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1.
Summary Imaginal discs from developing larvae of the fly Calliphora erythrocephala fixed in permanganate or osmium tetroxide and embedded in Epon 812 were observed by electron microscopy. When the larval growth ceases, the differentiation manifests itself through an enlargement of the endoplasmic reticulum, by which continuous membrane contact is established between all cell organelles. During the same time mitochondria swell up and transform into lipid granules and the intercellular contacts weaken.I am indebted to Mrs Mariann Carleson and Miss Brita Nilsson for technical aid.  相似文献   
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Summary Imaginal discs from mature larvae of the fly Calliphora erythrocephala fixed in permanganate and embedded in Epon 812 were observed by electron microscopy. Irrespective of the type of the disc, the endoplasmic reticulum in the cells was found to be in unbroken contact with the outer nuclear membrane, Golgi areas, the mitochondria and the cell membrane. The imaginai discs are syncytial in that all cells are in cytoplasmic communication through secondary breaks in the cell membranes.The investigation was facilitated by grants from the Nordic Insulin Foundation.I am indebted to Mrs. Mariann Carleson and Miss Brita Nilsson for technical aid.  相似文献   
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Sandell M  Agrell J  Erlinge S  Nelson J 《Oecologia》1990,83(2):145-149
Summary In a sample of 240 juvenile field voles 8% of the males and 22% of the females reached sexual maturity within their natal home range. Among individuals retrapped as adults, 58% of males and 23% of females had dispersed, i.e. had moved more than one home range diameter. The mean distance moved for males (58.5 m) exceeded that for females (28.6 m). Male movement distances were negatively associated with total density, and with density of adult females, but not with male density. Female movements were not related to population density. There were no relation between sex ratio and distance moved. The distribution of distances moved for both males and females fit a geometrical distribution, suggesting the importance of competitive processes.  相似文献   
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Elevated levels of CO2 and O3 affect plant growth and phytochemistry, which in turn can alter physiological performance of associated herbivores. Little is known, however, about how generalist insect herbivores respond behaviorally to CO2‐ and O3‐mediated changes in their host plants. This research examined the effects of elevated CO2 and O3 levels on host plant preferences and consumption of forest tent caterpillar (FTC, Malacosoma disstria Hbn.) larvae. Dual choice feeding assays were performed with foliage from birch (Betula papyrifera Marsh.) and aspen (Populus tremuloides Michx., genotypes 216 and 259). Trees were grown at the Aspen Free Air CO2 Enrichment (FACE) facility near Rhinelander, WI, USA, and had been exposed to ambient or elevated concentrations of CO2 and/or O3. Levels of nutritional and secondary compounds were quantified through phytochemical analyses. The results showed that elevated O3 levels increased FTC larval preferences for birch compared with aspen, whereas elevated CO2 levels had the opposite effect. In assays with the two aspen genotypes, addition of both CO2 and O3 caused a shift in feeding preferences from genotype 259 to genotype 216. Consumption was unaffected by experimental treatments in assays comparing aspen and birch, but were increased for larvae given high O3 foliage in the aspen genotype assays. Elevated levels of CO2 and O3 altered tree phytochemistry, but did not explain shifts in feeding preferences. The results demonstrate that increased levels of CO2 and O3 can alter insect host plant preferences both between and within tree species. Also, consequences of altered host quality (e.g., compensatory consumption) may be buffered by partial host shifts in situations when alternative plant species are available. Environmentally induced changes in host plant preferences may have the potential to alter the distribution of herbivory across plant genotypes and species, as well as competitive interactions among them.  相似文献   
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Summary Using mark-recapture data, we related the movements of adult field voles to population density, sex ratio and population growth. Dispersal movements (defined as distances larger than 1 home range diameter) were few in both sexes; 4 out of 197 (2.0%) in males and 8 of 316 (2.5%) in females. The distance moved between sequential trapping periods was similar for males and females; the mean being 10.2 m and 9.0 m respectively. Both males and females moved larger distances during the breeding season than during the nonbreeding period. The distance moved between sequential trapping periods showed a strong negative relation to density, i.e. both sexes moved shorter distances at higher densities, but there were no differences between periods of increasing and declining population densities. These results contradict the dispersal predictions of all major hypotheses proposed to explain population fluctuations in small mammals. The dispersal patterns fit a geometric distribution, suggesting that competition is the primary factor determining the dispersal characteristics of this population.  相似文献   
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Anderson P  Agrell J 《Oecologia》2005,144(3):427-434
According to optimal defence theory (ODT) plants should invest in stronger defence in the most valuable parts, such as reproductive or young tissue. Cotton plants are known to express high resistance to herbivore feeding in the developing leaves at the top of the plant after herbivore-damage. Cotton plants also have developing leaves on side shoots from the nodes all along the plant. This allowed us to investigate within-plant distribution of defence between younger tissues at different locations on the plant. We found that all developing leaves showed increased resistance to feeding by larvae of the generalist moth Spodoptera littoralis after herbivore damage to leaves of the plant. An increase in the concentration of secondary compounds, terpenoid aldehydes, was found in developing leaves both at the top of the plant and on the side shoots. However, the resistance was stronger in the top leaves than in the side shoot leaves, showing that there is intra-plant variation in the induced response between different leaves of the same age. After the initial damage, larval feeding mainly occurred on the older, fully developed true leaves. Furthermore, the herbivore-induced resistance in the developing leaves reduced upward movement of feeding larvae on the plant and reduced the feeding on the upper parts of the plant over a period of at least 6 days. The plant thus benefits from defending all developing leaves by directing feeding to older, less valuable leaves and lower parts of the plant. The observed distribution of defence within cotton plants supports ODT.  相似文献   
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Agrell  J. 《Behavioral ecology》1995,6(2):182-191
Home range size, overlap between home ranges, movement patternsand social behavior in two generations of female field voleswere examined by radio tracking unrelated individuals in enclosedareas. In addition, potential effects of increased relatednesswere examined by comparing setups with groups of sisters andunrelated females. Overwintered females showed less overlapbetween ranges and moved shorter and more irregular distancescompared with females of the year. Based on responses to introduced,unfamiliar conspecifics it was concluded that the overdisperseddistribution of overwintered females was maintained primarilyby avoidance behavior and that infanticidal behavior was equallyfrequent in the two generations. Observed differences betweengenerations could not be ascribed to differences in relatedness,and experimental increase of the degree of relatedness had negligibleeffects. The overdispersion and restricted movements shown byoverwintered females are instead suggested to be caused by acombination of low food availability and exposure to intensepredation in spring/early summer, whereas spacing and movementpatterns of females of the year are less influenced by thesefactors. As aggressive interactions are rare and populationdensity is usually low in spring, it is unlikely that breedingdensity and population growth is restrained by the social behaviorof overwintered females.  相似文献   
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