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1.
Abstract. 1. Eurytoma gigantea Walsh is a specialist parasitoid of the tephritid gallmaker Eurosta solidaginis (Fitch).
2. In the natural environment the incidence of parasitism by Eurytoma is greater in small galls than in large ones.
3. Laboratory experiments demonstrated that small galls are not more frequently discovered; however, oviposition attempts on small galls were more likely to be successful.
4. Eurytoma spends much time probing galls too big to penetrate; this leads to a decrease in foraging efficiency when many large galls are present.
5. The chance of successfully penetrating a gall depends on the thickness of the gall wall and the length of the parasitoid's ovipositor.
6. A simulation model was constructed which shows that a gallmak-er's chance of being parasitized depends on gall size, the number of parasitoids that discover the gall, and their ovipositor lengths.  相似文献   
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3.
Pea leaf asparaginase is stabilized by asparagine and aspartateduring incubation. In crude extracts this effect was enhancedby products of the light reaction (NADPH, NADH, or reduced ferredoxin),but these compounds were ineffective on the purified enzyme,or in the absence of asparagine. MgATP, MgADP and oxidized ferredoxinreduced asparaginase activity in purified preparation reducedor oxidized glutathione had no effect. Asparaginase activitydoes not appear to be modulated via phosphorylation/dephosphorylation.The presence of calcium during extraction increased asparaginaseactivity more than 2-fold, but addition of calcium to extractsprepared in its absence had no effect; calmodulin had no effecton activity. Co-extraction of light- and dark-treated tissueshowed that soluble factors are not responsible for the diurnalvariation in asparaginase activity. Association of asparaginasewith membranes did not account for changes in extractable activity.Use of the protein synthesis inhibitors cycloheximide, puromycin,emetine, actinomycin D and cordycepin and the thiol proteaseinhibitor leupeptin suggested that mRNA and protein synthesisare required for the increase of asparaginase activity duringthe light period and that proteolytic degradation accounts forthe decrease during the dark. Key words: Pisum sativum, asparaginase, protein synthesis, proteolysis.  相似文献   
4.
During the growth of leaves of Pisum sativum L., levels of asparaginase(E.C. 3.5.1.1 [EC] ) showed a diurnal variation during a 3 d periodof leaf expansion, increasing in the light and decreasing inthe dark period; the greatest diurnal variation being foundin half-expanded leaves. Asparaginase activity in half-expandedleaves reached a maximum after 4 h exposure to light and thisactivity was maintained over the rest of the light period. Changesin asparaginase activity were not influenced by diurnal temperaturechanges. The increase in asparaginase activity during the lightperiod was directly proportional to the photon flux densityover the range 0–285 µmol m-2 s-1 PAR. The increaseof asparaginase activity during illumination of detached leaveswas inhibited by the photosynthetic electron transport inhibitors3-(3', 4'-dichlorophenyl)-1, 1-dimethylurea (DCMU) and atrazine.These observations indicate that the increase in asparaginaseactivity in half-expanded leaves is dependent upon non-cyclicelectron transport. Key words: Pisum sativum, asparaginase, photosynthetic electron transport  相似文献   
5.
Ongoing research efforts in mammalian mastication have definedseveral broad areas of mutual interest to workers in the discipline.They are (1) interrelationships between masticatory movements,(2) actions of the masticatory muscles, (3) comparisons betweenmasticatory structures and functions, (4) developmental aspects,(5) comparisons between limbs and jaws, and (6) neurophysiologicconsiderations. The roles (potential and actual) of masticatorycentral pattern generators, cerebral "mastication areas," differentneural mechanisms between mammalian taxa, neurophysiologic/morphologicinteractions, and biochemical factors within the total milieuof mammalian mastication are discussed.  相似文献   
6.
ABSTRACT.
  • 1 Temporal constancy in the structure of grasshopper assemblies (about forty-five species each) from two types of North American grasslands was assessed; one site was followed 25 years and the other 7 years.
  • 2 Densities and relative abundances varied but composition of assemblies based on ranks suggested significant structure when three or more species were included in the analysis.
  • 3 Results compared favourably with other insect herbivore assemblies which have been examined; variability in population change was intermediate along the spectrum of organisms which have been studied.
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8.
SYNOPSIS Eimeria angusta Allen, 1934 and E. bonasae Allen, 1934 are redescribed from a ruffed grouse Bonasa umbellus. Oocysts of E. angusta were ellipsoidal to elongate ovoid, had micropyles and were 28-37 by 15-19 μ (mean 32.5 by 17.1 μ), with a length-width ratio of 1.67-2.19 (mean 1.91). Eimeria bonasae oocysts were spherical to subspherical and 18-25 by 18-23 μ (mean 21.6 by 20.6), with a length-width ratio of 1.00-1.16 (mean 1.05).  相似文献   
9.
Neurosecretion and Salt and Water Balance in the Annelida and Crustacea   总被引:1,自引:0,他引:1  
The possible role of the neurosecretory system in regulationof salt and water has been studied in the annelids and crustaceans.In the earthworm, Lumbricus terrestris, a brain factor influences'the salt and osmotic concentration of the blood and coelomicfluid. Removal of the brain results in the increase of waterinflux with a decrease in the salt and osmotic concentrationsof the body fluids. The decreases in salt and osmotic concentrationscan be prevented by the implantation of the brain or the injectionof brain homogenates. In the freshwater crayfish, Procambarus clarkii, a factor, presumablysecreted in the brain and released in the eyestalk, seems tomaintain the normal permeability of the body surfaces to water.Eyestalk removal, which eliminates the release site, resultsin the increased influx of water with a decrease in the saltconcentration of the blood. A brain factor also seems to beinvolved in maintaining the sodium and osmotic concentrationsof the blood. In the semi-terrestrial grapsid crab, Metopograpsus messor,the thoracic ganglion, under the control of an eyestalk element,secretes a factor involved in increasing the permeability ofthe body surfaces to water. The removal of the eyestalks, theimplantation of the thoracic ganglion, or the injection of extractsof thoracic ganglia, results in changes in the osmotic concentrationof the blood tending toward that of the medium. In all threespecies studied, the neuroendocrine factors seem to be involvedprimarily in the regulation of the permeability of the bodysurfaces to water.  相似文献   
10.
McNamara, K.J. 1994 10 15: Diversity of Cenozoic marsupiate echinoids as an environmental indicator. Marsupiate echinoids are today largely confined to the seas around Antarctica. Consequently, it has often been inferred that the presence of marsupiate echinoids in the fossil record is indicative of the former existence of low oceanic temperatures. In this study the distribution of marsupiate echinoids through the Cenozoic succession of southern Australia is compared with palaeo-temperature data to test this assumption. The analysis reveals that there is no positive correlation between high marsupiate echinoid diversity during the Cenozoic and low oceanic temperatures. An alternative hypothesis, based on life-history strategies, is investigated. This reveals that marsupiate echinoids show many characteristics typical of organisms with slow growth, long life spans and production of few, large offspring. It is suggested that the northward migration of Australia during the Cenozoic from an original high-latitude location in the early Cenozoic was accompanied by an increase in environmental instability in the southern Australian region in the late Cenozoic. This led to a consequent decrease in marsupiate echinoid diversity. During the Pliocene these direct brooding echinoids were replaced by non-brooders with pelagic lecithotrophic larvae, which dominate the southern coastal echinoid fauna of Australia today. The environmental stability experienced in southern Australia in the early Cenozoic persisted throughout the Cenozoic in the Antarctic region, particularly with regard to predictability of nutrient supply. The result has been the dominance of marsupiate echinoids in that region today. Temporal changes in the diversity of marsupiate echinoids in southern Australia therefore supports the view that their spatial and temporal distribution may be more closely correlated with aspects of their life-history strategy and environmental stability than with low temperature. Echinoidea, evolution, diversity, life-history strategy, Cenozoic.  相似文献   
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