Plant and Wildlife Sciences Courses
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PWS 673 R - Cytogenetics
Chromosome structure and function; classical and molecular cytological methods of chromosome and genome analysis.
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PWS 672 - Comparative Genomics
Analysis and interpretation of eukaryotic genomes in a comparative context. Theory behind commonly used methods for comparing whole genomes, such as read alignment, whole genome alignment, orthology prediction, variant calling, detection of positive selection, and phylogenomic analysis. Second of a two-course series.
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PWS 670 - Analysis of Complex Genomes
Assembly and analysis of eukaryotic genomes, including the theory underlying and application of commonly used methods. First in a two-course series.
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PWS 660 - Environ Site Evaluation
Sampling, analyzing, and interpretation of plant, water, and soil matrixes in native, agricultural, and urban sites. Emphasis on completing Environmental Site Assessments.
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PWS 640 - Developmental Plant Physiology
Developmental phenomena in higher plants, emphasizing seed physiology, plant growth regulation, and plant stress responses.
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PWS 634 - Analysis of Populations
Exposure to common tools for analysis and management of plant and animal populations. Program mark, program distance, movement and home range analysis, point pattern analysis, etc.
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PWS 633 - Biometry & Experimental Design
The design, analysis, and interpretation of biological research using modern analytical tools and relevant software.
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PWS 629 - Conservation of Carnivores
Life histories of representative carnivores with political, popular, and managerial problems surrounding their existing and proposed conservation.
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PWS 588 - Metagenomics
Introduction to comparative and fuctional analysis of genomic and metagenomic datasets, including microbial functions that affect host health. Analyzing existing and novel datasets with field-standard techniques.
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PWS 586 - Plant Cell Biology
Molecular aspects of the structural and functional characteristics of plant cells, emphasizing characteristics of plant cells setting them apart from animal cells.
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PWS 575 - Plant Pathology
Concepts associated with symptoms, development, control, and classification of plant diseases. Identification and classification of plant fungi, bacteria, and viruses.
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PWS 560 - Quantitative Environ Chemistry
Laboratory chemical analysis of soils and plant materials in soil and plant research.
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PWS 559 - Molecular Plant Breeding
Molecular genetics methods applied to improvement of economically important plants. Theory and methods of plant transformations.
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PWS 554 - Wildlife Behavioral Ecology
Integrating principles of ethology, sociobiology, and behavioral ecology using examples from wildlife resources; behavioral sampling methods.
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PWS 553 - Restoration Ecology
Nature of ecosystem disturbance and plant succession; developing science and practice of ecological restoration; case studies of applied restoration.
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PWS 552 - Terrestrial Ecosystems
Theory and application of plant and animal distribution in terrestrial environments.
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PWS 551 - Quantitative Ecology
Quantitative methods for ecological sampling and data analysis.
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PWS 547 - Ungulate Conservation & Mgt
Integrating principles of natural history, population ecology, behavior, and conservation biology of North American ungulates. Special emphasis on management and conservation applications.
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PWS 540 - Plant Response Environment
Advanced plant physiological ecology principles.
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PWS 520 - Saline/Sodic Soils
Physical and chemical properties of saline and sodic soils and irrigation waters--their diagnosis, reclamation, and management for sustainable crop production.
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PWS 514 - Soil Microbiology
Ecology and role of soil microorganisms in biogeochemical cycles, decomposition of organic matter and waste materials, and bioremediation of contaminated soils and water.
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PWS 513 - Field Instrumentation
Hands-on course and lab teaching students how to use instrumentation in the field and in controlled settings to measure key environmental parameters. Learning the physical principles underlying sensors.
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PWS 512 - Range Landscape Ecology & GIS
Applying landscape ecology theory to evaluate, describe, and predict spatial patterns and processes within rangeland ecosystems using geographic information systems (GIS), remote sensing, and global positioning systems (GPS).
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