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361.
David Pepper Sally Eden Gordon Walker Susie Ohlenschlager Bob Roper Mary Blake 《Local Environment》2013,18(2):231-244
Making Cities Work: the role of local government in the urban environment. Richard Gilbert, Don Stevenson, Herbert Girardet &; Richard Stren, 1996, London, Earthscan, 203pp. ISBN 1 85383 354 1, £13.95 pbk Environmental Policy in an International Context, Vols 1–3: Perspectives, Conflicts and Prospects. P. Glasbergen &; A. Blowers (Series Eds) London, Arnold Rhetoric and Reality in Environmental Policy. M. Wintle &; R. Reeve (Eds), 1994, Aldershot, Avebury Studies in Green Research, 154 pp. ISBN 1 85628 927 3 FutureNatural: Nature, Science, Culture. G. Roberston et al. (Eds) 1996, London, Routledge, ISBN 0415 070139, £40.00 hbk Environmental Policy with Political Integration: the European Union and the United States. New horizons in environmental economics. John B. Braden, Henk Folmer &; Thomas S. Ulen (Eds), 1996, Cheltenham, Elgar Publishing, 477 pp. ISBN 1 85898 217 0 相似文献
362.
Zooplankton carcasses are common within aquatic systems and potentially serve as organic-rich substrates for bacteria. We
compared the microbial decomposition of representative crustacean (copepod) and non-crustacean (rotifer) zooplankton carcasses
and monitored changes in carcass protein and lipid contents. Our results showed that carcass decomposition was mainly driven
by bacteria colonizing from the surrounding water. Carcass-associated bacteria displayed higher protease and lipase activities
than free-living bacteria. Protein content of copepod carcasses decreased by 70% within the first 8 h and shifted from larger
to smaller sized proteins, while protein loss in rotifer carcasses was insignificant. Carcass lipid content did not change
significantly over 24 h in either zooplankton type, although polar branched fatty acids increased on copepod carcasses indicating
an increase in viable microbial biomass. Our results suggest differential turnover of protein versus lipid within a zooplankton
carcass and that carcasses from different zooplankton groups would affect water column microbial processes differently. 相似文献
363.
Why run and hide when you can divide? Evidence for larval cloning and reduced larval size as an adaptive inducible defense 总被引:1,自引:1,他引:0
Dawn Vaughn 《Marine Biology》2010,157(6):1301-1312
Predator-induced cloning (asexual reproduction), with reduced size as consequence of cloning, suggests a novel adaptation
to the threat of predation. Although cloning is a common reproductive strategy of many plants and animals, cloning in response
to stimuli from predators has, at present, been documented only in the larvae (plutei) of the sand dollar, Dendraster excentricus. Other studies report larval cloning in echinoderms under optimal conditions of food and temperature. A burst of asexuality
should be favored when environmental conditions are conducive to growth, but it is less clear that cloning is advantageous
when conditions indicate risk from predators. This study tested the hypothesis that the small size of predator-induced clones
reduces vulnerability during encounters with planktivorous fish. Successful cloning was inferred from an increase in larval
density, a reduction in larval size and stage, and some direct observations of budding. All clones were smaller than uncloned
sibling larvae, suggesting an advantage against visual predators. Pair-wise predation trials demonstrated that planktivorous
fish ate more uncloned sibling plutei than small clones. These results offer a new ecological context for asexual reproduction:
rapid size reduction as a defense. If the identifiable cues for cloning in echinoderm larvae (food and predators) are linked
in nature, then larval cloning may be a response to a single ecological scenario rather than two separate and unrelated conditions. 相似文献
364.
David N. Judge Donald E. Mullins Duane F. Berry Hubert L. Walker Jr. 《Journal of environmental science and health. Part. B》2013,48(6):647-675
Abstract Solid state fermentation (SSF) was investigated as a means to dispose of two commonly used pesticides, chlorpyrifos (O, O‐diethyl O‐(3,5,6‐trichloro‐2‐pyridyl) phosphorothioate) and atrazine (2‐chloro‐4‐ethylamino‐6‐isopropylamino‐1,3,5‐triazine). SSF experiments were carried out in bench‐scale bioreaetors (equipped with CO2 and volatile organic traps) containing a mixture of lignocellulosic materials and a radiolabeled pesticide. Ethyl acetate‐extractable, alkali soluble, and alkali insoluble fractions were evaluated for radioactivity following a 60‐d incubation period at 40°C. The majority of the [2, 6‐pyridyl‐14C]chlorpyrifos was associated with the ethyl acetate extract (about 74%), 17% was trapped as organic volatiles by polyurethane foam traps and < 0.5% of the chlorpyrifos was mineralized to CO2. Only small amounts of the radioactivity were associated with alkali soluble (0.0003%) and alkali insoluble (0.3%) fractions. In the [14C‐U‐ring] atrazine bioreactors, very little of the radioactivity volatilized (<0.5%) and less than 0.5% was mineralized to CO2. Approximately 57% of the applied radioactivity was associated with the ethyl acetate extract while 9% and 24% of the radioactivity was associated with the alkali soluble (humic and fulvic acids) and alkali insoluble fractions, respectively. Possible reaction mechanisms by which covalent bonds could be formed between atrazine (or metabolites) and humic substances were investigated. The issue of bound atrazine residue (alkali soluble fraction) was at least partially resolved. Oxidative coupling experiments revealed that formation of covalent bond linkages between amino substituent groups of atrazine residue and humic substances is highly unlikely. 相似文献
365.
366.
Shiny Mathews Dawn Reinhold 《Environmental science and pollution research international》2013,20(7):4327-4338
Tetracyclines and sulfonamides used in human and animal medicine are released to terrestrial ecosystems from wastewater treatment plants or by direct manure application. The interactions between plants and these antibiotics are numerous and complex, including uptake and accumulation, phytometabolism, toxicity responses, and degradation in the rhizosphere. Uptake and accumulation of antibiotics have been studied in plants such as wheat, maize, potato, vegetables, and ornamentals. Once accumulated in plant tissue, organic contaminants can be metabolized through a sequential process of transformation, conjugation through glycosylation and glutathione pathways, and ultimately sequestration into plant tissue. While studies have yet to fully elucidate the phytometabolism of tetracyclines and sulfonamides, an in-depth review of plant and mammalian studies suggest multiple potential transformation and conjugation pathways for tetracyclines and sulfonamides. The presence of contaminants in the vicinity or within the plants can elicit stress responses and defense mechanisms that can help tolerate the negative effects of contaminants. Antibiotics can change microbial communities and enzyme activity in the rhizosphere, potentially inducing microbial antibiotic resistance. On the other hand, the interaction of microbes and root exudates on pharmaceuticals in the rhizosphere can result in degradation of the parent molecule to less toxic compounds. To fully characterize the environmental impacts of increased antibiotic use in human medicine and animal production, further research is essential to understand the effects of different antibiotics on plant physiology and productivity, uptake, translocation, and phytometabolism of antibiotics, and the role of antibiotics in the rhizosphere. 相似文献
367.
368.
369.
Oliver R. Price Dawn K. Munday Martin S. Holt Gerard Morris 《Environmental pollution (Barking, Essex : 1987)》2009,157(10):2610-2616
Higher-tier environmental risk assessments on “down-the-drain” chemicals in river networks can be conducted using models such as GREAT-ER (Geography-referenced Regional Exposure Assessment Tool for European Rivers). It is important these models are evaluated and their sensitivities to input variables understood. This study had two primary objectives: evaluate GREAT-ER model performance, comparing simulated modelled predictions for LAS (linear alkylbenzene sulphonate) with measured concentrations, for four rivers in the UK, and investigate model sensitivity to input variables. We demonstrate that the GREAT-ER model is very sensitive to variability in river discharges. However it is insensitive to the form of distributions used to describe chemical usage and removal rate in sewage treatment plants (STPs). It is concluded that more effort should be directed towards improving empirical estimates of effluent load and reducing uncertainty associated with usage and removal rates in STPs. Simulations could be improved by incorporating the effect of river depth on dissipation rates. 相似文献
370.
Carroll EM Miller WW Johnson DW Saito L Qualls RG Walker RF 《Journal of environmental quality》2007,36(4):1105-1111
High intensity wildfire due to long-term fire suppression and heavy fuels buildup can render watersheds highly susceptible to wind and water erosion. The 2002 "Gondola" wildfire, located just southeast of Lake Tahoe, NV-CA, was followed 2 wk later by a severe hail and rainfall event that deposited 7.6 to 15.2 mm of precipitation over a 3 to 5 h time period. This resulted in a substantive upland ash and sediment flow with subsequent down-gradient riparian zone deposition. Point measurements and ESRI ArcView were applied to spatially assess source area contributions and the extent of ash and sediment flow deposition in the riparian zone. A deposition mass of 380 Mg of ash and sediment over 0.82 ha and pre-wildfire surface bulk density measurements were used in conjunction with two source area assessments to generate an estimation of 10.1 mm as the average depth of surface material eroded from the upland source area. Compared to previous measurements of erosion during rainfall simulation studies, the erosion of 1800 to 6700 g m(-2) mm(-1) determined from this study was as much as four orders of magnitude larger. Wildfire, followed by the single event documented in this investigation, enhanced soil water repellency and contributed 17 to 67% of the reported 15 to 60 mm ky(-1) of non-glacial, baseline erosion rates occurring in mountainous, granitic terrain sites in the Sierra Nevada. High fuel loads now common to the Lake Tahoe Basin increase the risk that similar erosion events will become more commonplace, potentially contributing to the accelerated degradation of Lake Tahoe's water clarity. 相似文献