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351.
352.
Tokuchi Naoko Ohte Nobuhito Osaka Ken’ichi Katsuyama Masanori 《Environmental monitoring and assessment》2013,185(1):855-863
Pine wilt disease (PWD) is caused by a non-native pest that has spread extensively throughout Japan. Previous research has indicated that most infected trees have died and the litter deposited has resulted in changes to stream-water chemistry, particularly increased nitrate (NO 3 ? ) concentrations. In this study, we divided stream nitrogen (N) export into N loss due to PWD and baseline N leakage without disturbance based on long-term monitoring. The annual N export was 110.0 mol N ha?1 year?1 in 1990 and 749.8 mol N ha?1 year?1 in 1997, and had decreased to 37.0 mol N ha?1 year?1 in 2005. N export under PWD influence was estimated to be 3697 mol N ha?1, and N loss due to PWD was 2810 mol N ha?1. N loss due to PWD was three times larger than baseline N leakage for the disturbed period. These changes in plant–herbivore relationships could affect N status in a forest ecosystem. So-called “semi-natural” disturbances related to non-native species invasion and increases of atmospheric N deposition caused by human activity will increase. Long-term monitoring studies of various aspects are necessary to offer insight into this ecosystem. 相似文献
353.
The physiological and biochemical characteristics of seedlings of Descurainia sophia (Fisch.) and Lepidium apetalum Wild. have been used as examples to demonstrate that long-term exposure of plant populations to environmental stress factors
causes adaptive changes in antioxidant and genomic systems that may considerably affect the radioresistance of seed progeny.
The resistance to additional acute irradiation of seed progeny of wild plants adapted to different environmental conditions
has been found to be determined not only by the combination of antioxidant and DNA-repair protection systems and the vulnerability
of the functioning genome, but also by their variability. The data on the relationship of the radioresistance of wild plant
populations with physiological and biochemical characteristics and their variability may be used for expert environmental
assessment of the state of the biota and prediction of its viability under exposure to abiotic environmental factors. 相似文献
354.
Emma C. Hardison Michael A. O’Driscoll John P. DeLoatch Robert J. Howard Mark M. Brinson 《Journal of the American Water Resources Association》2009,45(4):1032-1046
Abstract: This study evaluates the effects of urban land use on stream channels and riparian ground‐water levels along low‐order Inner Coastal Plain streams in North Carolina. Six sites with stream catchments of similar size (1.19‐3.46 km2) within the Tar River Basin were selected across an urban land use gradient, as quantified by a range of catchment total impervious area (TIA; 3.8‐36.7%). Stream stage and ground‐water levels within three floodplain monitoring wells were measured manually and using pressure transducers from May 2006‐June 2007. Channel incision ratio (CIR), the ratio of bank height to bankfull height, was also measured at each monitoring site and along stream reaches within the study area (12 urban and 12 rural sites). Riparian ground‐water levels were inversely related to catchment TIA (%). As TIA (%) and stormwater runoff increased, the degree of stream channel incision increased and riparian ground‐water tables declined. In urban floodplains (>15% TIA), the median ground‐water level was 0.84 m deeper than for the rural settings (<15% TIA). This has resulted in a shift to drier conditions in the urban riparian zones, particularly during the summer months. CIR was found to be a reliable surface indicator of “riparian hydrologic drought” in these settings. 相似文献
355.
Steven W. Effler Susan M. O’Donnell Anthony R. Prestigiacomo David M. O’Donnell David A. Matthews Emmet M. Owens Adam J.P. Effler 《Journal of the American Water Resources Association》2009,45(5):1127-1141
Abstract: A combination of long‐term fixed‐frequency and robotic monitoring information for a polluted urban lake, Onondaga Lake, New York, and two of its tributaries is used to resolve the propensity for, and occurrences of, tributary plunging. Cooler temperatures (T) and higher salinity (S) are primarily responsible for the elevated density and plunging of one of these polluted streams for the summer through early fall interval. In‐lake transport of this plunging tributary, which receives inputs from combined sewer overflows (CSOs), is tracked by its high S during dry weather, its high turbidity (Tn) with associated lower S (dilution with rainwater) following runoff events, and by its characteristic ionic composition. These signatures are documented extending from the creek mouth, through a connecting navigation channel, through the inflow zone of the lake, and into metalimnetic depths of pelagic portions of the lake. The entry of this polluted tributary below the depth interval(s) of primary production and contact recreation has important implications for the ongoing major rehabilitation program for this lake. The plunging phenomenon diminishes the benefits previously expected for related features of the lake’s water quality from ongoing management efforts to abate CSO inputs and reduce nonpoint nutrient loading from the tributary. Previously this tributary tended to instead enter the upper layers of the lake during the operation of an adjoining soda ash manufacturing facility (closure in 1986), as a result of high lake S caused by the industry’s ionic waste discharge. 相似文献
356.
M. B. Fardeeva N. A. Chizhikova N. V. Biryuchevskaya T. V. Rogova A. A. Savel’ev 《Russian Journal of Ecology》2009,40(4):233-240
Some up-to-date methods of analysis of the spatial and age structures of populations, including local population density maps and Ripley’s functions, are described using 20 cenopopulations (CPs) of Adonis vernalis L. as an example. Pregenerative plants have been found to be the most contagious, irrespective of climatic and phytocenotic conditions and land use type. The spatial distribution pattern and structure of A. vernalis are mainly determined by generative plants forming a tussock, irrespective of the climate and vegetation type. This is explained by higher competitiveness of generative plants, which results in a reduced vegetation density at small distances from them (25–50 cm). Within wider areas, plant distribution may be random due to uniformity of local conditions in microhabitats. The formation of distinct plant aggregations is accounted for by insufficient water supply and the intensity and type of anthropogenic impact. 相似文献
357.
A. A. Nikol’skii 《Russian Journal of Ecology》2009,40(7):529-536
Data published in the Handbook on the Climate of the Soviet Union have been used as a basis for estimating the temperature of the soil surrounding the nest chamber during the period of bobak
marmot hibernation. Interspecific differences in the temperature conditions of hibernation have been revealed. The hypothesis
is substantiated that the dates of hibernation onset in marmots depend on air temperature outside the burrow. 相似文献
358.
Uwayemi M. Sofowote Hayley Hung Ankit K. Rastogi John N. Westgate Yushan Su Ed Sverko Ivy D’Sa Pat Roach Phil Fellin Brian E. McCarry 《Atmospheric environment (Oxford, England : 1994)》2010,44(38):4919-4926
Polycyclic aromatic hydrocarbons (PAH) were measured in air samples at a remote air monitoring site established in the Yukon Territory, Canada as part of a global project (International Polar Year; IPY) to study the potential for atmospheric long-range transport of anthropogenic pollutants to the Arctic. Gas- and particle-phase PAH were collected in polyurethane foam plugs and on glass fibre filters respectively from August 2007 to October 2009. PAH concentrations were found to be highest in the winter months and lowest in summer. The gas/particle partitioning coefficients of 3–5 ringed PAH were computed and seasonal averages were compared. In the summer time, lower molecular mass PAH exhibited relatively higher partitioning into the particle-phase. This particle-phase partitioning led to the shallowest slopes being recorded during summer for the log–log correlation plots between the PAH partition coefficients and their sub-cooled vapour pressures. Air mass back trajectories suggest that local impacts may be more important during the summer time which is marked by increased camping activities at camping sites in the proximity of the sampling station. In conclusion, both summer and wintertime variations in PAH concentrations and gas/particle partitioning are considered to be source- and phototransformation-dependent rather than dependent on temperature-driven shifts in equilibrium partitioning. 相似文献
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