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Institution

University of Georgia

EducationAthens, Georgia, United States
About: University of Georgia is a education organization based out in Athens, Georgia, United States. It is known for research contribution in the topics: Population & Poison control. The organization has 41934 authors who have published 93622 publications receiving 3713212 citations. The organization is also known as: UGA & Franklin College.
Topics: Population, Poison control, Gene, Genome, Virus


Papers
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Journal ArticleDOI
TL;DR: The Learning Transfer System Inventory (LTSI) as discussed by the authors was developed and administered to 1,616 training participants from a wide range of organizations to measure factors in the system affecting transfer of learning.
Abstract: This study expands on the concept of the learning transfer system and reports on the validation of an instrument to measure factors in the system affecting transfer of learning. The Learning Transfer System Inventory (LTSI) was developed and administered to 1,616 training participants from a wide range of organizations. Exploratory common factor analysis revealed a clean interpretable factor structure of sixteen transfer system constructs. Second-order factor analysis suggested a three-factor higher order structure of climate, job utility, and rewards. The instrument development process, factor structure, and use of the LTSI as a diagnostic tool in organizations are discussed.© 2000 Jossey-Bass, A Publishing Unit of John Wiley & Sons, Inc.

839 citations

Journal ArticleDOI
15 Jan 2010-Science
TL;DR: Key findings include the identification of a functional DNA methylation tool kit; hymenopteran-specific genes including diverse venoms; lateral gene transfers among Pox viruses, Wolbachia, and Nasonia; and the rapid evolution of genes involved in nuclear-mitochondrial interactions that are implicated in speciation.
Abstract: We report here genome sequences and comparative analyses of three closely related parasitoid wasps: Nasonia vitripennis, N. giraulti, and N. longicornis. Parasitoids are important regulators of arthropod populations, including major agricultural pests and disease vectors, and Nasonia is an emerging genetic model, particularly for evolutionary and developmental genetics. Key findings include the identification of a functional DNA methylation tool kit; hymenopteran-specific genes including diverse venoms; lateral gene transfers among Pox viruses, Wolbachia, and Nasonia; and the rapid evolution of genes involved in nuclear-mitochondrial interactions that are implicated in speciation. Newly developed genome resources advance Nasonia for genetic research, accelerate mapping and cloning of quantitative trait loci, and will ultimately provide tools and knowledge for further increasing the utility of parasitoids as pest insect-control agents.

838 citations

Journal ArticleDOI
TL;DR: The users of this book can be teachers of measurement, research, and statistics courses as mentioned in this paper, and also they can be valuable to researchers and consumers of research as a reference. The book is written by as mentioned in this paper.
Abstract: The users of this book can be teachers of measurement, research, and statistics courses. Also, this book can be valuable to researchers and consumers of research as a reference. The book is written...

837 citations

Journal ArticleDOI
TL;DR: It is demonstrated that mentoring is associated with a wide range of favorable behavioral, attitudinal, health-related, relational, motivational, and career outcomes, although the effect size is generally small.

833 citations

Journal ArticleDOI
15 Feb 2007-Nature
TL;DR: This work shows taxon richness to be decoupled from PD, using a biome-wide phylogenetic analysis of the flora of an undisputed biodiversity hotspot—the Cape of South Africa and demonstrates that PD protection is the best strategy for preserving feature diversity in the Cape.
Abstract: One of the biggest challenges for conservation biology is to provide conservation planners with ways to prioritize effort. Much attention has been focused on biodiversity hotspots. However, the conservation of evolutionary process is now also acknowledged as a priority in the face of global change. Phylogenetic diversity (PD) is a biodiversity index that measures the length of evolutionary pathways that connect a given set of taxa. PD therefore identifies sets of taxa that maximize the accumulation of 'feature diversity'. Recent studies, however, concluded that taxon richness is a good surrogate for PD. Here we show taxon richness to be decoupled from PD, using a biome-wide phylogenetic analysis of the flora of an undisputed biodiversity hotspot--the Cape of South Africa. We demonstrate that this decoupling has real-world importance for conservation planning. Finally, using a database of medicinal and economic plant use, we demonstrate that PD protection is the best strategy for preserving feature diversity in the Cape. We should be able to use PD to identify those key regions that maximize future options, both for the continuing evolution of life on Earth and for the benefit of society.

832 citations


Authors

Showing all 42268 results

NameH-indexPapersCitations
Rob Knight2011061253207
Feng Zhang1721278181865
Zhenan Bao169865106571
Carl W. Cotman165809105323
Yoshio Bando147123480883
Mark Raymond Adams1471187135038
Han Zhang13097058863
Dmitri Golberg129102461788
Godfrey D. Pearlson12874058845
Douglas E. Soltis12761267161
Richard A. Dixon12660371424
Ajit Varki12454258772
Keith A. Johnson12079851034
Gustavo E. Scuseria12065895195
Julian I. Schroeder12031550323
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
2023125
2022542
20214,670
20204,504
20194,098
20183,994