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Erich T. Hester Martin W. Doyle 《Journal of the American Water Resources Association》2011,47(3):571-587
Hester, Erich T. and Martin W. Doyle, 2011. Human Impacts to River Temperature and Their Effects on Biological Processes: A Quantitative Synthesis. Journal of the American Water Resources Association (JAWRA) 47(3):571‐587. DOI: 10.1111/j.1752‐1688.2011.00525.x Abstract: Land‐use change and water resources management increasingly impact stream and river temperatures and therefore aquatic organisms. Efforts at thermal mitigation are expected to grow in future decades. Yet the biological consequences of both human thermal impacts and proposed mitigation options are poorly quantified. This study provides such context for river thermal management in two ways. First, we summarize the full spectrum of human thermal impacts to help thermal managers consider the relative magnitudes of all impacts and mitigation options. Second, we synthesize biological sensitivity to river temperature shifts using thermal performance curves, which relate organism‐level biological processes to temperature. This approach supplements the popular use of thermal thresholds by directly estimating the impact of temperature shifts on the rates of key biological processes (e.g., growth). Our results quantify a diverse array of human thermal impacts, revealing that human actions tend to increase more than decrease river temperatures. Our results also provide a practical framework in which to quantify the sensitivity of river organisms to such impacts and related mitigation options. Finally, among the data and studies we synthesized, river organisms appear to be more sensitive to temperature above than below their thermal maxima, and fish are more sensitive to temperature change than invertebrates. 相似文献
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Oviposition of carrot fly (Psila rosae) in response to foliage and leaf surface extracts of host plants 总被引:1,自引:0,他引:1
Summary. Foliage of twelve host and two non-host species and surrogate leaves treated with the respective leaf extracts were presented
to laboratory populations of the carrot fly (Psila rosae) in oviposition choice assays. The stimulatory activity of dichloromethane surface extracts and the diethyl ether fraction
of hot water extracts did not reflect accurately the differences in acceptability observed among intact leaves. A better correlation
was found using hexane extracts prepared in a microwave oven. Two out of five fractions of this crude hexane extract obtained
by silica gel column chromatography stimulated oviposition. The diethyl ether fraction, which contained the previously identified
oviposition stimulants (propenylbenzenes, furanocoumarins, polyacetylenes), could account for only a minor part of the variation
in the acceptability of host leaves. The preference hierarchy for intact leaves corresponded better to the ranking of species
according to activity of the methanolic fraction, which apparently contains unknown stimulatory compounds.? The water fractions
of the hot water extracts were shown to reduce egg-laying underneath surrogate leaves treated with a stimulatory extract.
This oviposition-deterring effect was particularly strong with the non-preferred species Pimpinella major, which is also highly resistant in the field. Hence, unidentified inhibitory compounds may also contribute to differential
accept ability of host plants. It is concluded that antixenotic (non-preference) resistance of host plants to carrot fly attack
depends on complex mixtures of semiochemicals.
Received 11 June 1997; accepted 26 November 1997. 相似文献
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