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421.
Sexual selection and the evolution of bird song: A test of the Hamilton-Zuk hypothesis 总被引:1,自引:0,他引:1
Summary Hamilton and Zuk (1982) suggested that secondary sexual characters evolve because they allow females to assess a potential mate's ability to resist parasites. A prediction of this theory is that the degree of elaboration of secondary sexual characters should be positively correlated with parasite load across species. In support of their hypothesis, Hamilton and Zuk reported a correlation across North American passerine species between haematozoa prevalence and both brightness and song complexity and variety, scored on a subjective six point scale. Here we show that this relationship is confounded by phylogenetic associations. We use quantitative data on song duration, inter-song interval, song continuity, song rate, song versatility, and song and syllable repertoire size for 131 species of European and North American passerines to test the Hamilton-Zuk hypothesis. Across species, there are significant negative relationships between haematozoa prevalence and song continuity, contrary to the direction predicted by Hamilton and Zuk. In accordance with their prediction, there is a positive correlation with song versatility. However, these relationships come about through taxonomic associations: within taxa there are no consistent relationships between any of the song variables and haematozoa prevalence. None of the other song variables correlate with haematozoa prevalence. We conclude that there is no evidence of an association between song elaboration and parasites.
Offprint requests to: A.F. Read 相似文献
422.
Territorial defense in the bannertail kangaroo rat (Dipodomys spectabilis): footdrumming and visual threats 总被引:1,自引:0,他引:1
Summary Footdrumming and visual displays associated with territorial defense in the bannertail kangaroo rat (Dipodomys spectabilis) were studied in the field in Arizona. We predicted that foot-drumming functioned like bird song in territorial advertisement. Rats were tested in their territories for their responses to the presentation of four different stimuli: a playback of airborne footdrumming patterns (audio); a stuffed and mounted kangaroo rat in an aggressive posture (visual); a combination of both (audio-visual); and a playback of cricket stridulation as a control. Kangaroo rats investigated all experimental stimuli equally by becoming alert, approaching, and retreating (Fig. 2). Rats, therefore, seemed to assess the amount of threat and footdrummed at higher rates and sooner in response to the more threatening visual stumulus of a stuffed rat than to the apparently less threatening ones of a airborne footdrumming playback or cricket stridulation (Fig. 1). We conclude that rats footdrum at long ranges to repel a potential intruder and also at close ranges when territories are threatened by a persistent intruder. Chase and attack, as in territorial birds, are the final lines of defense. 相似文献
423.
Tail size and female choice in the guppy (Poecilia reticulata) 总被引:6,自引:0,他引:6
Robert J. Bischoff James L. Gould Daniel I. Rubenstein 《Behavioral ecology and sociobiology》1985,17(3):253-255
Summary Under laboratory conditions, female guppies demonstrate a clear preference for males with larger tails, and this preference translates into enhanced reproductive fitness for these males. Females also prefer males with higher display rates, a behavior which appears to be linked to tail size, but which can be experimentally disassociated. This appears to be a case of female-choice sexual selection. 相似文献
424.
The stability of trophic mass-balance models of marine ecosystems: a comparative analysis 总被引:1,自引:0,他引:1
Marcelo Vasconcellos Steven Mackinson Katherine Sloman Daniel Pauly 《Ecological modelling》1997,100(1-3)
Dynamic simulations of 18
mass-balance marine trophic models are used to explore the stability of systems when briefly impacted by a fishery on the key ‘wasp–waist' populations occurring at intermediate trophic levels. The results are related to different ecosystem goal functions previously identified as representative of three attributes of ecosystems development: community complexity, homeostasis and energetics. System recovery time, the time required for all functional groups to returns to baseline level, and here used as a measure of model stability, was inversely correlated to Finn's Cycling Index, i.e. to the fraction of ecosystem throughput that is recycled, and to the mean length of trophic pathways in the systems. Systems with higher capacity to recycle detritus are systems with a higher ability to recover from perturbations. The results are in agreement with the E.P. Odum's theory of ecosystem development, where recycling is interpreted as a chief positive feedback mechanism that contributes to stability in the mature systems by preventing overshoots and destructive oscillations due to external impacts. 相似文献
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425.
M Tim Tinker Daniel F Doak James A Estes Brian B Hatfield Michelle M Staedler James L Bodkin 《Ecological applications》2006,16(6):2293-2312
Reliable information on historical and current population dynamics is central to understanding patterns of growth and decline in animal populations. We developed a maximum likelihood-based analysis to estimate spatial and temporal trends in age/sex-specific survival rates for the threatened southern sea otter (Enhydra lutris nereis), using annual population censuses and the age structure of salvaged carcass collections. We evaluated a wide range of possible spatial and temporal effects and used model averaging to incorporate model uncertainty into the resulting estimates of key vital rates and their variances. We compared these results to current demographic parameters estimated in a telemetry-based study conducted between 2001 and 2004. These results show that survival has decreased substantially from the early 1990s to the present and is generally lowest in the north-central portion of the population's range. The greatest temporal decrease in survival was for adult females, and variation in the survival of this age/sex class is primarily responsible for regulating population growth and driving population trends. Our results can be used to focus future research on southern sea otters by highlighting the life history stages and mortality factors most relevant to conservation. More broadly, we have illustrated how the powerful and relatively straightforward tools of information-theoretic-based model fitting can be used to sort through and parameterize quite complex demographic modeling frameworks. 相似文献
426.
Binary matrices originating from presence/absence data on species (rows) distributed over sites (columns) have been a subject of much controversy in ecological biogeography. Under the null hypothesis that every matrix is equally likely, the distributions of some test statistics measuring co-occurrences between species are sought, conditional on the row and column totals being fixed at the values observed for some particular matrix. Many ad hoc methods have been proposed in the literature, but at least some of them do not provide uniform random samples of matrices. In particular, some swap algorithms have not accounted for the number of neighbors each matrix has in the universe of matrices with a set of fixed row and column sums. We provide a Monte-Carlo method using random walks on graphs that gives correct estimates for the distributions of statistics. We exemplify its use with one statistic. 相似文献
427.
C. Nathan Jones Ali Ameli Brian P. Neff Grey R. Evenson Daniel L. McLaughlin Heather E. Golden Charles R. Lane 《Journal of the American Water Resources Association》2019,55(3):559-577
Representing hydrologic connectivity of non‐floodplain wetlands (NFWs) to downstream waters in process‐based models is an emerging challenge relevant to many research, regulatory, and management activities. We review four case studies that utilize process‐based models developed to simulate NFW hydrology. Models range from a simple, lumped parameter model to a highly complex, fully distributed model. Across case studies, we highlight appropriate application of each model, emphasizing spatial scale, computational demands, process representation, and model limitations. We end with a synthesis of recommended “best modeling practices” to guide model application. These recommendations include: (1) clearly articulate modeling objectives, and revisit and adjust those objectives regularly; (2) develop a conceptualization of NFW connectivity using qualitative observations, empirical data, and process‐based modeling; (3) select a model to represent NFW connectivity by balancing both modeling objectives and available resources; (4) use innovative techniques and data sources to validate and calibrate NFW connectivity simulations; and (5) clearly articulate the limits of the resulting NFW connectivity representation. Our review and synthesis of these case studies highlights modeling approaches that incorporate NFW connectivity, demonstrates tradeoffs in model selection, and ultimately provides actionable guidance for future model application and development. 相似文献
428.
Road Erosion and Delivery Index (READI): A Model for Evaluating Unpaved Road Erosion and Stream Sediment Delivery 总被引:1,自引:0,他引:1
Lee Benda Cajun James Daniel Miller Kevin Andras 《Journal of the American Water Resources Association》2019,55(2):459-484
The Road Erosion and Delivery Index (READI) is a new geographic information system–based model to assess erosion and delivery of water and sediment from unpaved road networks to streams. READI quantifies the effectiveness of existing road surfacing and drain placements in reducing road sediment delivery and guides upgrades to optimize future reductions. Roads are draped on a digital elevation model and parsed into hydrologically distinct segments. Segments are further divided by engineered drainage structures. For each segment, a kinematic wave approximation generates runoff hydrographs for specified storms, with discharge directly to streams at road–stream crossings and onto overland‐flow plumes at other discharge points. Plumes are attenuated by soil infiltration, which limits their length, with delivery occurring if plumes intersect streams. Sediment production and sediment delivery can be calculated as a relative dimensionless index. READI predicts only a small proportion of new drains and new surfacing results in the majority of sediment delivery reductions. The model illustrates how the spatial relationships between road and stream networks, controlled by topography and network geometries, influence patterns of road–stream connectivity. READI was applied in seven northern California basins. The model was also applied in a recent burn area to examine how reduced hillslope infiltration can result in increased hydrologic connectivity and sediment delivery. 相似文献
429.
Haile K. Tadesse Daniel N. Moriasi Prasanna H. Gowda Jean L. Steiner Mansour Talebizadeh Amanda M. Nelson Patrick J. Starks Gary Marek 《Journal of the American Water Resources Association》2019,55(4):1009-1023
Accurate estimation of evapotranspiration (ET) is essential to improve water use efficiency of crop production systems managed under different water regimes. The Agricultural Policy/Environmental eXtender (APEX) model was used to simulate ET using four potential ET (ETp) methods. The objectives were to determine sensitive ET parameters in dryland and irrigated cropping systems and compare ET simulation in the two systems using multiple performance criteria. Measured ET and crop yield data from lysimeter fields located in the United States Department of Agriculture‐Agricultural Research Service Bushland, Texas were used for evaluation. The number of sensitive parameters was higher for dryland (11–14) than irrigated cropping systems (6–8). Only four input parameters: soil evaporation plant cover factor, root growth soil strength, maximum rain intercept, and rain intercept coefficient were sensitive in both cropping systems. Overall, it is possible to find a set of robust parameter values to simulate ET accurately in APEX in both cropping systems using any ETp method. However, more computation time is required for dryland than irrigated cropping system due to a relatively larger number of sensitive input parameters. When all inputs are available, the Penman–Monteith method takes the shortest computation time to obtain one model run with robust parameter values in both cropping systems. However, in areas with limited datasets, one can still obtain reasonable ET simulations using either Priestley–Taylor or Hargreaves. Editor's note : This paper is part of the featured series on Optimizing Ogallala Aquifer Water Use to Sustain Food Systems. See the February 2019 issue for the introduction and background to the series. 相似文献
430.