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7981por Scheffer, Louis K, Xu, C Shan, Januszewski, Michal, Lu, Zhiyuan, Takemura, Shin-ya, Hayworth, Kenneth J, Huang, Gary B, Shinomiya, Kazunori, Maitlin-Shepard, Jeremy, Berg, Stuart, Clements, Jody, Hubbard, Philip M, Katz, William T, Umayam, Lowell, Zhao, Ting, Ackerman, David, Blakely, Tim, Bogovic, John, Dolafi, Tom, Kainmueller, Dagmar, Kawase, Takashi, Khairy, Khaled A, Leavitt, Laramie, Li, Peter H, Lindsey, Larry, Neubarth, Nicole, Olbris, Donald J, Otsuna, Hideo, Trautman, Eric T, Ito, Masayoshi, Bates, Alexander S, Goldammer, Jens, Wolff, Tanya, Svirskas, Robert, Schlegel, Philipp, Neace, Erika, Knecht, Christopher J, Alvarado, Chelsea X, Bailey, Dennis A, Ballinger, Samantha, Borycz, Jolanta A, Canino, Brandon S, Cheatham, Natasha, Cook, Michael, Dreher, Marisa, Duclos, Octave, Eubanks, Bryon, Fairbanks, Kelli, Finley, Samantha, Forknall, Nora, Francis, Audrey, Hopkins, Gary Patrick, Joyce, Emily M, Kim, SungJin, Kirk, Nicole A, Kovalyak, Julie, Lauchie, Shirley A, Lohff, Alanna, Maldonado, Charli, Manley, Emily A, McLin, Sari, Mooney, Caroline, Ndama, Miatta, Ogundeyi, Omotara, Okeoma, Nneoma, Ordish, Christopher, Padilla, Nicholas, Patrick, Christopher M, Paterson, Tyler, Phillips, Elliott E, Phillips, Emily M, Rampally, Neha, Ribeiro, Caitlin, Robertson, Madelaine K, Rymer, Jon Thomson, Ryan, Sean M, Sammons, Megan, Scott, Anne K, Scott, Ashley L, Shinomiya, Aya, Smith, Claire, Smith, Kelsey, Smith, Natalie L, Sobeski, Margaret A, Suleiman, Alia, Swift, Jackie, Takemura, Satoko, Talebi, Iris, Tarnogorska, Dorota, Tenshaw, Emily, Tokhi, Temour, Walsh, John J, Yang, Tansy, Horne, Jane Anne, Li, Feng, Parekh, Ruchi, Rivlin, Patricia K, Jayaraman, Vivek, Costa, Marta, Jefferis, Gregory SXE, Ito, Kei, Saalfeld, Stephan, George, Reed, Meinertzhagen, Ian A, Rubin, Gerald M, Hess, Harald F, Jain, Viren, Plaza, Stephen M“…We summarize new methods and present the circuitry of a large fraction of the brain of the fruit fly Drosophila melanogaster. Improved methods include new procedures to prepare, image, align, segment, find synapses in, and proofread such large data sets. …”
Publicado 2020
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7982“…However, homologs of putative RNAi spreading defective-3 (Rsd-3) protein and scavenger receptors namely Eater and SR-CI that mediate endocytosis cellular update of dsRNA in C. elegans and Drosophila melanogaster were found in Acari genomes. This result suggests that cellular dsRNA uptake in Acari is endocytosis-dependent. …”
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7983por Prawer, Yair D. J., Stroehlein, Andreas J., Young, Neil D., Kapoor, Shilpa, Hall, Ross S., Ghazali, Razi, Batterham, Phillip, Gasser, Robin B., Perry, Trent, Anstead, Clare A.“…Protein sequence, the presence and number of conserved CAP-domains and phylogeny were used to group identified SCP/TAPS proteins; these were compared to those found in Drosophila melanogaster to make functional predictions. In addition, transcription levels of SCP/TAPS protein-encoding genes were explored in different developmental stages. …”
Publicado 2020
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7984por Baldridge, Dustin, Wangler, Michael F., Bowman, Angela N., Yamamoto, Shinya, Schedl, Tim, Pak, Stephen C., Postlethwait, John H., Shin, Jimann, Solnica-Krezel, Lilianna, Bellen, Hugo J., Westerfield, Monte“…The Model Organism Screening Center (MOSC) of the UDN is a unique resource dedicated to utilizing informatics and functional studies in model organisms, including worm (Caenorhabditis elegans), fly (Drosophila melanogaster), and zebrafish (Danio rerio), to aid in diagnosis. …”
Publicado 2021
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7985“…BACKGROUND: Most insects are relatively short-lived, with a maximum lifespan of a few weeks, like the aging model organism, the fruit-fly Drosophila melanogaster. By contrast, the queens of many social insects (termites, ants and some bees) can live from a few years to decades. …”
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7986por Martinez Hernandez, Ana, Silbern, Ivan, Geffers, Insa, Tatenhorst, Lars, Becker, Stefan, Urlaub, Henning, Zweckstetter, Markus, Griesinger, Christian, Eichele, Gregor“…We knocked hαSyn(TP) or hαSyn(Δ119) (h stands for “human”) into the murine αSyn locus. hαSyn(TP) is a structure-based mutant with triple alanine to proline substitutions that favors oligomers, is neurotoxic and evokes PD-like symptoms in Drosophila melanogaster. hαSyn(Δ119) lacks 21 amino acids at the C-terminus, favors fibrillary aggregates and occurs in PD. …”
Publicado 2021
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7987por Zipper, Lisa, Batchu, Sai, Kaya, Nida Hatice, Antonello, Zeus Andrea, Reiff, Tobias“…Here, taking advantage of the genetically accessible adult Drosophila melanogaster intestine and the availability of ex vivo single cell sequencing data, we tested that hypothesis and investigated the metabolism of the intestinal lineage from stem cell (ISC) to differentiated epithelial cell in their native context under homeostatic conditions. …”
Publicado 2022
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7988por Kostenko, V. V., Mouzykantov, A. A., Baranova, N. B., Boulygina, E. A., Markelova, M. I., Khusnutdinova, D. R., Trushin, M. V., Chernova, O. A., Chernov, V. M.“…The results of a comparative analysis of antibiotic-resistant and parental strains indicate that the development of resistance to the corresponding antimicrobial drugs in L. plantarum in vitro is accompanied by the following: (i) significant changes in the genomic profile (point mutations as well as deletions, insertions, duplications, and displacement of DNA sequences) associated in part with the resistome and mobilome; (ii) changes in phenotypic sensitivity to a number of antimicrobial drugs; and (iii) an increase in the level of virulence against Drosophila melanogaster, a model organism for which L. plantarum is considered to be a symbiont. …”
Publicado 2022
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7989por Calderon, Diego, Blecher-Gonen, Ronnie, Huang, Xingfan, Secchia, Stefano, Kentro, James, Daza, Riza M., Martin, Beth, Dulja, Alessandro, Schaub, Christoph, Trapnell, Cole, Larschan, Erica, O’Connor-Giles, Kate M., Furlong, Eileen E. M., Shendure, Jay“…Although this is not practical for most model organisms, it is potentially possible in Drosophila melanogaster, where collections of timed and yet somewhat asynchronous embryos are easy to obtain, such that, at least in principle, one can achieve arbitrarily high temporal resolution. …”
Publicado 2022
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7990por Lund-Hansen, Katrine K., Kutzer, Megan A. M., Armitage, Sophie A. O., Gornard, Samuel, Keilani, Hamilcar, Abbott, Jessica K.“…We investigated effects of IASC and IRSC on two aspects of somatic investment, immune defence strategies and longevity, using previously established female-limited experimental evolution lines in Drosophila melanogaster. We found little evidence for any effect of either type of sexual conflict on investment in the immune defence resistance or tolerance. …”
Publicado 2022
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7991por Bierzynska, Agnieszka, Bull, Katherine, Miellet, Sara, Dean, Philip, Neal, Chris, Colby, Elizabeth, McCarthy, Hugh J., Hegde, Shivaram, Sinha, Manish D., Bugarin Diz, Carmen, Stirrups, Kathleen, Megy, Karyn, Mapeta, Rutendo, Penkett, Chris, Marsh, Sarah, Forrester, Natalie, Afzal, Maryam, Stark, Hannah, BioResource, NIHR, Williams, Maggie, Welsh, Gavin I., Koziell, Ania B., Hartley, Paul S., Saleem, Moin A.“…We report NUP93 cases in the UK and demonstrate in vivo functional effects of Nup93 depletion in a fly (Drosophila melanogaster) nephrocyte model. METHODS: Three hundred thirty-seven paediatric SRNS patients from the National cohort of patients with Nephrotic Syndrome (NephroS) were whole exome and/or whole genome sequenced. …”
Publicado 2022
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7992por Ruden, Douglas M.“…Ruden’s laboratory and titled, “Using Drosophila melanogaster as a model for genotoxic chemical mutational studies with a new program, SnpSift.” …”
Publicado 2022
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7993“…Therefore, we evaluated different dissociation protocols to obtain single cells from small tissue samples of Drosophila melanogaster eye-antennal imaginal discs. RESULTS: We show that a combination of mechanical and chemical dissociation resulted in sufficient high-quality cells. …”
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7994por Sakamoto, Takuma, Sinzeki, Shun, Kakinuma, Shunsuke, Ishihara, Eri, Tabunoki, Hiroko“…We annotated P. auratus transcripts using Homo sapiens and Drosophila melanogaster genes as references; 50.5% of P. auratus transcripts were assigned to H. sapiens genes, and 54.0% of P. auratus transcripts were assigned to D. melanogaster genes. …”
Publicado 2022
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7995“…Other studies in humans also show that both sleep quantity and sleep quality decrease with age. Drosophila melanogaster is a useful model to study aging and sleep, and inheriting mutations affecting the potassium current Shaker results in flies that sleep less and have a shorter lifespan. …”
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7996por Rago, Alfredo, Gilbert, Donald G., Choi, Jeong-Hyeon, Sackton, Timothy B., Wang, Xu, Kelkar, Yogeshwar D., Werren, John H., Colbourne, John K.“…Its genome also contains 2.1-fold more duplicated genes and 1.4-fold more single copy genes than the Drosophila melanogaster genome. The Nasonia gene count is larger than those of other sequenced hymenopteran species, owing both to improvements in the genome annotation and to unique genes in the wasp lineage. …”
Publicado 2016
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7997por Fuks, Garold, Elgart, Michael, Amir, Amnon, Zeisel, Amit, Turnbaugh, Peter J., Soen, Yoav, Shental, Noam“…Finally, the profiling of a Drosophila melanogaster microbiome using the set of six primer pairs provided a ~ 100-fold increase in resolution and thus enabling efficient downstream analysis. …”
Publicado 2018
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7998por Abi-Dargham, Anissa“…He demonstrated these dysfunctions in brains of Drosophila melanogaster expressing hDAT ∆N336. Furthermore, these flies are hyperactive and display fear and impaired social interactions, traits associated with impaired DA neurotransmission. …”
Publicado 2018
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7999por Konrad, Enrico D. H., Nardini, Niels, Caliebe, Almuth, Nagel, Inga, Young, Dana, Horvath, Gabriella, Santoro, Stephanie L., Shuss, Christine, Ziegler, Alban, Bonneau, Dominique, Kempers, Marlies, Pfundt, Rolph, Legius, Eric, Bouman, Arjan, Stuurman, Kyra E., Õunap, Katrin, Pajusalu, Sander, Wojcik, Monica H., Vasileiou, Georgia, Le Guyader, Gwenaël, Schnelle, Hege M., Berland, Siren, Zonneveld-Huijssoon, Evelien, Kersten, Simone, Gupta, Aditi, Blackburn, Patrick R., Ellingson, Marissa S., Ferber, Matthew J., Dhamija, Radhika, Klee, Eric W., McEntagart, Meriel, Lichtenbelt, Klaske D., Kenney, Amy, Vergano, Samantha A., Abou Jamra, Rami, Platzer, Konrad, Ella Pierpont, Mary, Khattar, Divya, Hopkin, Robert J., Martin, Richard J., Jongmans, Marjolijn C. J., Chang, Vivian Y., Martinez-Agosto, Julian A., Kuismin, Outi, Kurki, Mitja I., Pietiläinen, Olli, Palotie, Aarno, Maarup, Timothy J., Johnson, Diana S., Venborg Pedersen, Katja, Laulund, Lone W., Lynch, Sally A., Blyth, Moira, Prescott, Katrina, Canham, Natalie, Ibitoye, Rita, Brilstra, Eva H., Shinawi, Marwan, Fassi, Emily, Sticht, Heinrich, Gregor, Anne, Van Esch, Hilde, Zweier, Christiane“…We performed transcriptome analysis on RNA from blood samples and utilized Drosophila melanogaster to investigate the impact of Ctcf dosage alteration on nervous system development and function. …”
Publicado 2019
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8000por Guo, Yiming, Kronert, William A., Hsu, Karen H., Huang, Alice, Sarsoza, Floyd, Bell, Kaylyn M., Suggs, Jennifer A., Swank, Douglas M., Bernstein, Sanford I.“…METHODS: We produced the first models of myosin-based DA1 (F437I) and DA2B (A234T) using transgenic Drosophila melanogaster and performed an integrative analysis of the effects of the mutations. …”
Publicado 2020
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