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Ellen McCoy Norbert Syska Martin Plath Ingo Schlupp Rüdiger Riesch 《Behavioral ecology and sociobiology》2011,65(7):1437-1445
One possible mechanism for the (co-)evolution of seemingly novel male traits and female preferences for them is that males
exploit pre-existing female biases, and livebearing fishes (Poeciliidae) have been at the forefront of this research for almost
two decades. Here, using 13 poeciliid species from four different genera, we tested whether mustache-like rostral filaments
found in males of some Mexican molly (Poecilia sphenops) populations could have evolved due to exploitation of a pre-existing female bias. While Mexican mollies were the only species
with a significant female association preference for mustached males, we also did not find any species exhibiting significant
aversion for mustached males; rather, variance in female preference scores was large throughout. For example, more than 25%
of females spent twice as much time with the mustached male compared to the non-mustached male in most species, but even 31%
of Mexican molly females spent more time near the non-mustached male. Hence, a comparison of the strength of preference was
inconclusive. We discuss the possibility that the female preference of P. sphenops for mustached males could be due to a female pre-existing bias (sensu lato), even if population means were not significant
for species other than P. sphenops. This highlights the importance of distinguishing between population means and individual preferences when interpreting mate
choice, and thus, adds depth to the concept of mating preferences as a motor for evolutionary change. 相似文献
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Norbert Kamjunke Olaf Büttner Christoph G. Jäger Hanna Marcus Wolf von Tümpling Susanne Halbedel Helge Norf Mario Brauns Martina Baborowski Romy Wild Dietrich Borchardt Markus Weitere 《Environmental monitoring and assessment》2013,185(11):9221-9236
The Bode catchment (Germany) shows strong land use gradients from forested parts of the National Park (23 % of total land cover) to agricultural (70 %) and urbanised areas (7 %). It is part of the Terrestrial Environmental Observatories of the German Helmholtz association. We performed a biogeochemical analysis of the entire river network. Surface water was sampled at 21 headwaters and at ten downstream sites, before (in early spring) and during the growing season (in late summer). Many parameters showed lower concentrations in headwaters than in downstream reaches, among them nutrients (ammonium, nitrate and phosphorus), dissolved copper and seston dry mass. Nitrate and phosphorus concentrations were positively related to the proportion of agricultural area within the catchment. Punctual anthropogenic loads affected some parameters such as chloride and arsenic. Chlorophyll a concentration and total phosphorus in surface waters were positively related. The concentration of dissolved organic carbon (DOC) was higher in summer than in spring, whereas the molecular size of DOC was lower in summer. The specific UV absorption at 254 nm, indicating the content of humic substances, was higher in headwaters than in downstream reaches and was positively related to the proportion of forest within the catchment. CO2 oversaturation of the water was higher downstream compared with headwaters and was higher in summer than in spring. It was correlated negatively with oxygen saturation and positively with DOC concentration but negatively with DOC quality (molecular size and humic content). A principle component analysis clearly separated the effects of site (44 %) and season (15 %), demonstrating the strong effect of land use on biogeochemical parameters. 相似文献
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