Matching Items (135)
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Description
A large fraction of the world grasslands and savannas are undergoing a rapid shift from herbaceous to woody-plant dominance. This land-cover change is expected to lead to a loss in livestock production (LP), but the impacts of woody-plant encroachment on this crucial ecosystem service have not been assessed. We evaluate

A large fraction of the world grasslands and savannas are undergoing a rapid shift from herbaceous to woody-plant dominance. This land-cover change is expected to lead to a loss in livestock production (LP), but the impacts of woody-plant encroachment on this crucial ecosystem service have not been assessed. We evaluate how tree cover (TC) has affected LP at large spatial scales in rangelands of contrasting social–economic characteristics in the United States and Argentina. Our models indicate that in areas of high productivity, a 1% increase in TC results in a reduction in LP ranging from 0.6 to 1.6 reproductive cows (Rc) per km[superscript 2]. Mean LP in the United States is 27 Rc per km[superscript 2], so a 1% increase in TC results in a 2.5% decrease in mean LP. This effect is large considering that woody-plant cover has been described as increasing at 0.5% to 2% per y. On the contrary, in areas of low productivity, increased TC had a positive effect on LP. Our results also show that ecological factors account for a larger fraction of LP variability in Argentinean than in US rangelands. Differences in the relative importance of ecological versus nonecological drivers of LP in Argentina and the United States suggest that the valuation of ecosystem services between these two rangelands might be different. Current management strategies in Argentina are likely designed to maximize LP for various reasons we are unable to explore in this effort, whereas land managers in the United States may be optimizing multiple ecosystem services, including conservation or recreation, alongside LP.
Created2014-09-02
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Description
Tree and shrub abundance has increased in many grasslands causing changes in ecosystem carbon and nitrogen pools that are related to patterns of woody plant distribution. However, with regard to spatial patterns of shrub proliferation, little is known about how they are influenced by grazing or the extent to which

Tree and shrub abundance has increased in many grasslands causing changes in ecosystem carbon and nitrogen pools that are related to patterns of woody plant distribution. However, with regard to spatial patterns of shrub proliferation, little is known about how they are influenced by grazing or the extent to which they are influenced by intraspecific interactions. We addressed these questions by quantifying changes in the spatial distribution of Prosopis velutina (mesquite) shrubs over 74 years on grazed and protected grasslands. Livestock are effective agents of mesquite dispersal and mesquite plants have lateral roots extending well beyond the canopy. We therefore hypothesized that mesquite distributions would be random on grazed areas mainly due to cattle dispersion and clustered on protected areas due to decreased dispersal and interspecific interference with grasses; and that clustered or random distributions at early stages of encroachment would give way to regular distributions as stands matured and density-dependent interactions intensified. Assessments in 1932, 1948, and 2006 supported the first hypothesis, but we found no support for the second. In fact, clustering intensified with time on the protected area and the pattern remained random on the grazed site. Although shrub density increased on both areas between 1932 and 2006, we saw no progression toward a regular distribution indicative of density-dependent interactions. We propose that processes related to seed dispersal, grass–shrub seedling interactions, and hydrological constraints on shrub size interact to determine vegetation structure in grassland-to-shrubland state changes with implications for ecosystem function and management.
Created2014-09-01
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Description
Species distribution modeling (SDM) is a methodology that has been widely used in the past two decades for developing quantitative, empirical, predictive models of species–environment relationships. SDM methods could be more broadly applied than they currently are to address research questions in archaeology and paleoanthropology. Specifically, SDM can be used

Species distribution modeling (SDM) is a methodology that has been widely used in the past two decades for developing quantitative, empirical, predictive models of species–environment relationships. SDM methods could be more broadly applied than they currently are to address research questions in archaeology and paleoanthropology. Specifically, SDM can be used to hindcast paleodistributions of species and ecological communities (paleo-SDM) for time periods and locations of prehistoric human occupation. Paleo-SDM may be a powerful tool for understanding human prehistory if used to hindcast the distributions of plants, animals and ecological communities that were key resources for prehistoric humans and to use this information to reconstruct the resource landscapes (paleoscapes) of prehistoric people. Components of the resource paleoscape include species (game animals, food plants), habitats, and geologic features and landforms associated with stone materials for tools, pigments, and so forth. We first review recent advances in SDM as it has been used to hindcast paleodistributions of plants and animals in the field of paleobiology. We then compare the paleo-SDM approach to paleoenvironmental reconstructions modeled from zooarchaeological and archaeobotanical records, widely used in archaeology and paleoanthropology. Next, we describe the less well developed but promising approach of using paleo-SDM methods to reconstruct resource paleoscapes. We argue that paleo-SDM offers an explicitly deductive strategy that generates spatial predictions grounded in strong theoretical understandings of the relation between species, habitat distributions and environment. Because of their limited sampling of space and time, archaeobiological records may be better suited for paleo-SDM validation than directly for paleoenvironmental reconstruction. We conclude by discussing the data requirements, limitations and potential for using predictive modeling to reconstruct resource paleoscapes. There is a need for improved paleoclimate models, improved paleoclimate proxy and species paleodistribution data for model validation, attention to scale issues, and rigorous modeling methods including mechanistic models.
Created2014-12-17
Description
After traveling to Spain to study abroad, I noticed a large amount of shops selling goods related to Japanese anime, which helped inspire the topic of my honors thesis. In this paper, the cultural impact of Japanese animation and comics on Spain is explored. The history/origin of anime in Spain,

After traveling to Spain to study abroad, I noticed a large amount of shops selling goods related to Japanese anime, which helped inspire the topic of my honors thesis. In this paper, the cultural impact of Japanese animation and comics on Spain is explored. The history/origin of anime in Spain, the early reception of these works in Spain, the importance of the anime fandom, the intersection between Spanish and Japanese culture in anime and anime-inspired films, and the positive representation of Spain in these works are all relevant topics that constitute the argument of this document. Sources in both English and Spanish are utilized.This paper explores the surprising connections between the two countries. The way in which their cultures interact through the consumption of this form of media was quite fascinating to look into.
ContributorsMalinski, Joseph (Author) / Walton-Ramirez, Anne (Thesis director) / Wilson, Bradley (Committee member) / Barrett, The Honors College (Contributor) / School of Geographical Sciences and Urban Planning (Contributor) / School of International Letters and Cultures (Contributor)
Created2024-05
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Description
The ecological niche of a species can shift due to changing environmental conditions and lead to the species to undergo selective pressures to adapt to them. Ecological niche models are used to predict a species’ distribution based on its ecological niche. Ecological niche models can be integrated with a geographic

The ecological niche of a species can shift due to changing environmental conditions and lead to the species to undergo selective pressures to adapt to them. Ecological niche models are used to predict a species’ distribution based on its ecological niche. Ecological niche models can be integrated with a geographic information system to predict a species’ geographic distribution based on environmental variables. In this project, two reptile species that inhabit wide and variable geographic ranges, Uta stansburiana and Gopherus berlandieri, had their ecological niches predicted and mapped based off population data and climactic data. These ecological niche maps were then compared to sample populations of each species to infer and predict whether certain populations of each species were possibly under increased selective pressures. Based off these maps and comparisons, this study infers that the two species differ in which environmental variables are the most relevant to their suitability. This study also predicts that populations of U. stansburiana experiencing extremes in their most relevant values for temperature and precipitation could be under greater selective pressures, while populations of G. berlandieri experiencing lower values for their relevant temperature and precipitation variables could be under greater selective pressures. Furthermore, it can be inferred from this study that differences in these variables across each species’ range could be influencing genetic variation among their populations, in line with previous studies. Further genomic study of each species can be used to test these inferences.
ContributorsLukasik-Drescher, Zachary (Author) / Kusumi, Kenro (Thesis director) / Araya-Donoso, Raúl (Committee member) / Barrett, The Honors College (Contributor) / School of Geographical Sciences and Urban Planning (Contributor)
Created2024-05