromosome number | Synteny | Insecticides | Homology | Mapping | Gene sequencing | Insecticide resistance | Maps | Genetic analysis | Genetics | Physiology | Bioinformatics | Deoxyribonucleic acid--DNA | Linkage analysis | Enzymes | Data processing | Artificial chromosomes | Algorithms | Evolutionary biology | Scaffolding | Breakage | Morphology | Mutation | Gene mapping | Evolution & development | DNA sequencing | Deoxyribonucleic acid | DNA
Journal Article
by Vishvanath Nene and Jennifer R. Wortman and Daniel Lawson and Brian Haas and Chinnappa Kodira and Zhijian (Jake) Tu and Brendan Loftus and Zhiyong Xi and Karyn Megy and Manfred Grabherr and Quinghu Ren and Evgeny M. Zdobnov and Neil F. Lobo and Kathryn S. Campbell and Susan E. Brown and Maria F. Bonaldo and Jingsong Zhu and Steven P. Sinkins and David G. Hogenkamp and Paolo Amedeo and Peter Arensburger and Peter W. Atkinson and Shelby Bidwell and Jim Biedler and Ewan Birney and Robert V. Bruggner and Javier Costas and Monique R. Coy and Jonathan Crabtree and Matt Crawford and Becky deBruyn and David DeCaprio and Karin Eiglmeier and Eric Eisenstadt and Hamza El-Dorry and William M. Gelbart and Suely L. Gomes and Martin Hammond and Linda I. Hannick and James R. Hogan and Michael H. Holmes and David Jaffe and J. Spencer Johnston and Ryan C. Kennedy and Hean Koo and Saul Kravitz and Evgenia V. Kriventseva and David Kulp and Kurt LaButti and Eduardo Lee and Song Li and Diane D. Lovin and Chunhong Mao and Evan Mauceli and Carlos F. M. Menck and Jason R. Miller and Philip Montgomery and Akio Mori and Ana L. Nascimento and Horacio F. Naveira and Chad Nusbaum and Sinéad O'Leary and Joshua Orvis and Mihaela Pertea and Hadi Quesneville and Kyanne R. Reidenbach and Yu-Hui Rogers and Charles W. Roth and Jennifer R. Schneider and Michael Schatz and Martin Shumway and Mario Stanke and Eric O. Stinson and Jose M. C. Tubio and Janice P. VanZee and Sergio Verjovski-Almeida and Doreen Werner and Owen White and Stefan Wyder and Qiandong Zeng and Qi Zhao and Yongmei Zhao and Catherine A. Hill and Alexander S. Raikhel and Marcelo B. Soares and Dennis L. Knudson and Norman H. Lee and James Galagan and Steven L. Salzberg and Ian T. Paulsen and George Dimopoulos and Frank H. Collins and Bruce Birren and Claire M. Fraser-Liggett and David W. Severson
Science, ISSN 0036-8075, 6/2007, Volume 316, Issue 5832, pp. 1718 - 1723
We present a draft sequence of the genome of Aedes aegypti, the primary vector for yellow fever and dengue fever, which at ∼1376 million base pairs is about 5... 
Transposons | Genetic vectors | Introns | Genes | DNA | Genomes | Insect vectors | Chromosomes | Insect genetics | Mosquitos | Research Article | ORGANIZATION | EVOLUTION | YELLOW-FEVER MOSQUITO | DROSOPHILA-MELANOGASTER | MULTIDISCIPLINARY SCIENCES | SUPERFAMILY | INSECTS | ANOPHELES-GAMBIAE | RECEPTORS | EXPRESSION | TRANSPOSONS | Anopheles - metabolism | Multigene Family | Species Specificity | Anopheles - genetics | Humans | Synteny | Molecular Sequence Data | Male | Drosophila melanogaster - genetics | Insect Vectors - metabolism | Yellow Fever - transmission | Aedes - metabolism | Sex Determination Processes | Membrane Transport Proteins - genetics | Base Sequence | Female | Transcription, Genetic | Genome, Insect | Genes, Insect | Yellow Fever - prevention & control | Insect Proteins - genetics | Arboviruses | Protein Structure, Tertiary - genetics | Sex Characteristics | Aedes - genetics | Sequence Analysis, DNA | DNA Transposable Elements | Dengue - prevention & control | Animals | Insect Vectors - genetics | Dengue - transmission | Physiological aspects | Aedes albopictus | Genetic aspects | Health aspects | Aedes | Comparative studies | Viruses | Disease transmission | Insects | Epidemiology | Genomics | Life Sciences | Anopheles gambiae | Protein Structure, Tertiary | Insect Vectors | Dengue | Biochemistry, Molecular Biology | Sex Determination (Genetics) | Membrane Transport Proteins | Yellow Fever | Drosophila melanogaster | Insect Proteins
Journal Article
Nature, ISSN 0028-0836, 07/2004, Volume 430, Issue 6995, pp. 35 - 44
Journal Article
Genomics, ISSN 0888-7543, 2019, Volume 112, Issue 1, pp. 286 - 288
Synteny and collinearity analysis is a standard investigative strategy done in many comparative genomic studies to understand genomic conservation and... 
Vector graph | Comparative genomics | Synteny and collinearity
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 2019, Volume 116, Issue 6, pp. 2165 - 2174
Journal Article