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1.
E. C. MORRIS 《Austral ecology》1992,17(2):141-154
Abstract Canopy damage to coastal native vegetation was surveyed at Norah, Wybung and Wamberal Heads and at Little Beach on the central New South Wales coast in 1987. This preceded the commissioning of an ocean sewerage outfall at Norah Head in 1988, but postdated the commissioning of other outfalls in the region. Damage to the canopy of shrub species was assessed at the whole-plant level using a visual score. The method of scoring for canopy damage was tested for repeatability between observers; the average deviation between means was 5%, and the maximum deviation was 10% of the value of the mean. Mean per cent canopy damage scored for shrubs of various species at these sites ranged from negligible to very heavy. Comparison between sites and aspects was limited to Banksia integrifolia. Stands of this species on the southern side of Norah and Wybung Heads had approximately double the canopy damage of those on the northern side; this difference was significant. To confirm the patterns of damage seen at the whole-canopy level, the fate of tagged shoots of B. integrifolia was followed for 4 months. These shoots were also more damaged on the southern side than on the northern side of the two headlands. Analysis of wind speed and direction at Norah Head showed that the southern side of the headland received substantially more strong winds (>21 km h?1) than the northern side. Airborne salt spray is known to be carried mainly in winds above this speed. In cases where 20 or more individuals of a species were found at a site, mathematical models relating the canopy damage of each plant to wind exposure, distance from the sea, and slope were investigated. Of 15 such cases, 13 significant models were found, with exposure being the major significant factor in accounting for variation in the data. Distance from the sea was only significant twice, and slope not at all. The pattern of damage, and its relationship to wind speed, direction, and exposure, are consistent with salt-spray being the major cause of leaf and shoot death at these sites. The sample sizes necessary to detect future changes of given magnitude to canopy damage were calculated. 相似文献
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Phytoplankton nutrient limitation in Colorado mountain lakes 总被引:12,自引:0,他引:12
SUMMARY. 1. Limiting nutrients for phytoplankton were studied experimentally in eight mountain lakes of central Colorado between May and November of 1984.
2. Five categories of phytoplankton limitation were identified: no limitation, N limitation, P limitation, concurrent limitation (stimulation only by simultaneous additions of N and P), and reciprocal limitation (stimulation by addition of either N or P). The phytoplankton communities of three lakes were primarily N-limited, one was primarily phosphorus-limited, and four showed primarily combined limitation (concurrent or reciprocal). Switching between categories of limitation was also observed within lakes. Nitrogen was the most frequently limiting nutrient; N, either alone or in combination with P, accounted for 79% of all observed instances of limitation.
3. Nine indices were tested for effectiveness in predicting phytoplankton limitation by N and P. The best indices for discriminating all limitations were ratios of dissolved inorganic N: total P (84% accuracy) and dissolved inorganic N:total dissolved P (80% accuracy). The effectiveness of these indices may be explained by the degree to which they represent N and P fractions actually available to the phytoplankton. 相似文献
2. Five categories of phytoplankton limitation were identified: no limitation, N limitation, P limitation, concurrent limitation (stimulation only by simultaneous additions of N and P), and reciprocal limitation (stimulation by addition of either N or P). The phytoplankton communities of three lakes were primarily N-limited, one was primarily phosphorus-limited, and four showed primarily combined limitation (concurrent or reciprocal). Switching between categories of limitation was also observed within lakes. Nitrogen was the most frequently limiting nutrient; N, either alone or in combination with P, accounted for 79% of all observed instances of limitation.
3. Nine indices were tested for effectiveness in predicting phytoplankton limitation by N and P. The best indices for discriminating all limitations were ratios of dissolved inorganic N: total P (84% accuracy) and dissolved inorganic N:total dissolved P (80% accuracy). The effectiveness of these indices may be explained by the degree to which they represent N and P fractions actually available to the phytoplankton. 相似文献
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NIGEL D. BOATMAN NICHOLAS W. BRICKLE JUSTIN D. HART TIM P. MILSOM ANTONY J. MORRIS ALISTAIR W. A. MURRAY KATHRYN A. MURRAY & PETER A. ROBERTSON 《Ibis》2004,146(S2):131-143
Indirect effects of pesticides, operating through the food chain, have been proposed as a possible causal factor in the decline of farmland bird species. To demonstrate such a link, evidence is needed of (1) an effect of food abundance on breeding performance or survival; (2) an effect of breeding performance or survival on population change; and (3) pesticide effects on food resources, sufficient to reduce breeding performance or survival, and hence to affect the rate of population change. Evidence under all three categories is only available for one species, the Grey Partridge Perdix perdix , although data showing effects of pesticides on food resources and relationships between food resources and breeding performance are also available for some other species. This paper reports on recent work investigating the effects of pesticides on Yellowhammer Emberiza citrinella and Skylark Alauda arvensis during the breeding season. The probability of brood reduction in Yellowhammer was affected by the proportion of the foraging area around the nest which was sprayed with insecticide. No significant effects of pesticides were recorded on Skylark chick condition or growth rate, but sample sizes were small. Invertebrate food abundance affected chick condition (Skylark) and the number of chicks fledging (Yellowhammer and Corn Bunting Miliaria calandra ; relationship for the latter derived from re-analysis of data from an earlier study). Other recent work is briefly reviewed and the current evidence for the indirect effects of pesticides is summarized. Significant knowledge gaps are identified and some of the issues involved in resolving these are discussed. 相似文献
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1. In most cases, the most important determinant of wetland vegetation is the water regime. Although water regime is usually described and managed at the scale of whole wetlands, the patterning of vegetation is likely to be determined by water regimes that are experienced at much finer spatial scales. In this study, we assess the significance of internal heterogeneity in water regimes and the role that this heterogeneity plays in vegetation patterning. 2. The effects of water regime on wetland plant species richness and vegetation structure were studied at Dowd Morass, a 1500 ha, Ramsar‐listed wetland in south‐eastern Australia that is topographically heterogeneous. Data on plant variables and water depth were collected along 45 (50 m) transects throughout the wetland and related to water regimes assigned individually for each transect. Wetland plants were assigned to plant functional groups (PFG) that describe the response of plants to the presence or absence of water at different life stages. 3. The classification of water depth data indicated four distinct water regimes in the wetland that were differentiated primarily by the duration of the dry period. Representatives of all PFGs co‐existed over small spatial scales where topographical variation was present, and the richness and cover of understorey species declined as transects became more deeply and permanently flooded. Some PFGs (e.g. amphibious fluctuation tolerator‐low growing and amphibious fluctuation responder‐morphologically plastic) were eliminated by extended periods of flooding, which increased the cover but not richness of submerged plants. Species richness and foliage projective cover declined as water regimes shifted from shallow and frequently exposed conditions to regimes typified by deeper and longer inundation. Cover of the structurally dominant woody species was compromised by deeply flooded conditions but vegetative regeneration occurred despite high water levels. 4. Internal topographical variation generates mosaics of water regimes at fine spatial scales that allow plant species with different water regime requirements to co‐exist over small distances. Deep water and an absence of dry periods result in decreased cover of plants and an overall loss of species richness in the understorey. Water regimes are described that promote regeneration and cover of structurally dominant taxa and increased species richness in the understorey. The study demonstrates a strong association between vegetation and the diverse water regimes that exist within a single wetland, a pattern that will be useful for modelling the effects of modified water regimes on wetland vegetation. 相似文献
6.
- 1.1. A spectrophotometric micro method for the analysis of the polyunsaturated fatty acids in 0.5–1 ml. of plasma has been described.
- 2.2. Comparisons based on polyunsaturated fatty acid analyses by the micro method were made with Delsal solvent and Bloor solvent for extraction of lipides from plasma.
- 3.3. The analyses by the micro method with Delsal solvent were found to be in better agreement with analyses of fatty acids obtained from large-scale extraction of plasma lipides. 相似文献
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Commercially available cell wall-degrading enzymes frequentlyused for protoplast isolation inhibited CO2 fixation and photosyntheticO2 evolution, and stimulated dark respiration by leaf tissueand isolated mesophyll protoplasts of Nicotiana tabacum L. andAntirrhinum majus L. They also depolarized the membrane potentialof cells of leaf tissue, inhibited uptake of 86Rb by tobaccoleaf tissue and isolated mesophyll protoplasts, and stimulated36CI uptake by tobacco leaf tissue. Where studied, these effectswere found to be reversible. The depolarization effect on Antirrhinumleaf cells occurred even when the enzyme preparations had beendenatured, dialysed, or desalted, and the effect was greatestin those fractions of the enzyme preparation which showed thehighest cellulase activity. Plasmolysis of tobacco leaf tissue inhibited photosyntheticO2 evolution, CO2 fixation, and 86Rb uptake to levels belowthose exhibited by isolated protoplasts in media of the samecomposition and osmolarity. The implications of these resultsfor work with leaf tissue and isolated protoplasts are discussed. 相似文献