199 resultados para sub-seasonal prediction


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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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Flight activity of foragers of four colonies of Plebeia remota (Holmberg, 1903) was registered from December 1998 to December 1999, using an automated system (photocells and PLC system). The colonies originated from two different regions: Cunha, state of São Paulo, and Prudentópolis, state of Paraná, Brazil. Flight activity was influenced by different climatic factors in each season. In the summer, the intensity of the correlations between flight activity and climatic factors was smaller than in the other seasons. During the autumn and winter, solar radiation was the factor that most influenced flight activity, while in the spring, this activity was influenced mainly by temperature. Except in the summer, the various climatic factors similarly influenced flight activity of all of the colonies. Flight activity was not affected by geographic origin of the colonies. Information concerning seasonal differences in flight activity of P. remota will be useful for prediction of geographic distribution scenarios under climatic changes.

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The Pernambuco Center of Endemism (PCE) in northeastern Brazil is highly fragmented and degraded. Despite its potential conservation importance the bird fauna in this area is still relatively unknown and there are many remnant fragments that have not been systematically surveyed. Here, we report the results of bird surveys in five forest fragments (one pioneer, two ombrophilous and two seasonal). In total, 162 taxa were recorded, 12 of which are endemic to the PCE. The frequency of endangered species was lower than what has been reported in studies from the same area and most of the taxa considered to be at risk of extinction were sub-species of uncertain taxonomic validity. The comparatively low number of endemic/threatened species may be due to the small size of the fragments in the present study - a consequence of the high levels of habitat loss in this region. Analysis of species richness patterns indicates that ombrophilous forest fragments are acting as refuges for those bird species that are most sensitive to environmental degradation.

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The foraging activity of Geotrigona mombuca Smith, 1863 was studied under natural conditions aiming to verify the influence of seasonal changes on daily flight activity and annual cycle of the colony. Daily flight activity was monitored for a year based on the observation and counting of foragers leaving and entering the hive, as well as the kind of material transported and meteorological factors such as day time, temperature and relative humidity. The influence of seasonal changes was evidenced by alterations on daily rhythm of flight activity and by differences on transportation of food resources, building material and garbage. These data indicate that forager behavior is related to daily microclimate conditions and it is synchronized with the requirements of colony annual cycle, which determines an intense pollen collection in the summer. Thus, the recomposition of the intranidal population in spring and summer can be ensured, which is characterized both for a higher intensity of flight activity and increase in garbage and resin transport, as well as the swarming process in the spring. In this way, an action targeting the preservation or management of the species in a natural environment should consider that survival and reproduction of the colony depends greatly on the amount of available pollen in late winter.

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The present work is part of the studies realized under the authority of the National Service of Malaria (Brazil), with the collaboration of scientists of the Oswaldo Cruz Institute, in some forests of the southern part of Brazil.This is the first of a series and its subject is the development of the Anopheles mosquitoes of the kerteszia in water collected in Bromeliaceae leaves. The ecology of Bromeliaceae was studied in a previous work. The botanical material was classified by specialists from several botanical institutions from Europe and the United States of America. The most important ecological relations of the “bromeliad-kerteszia” problem were presented through four indices: 1st Positivity index – Relative frequency of bromeliad with watery forms in the bromeliad examined. 2nd Larval index – Mean number of watery forms in the positive bromeliad. 3rd Ovoposition index – Product of the Positivy index by the Larval index. 4th MK index – Product of the Ovoposition index by the total number of bromeliad, positive or not, in a unity of area (1.000 m²). The capture of flying forms in relation to the relative humidity was also studied. From the several forests of the Brusque region we have selected one community of each type, which were the most representative forests in Southern Brazil. Conclusions on the “bromeliad-kerteszia” problem – From a general point of view only a few factors are really important and these are listed below: 1°) The volum of water on the bromeliad. 2°) The level where the bromeliad is fixed. 3°) The number of bromeliad in unity of area. The distribution of microclimas in the forest through the considered levels has a direct influence on the species of subgenus Kerteszia (qualitative influence) and an indirect influence through the ecological distribution of the more frequent bromeliad with best qualities as biotope for the watery forms (qualitative influence). The MK index is roughly proportional to the square of half the total number of Bromeliaceae in a certain type of forest. Then the MK index would be a certain function of the ecological type of the forest and of the total number of bromeliad in a unity of area. MK approximately α x (x/10)² . x = n° of bromeliad in a unity of área (1.000 m²); α = qualitative factor. It would be interesting to see if this proportion is maintained when we have examined a greater number of forests of different types.

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Os autores, examinando a distribuição, pelas várias alturas, do teôr do matéria orgânica das águas armazenadas no imbricamento das fôlhas de certas bromeliáceas, verificaram: 1.º) O têor de matéria orgãnica contido na água das bromeliáceas depende da cobertura vegetal. 2.º) As curvas da sua distribuição são semelhantes ás encontradas para o índice MK dos anofelíneos do sub-gênero Kerteszia.

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Die vorliegende Arbiet koennen wir, entsprechend den obigen Erklaerungen, wie folgt, zusammenfassen: 1. Es bestehen im vertikalen Sinne besondere oekologische Bedingungen bezueglich der Eiablage fuer Anopheles (Kerteszia) homunculus und bellator, waehrend A. (K.) cruzii eine grosse Indifferenz bezueglich des Mikroklimas zeigt. 2. Die Anophelinen zeigen keine besondere Bevorzugung irgendeiner Bromelienart in Bezug auf die Eiablage. Es laesst sich feststellen, dass gewisse Bedingungen eines Biotops erfuelt sein muessen, damit dieses in begrenztem Wohnbezirk zu ienem ausgesprochenen Brutplatz wird. Aus diesem Grunde wurden einige Bromelienarten zu Hauptbrutstaetten der Anopheleslarven des Gebietes. 3. Bezueglich der Wassermenge finden wir in der gesamten Region die Anopheleslarven weitaus am haeufigsten in Bromelien mit grosser Kapazitaet. Die Arten mit geringem Fassungsvermoegen, die wesentlich zahlreicher als die erstgenannten sind, sind nur gute Brutstaetten, ween sie auf dem Boden wachsen oder Talsohle in huegeligem Gelaende, dort wo der Wald ausreichend dicht ist. Hier halten die mikroklimatischen Bedingungen die Verdunstung hintan, wodurch den Anopheleslarven in diesen Bromelien das Leben ermoeglicht wird. 4. Es besteht eine Beziehung zwischen der Periodizitaet der Larven und der gefluegelten Formen der Anophelinen, die in einem Waldstueck gefangen wurden. Die letzteren zeigen im vertikalen Sinne keine ausgesprochenen Variationen bezueglich der prozentualen Haeufigkeit, waehrend die Larven in ieder Hoehe ausgesprochene Haeufigkeitsschwankungen aufweisen, die immer von der von Art bevorzugten Habitat in einer bestimmten Hoehenlage abhaengen. Bezueglich einer moeglichst vollstaendigen Erklaerung des Problems "Bromelien-Malaria" dieser Region, koennen wir folgendes feststellen: 5. Die definitive Loesung des Problems wird wesentlich erleichtert durch den Nachweis, dass nur eine geringe Anzahl von Bromelien (12 Arten) - und gerate die weniger haeufigen...