964 resultados para Apis mellifera L
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本能和学习能力是动物生存所需的两种基本行为方式,它们之间存在一定的拮抗关系。巨尾阿丽蝇是一种具有强大生存本能的双翅目昆虫,而该物种是否具有良好的学习能力是本研究所关心的问题。而蜜蜂作为神经生物学研究中的模式生物,已有各种行为学范式对其进行了研究,包括束缚状态下的伸喙反射(PER)、螫刺反射(SER),及自由状态下与糖水结合的偏好性学习模式,但是对于自由状态下的回避反应尚没有研究。因此,本研究借鉴了啮齿类被动回避学习研究的范式,设计并制作了一个适用于研究昆虫在自由状态下的电击回避学习能力的装置,利用诱饵与电刺激相结合的方式对巨尾阿丽蝇和蜜蜂在自由状态下的电击回避学习能力进行了研究。研究得到以下结果:一、巨尾阿丽蝇能够学会回避此负性刺激,且当电压范围在5到45 V之间时有显著的回避行为,而电压达到60 V时则受到明显伤害。二、蜜蜂在被电击之后的采蜜频率有显著的降低。同样说明,它们能够学会对电刺激进行回避。有趣的是,是否有蜜蜂被电击后在电板上挣扎的情况也是影响它们采蜜频率的因素之一。三、本论文中所采用的实验范式可以成为一种新的对自由状态下昆虫电击回避学习能力进行研究的实验范式。
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A honeybee queen normally mates with 10-20 drones, and reproductive conflicts may arise among a colony's different worker patrilines, especially after a colony has lost its single queen and the workers commence egg laying. In this study, we employed microsatellite markers to study aspects of worker reproductive competition in two queenless Africanized honeybee colonies. First, we determined whether there was a bias among worker patrilines in their maternity of drones and, second, we asked whether this bias could be attributed to differences in the degree of ovary activation of workers. Third, we relate these behavioral and physiological factors to ontogenetic differences between workers with respect to ovariole number. Workers from each of three (colony A) and one (colony B) patrilineal genotypes represented less than 6% of the worker population, yet each produced at least 13% of the drones in a colony, and collectively they produced 73% of the drones. Workers representing these genotypes also had more developed follicles and a greater number of ovarioles per ovary. Across all workers, ovariole development and number were closely correlated. This suggests a strong effect of worker genotype on the development of the ovary already in the postembryonic stages and sets a precedent to adult fertility, so that
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Com o objetivo de determinar a eficiência da ação polinizadora de Apis mellifera L. no rendimento de sementes de Adesmia latifolia, estabeleceu-se três tratamentos na Estação Experimental Agronômica da UFRGS, em Eldorado do Sul (300 S, 510 W) nos anos de 2000, 2001 e 2002. A partir da floração, analisou-se a freqüência de visitas por A. mellifera e outros insetos nas flores de A. latifolia pelo teste de Qui-quadrado, já o número de inflorescências por área, número de flores, flores abortadas e lomentos por inflorescência foi através da análise de regressão. Os resultados indicaram que A. mellifera não é eficiente na polinização de A. latifolia, sendo esta cultura dependente de insetos nativos como Megachile sp. e Centris sp para produção de sementes. A média de produção de sementes na área controlada e livre foi 5,4 e 83,5 kg/ha, respectivamente, enquanto na área isolada não houve produção de sementes. A baixa freqüência (10%) de visitas de A. mellifera na área livre em comparação com os insetos nativos (90%) indica que o néctar não é atrativo para as abelhas A. mellifera pois tem uma baixa concentração de açúcares totais (5,7%).
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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The present study analyzed, the influence of the treatment with juvenile hormone on the ultrastructure of Apis mellifera L. workers' venom glands. Newly emerged workers received topical application of 1 mu l of juvenile hormone diluted in hexane, in the concentration of 2 mu g/mu l. Two controls were used; one control received no treatment (group C1) and other received topical application of 1 mu l of hexane (group C2). The aspect of the glandular cells, in not treated newly emerged workers, showed that they are not yet secreting actively. Cellular modifications happened according to the worker age and to the glandular area considered. The most active phase of the gland happened from the emergence to the 14th day. At the 25th day the cells had already lost their secretory characteristic, being the distal area the first to suffer degeneration. The treatment with juvenile hormone and hexane altered the temporal sequence of the glandular cycle, forwarding the secretory cycle and degeneration of the venom gland.
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The aim of the present study is to characterize the way worker and queen ovaries differentiate in, Apis mellifera, a species with trophic determination of female castes. A morphological study carried out with light and transmission electron microscopy showed that the differences in ovary development between the two castes begin as soon as the differential nursing of larvae is initiated. The decrease in ovariole number in worker ovaries is due to a process of cell death occurring in germinative cells and autophagic regression of somatic cells in the ovarioles that commence in the third instar larvae and proceed until the fifth instar where the process is more intense. Germinative cell death leads to ovariole disintegration and incorporation of the remaining somatic cells of the latter into the stromatic cells in such a way that the total volume of the ovary is little affected during larval development, although the ovariole number decreases. By the end of the larval stage, loss of cells is observed among the stromatic cells of the ovary. As a result, the ovary starts to decrease in volume and takes on the adult form.
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Different modes of cell death have been revealed in the regressing hypopharyngeal glands of worker honey bees. The hypopharyngeal gland, which is well developed in young nursing bees to produce protein for larval food, was seen to regress naturally in foraging adult worker bees. A range of techniques including histology, cytochemistry, in situ TUNEL, Annexin V and Comet assays indicated that cells within the gland demonstrate progressive symptoms of apoptosis, necrosis and a vacuolar form of programmed cell death. The latter mode of cell death did not display chromatin margination, but was accompanied by an enhanced level of autophagic and hydrolytic activity in which a cytosolic source of acid phosphatase became manifest in the extra-cisternal spaces. Normal and annexin-positive cells were found to occur in the younger nursing bees, whilst necrosis and an aberrant vacuolar type of apoptosis predominated in the older foraging bees. The relevance of these results to the classification of programmed cell death is discussed. (C) 2000 Academic Press.
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Biochemical studies revealed that the activity of some hydrolytic enzymes from the venom glands of honey bee Apis mellifera was higher in workers of 14 days of age than in those of 40 days. Among these enzymes, the highest activity was recorded for acid phosphatase, which was cytochemically detected throughout the length of the secretory filament and surrounding the canaliculi of the distal region of the reservoir. The acid phosphatase was considered to be a typical secretion product, since it was present in the cytoplasm as well as in the canaliculi of the secretory cells. (c) 2009 Elsevier Ltd. All rights reserved.
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The effect of topical application of juvenile hormone (JH) over the lifetime of worker bees was evaluated in Apis mellifera, by measuring the area of the two cell types, trophocytes and oenocytes, found in the fat body. Topical application of 1 mu l of a 1 mu g/mu l solution of JH in acetone to the abdomens of newly emerged workers produced an increase in cell size, in both types of cell of 5-day-old treated workers in relation to the untreated control. The treatment was more effective on the oenocytes, since there were significant differences compared to the averages of the treatments and the interaction of the treatments with the age of the workers. The developmental pattern seemed to differ from the treated group. However, subsequent effects were probably dependent on different, natural variations in hormonal levels. (c) 2007 Elsevier Ltd. All rights reserved.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)