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991.
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St. v. Náray-Szabó 《Die Naturwissenschaften》1943,31(16-18):202-203
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The Science of Nature - 相似文献
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Prof. Dr. Th. von Kármán 《Die Naturwissenschaften》1916,4(33):489-494
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Gergely Hegyi Eszter Szöllősi Susanne Jenni-Eiermann János Török Marcel Eens László Zsolt Garamszegi 《Die Naturwissenschaften》2010,97(6):567-576
The information content of a sexual signal may predict its importance in a multiple signal system. Many studies have correlated
sexual signal expression with the absolute levels of nutrient reserves. In contrast, the changes of nutrient reserves associated
with signal expression are largely unknown in the wild due to technical limitations although they are important determinants
of signal information content. We compared two visual and eight acoustic sexual traits in male collared flycatchers to see
whether the nutritional correlates of expression predict the role of the signal in sexual selection. We used single point
assays of plasma lipid metabolites to estimate short-term changes in nutritional state in relation to sexual trait expression
during courtship. As a measure of sexual selection, we estimated the relationship with pairing latency after arrival in a
4-year dataset. Males which found a mate rapidly were characterized by large wing and forehead patches, but small song strophe
complexity and small figure repertoire size. Traits more strongly related to pairing latency were also more closely related
to changes in nutrient reserves. This indicates a link between signal role and information content. Small wing patches and,
surprisingly, complex songs seemed to indicate poor phenotypic quality and were apparently disfavoured at mate acquisition
in our population. Future studies of the information content of sexual traits, especially dynamic traits such as song, may
benefit from the use of plasma metabolite profiles as non-invasive indicators of short-term changes in body condition. 相似文献
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Flower fluorescence has been previously proposed as a potential visual signal to attract pollinators. In this work, this point was addressed by quantitatively measuring the fluorescence quantum yield (Φ f) for flowers of Bellis perennis (white, yellow, pink, and purple), Ornithogalum thyrsoides (petals and ovaries), Limonium sinuatum (white and yellow), Lampranthus productus (yellow), Petunia nyctaginiflora (white), Bougainvillea spectabilis (white and yellow), Antirrhinum majus (white and yellow), Eustoma grandiflorum (white and blue), Citrus aurantium (petals and stigma), and Portulaca grandiflora (yellow). The highest values were obtained for the ovaries of O. thyrsoides (Φ f?=?0.030) and for Citrus aurantium petals (Φ f?=?0.014) and stigma (Φ f?=?0.013). Emitted photons as fluorescence were compared with reflected photons. It was concluded that the fluorescence emission is negligible compared to the reflected light, even for the most fluorescent samples, and it may not be considered as an optical signal in biocommunication. The work was complemented with the calculation of quantum catches for each studied flower species to describe the visual sensitization of eye photoreceptors. 相似文献
1000.
Luis Lassaletta Héctor García-Gómez Benjamín S. Gimeno José V. Rovira 《Environmental Science & Policy》2010,13(5):423-433
The European Union Water Framework Directive (WFD) aims to achieve the “good status” of waters by 2015, through monitoring and control of human impacts on “bodies of surface water” (BSWs), discrete elements for quality diagnosis and management. Headwater streams, however, are frequently neglected as they are not usually recognised as BSW. This poses limitations for the management of river catchments, because anthropogenic impacts on headwaters can constrain the quality of downstream rivers. To illustrate this problem, we compared nitrate levels and land use pressures in a small agricultural catchment with those recorded in the catchment in which it is embedded (Ega), and in the Ebro River Basin (NE Spain) comprising both. Agriculture greatly influenced water nitrate concentration, regardless of the size of the catchments: R2 = 0.91 for headwater catchments (0.1–7.3 km2), and R2 = 0.82 for Ebro tributary catchments (223–3113 km2). Moreover, nitrate concentration in the outlet of a non-BSW small river catchment was similar to that of the greater downstream BSW rivers. These results are of interest since, despite representing 76% of the length of the Ega catchment hydrographical network, only 3.1% of the length of the headwater streams has been identified as BSWs. Human activities affecting headwater streams should therefore be considered if the 2015 objective of the WFD is to be achieved. 相似文献