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6921“…For example, at low temperature and short day-length, Drosophila melanogaster enters a state called adult reproductive diapause. …”
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6922“…Insect immune responses to multiple pathogen groups including viruses, bacteria, fungi, and entomopathogenic nematodes have traditionally been documented in model insects such as Drosophila melanogaster, or medically important insects such as Aedes aegypti. …”
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6923por Holland, Petter, Quintana, Eduardo Martin, Khezri, Rojyar, Schoborg, Todd Andrew, Rusten, Tor Erik“…Drosophila melanogaster tumor models are growing in popularity, driven by the high degree of genetic as well as functional conservation to humans. …”
Publicado 2022
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6924“…This study compares whole-genome sequence variation of recently collected natural population samples of Drosophila melanogaster against a collection made approximately 35 years prior from the same locality—encompassing roughly 500 generations of evolution. …”
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6925“…OBJECTIVES: Drosophila melanogaster has become an excellent model organism to explore the genetic mechanisms underlying tumour progression. …”
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6926por Blenau, Wolfgang, Bremer, Anna-Sophie, Schwietz, Yannik, Friedrich, Daniel, Ragionieri, Lapo, Predel, Reinhard, Balfanz, Sabine, Baumann, Arnd“…The functional characterization of PaOctβ2R and the bioinformatics data uncovered that the monoaminergic receptor family in the hemimetabolic P. americana is similarly complex as in holometabolic model insects like Drosophila melanogaster and the honeybee, Apis mellifera. …”
Publicado 2022
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6927“…Although the molecular function of Gro has been investigated in holometabolous insects such as Aedes aegypti and Drosophila melanogaster, their role in the hemimetabolous insect, brown planthopper, and the relationship between NlGro/NlGro1-L and JH/ecdysone signaling pathway, remained unknown. …”
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6928por Jauregui‐Lozano, Juan, Escobedo, Spencer, Easton, Alyssa, Lanman, Nadia A., Weake, Vikki M., Hall, Hana“…Here, we characterized the R‐loop landscape in aging Drosophila melanogaster photoreceptor neurons and showed that bulk R‐loop levels increased with age. …”
Publicado 2022
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6929“…The piRNAs of Caenorhabditis elegans have been observed to bind targets with high mismatch tolerance and appear to lack specific transposon targets, unlike piRNAs in Drosophila melanogaster and other organisms. These observations support a model in which C. elegans piRNAs provide a broad, indiscriminate net of silencing, competing with siRNAs associated with the CSR-1 Argonaute that specifically protect self-genes from silencing. …”
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6930“…Here, we assess quantitative trait differentiation in gene expression levels and alternative splicing (intron usage) between three closely related pairs of natural populations of Drosophila melanogaster from contrasting thermal environments that reflect three separate instances of cold tolerance evolution. …”
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6931“…Here we pursue this problem in the Drosophila melanogaster ON motion vision circuit(4,5), in which we record the membrane potentials of direction-selective T4 neurons and of their columnar input elements(6,7) in response to visual and pharmacological stimuli in vivo. …”
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6932por Dorkenwald, Sven, McKellar, Claire E., Macrina, Thomas, Kemnitz, Nico, Lee, Kisuk, Lu, Ran, Wu, Jingpeng, Popovych, Sergiy, Mitchell, Eric, Nehoran, Barak, Jia, Zhen, Bae, J. Alexander, Mu, Shang, Ih, Dodam, Castro, Manuel, Ogedengbe, Oluwaseun, Halageri, Akhilesh, Kuehner, Kai, Sterling, Amy R., Ashwood, Zoe, Zung, Jonathan, Brittain, Derrick, Collman, Forrest, Schneider-Mizell, Casey, Jordan, Chris, Silversmith, William, Baker, Christa, Deutsch, David, Encarnacion-Rivera, Lucas, Kumar, Sandeep, Burke, Austin, Bland, Doug, Gager, Jay, Hebditch, James, Koolman, Selden, Moore, Merlin, Morejohn, Sarah, Silverman, Ben, Willie, Kyle, Willie, Ryan, Yu, Szi-chieh, Murthy, Mala, Seung, H. Sebastian“…Here we present FlyWire, an online community for proofreading neural circuits in a Drosophila melanogaster brain, and explain how its computational and social structures are organized to scale up to whole-brain connectomics. …”
Publicado 2022
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6933por Prudêncio, Pedro, Savisaar, Rosina, Rebelo, Kenny, Martinho, Rui Gonçalo, Carmo-Fonseca, Maria“…Here, we adapted native elongating transcript sequencing technology (NET-seq) to measure cotranscriptional splicing dynamics during the early developmental stages of Drosophila melanogaster embryos. Our results reveal the position of RNA polymerase II (Pol II) when both canonical and recursive splicing occur. …”
Publicado 2022
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6934por Wendler, Franz, Park, Sangbin, Hill, Claire, Galasso, Alessia, Chang, Kathleen R., Awan, Iman, Sudarikova, Yulia, Bustamante-Sequeiros, Mar, Liu, Sichen, Sung, Ethan Y-H., Aisa-Bonoko, Gabrielle, Kim, Seung K., Baena-Lopez, Luis A.“…The existence of three independent binary systems for conditional gene expression (Gal4/UAS; LexA/LexAop; QF/QUAS) has greatly expanded versatile genetic analyses in the Drosophila melanogaster; however, the experimental application of these tools is limited by the need to generate multiple collections of noninterchangeable transgenic fly strains for each inducible gene expression system. …”
Publicado 2022
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6935“…In the arthropod model species Drosophila melanogaster, a dipteran fly, segmentation of the anterior–posterior body axis is under control of a hierarchic gene cascade. …”
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6936por Kapali, George P., Callier, Viviane, Gascoigne, Samuel J. L., Harrison, Jon F., Shingleton, Alexander W.“…Here we show that the growth and body size response to moderate hypoxia (10% O(2)) in Drosophila melanogaster is systemically regulated via the steroid hormone ecdysone. …”
Publicado 2022
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6937por Bourbon, Henri-Marc G., Benetah, Mikhail H., Guillou, Emmanuelle, Mojica-Vazquez, Luis Humberto, Baanannou, Aissette, Bernat-Fabre, Sandra, Loubiere, Vincent, Bantignies, Frédéric, Cavalli, Giacomo, Boube, Muriel“…Nevertheless, little is known about how enhancers evolve after gene duplication and how regulatory information is rewired between duplicated genes. The Drosophila melanogaster bric-a-brac (bab) complex, comprising the tandem paralogous genes bab1 and bab2, provides a paradigm to address these issues. …”
Publicado 2022
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6938por Duong, Phu C., McCabe, Tobias C., Riley, Grace F., Holmes, Heather L., Piermarini, Peter M., Romero, Michael F., Gillen, Christopher M.“…Aedes aegypti aeNKCC1 is an ortholog of Drosophila melanogaster Ncc69, a bumetanide-sensitive Na(+)- K(+)−2Cl(−) cotransporter (NKCC). …”
Publicado 2022
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6939“…CCHamide-2 is a newly identified brain-gut neuropeptide that regulates feeding behavior in several insect species including Drosophila melanogaster. However, little is known about the mechanisms controlling the feeding-related behavior and metabolic functions modulated by CCHamide-2 in other insects. …”
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6940por Frey, Felice, Sandakly, Jawdat, Ghannam, Mirna, Doueiry, Caren, Hugosson, Fredrik, Berlandi, Johannes, Ismail, Joy N., Gayden, Tenzin, Hasselblatt, Martin, Jabado, Nada, Shirinian, Margret“…TETs’ enzymatic function in demethylating 5-methyl cytosine in DNA is required for proper development and TETs are frequently mutated in cancer. Recently, Drosophila melanogaster Tet (dTet) was shown to be highly expressed in developing fly brains and discovered to play an important role in brain and muscle development as well as fly behavior. …”
Publicado 2022
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