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981.
982.
The combined consequences of the multi‐stressors of pH and nutrient availability upon the growth of a marine diatom were investigated. Thalassiosira weissflogii was grown in N‐ or P‐limited batch culture in sealed systems, with pH commencing at 8.2 (“extant” conditions) or 7.6 (“ocean acidification” [OA] conditions), and then pH was allowed to either drift with growth, or was held fixed. Results indicated that within the pH range tested, the stability of environmental pH rather than its value (i.e., OA vs. extant) fundamentally influenced biomass accumul‐ation and C:N:P stoichiometry. Despite large changes in total alkalinity in the fixed pH systems, final biomass production was consistently greater in these systems than that in drifting pH systems. In drift systems, pH increased to exceed pH 9.5, a level of alkalinity that was inhibitory to growth. No statis‐tically significant differences between pH treatments were measured for N:C, P:C or N:P ratios during nutrient‐replete growth, although the diatom expre‐ssed greater plasticity in P:C and N:P ratios than in N:C during this growth phase. During nutrient‐deplete conditions, the capacity for uncoupled carbon fixa‐tion at fixed pH was considerably greater than that measured in drift pH systems, leading to strong contrasts in C:N:P stoichiometry between these treatments. Whether environmental pH was stable or drifted directly influenced the extent of physiological stress. In contrast, few distinctions could be drawn between “extant” versus “OA” conditions for cell physiology.  相似文献   
983.
The transformation of natural land for agricultural and urban use has displaced baboons from large parts of their historical distribution. Abundant resources within transformed areas, however, continue to attract baboons back into these human-dominated areas resulting in chronic levels of conflict throughout much of Africa. In the city of Cape Town, chacma baboons (Papio ursinus) have been raiding human-derived foods for over 200 years. In the last 20 years, the management of this conflict has shifted from predominantly lethal to nonlethal methods. In this study, we assess the success of field rangers to deter baboons from urban areas and investigate whether such management affects the diet and activity patterns of baboons. We opportunistically sampled baboon behavior and movement when field rangers were temporarily absent from managed troops in 2008. We also compared the intensity of baboon management by comparing one troop on days when the field rangers aggressively herded the troop away from the urban edge versus passively monitored them in 2004/2005. Our results reveal that when field rangers were absent, the two troops spent 70% and 80% of their time within the urban edge compared to 3% and 19% when they were present. Both troops also consumed more human-derived foods when field rangers were absent. There was no significant change in the activity budget or daily distance traveled for either troop with and without field rangers. The intensity of herding did have an impact on baboon activity and high levels of herding significantly reduced time spent feeding and increased time spent traveling, socializing, and resting. Habitat use and dietary composition did not differ between high- and low-herding days. Our results suggest that field rangers are a successful nonlethal method for reducing spatial overlap between baboons and urban areas but that intensive, unsystematic herding of the troop does have measurable impacts on behavior and should be prevented.  相似文献   
984.
Rodenkirchen  H. 《Plant and Soil》1995,168(1):383-390
The effects of fertilization and amelioration treatments on some nutrient pools and fluxes of ground vegetation in mature pine and spruce stands on acid soils in South Germany are described. In N-limited pine forests with moderate canopy density and with Deschampsia flexuosa an additional N-accumulation in biomass of 20–40 kg ha-1 occurred 3 years after pure N-fertilization. The N, P, K-cycling through ground vegetation was stimulated more than 10 years by a combined N + CaCO3 + P treatment leading toa shift in dominance from cryptogams and Ericaceae towards Deschampsia flexuosa and ruderal species like Epilobium angustifolium. The effect of a lupine treatment (combined with initial soil preparation, liming and P supply) was far stronger than the effect of the other experimental procedures. But the fertilizer and amelioration effects on the herb layer of pine forests tended to decline after two decades for different reasons.The shade-tolerant ground vegetation in a nitrogen-saturated spruce forest was not able to prevent heavy additional nitrate losses from upper mineral soil after dolomitic liming. But the Ca, Mg and K fluxes through ground vegetation were strongly elevated in the third year after treatment.  相似文献   
985.
Phytoextraction of excess nutrients by crops in soils with a long history of manure application may be a viable option for reducing the nutrient levels. This greenhouse study examined the effectiveness of six growth cycles (40 d each) of barley, canola, corn, oat, pea, soybean, and triticale at extracting nitrogen (N) and phosphorus (P) from a Dark Brown Chernozem that had received 180 Mg ha?1 (wet wt.) of beef cattle feedlot manure annually for 38 years. Moisture content during the study was maintained at either 100% or 50% soil field capacity (SFC). Repeated cropping resulted in an overall decrease in dry matter yield (DMY). The decrease in N and P uptake relative to Cycle 1 was fastest for the cereal grains and less pronounced for the two legumes. However, cumulative N uptake values were significantly greater for corn than the other crops under both moisture regimes. The reduction in soil N was greater under the 100% than the 50% SFC. These results indicate that repeated cropping can be a useful management practice for reducing N and P levels in a heavily manured soil. The extent of reduction will be greater for crops with high biomass production under adequate moisture supply.  相似文献   
986.
《Cell》2022,185(18):3441-3456.e19
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987.
Theories and methods on plant nutrition and growth   总被引:19,自引:0,他引:19  
A theory comprising two basic concepts relating nutrition and growth is presented. The first concept is a nutrient flux model and is based upon studies of plants at constant internal nutrient concentrations, where a formal mathematical derivation shows that the relative uptake rate (RU) and the relative growth rate (RG) are equal. Deviations from equality are results of experimental insufficiencies and errors. The second concept is based on the observation that RG is linearly related to the internal nutrient concentration. The slope represents nutrient productivity (Pn), an important parameter expressing growth rate per unit of nutrient. Light and the plant genome, for example, influence the value of the proportionality factor, Pn, but not the formal relationship between the internal nutrient concentration and RG Not only the theory itself but many results and conclusions are very different from those obtained with traditional methods. In experiments where RU was controlled during the exponential period of growth, the relationships between treatment (the relative addition rate, RA), nutrient uptake (RU) and growth (RG) were reproduced with extremely low variability. In agreement with theory, internal nutrient concentration and RG remained stable over time (steady-state). An extension of the theory is based upon the empirical assumption that after exponential growth, self-shading and ageing reduce Pn in proportion to biomass. This assumption has been successfully applied in predicting growth of forest stands, but the nature of the growth reduction is little understood. The generalized model has few parameters and can easily be rewritten to suit different experimental aims, for example to establish reference values and to model changes in soil fertility. Further extension and understanding of the model and different interpretations of the parameters are discussed.  相似文献   
988.
The movement of carbon and nitrogen from Amphiscolops langerhansi , fed on 14C- and 15N-labelled Tigriopus japonica , to its algal endosymbiont Amphidinium klebsii is examined in a series of experiments designed to detect both sources in the host and utilization by the symbiont. Data for carbon indicate that.1. klebsii utilizes host carbon primarily as respired CO2 taken up in photosynthesis. Data for nitrogen suggest that translocation takes place primarily through the excretion of ammonia, and that uptake and incorporation by the alga is light-dependent.  相似文献   
989.

A controlled field experiment was performed in which the microbiology and geochemistry of clay‐rich fluvial‐deltaic sediments were characterized both before and after nutrient injection into a shallow well. Acetate addition (with nitrogen and phosphate) initially increased the heterotrophic bacteria population in the groundwater within 21 days after nutrient addition. Consumption of oxygen and injected nutrient resulted in an expected stimulation of copiotrophic bacterial growth (31–48 days), then a noticeable “trough phase”; reflecting minimal or no bacterial growth followed by a secondary peak reflecting another bacterial population growth surge (62–85 days). This secondary surge was apparently supported by the nutrients generated by the decomposing biomass (initial population peak), and by oxygen replenishment supplied by continual ground water flow. During the intervening trough phase, bacterial counts by most‐probable‐number analysis of soil samples indicated that the denitrifying population increased to a greater degree than the remainder of the heterotrophic population. An increase in methane gas was detected in the head space of water samples collected during the trough phase, suggesting an increase in bacterial methanogenesis. There was no evidence of a concomitant increase in bacterial sulfate‐reducing activity. This rapid progression from aerobic to microaerophilic and anaerobic growth probably resulted from the microbial biodiversity present in clay‐rich sediments, which in turn is related to the development of microhabitats. These microhabitats developed because of the hydrogeologic character of the clay‐rich sediments in which flow is controlled by macropores while fluid in the clay matrix (micropores) is relatively isolated from the groundwater in the macropores.  相似文献   
990.
The effect of rain on foliage elemental composition, especially B, was assessed using samples of wheat collected at three harvests from a field trial conducted in soil containing excessive levels of B. Moderate rainfall substantially decreased both the B concentration and content of whole shoots and young leaves. The change in B concentration due to rain suggests that foliar analysis is unreliable for diagnosing B toxicity. For the other elements examined (Ca, Cu, Mg, Mn, Mg, P, S, Zn), rainfall had little effect.  相似文献   
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