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1.
PLoS One ; 7(12): e52818, 2012.
Artigo em Inglês | MEDLINE | ID: mdl-23285194

RESUMO

The thermal reaction norms of 4 closely related intertidal Nacellid limpets, Antarctic (Nacella concinna), New Zealand (Cellana ornata), Australia (C. tramoserica) and Singapore (C. radiata), were compared across environments with different temperature magnitude, variability and predictability, to test their relative vulnerability to different scales of climate warming. Lethal limits were measured alongside a newly developed metric of "duration tenacity", which was tested at different temperatures to calculate the thermal reaction norm of limpet adductor muscle fatigue. Except in C. tramoserica which had a wide optimum range with two break points, duration tenacity did not follow a typical aerobic capacity curve but was best described by a single break point at an optimum temperature. Thermal reaction norms were shifted to warmer temperatures in warmer environments; the optimum temperature for tenacity (T(opt)) increased from 1.0°C (N. concinna) to 14.3°C (C. ornata) to 18.0°C (an average for the optimum range of C. tramoserica) to 27.6°C (C. radiata). The temperature limits for duration tenacity of the 4 species were most consistently correlated with both maximum sea surface temperature and summer maximum in situ habitat logger temperature. Tropical C. radiata, which lives in the least variable and most predictable environment, generally had the lowest warming tolerance and thermal safety margin (WT and TSM; respectively the thermal buffer of CT(max) and T(opt) over habitat temperature). However, the two temperate species, C. ornata and C. tramoserica, which live in a variable and seasonally unpredictable microhabitat, had the lowest TSM relative to in situ logger temperature. N. concinna which lives in the most variable, but seasonally predictable microhabitat, generally had the highest TSMs. Intertidal animals live at the highly variable interface between terrestrial and marine biomes and even small changes in the magnitude and predictability of their environment could markedly influence their future distributions.


Assuntos
Mudança Climática , Gastrópodes/fisiologia , Temperatura , Animais , Regiões Antárticas , Austrália , Ecossistema , Nova Zelândia , Singapura
2.
PLoS One ; 6(12): e29340, 2011.
Artigo em Inglês | MEDLINE | ID: mdl-22242115

RESUMO

Animal physiology, ecology and evolution are affected by temperature and it is expected that community structure will be strongly influenced by global warming. This is particularly relevant in the tropics, where organisms are already living close to their upper temperature limits and hence are highly vulnerable to rising temperature. Here we present data on upper temperature limits of 34 tropical marine ectotherm species from seven phyla living in intertidal and subtidal habitats. Short term thermal tolerances and vertical distributions were correlated, i.e., upper shore animals have higher thermal tolerance than lower shore and subtidal animals; however, animals, despite their respective tidal height, were susceptible to the same temperature in the long term. When temperatures were raised by 1°C hour(-1), the upper lethal temperature range of intertidal ectotherms was 41-52°C, but this range was narrower and reduced to 37-41°C in subtidal animals. The rate of temperature change, however, affected intertidal and subtidal animals differently. In chronic heating experiments when temperature was raised weekly or monthly instead of every hour, upper temperature limits of subtidal species decreased from 40°C to 35.4°C, while the decrease was more than 10°C in high shore organisms. Hence in the long term, activity and survival of tropical marine organisms could be compromised just 2-3°C above present seawater temperatures. Differences between animals from environments that experience different levels of temperature variability suggest that the physiological mechanisms underlying thermal sensitivity may vary at different rates of warming.


Assuntos
Organismos Aquáticos/fisiologia , Aquecimento Global , Água do Mar , Temperatura , Clima Tropical , Animais , Tamanho Corporal , Ecossistema , Comportamento Alimentar/fisiologia , Modelos Lineares , Movimento/fisiologia , Singapura , Especificidade da Espécie , Movimentos da Água
4.
Biofouling ; 19 Suppl: 207-12, 2003 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-14618722

RESUMO

The hypothesis that pharmaceuticals, with their known syntheses, chemical properties and primary mechanism of action would be an efficient source of new antifouling agents compatible with existing antifouling coating technology was tested. Twenty-three compounds at concentrations from 5 micrograms ml-1 to 40 ng ml-1 were tested for toxicity and inhibition of settlement of barnacle larvae. The compounds had a wide range of solubility in water and covered nine primary mechanisms of action in vertebrates. The upper level of potency was chosen because compounds that are highly potent have greater practical potential. The goal was to find compounds with high inhibition of settlement and low toxicity. Of the 23 compounds tested, 22 had significant effects on barnacle larvae. The variety of chemical structures and their variation in water solubility support the hypothesis that pharmaceuticals that are compatible with existing coatings technology should be considered as antifouling agents. Moreover, factors such as coating compatibility and environmental fate should be addressed early in the development process.


Assuntos
Bioensaio , Efeitos Colaterais e Reações Adversas Relacionados a Medicamentos , Pintura , Preparações Farmacêuticas/química , Thoracica/fisiologia , Animais , Larva/fisiologia , Água do Mar
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