936 resultados para DROSOPHILA-MELANOGASTER RDNA


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The environment can modify developmental trajectories and generate a range of distinct phenotypes without altering an organism’s genome, a widespread phenomenon called developmental plasticity. The past decades have seen a resurgent interest in understanding how developmental plasticity contributes to evolutionary processes, as it can produce phenotypic variation among individuals and facilitate diversification among populations that inhabit distinct ecological niches. To better understand the importance of plastic responses for evolutionary change, we need to explore how the environment alters development to produce phenotypic variation and then compare this to how genetic variation influences these same developmental processes.(...)

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The Unfolded Protein Response (UPR) is a signaling pathway that is activated by an accumulation of unfolded or misfolded proteins in the endoplasmic reticulum (ER) that causes ER stress. The activation of the UPR aims to restore ER homeostasis by attenuation of ER client protein translation, increased transcription of ER chaperones and ER associated degradation (ERAD) factors. If ER stress is too long or too strong, cells may die. The main signaling branch of the UPR is mediated by the ER transmembrane protein IRE1 and the transcription factor Xbp1. The active, spliced form of Xbp1 (Xbp1spliced) acts as a transcription factor with protective function against toxic protein aggregation. However, overexpression of Xbp1spliced in the developing Drosophila eye causes degeneration of the eye (“glossy” eye phenotype).(...)

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Drosophila antonietae sp. nov. and D. gouveai sp. nov. are members of the D. buzzatii cluster of the D. repleta species group of the genus Drosophila. They can be distinguished from their cryptic species, D. borborema Vilela & Sene, 1977, D. koepferae Fontdevila & Wasserman, 1988, D. serido Vilela & Sene, 1977, and D. seriema Tidon-Sklorz & Sene, 1995 by morphological, genetic and ecological criteria.

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Body color polymorphism of urban populations of cosmopolite fly Drosophila kikkawai Burla, 1954 was investigated in relation to its possible association with environmental temperature. Samples of D. kikkawai were collected in spring, summer, autumn and winter between 1987 to 1988, in zones with different levels of urbanization in the southern Brazilian city of Porto Alegre, Rio Grande do Sul. A clear association was observed between darker flies and both seasons with low temperatures and areas of low urbanization (where temperature is generally lower than in urbanized areas). Results of preliminary laboratory experiments involving six generations of flies grown in chambers at temperatures of 17º and 25ºC confirmed this tendency to a relationship between body color and temperature, with allele frequency of the main gene involved in body pigmentation changing over time.

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Three new species of mesophragmatica group, Drosophila amaguana, Drosophila shyri and Drosophila ruminahuii from Pasochoa Forest Reserve, northern Ecuadorian Andes, are described. The two subgroups currently composing the mesophragmatica group are renamed as the mesophragmatica subgroup to which the first two species have been added, and the viracochi subgroup to which the latter species has been added. These subgroups are defined based on the direction of the basal scutellar setae, which are divergent in the species of the former subgroup and convergent in the latter.

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Se describen los ciclos de vida de Drosophila inca Dobzhansky & Pavan, 1943 y D. yangana Rafael & Vela, 2003 los cuales son muy similares; la viabilidad observada es diferente ya que la mortalidad en estagios larvarios y de pupación de D. yangana es superior debido a la alimentación inadecuada. La duración promedia desde huevo hasta adulto es 22 días a 21 - 23°C para ambas especies.

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The composition and the seasonality of the natural populations of Drosophila species in relation to the climatic variables temperature and rainfall were analyzed from September 1998 through October 1999 by monthly collections, in two woodlands in the Northwest of the State of São Paulo, Brazil. The diversity dominance component curves were inclined, reflecting low diversity and high dominance of few species. Among the 25 species recorded, Drosophila sturtevanti Duda, 1927 was the most frequent and abundant. On the opposite to data in literature, D. paranaensis Barros, 1950 abundance and frequency were greater than those from D. mercatorum Patterson & Wheeler, 1942. A positive correlation between abundance and rainfall was observed for D. nebulosa Sturtevant, 1916. These data are indicative of changes in the populations structure due to new adaptive strategies arised in response to environmental modifications.

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Drosophila piratininga sp. nov. and Drosophila sampa sp. nov., belonging to the canalinea group of the subgenus Drosophila, are described based mostly on wild-caught specimens collected at a forest reserve of the Cidade Universitária "Armando de Salles Oliveira", an urban remnant of the montane Atlantic Forest located at west São Paulo city, state of São Paulo, Brazil. The two species are readily distinguished from each other mostly by having different wing patterns: the main crossveins being remarkably clouded in the first one and unclouded in the latter. Illustrations of terminalia are also provided.

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Drosophila paulistorum Dobzhansky & Pavan, 1949 had initially been considered absent in anthropogenically disturbed environments, but in 1985 the detection of the species in Porto Alegre city, southern Brazil, suggested its potential to colonize new habitats and laid the foundations for ecologic studies on this species' populations. This study followed the variations in D. paulistorum populations in this town almost 20 years after its first local record. Drosophilid specimens were collected in sites with different urbanization grades and the results point to the expressive decline in D. paulistorum populations in Porto Alegre. This decline may be linked to urban growth and to naturally driven population decline, as imputed to climatic changes like variations in maximum and minimum temperatures as a consequence of a global climate warming. Also, the recent introduction of exotic species Zaprionus indianus Gupta, 1970 seems to play a role in this scenario, changing the interactions between native species.

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Drosophila Fallen, 1823 (Diptera, Drosophilidae) is for long a well-established model organism for genetics and evolutionary research. The ecology of these flies, however, has only recently been better studied. Recent papers show that Drosophila assemblies can be used as bioindicators of forested environment degradation. In this work the bioindicator potential of drosophilids was evaluated in a naturally opened environment, a coastal strand-forest (restinga). Data from nine consecutive seasonal collections revealed strong temporal fluctuation pattern of the majority of Drosophila species groups. Drosophila willistoni group was more abundant at autumns, whereas D. cardini and D. tripunctata groups were, respectively, expressive at winters and springs, and D. repleta group at both seasons. The exotic species D. simulans Sturtevant, 1919 (from D. melanogaster group) and Zaprionus indianus Gupta, 1970 were most abundant at summers. Overall, the assemblage structure did not show the same characteristics of forested or urban environments, but was similar to the forests at winters and to cities at summers. This raises the question that this locality may already been under urbanization impact. Also, this can be interpreted as an easily invaded site for exotic species, what might lead to biotic homogenization and therefore can put in check the usage of drosophilid assemblages as bioindicators at open environments.

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The Drosophila peruensis species group was recently proposed and includes four taxa: D. atalaia Vilela & Sene, 1982, D. boraceia Vilela & Val, 2004, D. pauliceia Ratcov & Vilela, 2007, and D. peruensis Wheeler, 1959. All these species have most of setae or setulae of mesonotum arinsing from dark spots, wings with crossveins darker (except in D. atalaia) and hypandrium squared-shaped mostly fused to gonopods. Here, we describe two new species, Drosophila itacorubi sp. nov. and Drosophila paraitacorubi sp. nov., belonging to this species group. The male genitalia of these species are figured. An identification key to the D. peruensis species group is provided.

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A pesar de ser un país relativamente pequeño, Ecuador tiene una gran variedad de ecosistemas que han favorecido altos niveles de especiación. Uno de estos ecosistemas es el bosque de Polylepis. En estos bosques existe una gran diversidad de plantas, como las asteráceas (compuestas), cuyas flores hospedan una plétora de insectos, entre los que se encuentran las especies del grupo Drosophila onychophora. En este estudio, describimos dos nuevas especies de Drosophila recolectadas en un parche de bosque de Polylepis pauta en el Páramo de Papallacta a 4000 msnm. Ambas especies pertenecen al grupo D. onychophora: Drosophila yurag sp. nov. y Drosophila yuragshina sp. nov. Las dos especies presentan edeagos alargados, este carácter es propio de especies del grupo. Morfológicamente ambas especies son muy parecidas, la manera más fácil de distinguirlas consiste en la observación de las alas.

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El nuevo grupo Drosophila asiri pertenece al subgénero Drosophila. Los ejemplares fueron capturados en los bosques andinos del Ecuador, desde los 3200 hasta los 4000 m de altitud. A este grupo pertenecen Drosophila (D.) asiri Vela & Rafael, 2005 previamente ubicada dentro del grupo D. onychophora, y dos nuevas especies; Drosophila (D.) yuragyacum sp. nov. y Drosophila (D.) yanaurcus sp. nov. Las capturas se realizaron en el bosque protector Pasochoa, en la quebrada de Cruz Loma y en el páramo de Papallacta, utilizando cebo de banano y levadura. Los miembros del nuevo grupo por el momento son endémicos de los Andes ecuatorianos. Las tres especies del grupo D. asiri son moscas de tamaño grande (aproximadamente 6 mm). Los machos presentan el edeago quitinizado con dos proyecciones laterales en la cabeza a manera de cuernos muy quitinizados. Estas características diferencian a las especies del grupo D. asiri de otros grupos dentro de Drosophila.

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Se describen cuatro especies nuevas del grupo Drosophila mesophragmatica. Las nuevas especies fueron descubiertas en los páramos y remanentes de bosque andino de los Andes ecuatorianos. Las capturas fueron realizadas desde los 2200 hasta los 4000 m de altitud. Las especies nuevas son: D. cashapamba sp. nov., D. chorlavi sp. nov., D. rucux sp. nov. y D. yanayuyu sp. nov. Con las cuatro especies nuevas descubiertas, el número de especies dentro del grupo D. mesophragmatica se incrementa a 17. Los miembros del grupo están distribuidos principalmente en los Andes sudamericanos.

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Las especies de los subgéneros Phloridosa y Drosophila (este último en relación con los grupos de especies: D. flavopilosa, D. onychophora y D. bromeliae) son especies de Drosophila que se desarrollan únicamente en flores. El grupo D. onychophora fue propuestopara agrupar a especies exclusivamente antófilas. El grupo D. onychophora está integrado por 18 especies, que se encuentran relacionadas con las flores de Asteraceae. En el Parque Arqueológico Rumipamba, provincia de Pichincha, Ecuador, se realizaron capturas de Drosophila, en los meses de febrero, mayo, julio, septiembre y diciembre del 2009. Las especies fueron recolectadas directamente en las flores con un aspirador entomológico. En total se capturaron 427 individuos de Drosophila y se identificaron 11 especies, de las cuales seis son nuevas especies del grupo D. onychophora y una es un nuevo registro para el Ecuador. En este trabajo se describen cuatro de las seis especies nuevas.