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Publications

Below is a list of WERC's peer-reviewed publications. If you are searching for a specific publication and cannot find it in this list, please contact werc_web@usgs.gov

Filter Total Items: 3724

Determinants of postfire recovery and succession in mediterranean-climate shrublands of California Determinants of postfire recovery and succession in mediterranean-climate shrublands of California

Evergreen chaparral and semideciduous sage scrub shrublands were studied for five years after fires in order to evaluate hypothesized determinants of postfire recovery and succession. Residual species present in the immediate postfire environment dominated early succession. By the fifth year postfire, roughly half of the species were colonizers not present in the first year, but they...
Authors
Jon E. Keeley, C. J. Fotheringham, M. Baer-Keeley

Seed germination of Sierra Nevada postfire chaparral species Seed germination of Sierra Nevada postfire chaparral species

The California chaparral community has a rich flora of species with different mechanisms for cuing germination to postfire conditions. Here we report further germination experiments that elucidate the response of several widespread shrub species whose germination response was not clear and include other species from the Sierra Nevada, which have not previously been included in...
Authors
Jon E. Keeley, Thomas W. McGinnis, Kim A. Bollens

VTM plots as evidence of historical change: Goldmine or landmine? VTM plots as evidence of historical change: Goldmine or landmine?

VTM (Vegetation Type Map) plots comprise a huge data set on vegetation composition for many parts of California collected mostly between 1929 and 1935. Historical changes in vegetation have been inferred by sampling these areas many decades later and evaluating the changes in plant dominance. VTM plots can not be precisely relocated, and it has been assumed that errors resulting from...
Authors
Jon E. Keeley

Are diseases increasing in the ocean? Are diseases increasing in the ocean?

Many factors (climate warming, pollution, harvesting, introduced species) can contribute to disease outbreaks in marine life. Concomitant increases in each of these makes it difficult to attribute recent changes in disease occurrence or severity to any one factor. For example, the increase in disease of Caribbean coral is postulated to be a result of climate change and introduction of...
Authors
Kevin D. Lafferty, James W. Porter, Susan E. Ford

The rising tide of ocean diseases: Unsolved problems and research priorities The rising tide of ocean diseases: Unsolved problems and research priorities

New studies have detected a rising number of reports of diseases in marine organisms such as corals, molluscs, turtles, mammals, and echinoderms over the past three decades. Despite the increasing disease load, microbiological, molecular, and theoretical tools for managing disease in the world's oceans are under-developed. Review of the new developments in the study of these diseases...
Authors
Drew Harvell, Richard Aronson, Nancy Baron, Joseph Connell, Andrew P. Dobson, Steve Ellner, Leah R. Gerber, Kiho Kim, Armand M. Kuris, Hamish McCallum, Kevin D. Lafferty, Bruce McKay, James Porter, Mercedes Pascual, Garriett Smith, Katherine Sutherland, Jessica Ward

Parasites of the African clawed frog, Xenopus laevis, in southern California, U.S.A Parasites of the African clawed frog, Xenopus laevis, in southern California, U.S.A

A total of 230 feral African clawed frogs, Xenopus laevis, from 3 localities in southern California were examined for parasites. The following species were found: 3 species of Protozoa, Nyctotherussp., Balantidium xenopodis, Protoopalina xenopodus; 2 species of Monogenea, Protopolystoma xenopodis, Gyrdicotylus gallieni; 1 species of Digenea, Clinostomum sp. (as metacercariae); 1 species...
Authors
Boris I. Kuperman, Victoria E. Matey, Richard N. Fisher, Edward L. Ervin, Manna L. Warburton, Ludmila Bakhireva, Cynthia A. Lehman

Complex trophic interactions in kelp forest ecosystems Complex trophic interactions in kelp forest ecosystems

The distributions and abundances of species and populations change almost continuously. Understanding the processes responsible is perhaps ecology’s most fundamental challenge. Kelp-forest ecosystems in southwest Alaska have undergone several phase shifts between alga- and herbivore-dominated states in recent decades. Overhunting and recovery of sea otters caused the earlier shifts...
Authors
J. A. Estes, E.M. Danner, D.F. Doak, B. Konar, A.M. Springer, P.D. Steinberg, M. Tim Tinker, T. M. Williams

The elusive baseline of marine disease: Are diseases in ocean ecosystems increasing? The elusive baseline of marine disease: Are diseases in ocean ecosystems increasing?

Disease outbreaks alter the structure and function of marine ecosystems, directly affecting vertebrates (mammals, turtles, fish), invertebrates (corals, crustaceans, echinoderms), and plants (seagrasses). Previous studies suggest a recent increase in marine disease. However, lack of baseline data in most communities prevents a direct test of this hypothesis. We developed a proxy to...
Authors
Jessica R. Ward, Kevin D. Lafferty

Habitat of endangered white abalone, Haliotis sorenseni Habitat of endangered white abalone, Haliotis sorenseni

Surveys with a submersible at offshore islands and banks in southern California found that white abalone were most abundant at depths between 43 and 60 m. This is deeper than estimates taken when white abalone were more abundant. Densities were highest at sites far from fishing ports. Controlling for depth and site found that white abalone were significantly more abundant in areas with...
Authors
Kevin D. Lafferty, M.D. Behrens, G.E. Davis, P.L. Haaker, D.J. Kushner, D. V. Richards, I. K. Taniguchi, M. J. Tegner

Does terrestrial epidemiology apply to marine systems? Does terrestrial epidemiology apply to marine systems?

Most of epidemiological theory has been developed for terrestrial systems, but the significance of disease in the ocean is now being recognized. However, the extent to which terrestrial epidemiology can be directly transferred to marine systems is uncertain. Many broad types of disease-causing organism occur both on land and in the sea, and it is clear that some emergent disease problems...
Authors
Hamish I. McCallum, Armand M. Kuris, C. Drew Harvell, Kevin D. Lafferty, Garriet W. Smith, James Porter
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