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22101por Attardo, Geoffrey M., Abd-Alla, Adly M. M., Acosta-Serrano, Alvaro, Allen, James E., Bateta, Rosemary, Benoit, Joshua B., Bourtzis, Kostas, Caers, Jelle, Caljon, Guy, Christensen, Mikkel B., Farrow, David W., Friedrich, Markus, Hua-Van, Aurélie, Jennings, Emily C., Larkin, Denis M., Lawson, Daniel, Lehane, Michael J., Lenis, Vasileios P., Lowy-Gallego, Ernesto, Macharia, Rosaline W., Malacrida, Anna R., Marco, Heather G., Masiga, Daniel, Maslen, Gareth L., Matetovici, Irina, Meisel, Richard P., Meki, Irene, Michalkova, Veronika, Miller, Wolfgang J., Minx, Patrick, Mireji, Paul O., Ometto, Lino, Parker, Andrew G., Rio, Rita, Rose, Clair, Rosendale, Andrew J., Rota-Stabelli, Omar, Savini, Grazia, Schoofs, Liliane, Scolari, Francesca, Swain, Martin T., Takáč, Peter, Tomlinson, Chad, Tsiamis, George, Van Den Abbeele, Jan, Vigneron, Aurelien, Wang, Jingwen, Warren, Wesley C., Waterhouse, Robert M., Weirauch, Matthew T., Weiss, Brian L., Wilson, Richard K., Zhao, Xin, Aksoy, Serap“…Syntenic analysis of Glossina relative to Drosophila melanogaster shows reduced structural conservation across the sex-linked X chromosome. …”
Publicado 2019
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22102por Tsakiri, Eleni N., Gumeni, Sentiljana, Vougas, Konstantinos, Pendin, Diana, Papassideri, Issidora, Daga, Andrea, Gorgoulis, Vassilis, Juhász, Gábor, Scorrano, Luca, Trougakos, Ioannis P.“…We show here that knock down (KD) of proteasome subunits in Drosophila flies, induced, for most subunits, developmental lethality. …”
Publicado 2019
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22103por Kang, Lin-Lin, Zhang, Dong-Mei, Jiao, Rui-Qing, Pan, Shu-Man, Zhao, Xiao-Juan, Zheng, Yan-Jing, Chen, Tian-Yu, Kong, Ling-Dong“…Paired-like homeodomain 2 (Pitx2c) increase, microRNA-15b (miR-15b) low expression, and p53 phosphorylation (p-p53) upregulation, as well as activation of transforming growth factor-β1 (TGF-β1)/drosophila mothers against DPP homolog (Smads) signaling and connective tissue growth factor (CTGF) induction, were also detected in fructose-fed rat hearts and fructose-exposed rat myocardial cell line H9c2 cells. …”
Publicado 2019
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22104por Li, Yuwan, Liu, Ziming, Tang, Yaping, Feng, Wei, Zhao, Chen, Liao, Junyi, Zhang, Chengmin, Chen, Hong, Ren, Youliang, Dong, Shiwu, Liu, Yi, Hu, Ning, Huang, Wei“…Schnurri-3 (Shn3) is a large zinc finger protein related to Drosophila Shn, which is a critical mediator of postnatal bone formation. …”
Publicado 2020
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22105por Schroeder, Josef A., Gelderblom, Hans R., Hauroeder, Baerbel, Schmetz, Christel, Milios, Jim, Hofstaedter, Ferdinand“…The samples represented virus-producing cell cultures (such as SARS-coronavirus, West Nile virus, Orthopox virus), bacteria suspensions (cultures of Escherichia coli and genetically knockout apathogenic Bacillus anthracis), suspensions of parasites (malaria Plasmodium falciparum, Leishmania major, Microsporidia cuniculi, Caenorhabditis elegans), and whole Drosophila melanogaster flies infected with microsporidia. …”
Publicado 2006
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22106“…FXS represents the leading heritable cause of ID and ASD, but many other genes that play roles in ID and ASD have yet to be identified. RESULTS: In a Drosophila FXS disease model, one dfmr1(50M) null mutant stock exhibits previously unreported axonal overgrowths at developmental and mature stages in the giant fiber (GF) escape circuit. …”
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22107por Yuzawa, Tomohisa, Matsuoka, Misato, Sumitani, Megumi, Aoki, Fugaku, Sezutsu, Hideki, Suzuki, Masataka G.“…Physical interaction between MASC and AS1 lncRNA may be important for the BmdsxM expression in the testis. Unlike in the Drosophila dsx, BmdsxM was able to induce spermatogenesis in genetically female (ZW) germ cells. …”
Publicado 2020
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22108“…METHODS: The expression of NEAT1, microRNA-486-5p (miR-486-5p) and Drosophila mothers against decapentaplegic 4 (SMAD4) was determined using quantitative real-time polymerase chain reaction (qRT-PCR). …”
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22109“…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. …”
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22110por 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. …”
Publicado 2020
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22111“…In this study, simultaneously using whole-genome sequencing (WGS) and gene expression level data, four strategies for single-nucleotide polymorphism (SNP) preselection were investigated for genomic predictions in the Drosophila Genetic Reference Panel. RESULTS: Using genomic best linear unbiased prediction (GBLUP) with complete WGS data, the prediction accuracies were 0.208 ± 0.020 (0.181 ± 0.022) for the startle response and 0.272 ± 0.017 (0.307 ± 0.015) for starvation resistance in the female (male) lines. …”
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22112por Chinnasamy, Gandhimathi, Chandrasekharan, Smitha, Koh, Tong Wey, Bhatnagar, Somika“…Toxicity studies on Drosophila validated normal egg laying capacity and eclosion of F1 generation on AI-AgNPs (100 μg/mL). …”
Publicado 2021
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22113por Olafson, Pia U., Aksoy, Serap, Attardo, Geoffrey M., Buckmeier, Greta, Chen, Xiaoting, Coates, Craig J., Davis, Megan, Dykema, Justin, Emrich, Scott J., Friedrich, Markus, Holmes, Christopher J., Ioannidis, Panagiotis, Jansen, Evan N., Jennings, Emily C., Lawson, Daniel, Martinson, Ellen O., Maslen, Gareth L., Meisel, Richard P., Murphy, Terence D., Nayduch, Dana, Nelson, David R., Oyen, Kennan J., Raszick, Tyler J., Ribeiro, José M. C., Robertson, Hugh M., Rosendale, Andrew J., Sackton, Timothy B., Saelao, Perot, Swiger, Sonja L., Sze, Sing-Hoi, Tarone, Aaron M., Taylor, David B., Warren, Wesley C., Waterhouse, Robert M., Weirauch, Matthew T., Werren, John H., Wilson, Richard K., Zdobnov, Evgeny M., Benoit, Joshua B.“…The close relationship of Stomoxys to other blood-feeding (horn flies and Glossina) and non-blood-feeding flies (house flies, medflies, Drosophila) will facilitate understanding of the evolutionary processes associated with development of blood feeding among the Cyclorrhapha. …”
Publicado 2021
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22114por Vreysen, Marc J. B., Abd-Alla, Adly M. M., Bourtzis, Kostas, Bouyer, Jeremy, Caceres, Carlos, de Beer, Chantel, Oliveira Carvalho, Danilo, Maiga, Hamidou, Mamai, Wadaka, Nikolouli, Katerina, Yamada, Hanano, Pereira, Rui“…Research on plant pests has focused on the development of genetic sexing strains, characterizing and assessing the performance of these strains (e.g., Ceratitis capitata), elucidation of the taxonomic status of several members of the Bactrocera dorsalis and Anastrepha fraterculus complexes, the use of microbiota as probiotics, genomics, supplements to improve the performance of the reared insects, and the development of the SIT package for fruit fly species such as Bactrocera oleae and Drosophila suzukii. Research on livestock pests has focused on colony maintenance and establishment, tsetse symbionts and pathogens, sex separation, morphology, sterile male quality, radiation biology, mating behavior and transportation and release systems. …”
Publicado 2021
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22115por 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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22116“…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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22117por 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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22118por Cao, Dong“…Especially, circRNAs are enriched in the brain tissues of almost all investigated species, including humans, mice, Drosophila, etc. Although circRNAs were found in C. elegans, the neuron-specific circRNA data is not available yet. …”
Publicado 2021
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22119por Krzystek, Thomas J., Banerjee, Rupkatha, Thurston, Layne, Huang, JianQiao, Swinter, Kelsey, Rahman, Saad Navid, Falzone, Tomas L., Gunawardena, Shermali“…Here, we isolate the mechanistic role of α-syn in mitochondrial homeostasis in vivo in a humanized Drosophila model of Parkinson’s disease (PD). We show that excess α-syn causes fragmented mitochondria, which persists with either truncation of the C-terminus (α-syn(1–120)) or deletion of the NAC region (α-syn(ΔNAC)). …”
Publicado 2021
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22120por Gao, Lu, Wang, Yanli, Abbas, Mureed, Zhang, Tingting, Ma, Enbo, Xing, Shuping, Zhu, Kun Yan, Zhang, Jianzhen“…R2D2 has been identified as a double-stranded RNA (dsRNA)-binding protein and reported as an integral component of the siRNA pathway in Drosophila. However, the involvement of R2D2 in the siRNA pathway of Locusta migratoria is still unknown. …”
Publicado 2021
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