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1.
Parasitology ; 140(7): 814-20, 2013 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-23433146

RESUMO

Centrocestus formosanus is a digenetic trematode from Asia that parasitizes multiple hosts and is a concern in the Comal River, Texas, USA, because of its negative effects on the endangered fountain darter Etheostoma fonticola. To determine a practical sampling method to monitor C. formosanus in the Comal River, we evaluated three sampling methods using wild-caught fish, caged fish reared in the laboratory, and cercariometry. Cercariometry detected significant spatial and temporal patterns of cercarial density in river water that were similar with metacercarial intensity in caged fish, but inconsistent with metacercarial intensity in wild-caught fish. Our results also showed a positive correlation between cercarial density in river water and metacercarial intensity in caged fish. Conversely, the relationship was not significant between cercarial density and metacercarial intensity in wild-caught fish. Because cercariometry predicted similar trends with the caged fountain darter sampling method, cercariometry was useful in predicting C. formosanus gill infections, infection rate, and longevity in infected fountain darters. Although trends from cercariometry and caged fish sampling methods were similar, we recommend cercariometry because it was less expensive to use given the amount of sampling effort required and provides trends that can be used to make pro-active management decisions in C. formosanus-infested aquatic ecosystems.


Assuntos
Cercárias/isolamento & purificação , Ecossistema , Doenças dos Peixes/parasitologia , Heterophyidae/isolamento & purificação , Percas , Infecções por Trematódeos/veterinária , Animais , Conservação dos Recursos Naturais , Doenças dos Peixes/epidemiologia , Prevalência , Rios , Estações do Ano , Texas/epidemiologia , Infecções por Trematódeos/epidemiologia , Infecções por Trematódeos/parasitologia
2.
Prion ; 15(1): 44-52, 2021 12.
Artigo em Inglês | MEDLINE | ID: mdl-33834939

RESUMO

Axis deer (Axis axis) occur both in captivity and free-ranging populations in portions of North America, but to-date, no data exist pertaining to the species' susceptibility to CWD. We sequenced the prion protein gene (PRNP) from axis deer. We then compared axis deer PrPC sequences and amino acid polymorphisms to those of CWD susceptible species. A single PRNP allele with no evidence of intraspecies variation was identified in axis deer that indicates axis deer PRNP is most similar to North American elk (Cervus canadensis) PRNP. Therefore, axis deer may be susceptible to CWD. We recommend proactively increasing CWD surveillance for axis deer, particularly where CWD has been detected and axis deer are sympatric with native North American CWD susceptible species.


Assuntos
Cervos , Príons , Doença de Emaciação Crônica , Animais , Cervos/genética , Polimorfismo Genético , Proteínas Priônicas/genética , Príons/genética , Doença de Emaciação Crônica/genética
3.
Oecologia ; 108(3): 495-502, 1996 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-28307866

RESUMO

We conducted a 12-week field manipulation experiment in which we raised the nitrogen availability (ammonium sulfate fertilization to roots) and/or water potential (freshwater misting) of decaying leaf blades of a saltmarsh grass (smooth cordgrass, Spartina alterniflora) in triplicate 11-m2 plots, and compared the manipulated plots to unmanipulated, control plots. The ascomycetous fungi that dominate cordgrass leaf decomposition processes under natural conditions exhibited a boosting (>2-fold) of living standing crop (ergosterol content) by misting at the 1 st week after tagging of senescent leaves, but afterwards, living-fungal standing crop on misted blades was equivalent to that on control blades, confirming prior evidence that Spartina fungi are well adapted to natural, irregular wetting. Misting also caused 2-fold sharper temporal declines than control in instantaneous rates of fungal production (ergosterol synthesis), 5-fold declines in density of sexual reproductive structures that were not shown by controls, and 2-fold higher rates of loss of plant organic mass. Extra nitrogen gave a long-term boost to living-fungal standing crop (about 2-fold at 12 weeks), which was also reflected in rates of fungal production at 4 weeks, suggesting that saltmarsh fungal production is nitrogen-limited. Although bacterial and green-microalgal crops were boosted by manipulations of nitrogen and/or water, their maximal crops remained ≤0.3 or 2% (bacteria or green microalgae, respectively) of contemporaneous living-fungal crop. The fungal carbon-productivity values obtained, in conjunction with rates of loss of plant carbon, hinted that fungal yield can be high (>50%), and that it is boosted by high availability of nitrogen. We speculate that one partial cause of high fungal yield could be subsidy of fungal growth by dissolved organic carbon from outside decomposing leaves.

4.
Oecologia ; 85(3): 321-326, 1991 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-28312035

RESUMO

Dead stems and leaves of smooth cordgrass (Spartina alterniflora Loisel.) undergo substantial fungal decay in the standing position. We conducted a series of experiments to determine the probable range of water availabilities that cordgrass-fungal decomposers experience; we determined the effects of duration of wetting and drying, site on shoots, leaching of osmotica, and stage of decomposition on water potential (ψ) of cordgrass shoots. Dried pieces of cordgrass shoots took up water rapidly when submerged, rising from values which were probably less than -150 megapascals (MPa) water potential to about -3.5 (soaked in seawater) or -1.5 (soaked in tapwater) within 5 min. Air-drying resulted in a return to low ψ (<-7.5 MPa) within an hour. Literature reports show that most litter and wood-decomposing fungi which have been tested cannot grow at ψ more negative than -6 MPa. The more lignified stems showed a more negative matric ψ than leaves at water contents greater than 25% fresh weight. As leaves decomposed in the marsh, their ψ increased (from -1.7 to -0.5 MPa, under standard conditions of 30 min freshwater soaking and 30 min air-drying), similar to what other investigators have found for wheat and forest litter. The water content at which cordgrass leaves reached -6 MPa was about 23% fresh weight, within the range (15-32%) found for wheat straw and forest litter.

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