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22021por Tsai, Shih-Ying, Chang, Yuh-Long, Swamy, Krishna B. S., Chiang, Ruei-Lin, Huang, Der-Hwa“…GAGA sequence motifs have frequently been found in the upstream region of paused genes in Drosophila, implicating a prevalent binding factor, GAF, in transcriptional pausing. …”
Publicado 2016
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22022por Craddock, Elysse M.“…PRESENTATION OF THE HYPOTHESIS: Here I propose that a central factor in the spectacular radiation and diversification of the endemic Hawaiian Drosophila and other terrestrial lineages on the Hawaiian and other oceanic islands has been repeated bursts of transposition of multiple TEs induced by the unique ecological features of volcanic habitats. …”
Publicado 2016
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22023por Liu, Peiwen, Dong, Yunqiao, Gu, Jinbao, Puthiyakunnon, Santhosh, Wu, Yang, Chen, Xiao-Guang“…RESULTS: Our results reveal that, despite the large genome size of Ae. albopictus, the piRNA pool of Ae. albopictus (1.2 × 10(7)) is smaller than those of Aedes aegypti (1.7 × 10(7)) and Drosophila melanogaster (1.6 × 10(7)). In Ae. albopictus, piRNAs displayed the highest abundance at the embryo stage and the lowest abundance at the pupal stage. …”
Publicado 2016
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22024“…RESULTS: We identified 23 different OBP sequences from Anastrepha fraterculus and 24 from A. obliqua, which correspond to 20 Drosophila melanogaster OBP genes. Phylogenetic analysis separated Anastrepha OBPs sequences in four branches that represent four subfamilies: classic, minus-C, plus-C and dimer. …”
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22025por Sofola-Adesakin, Oyinkan, Khericha, Mobina, Snoeren, Inge, Tsuda, Leo, Partridge, Linda“…In this study, we characterized the Drosophila model of Aβ(pE3-42) toxicity by expressing the peptide in specific sets of neurons using the GAL4-UAS system, and measuring different phenotypic outcomes. …”
Publicado 2016
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22026“…Assembly of the germ plasm in the oocyte is organized by the single Buc in zebrafish, named Velo1 in Xenopus, and by Oskar in Drosophila. Secondary loss of oskar in several insect lineages coincides with changes in germline determination strategies, while the presence of buc in mammals suggests functions not associated with germline formation. …”
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22027por Liu, Lei, Xue, Yu, Zhu, Yingfeng, Xuan, Dandan, Yang, Xue, Liang, Minrui, Wang, Juan, Zhu, Xiaoxia, Zhang, Jiong, Zou, Hejian“…After inhibition of Mer receptor tyrosine kinase (Mertk), levels of IL-1β, IL-8 and chemokine (C-C motif) ligand 2 (CCL-2) were detected by ELISA and expression of mammalian homologs of the drosophila Mad gene 3 (Smad), suppressor of cytokine signaling 3 (SOCS3), NACHT-LRR-PYD-containing protein 3 (NLRP3), and IL-8R of THP-1 were assessed by qPCR and western blot to explore the molecular mechanisms. …”
Publicado 2016
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22028“…The ISVM and TSVM methods were validated with the molecules from the most representative organisms contained in the RefSeq database: Rattus norvegicus, Mus musculus, Homo sapiens, Drosophila melanogaster and Arabidopsis thaliana. The transductive method presented F-measure and sensitivity higher than 90% and also higher than the results obtained with ISVM. …”
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22029por Trujillo-Ocampo, Abel, Cázares-Raga, Febe Elena, del Angel, Rosa María, Medina-Ramírez, Fernando, Santos-Argumedo, Leopoldo, Rodríguez, Mario H., Hernández-Hernández, Fidel de la Cruz“…These proteins have been shown to participate in both humoral and cellular immune responses in Drosophila. As mosquitoes of the genus Aedes are the primary vectors for arboviruses, causing several diseases such as dengue fever, yellow fever, Zika and chikungunya fevers, cell lines derived from these mosquitoes, Aag-2 from Aedes aegypti and C6/36 HT from Aedes albopictus, are currently used to study the insect immune system. …”
Publicado 2017
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22030“…RESULTS: Our experimental tests used colour-naïve individuals of two known prey species (Drosophila hydei and Musca domestica) in replicate Y-maze choice trials designed to manipulate the apparent size of spider models via the distance at which they are viewed. …”
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22031“…RESULTS: We focused our studies on the Drosophila wing, where epithelial cells transition from active proliferation to a postmitotic state in a temporally controlled manner. …”
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22032por Kim, Il-Hwan, Aryal, Sudarshan K., Aghai, Dariush T., Casanova-Torres, Ángel M., Hillman, Kai, Kozuch, Michael P., Mans, Erin J., Mauer, Terra J., Ogier, Jean-Claude, Ensign, Jerald C., Gaudriault, Sophie, Goodman, Walter G., Goodrich-Blair, Heidi, Dillman, Adler R.“…We found that compared to the well-characterized entomopathogenic nematode symbiont X. nematophila, X. innexi fails to suppress the insect phenoloxidase immune pathway and is attenuated for virulence and reproduction in the Lepidoptera Galleria mellonella and Manduca sexta, as well as the dipteran Drosophila melanogaster. To assess if, compared to other Xenorhabdus spp., X. innexi has a reduced capacity to synthesize virulence determinants, we obtained and analyzed a draft genome sequence. …”
Publicado 2017
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22033por Whittington, Emma, Forsythe, Desiree, Borziak, Kirill, Karr, Timothy L., Walters, James R., Dorus, Steve“…RESULTS: Comparison of the newly characterized Monarch butterfly (Danaus plexippus) sperm proteome to those of the Carolina sphinx moth (Manduca sexta) and the fruit fly (Drosophila melanogaster) demonstrated conservation at the level of protein abundance and post-translational modification within Lepidoptera. …”
Publicado 2017
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22034por To, Albert, Medina, Liana O., Mfuh, Kenji O., Lieberman, Michael M., Wong, Teri Ann S., Namekar, Madhuri, Nakano, Eileen, Lai, Chih-Yun, Kumar, Mukesh, Nerurkar, Vivek R., Lehrer, Axel T.“…Here, we describe the production and purification of Drosophila melanogaster S2 insect cell-derived, soluble ZIKV E protein and evaluate its immunogenicity and efficacy in three different mouse strains. …”
Publicado 2018
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22035por Higuchi, Yujiro, Okunushi, Ryuta, Hara, Taichi, Hashiguchi, Akihiro, Yuan, Junhui, Yoshimura, Akiko, Murayama, Kei, Ohtake, Akira, Ando, Masahiro, Hiramatsu, Yu, Ishihara, Satoshi, Tanabe, Hajime, Okamoto, Yuji, Matsuura, Eiji, Ueda, Takehiro, Toda, Tatsushi, Yamashita, Sumimasa, Yamada, Kenichiro, Koide, Takashi, Yaguchi, Hiroaki, Mitsui, Jun, Ishiura, Hiroyuki, Yoshimura, Jun, Doi, Koichiro, Morishita, Shinichi, Sato, Ken, Nakagawa, Masanori, Yamaguchi, Masamitsu, Tsuji, Shoji, Takashima, Hiroshi“…Immunocytochemical analysis of subcellular localization in HeLa cells indicated that mutant COA7 proteins as well as wild-type COA7 were localized in mitochondria, which suggests that mutant COA7 does not affect the mitochondrial recruitment and may affect the stability or localization of COA7 interaction partners in the mitochondria. In addition, Drosophila COA7 (dCOA7) knockdown models showed rough eye phenotype, reduced lifespan, impaired locomotive ability and shortened synaptic branches of motor neurons. …”
Publicado 2018
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22036por Liu, Ning-Ning, Uppuluri, Priya, Broggi, Achille, Besold, Angelique, Ryman, Kicki, Kambara, Hiroto, Solis, Norma, Lorenz, Viola, Qi, Wanjun, Acosta-Zaldívar, Maikel, Emami, S. Noushin, Bao, Bin, An, Dingding, Bonilla, Francisco A., Sola-Visner, Martha, Filler, Scott G., Luo, Hongbo R., Engström, Ylva, Ljungdahl, Per Olof, Culotta, Valeria C., Zanoni, Ivan, Lopez-Ribot, Jose L., Köhler, Julia R.“…We found that loss of Candida albicans Pho84 attenuated virulence in Drosophila and murine oropharyngeal and disseminated models of invasive infection, and conferred hypersensitivity to neutrophil killing. …”
Publicado 2018
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22037“…However, contrary to our expectations, we were unable to identify canonical (i.e. Drosophila- or nematode-like) viRNAs in any of the animals, despite the widespread presence of abundant micro-RNAs, and somatic transposon-derived piwi-interacting RNAs. …”
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22038“…Finally, the enzyme Duox emerged as essential for guts defense in bees, similarly to Drosophila. CONCLUSIONS: These results provide evidence of the superior nutritional status of bees fed pollen instead of artificial substitutes in terms of overall health, even in the presence of a pathogen. …”
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22039por Oláhová, Monika, Yoon, Wan Hee, Thompson, Kyle, Jangam, Sharayu, Fernandez, Liliana, Davidson, Jean M., Kyle, Jennifer E., Grove, Megan E., Fisk, Dianna G., Kohler, Jennefer N., Holmes, Matthew, Dries, Annika M., Huang, Yong, Zhao, Chunli, Contrepois, Kévin, Zappala, Zachary, Frésard, Laure, Waggott, Daryl, Zink, Erika M., Kim, Young-Mo, Heyman, Heino M., Stratton, Kelly G., Webb-Robertson, Bobbie-Jo M., Snyder, Michael, Merker, Jason D., Montgomery, Stephen B., Fisher, Paul G., Feichtinger, René G., Mayr, Johannes A., Hall, Julie, Barbosa, Ines A., Simpson, Michael A., Deshpande, Charu, Waters, Katrina M., Koeller, David M., Metz, Thomas O., Morris, Andrew A., Schelley, Susan, Cowan, Tina, Friederich, Marisa W., McFarland, Robert, Van Hove, Johan L.K., Enns, Gregory M., Yamamoto, Shinya, Ashley, Euan A., Wangler, Michael F., Taylor, Robert W., Bellen, Hugo J., Bernstein, Jonathan A., Wheeler, Matthew T.“…Cells from subject 1 also exhibited a significant decrease in mitochondrial cristae. Knockdown of Drosophila ATPsynδ, the ATP5F1D homolog, in developing eyes and brains caused a near complete loss of the fly head, a phenotype that was fully rescued by wild-type human ATP5F1D. …”
Publicado 2018
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22040por Abuin, Liliane, Prieto-Godino, Lucia L., Pan, Haiyun, Gutierrez, Craig, Huang, Lan, Jin, Rongsheng, Benton, Richard“…The CREL contains a single predicted N-glycosylation site, which we show bears a sugar modification in recombinantly expressed IR8a. Using the Drosophila olfactory system as an in vivo model, we find that a transgenically encoded IR8a mutant in which the CREL cannot be N-glycosylated is impaired in localisation to cilia in some, though not all, populations of sensory neurons expressing different tuning IRs. …”
Publicado 2019
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