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31.
Caraphractus cinctus is an arrhenotokous mymarid parasitizing the eggs of Dytiscidae under water. In the newly emerged female only fully formed eggs are present in the ovaries and the earlier stages of ovarian development have been studied in the pupa. The two ovaries each contain from 10 to 20 ovarioles depending upon the size of the female. The two lateral oviducts unite to form the vagina which is bent upon itself when laying is not in progress. The eggs are stored in the ovarioles and the female has remarkable control over the deposition of the eggs, since in most cases she rejects host eggs already parasitized, after probing them with her ovipositor. The spermatheca is a rigid capsule and the spermathecal duct at its base has a deep U-shaped bend. There is a large spermathecal gland opening by its own duct into the spermathecal duct after the bend. The poison apparatus is well developed though the female does not kill the egg or paralyse the embryo host. The poison gland is of unusual shape being compact and rounded distally instead of tubular. Dufour's gland is large and buoyant. The ducts of both glands lead to the base of the ovipositor. The possible effect of their secretions in rendering a once parasitized Agabus egg generally unacceptable for further laying is discussed.  相似文献   
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Experimental study of the effect of exercise on the tactile discrimination threshold was initiated by E. Weber (1844). This study was continued by Fechner, Volkmann, Frey, Jasper, Dressier, Ukhtomskii, Anan'ev, and other psychologists.  相似文献   
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Mycorrhizas are ubiquitous plant–fungus mutualists in terrestrial ecosystems and play important roles in plant resource capture and nutrient cycling. Sporadic evidence suggests that anthropogenic nitrogen (N) input may impact the development and the functioning of arbuscular mycorrhizal (AM) fungi, potentially altering host plant growth and soil carbon (C) dynamics. In this study, we examined how mineral N inputs affected mycorrhizal mediation of plant N acquisition and residue decomposition in a microcosm system. Each microcosm unit was separated into HOST and TEST compartments by a replaceable mesh screen that either prevented or allowed AM fungal hyphae but not plant roots to grow into the TEST compartments. Wild oat (Avena fatua L.) was planted in the HOST compartments that had been inoculated with either a single species of AM fungus, Glomus etunicatum, or a mixture of AM fungi including G. etunicatum. Mycorrhizal contributions to plant N acquisition and residue decomposition were directly assessed by introducing a mineral 15N tracer and 13C‐rich residues of a C4 plant to the TEST compartments. Results from 15N tracer measurements showed that AM fungal hyphae directly transported N from the TEST soil to the host plant. Compared with the control with no penetration of AM fungal hyphae, AM hyphal penetration led to a 125% increase in biomass 15N of host plants and a 20% reduction in extractable inorganic N in the TEST soil. Mineral N inputs to the HOST compartments (equivalent to 5.0 g N m?2 yr?1) increased oat biomass and total root length colonized by mycorrhizal fungi by 189% and 285%, respectively, as compared with the no‐N control. Mineral N inputs to the HOST plants also reduced extractable inorganic N and particulate residue C proportion by 58% and 12%, respectively, in the corresponding TEST soils as compared to the no‐N control, by stimulating AM fungal growth and activities. The species mixture of mycorrhizal fungi was more effective in facilitating N transport and residue decomposition than the single AM species. These findings indicate that low‐level mineral N inputs may significantly enhance nutrient cycling and plant resource capture in terrestrial ecosystems via stimulation of root growth, mycorrhizal functioning, and residue decomposition. The long‐term effects of these observed alterations on soil C dynamics remain to be investigated.  相似文献   
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Competitive interactions between insects and microbes and the associated cost of development in bacterially‐dense environments are investigated using the blowfly Lucilia sericata (Meigen) (Diptera: Calliphoridae) as a model. The effects of developing in a bacterially‐dense environment are measured by assessing the fitness consequences of competition using the pathogen Staphylococcus aureus. Fitness is quantified in terms of larval survival, puparial development and adult emergence.The influence of bacteria on larval immune defences is investigated using optical density to assess whether antibacterial potency of the larval excretion/secretion changes in response to the degree of contamination of the larval environment. The results obtained demonstrate that bacterial presence has no detrimental effect on survival of L. sericata from egg to adult eclosion, or on puparial size. Additionally, the level of microbial contamination of larvae has no effect on the antibacterial potency of the larval excretion/secretion. These findings confirm that larval antibacterial activity is not induced by the presence of environmental bacteria but is produced constitutively.  相似文献   
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