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41.
Karsten Seidelmann Karin Ulbrich Norbert Mielenz 《Behavioral ecology and sociobiology》2010,64(3):337-347
Trivers' and Willard's hypothesis that natural selection favors sex allocation in relation to maternal condition assumes iteropary.
Though this assumption is not met in most solitary Aculeata, the reproductive life span of semelparous females may be divided
into discrete successive cycles by the risk of open-cell parasitism. Females can avoid losing their investment to parasites
attacking the open cell only by limiting the provision time for each cell. The restriction of time available for the investment
in a single progeny irrespective of the condition of the female leads to de facto iteropary. Moreover, in Hymenoptera, there
are no costs for sex allocation due to the haplodiploid mode of sex determination. In sexually size dimorphic species, females
in poor condition are predicted to invest in the smaller sex and vice versa. The resulting prediction of a conditional sex
allocation in solitary Aculeata was tested in the Red Mason bee, Osmia rufa (Osmia bicornis), a stem or hole-nesting, polylectic, univoltine megachilid bee. Body size is a key component of condition in females of
nest-constructing solitary bees. Large females collect the same amount of pollen and nectar in a shorter time than small ones
and should suffer less from parasitism. We found that small females dealt with their handicap of a low provisioning performance
by shifting the sex ratio toward sons (the smaller sex) and by reducing the body size of daughters. Large females, however,
shifted their offspring sex ratio toward daughters, the sex that depends more on body size in its reproductive value. The
sex ratio in the population met the expected Fisherian sex ratio. Although females allocated their investment in the sexes
according to their body mass, the population-level investment was balanced. 相似文献
42.
Lignin is a main component of plant litter. Its degradation is thought to be critical for litter decomposition rates and the build-up of soil organic matter. We studied the relationships between lignin degradation and the production of dissolved organic carbon (DOC) and of CO2 during litter decomposition. Needle or leaf litter of five species (Norway spruce, Scots pine, mountain ash, European beech, sycamore maple) and of different decomposition stage (freshly fallen and up to 27 months of field exposure) was incubated in the laboratory for two years. Lignin degradation was followed with the CuO method. Strong lignin degradation occurred during the first 200 incubation days, as revealed by decreasing yields of lignin-derived phenols. Thereafter lignin degradation leveled off. This pattern was similar for fresh and decomposed litter, and it stands in contrast to the common view of limited lignin degradation in fresh litter. Dissolved organic carbon and CO2 also peaked in the first period of the incubation but were not interrelated. In the later phase of incubation, CO2 production was positively correlated with DOC amounts, suggesting that bioavailable, soluble compounds became a limiting factor for CO2 production. Lignin degradation occurred only when CO2 production was high, and not limited by bioavailable carbon. Thus carbon availability was the most important control on lignin degradation. In turn, lignin degradation could not explain differences in DOC and CO2 production over the study period. Our results challenge the traditional view regarding the fate and role of lignin during litter decomposition. Lignin degradation is controlled by the availability of easily decomposable carbon sources. Consequently, it occurs particularly in the initial phase of litter decomposition and is hampered at later stages if easily decomposable resources decline. 相似文献
43.
44.
Generalist insect herbivores may profit by feeding on a mixture of plant species that differ in nutritional quality. Herbivore performance can also be affected by intraspecific host plant variation. However, it is unknown whether conspecific plant individuals differ sufficiently to promote diet-mixing behavior in specialist herbivores. We experimentally tested this "specialist diet-mixing hypothesis" for specialist caterpillars (Chrysopsyche imparilis, Lasiocampidae) in a West African savanna. The caterpillars switched regularly between host tree individuals (Combretum fragrans, Combretaceae). To examine whether switching benefited caterpillar performance via diet-mixing, the caterpillars were reared either on leaves from several plant individuals (mixed diet) or on leaves from a single plant. The strongest effect of diet-mixing was found for fecundity, with females reared on a mixed diet laying significantly more eggs than sisters receiving a single-plant diet. In addition, a mixed diet decreased variability in egg size and increased the growth of second-instar caterpillars. Supplementary food choice experiments were conducted to assess a potential influence of lowered host quality (induced by herbivory) on caterpillar behavior; no such effect was found. By linking intraspecific host-switching behavior and herbivore performance, this study provides new information on the relevance of intraspecific plant variation for herbivorous insects. 相似文献
45.
Karsten Zumholz Thor H. Hansteen Uwe Piatkowski Peter L. Croot 《Marine Biology》2007,151(4):1321-1330
The use of statolith chemistry to trace migration pathways and distinguish populations of cephalopods is based on the assumption
that the elemental composition of statoliths is influenced by physicochemical properties of the ambient environment. However,
such influences have not been investigated experimentally up until now. This study presents the first microchemical analyses
of cephalopod statoliths obtained from laboratory experiments under different controlled temperature and salinity conditions.
Our results show that statolith chemical composition is strongly related to both salinity and temperature in ambient waters.
The Ba/Ca ratio is negatively related to temperature and shows no relation to salinity. The I/Ca ratio is positively related
to temperature and negatively to salinity. No Sr/Ca relation was found to either salinity or temperature, suggesting that
the well-established proxy strontium is not as useful in cephalopod statoliths as in other biomineralized aragonites. Microanalysis
of trace elements, however, shows an enormous potential for field studies on distribution, migration and stock separation
of cephalopods. Furthermore, Synchrotron X-ray Fluorescence Analysis is introduced as a promising novel method for statolith
analysis, providing a spatial resolution of typically 10–15 μm combined with detection limits down to 0.5 ppm. 相似文献
46.
47.
Biotinylated DNA probes: Sensitivity and applications 总被引:1,自引:0,他引:1
48.
H. J. Neumann 《Die Naturwissenschaften》1963,50(16):544-545
49.
50.