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7221por Posnien, Nico, Zeng, Victor, Schwager, Evelyn E., Pechmann, Matthias, Hilbrant, Maarten, Keefe, Joseph D., Damen, Wim G. M., Prpic, Nikola-Michael, McGregor, Alistair P., Extavour, Cassandra G.“…These sequences obtained 62,799 unique BLAST hits against the NCBI non-redundant protein data base, including putative orthologs to 8,917 Drosophila melanogaster genes based on best reciprocal BLAST hit identity compared with the D. melanogaster proteome. …”
Publicado 2014
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7222por Ramos, Bruno C. R., Moraes, Maria Nathália C. M., Poletini, Maristela O., Lima, Leonardo H. R. G., Castrucci, Ana Maria L.“…Unlike mammals, Drosophila melanogaster and Danio rerio do not rely only on their eyes to perceive light, in fact their whole body may be capable of detecting light and entraining their circadian clock. …”
Publicado 2014
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7223por McCoy, Rajiv C., Taylor, Ryan W., Blauwkamp, Timothy A., Kelley, Joanna L., Kertesz, Michael, Pushkarev, Dmitry, Petrov, Dmitri A., Fiston-Lavier, Anna-Sophie“…To test the utility of this technology, we sequenced and assembled the genome of the model organism Drosophila melanogaster (reference genome strain y; cn, bw, sp) achieving an N50 contig size of 69.7 Kbp and covering 96.9% of the euchromatic chromosome arms of the current reference genome. …”
Publicado 2014
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7224“…Based on sequence similarity to homologs known to regulate Drosophila melanogaster wing development, we identified 50 and 46 potential wing development-related unigenes from L. migratoria and O. furnacalis transcriptome, respectively. …”
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7225por Avet-Rochex, Amélie, Carvajal, Nancy, Christoforou, Christina P., Yeung, Kelvin, Maierbrugger, Katja T., Hobbs, Carl, Lalli, Giovanna, Cagin, Umut, Plachot, Cedric, McNeill, Helen, Bateman, Joseph M.“…We previously identified the insulin receptor (InR)/mTOR pathway as a critical regulator of the timing of neuronal differentiation in the Drosophila melanogaster eye. Subsequently, this pathway has been shown to play a conserved role in regulating neurogenesis in vertebrates. …”
Publicado 2014
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7226por Kutsenko, Alexey, Svensson, Thomas, Nystedt, Björn, Lundeberg, Joakim, Björk, Petra, Sonnhammer, Erik, Giacomello, Stefania, Visa, Neus, Wieslander, Lars“…To characterize the Ch. tentans gene expression machineries, we identified potential orthologus sequences to more than 600 Drosophila melanogaster (D. melanogaster) proteins involved in the expression of protein-coding genes. …”
Publicado 2014
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7227por Bou Dib, Peter, Gnägi, Bettina, Daly, Fiona, Sabado, Virginie, Tas, Damla, Glauser, Dominique A., Meister, Peter, Nagoshi, Emi“…Here we investigate whether p48 plays a role in the survival of DA neurons in Drosophila melanogaster and Caenorhabditis elegans. We show that a Drosophila p48 homolog, 48-related-2 (Fer2), is expressed in and required for the development and survival of DA neurons in the protocerebral anterior medial (PAM) cluster. …”
Publicado 2014
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7228por Montgomery, Sara L., Vorojeikina, Daria, Huang, Wen, Mackay, Trudy F. C., Anholt, Robert R. H., Rand, Matthew D.“…To examine how genetic variation impacts MeHg tolerance, we assessed developmental tolerance to MeHg using the sequenced, inbred lines of the Drosophila melanogaster Genetic Reference Panel (DGRP). We found significant genetic variation in the effects of MeHg on development, measured by eclosion rate, giving a broad sense heritability of 0.86. …”
Publicado 2014
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7229por Newell, Peter D., Chaston, John M., Wang, Yiping, Winans, Nathan J., Sannino, David R., Wong, Adam C. N., Dobson, Adam J., Kagle, Jeanne, Douglas, Angela E.“…In this study we examined the genome sequences of bacteria isolated from the Drosophila melanogaster gut with the objective of identifying genes that are important for function in the host. …”
Publicado 2014
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7230por López-Falcón, Brenda, Meyer-Nava, Silvia, Hernández-Rodríguez, Benjamín, Campos, Adam, Montero, Daniel, Rudiño, Enrique, Vázquez, Martha, Zurita, Mario, Valadez-Graham, Viviana“…The ADD domain has two zinc fingers that bind to histone tails and mediate hATRX binding to chromatin. dAtrx, the putative ATRX homolog in Drosophila melanogaster, has a conserved helicase/ATPase domain but lacks the ADD domain. …”
Publicado 2014
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7231por Fuller, Zachary L., Haynes, Gwilym D., Zhu, Dianhui, Batterton, Matthew, Chao, Hsu, Dugan, Shannon, Javaid, Mehwish, Jayaseelan, Joy C., Lee, Sandra, Li, Mingmei, Ongeri, Fiona, Qi, Sulan, Han, Yi, Doddapaneni, Harshavardhan, Richards, Stephen, Schaeffer, Stephen W.“…Contrary to observations in Drosophila melanogaster, some recent studies have failed to detect a relationship between the recombination rate, intensity of selection acting at synonymous sites, and the magnitude of codon bias as predicted under these standard models. …”
Publicado 2014
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7232por Durcan, Peter Joseph, Conradie, Johannes D, Van deVyver, Mari, Myburgh, Kathryn Helen“…BACKGROUND: Multiple cell types including trophoblasts, osteoclasts and myoblasts require somatic cell fusion events as part of their physiological functions. In Drosophila Melanogaster the paralogus type 1 transmembrane receptors and members of the immunoglobulin superfamily Kin of Irre (Kirre) and roughest (Rst) regulate myoblast fusion during embryonic development. …”
Publicado 2014
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7233por Astakhova, Lyubov N., Zatsepina, Olga G., Funikov, Sergei Yu., Zelentsova, Elena S., Schostak, Natalia G., Orishchenko, Konstantin E., Evgen’ev, Michael B., Garbuz, David G.“…We used the same in vitro assay for Drosophila melanogaster Schneider-2 (S2) cells to compare the activity of the hsp70 and hsp83 promoters of the second species pair represented by Diptera, i.e., Stratiomys singularior and D. melanogaster, which dramatically differ in thermoresistance and the pattern of Hsp70 accumulation. …”
Publicado 2015
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7234por Ikeda, Kahori T., Hirose, Yuka, Hiraoka, Kiriko, Noro, Emiko, Fujishima, Kosuke, Tomita, Masaru, Kanai, Akio“…A comparative miRNA analysis of T. cancriformis and Drosophila melanogaster showed inconsistencies in the expression patterns of four conserved miRNAs. …”
Publicado 2015
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7235por Kim, Kristi E, Peluso, Paul, Babayan, Primo, Yeadon, P. Jane, Yu, Charles, Fisher, William W, Chin, Chen-Shan, Rapicavoli, Nicole A, Rank, David R, Li, Joachim, Catcheside, David E. A, Celniker, Susan E, Phillippy, Adam M, Bergman, Casey M, Landolin, Jane M“…In this paper, we describe eight high-coverage SMRT sequence datasets from five organisms (Escherichia coli, Saccharomyces cerevisiae, Neurospora crassa, Arabidopsis thaliana, and Drosophila melanogaster) that have been publicly released to the general scientific community (NCBI Sequence Read Archive ID SRP040522). …”
Publicado 2014
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7236“…The insulin receptor signalling pathway with its central component, the Akt1 kinase, and endpoint regulator, the transcription factor foxo, plays a significant role in the control of growth. Drosophila melanogaster is an excellent model organism with a well-studied life cycle and a consistently developing compound eye that can undergo analysis to compare changes in the properties of adult ommatidia as an indicator of growth. …”
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7237“…The fruit fly Drosophila melanogaster larval neuromuscular junction (NMJ) is a valuable model for studying HSP. …”
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7238por Pu, Mintie, Ni, Zhuoyu, Wang, Minghui, Wang, Xiujuan, Wood, Jason G., Helfand, Stephen L., Yu, Haiyuan, Lee, Siu Sylvia“…A similar negative correlation between H3K36me3 marking and mRNA expression change during aging was also observed in Drosophila melanogaster, suggesting a conserved mechanism for H3K36me3 in suppressing age-dependent mRNA expression change. …”
Publicado 2015
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7239“…Various lncRNAs have been implicated in the modulation of chromatin structure, transcriptional and post-transcriptional gene regulation, and regulation of genomic stability in mammals, Caenorhabditis elegans, and Drosophila melanogaster. The purpose of this study is to identify the lncRNA landscape in the malaria vector An. gambiae and assess the evolutionary conservation of lncRNAs and their secondary structures across the Anopheles genus. …”
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7240“…BACKGROUND: Group B Sox proteins are a highly conserved group of transcription factors that act extensively to coordinate nervous system development in higher metazoans while showing both co-expression and functional redundancy across a broad group of taxa. In Drosophila melanogaster, the two group B Sox proteins Dichaete and SoxNeuro show widespread common binding across the genome. …”
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