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1.
Based on a series of short-term incubations involving the marine diatom Chaetoceros simplex (Bbsm), precultured in NH 4 + -, NO 3 - -and urea-limited continuous cultures at several dilution rates, we found that both the short-term specific rate of 14CO2 uptake and the amount of CO2 fixed after 8- and 16-min incubations were unaffected by enrichment with NH 4 + , urea, or NO 3 - when NH 4 + or urea were the preconditioning forms of N, but were slightly suppressed when the cells were first grown on NO 3 - . Similar enrichments in the dark, however, led to significant CO2 uptake under all conditions of NH 4 + enrichment and to similarly enhanced CO2 uptake, but only at high growth rates, when urea was the source of enrichment nitrogen. Our light results are contrary to some contemporary findings, but there does seem to be agreement that photosynthetic rates of rapidly growing phytoplankton will not be affected by exposure to pulses of nitrogen. Enhanced dark uptake, in contrast, appears to be characteristic of phytoplankton under all degrees of N limitation, and, as such, may be useful as an “all or nothing” index of the nitrogen status of natural waters. There is some indication that the index may be useful in determining both the form of and the degree of N limitation as well.  相似文献   

2.
We examined the impact of exposing natural populations of marine bacteria (from seawater collected near Woods Hole, Massachusetts, USA) to multiple nitrogen and carbon sources in a series of batch growth experiments conducted from 1989 through 1990. The substrate C:N ratio (C:Ns) was varied from 1.5:1 to 10:1 either with equal amounts of NH 4 + and different amino acids or an amino acid mixture, all supplemented with glucose to maintain the C:Ns ratio equal to that of the respective amino acid, or with combinations of glucose and NH 4 + alone. A common feature of the experiments involving amino acids was the concurrent uptake of NH 4 + and amino acids that persisted as long as a readily assimilable carbon source (glucose in our case) was taken up. There was no net regeneration of NH 4 + , even though catabolism of amino acids occurred. Regeneration of NH 4 + was evident only after glucose was completely utilized, which usually occurred at the end of exponential growth. The contribution of15NH 4 + to total nitrogen uptake by the end of exponential growth varied from ~60 to 80% when individual amino acids were present and down to ~24% when the amino acid mixture was added. These estimates are conservative because we did not account for possible isotope dilution effects resulting from amino acid catabolism. When NH 4 + and glucose were the sole nitrogen and carbon sources, there was a stoichiometric balance between glucose and NH 4 + uptake over a wide range of C:Ns ratios, leading to a constant bacterial biomass C:N ratio (C:NB) of ~4.5:1. As a result NH 4 + usage varied from 50% when the C:Ns ratio was 3.6:1, to 100% when the C:Ns ratio was 10:1. Gross growth efficiency varied from ~60% when NH 4 + plus glucose were added alone or with the amino acid mixture, to 47% when the individual amino acids were used in place of the mixture. It is thus evident that actively growing bacteria will act as sinks for nitrogen when a carbon source that can be assimilated easily is available to balance NH 4 + uptake, even when amino acids are available and are being co-metabolized.  相似文献   

3.
NH 4 + is typically an inhibitor to hydrogen production from organic wastewater by photo-bacteria. In this experiment, biohydrogen generation with wild-type anoxygenic phototrophic bacterium Rhodobacter sphaeroideswas found to be sensitive to NH 4 + due to the significant inhibition of NH 4 + to its nitrogenase. In order to avoid the inhibition of NH 4 + to biohydrogen generation by R. sphaeroides, a glutamine auxotrophic mutant R. sphaeroides AR-3 was obtained by mutagenizing with ethyl methane sulfonate. The AR-3 mutant could generate biohydrogen efficiently in the hydrogen production medium with a higher NH 4 + concentration, because the inhibition of NH 4 + to nitrogenase of AR-3 was released. Under suitable conditions, AR-3 effectively produced biohydrogen from tofu wastewater, which normally contains 50–60 mg/L NH 4 + , with an average generation rate of 14.2 mL/L·h. This generation rate was increased by more than 100% compared with that from wild-type R. sphaeroides.  相似文献   

4.
Field studies of whole natural phytoplankton communities from Knight Inlet, B. C., Canada and laboratory cultures of the diatom Skeletonema costatum indicate inorganic carbon fixation may be temporarily suppressed following 10 to 15% enrichment with NO 3 - or NH 4 + . (This effect is suggested to be due to competition between inorganic carbon and nitrogen for adenosine triphosphate (ATP), and is reduced when chlorophyll a is increased intracellularly after 6 to 8 h.) Results imply that the source of ATP for nitrate uptake is primarily from Photosystem I (cyclic photophosphorylation) in the presence of light. It would appear that a transient nutrient-adaptive response occurs upon addition of extracellular nitrogen.  相似文献   

5.
Employing a special batch technique which involves extremely low concentrations of the alga Selenastrum capricornutum, it is shown that a growth rate of ca. 75% of optimum growth occurs at a concentration of 0.02 g-at N(NH4 +) l-1. The low concentrations of this N-source in the oligotrophic parts of the oceans (ca. 0.06 g-at l-1) thus give rise to a borderline deficiency. As the half-saturation constant (K S) for growth was recorded at 0.05 g-at N(NO3 -), this ion can hardly be of much importance at the low concentrations present in these parts of the oceans. It is wrong to assert that N is the primary limiting nutrient. Phosphate also is found at concentrations giving rise to a borderline deficiency.  相似文献   

6.
The stability of H+, NH 4 + , and PO 4 3? ions in rainwater samples was in vestigated under different conditions cf storage and transport. Microbiological and physicochemical processes account for changes. Suppression of microbiological activities in deposition networks using conventional analyses may be achieved by adding AgCl-powder and by cooling to +4 °C.  相似文献   

7.
In this study, we collected particles with aerodynamic diameter ?2.5 μm (PM2.5) from three different public indoor places (a supermarket, a commercial office, and a university dining hall) in Jinan, a medium-sized city located in northern China. Water-soluble inorganic ions of PM2.5 and particle size distributions were also measured. Both indoor and outdoor PM2.5 levels (102.3–143.8 μg·m?3 and 160.2–301.3 μg·m?3, respectively) were substantially higher than the value recommended by the World Health Organization (25 μg·m?3), and outdoor sources were found to be the major contributors to indoor pollutants. Diurnal particle number size distributions were different, while the maximum volume concentrations all appeared to be approximately 300 nm in the three indoor locations. Concentrations of indoor and outdoor PM2.5 were shown to exhibit the same variation trends for the supermarket and dining hall. For the office, PM2.5 concentrations during nighttime were observed to decrease sharply. Among others, SO 4 2? , NH 4 + and NO 3 ? were found to be the dominant water-soluble ions of both indoor and outdoor particles. Concentrations of NO 3 ? in the supermarket and office during the daytime were observed to decrease sharply, which might be attributed to the fact that the indoor temperature was much higher than the outdoor temperature. In addition, domestic activities such as cleaning, water usage, cooking, and smoking also played roles in degraded indoor air quality. However, the results obtained here might be negatively impacted by the small number of samples and short sampling durations.  相似文献   

8.
When pieces of the staghorn coral Acropora acuminata are incubated with 14C-urea, the label is incorporated into skeletal carbonate. Incorporation of this label differs from that of H14CO 3 - , suggesting urea is not immediately hydrolysed to provide a further source of HCO 3 - . The effects of certain organic substrates upon calcification suggest the ornithine cycle is involved. Citrulline, an ornithine cycle intermediate, is found in high concentrations in the tissues of hermatypic corals. Urea, allantoins, NH3 and arginine are also present. These compounds are barely detectable in zooxanthellae or an ahermatypic coral. The allantoins may be present as calcium salts. It is suggested that allantoins are the medium by which Ca2+ and CO2 are transported to sites of calcification. Hydrolysis of urea, formed by breakdown of allantoins, yields CO2 and NH3. The NH3 may neutralise protons formed during precipitation of CaCO3 and bring about their removal from sites of calcification. As well as providing urea, the ornithine cycle may also be involved in the removal of NH3 from sites of calcification.  相似文献   

9.
Activated sludge was monthly sampled from a saline sewage treatment plant of Hong Kong (China) during June 2007 to May 2008 to analyze the microbial community shift along with environmental variations using denaturing gradient gel electrophoresis of polymerase chain reaction amplified 16S rDNA fragments. Environmental changes resulted into a seasonal microbial community shift characterized by alterations in species number and abundance in the sewage treatment plant. Correspondence analysis and cluster analysis on community structure profile showed that the 12 monthly samples fell into four groups, which is in accordance with season changing in Hong Kong. Canonical correspondence analysis revealed that PO 4 3t- -P and NH 4 + -N posed more significant effects on community structure than total phosphorus and total nitrogen, respectively. Compared with sludge retention time, influent total phosphorus had an inverse effect on the community structure shift, and chemical oxygen demand and NH 4 + -N showed a similar effects. Results of this study may contribute to the development of new knowledge involving the microbial community shift in sewage treatment plants.  相似文献   

10.
In this paper, the effect of pH on biological degradation of Microcystis aeruginosa by alga-lysing bacteria in laboratory-scale sequencing batch biofilm reactors (SBBRs) was investigated. After 10 d filming with waste activated sludge, the biological film could be formed, and the bioreactors in which laid polyolefin resin filler were used to treat algal culture. By comparing the removal efficiency of chlorophyll a at different aerobic time, the optimum time was determined as 5 h. Under pH 6.5, 7.5, and 8.5 conditions, the removal rates of Microcystis aeruginosa were respectively 75.9%, 83.6%, and 78.3% (in term of chlorophyll a), and that of Chemical Oxygen Demand (CODMn) were 30.6%, 35.8%, and 33.5%. While the removal efficiencies of ammonia nitrogen (NH 4 + - N) were all 100%. It was observed that the sequence of the removal efficiencies of algae, NH 4 + - N and organic matter were pH 7.5>pH 8.5>pH 6.5. The results showed that the dominant alga-lysing bacteria in the SBBRs was strain HM-01, which was identified as Bacillus sp. by Polymerase Chain Reaction (PCR) amplification of the 16S rRNA gene, Basic Local Alignment Search Tool (BLAST) analysis, and comparison with sequences in the GenBank nucleotide database. The algicidal activated substance which HM-01 strain excreted could withstand high temperature and pressure, also had better hydrophily and stronger polarity.  相似文献   

11.
Inorganic nitrogen metabolism inUlva rigida illuminated with blue light   总被引:2,自引:0,他引:2  
A. Corzo  F. X. Niell 《Marine Biology》1992,112(2):223-228
Inorganic nitrogen metabolism in blue light was studied for the green algaUlva rigida C. Agardh collected in the south of Spain (Punta Carnero, Algeciras) in the winter of 1987. NH4 + has been reported to inhibit NO3 - uptake; however,U. rigida showed a net NO3 - uptake even when the NH4 + concentration of the external medium was three or four times greater than the concentration of NO3 -. NO3 - uptake rates were similar in both darkness and in blue light of various photon fluence rates (PFR) ranging from 17 to 160 mol m-2 s-1. Since NO3 - uptake is an active mechanism involving the consumption of ATP, respiratory metabolism can provide enough ATP to maintain the energetic requirement of NO3 - transport even in darkness. In contrast, NO3 - reduction inU. rigida was highly dependent on the net photosynthetic rate. After 7 h in blue light, intracellular NO3 - concentrations ([NO3 -] i ) were higher in specimens exposed to intensities below the light compensation point (LCP) than in those incubated at a PFR above the LCP. When PFR is below the light compensation point, NO3 - reduction is low, probably because all the NADH produced by the cells is oxidized in the respiratory chain in order to produce ATP to maintain a steady NO3 - transport rate. The total nitrogen (TN) and carbon (TC) contents decreased from darkness to 33 mol m-2 s-1 in blue light. In this range, catabolic processes prevailed over anabolic ones. In contrast, increases in TN and TC contents were observed above the light compensation point. The C : N ratio increased with light intensity, reaching a stable value of 17 at 78 mol m-2 s-1 in blue light. Intracellular NO3 - concentration and NO3 - reduction appear to be directly controlled by light intensity. This external control of [NO3 -]i and the small capacity ofU. rigida to retain incorporated NO3 -, NO2 - and NH4 + ions may explain its nitrophilic character.  相似文献   

12.
Sulfamethoxazole (SMX) and trimethoprim (TMP) are two critical sulfonamide antibiotics with enhanced persistency that are commonly found in wastewater treatment plants. Recently, more scholars have showed interests in how SMX and TMP antibiotics are biodegraded, which is seldom reported previously. Novel artificial composite soil treatment systems were designed to allow biodegradation to effectively remove adsorbed SMX and TMP from the surface of clay ceramsites. A synergy between sorption and biodegradation improves the removal of SMX and TMP. One highly efficient SMX and TMP degrading bacteria strain, Bacillus subtilis, was isolated from column reactors. In the removal process, this bacteria degrade SMX and TMP to NH 4 + , and then further convert NH 4 + to NO 3 in a continuous process. Microbial adaptation time was longer for SMX degradation than for TMP, and SMX was also able to be degraded in aerobic conditions. Importantly, the artificial composite soil treatment system is suitable for application in practical engineering.
  相似文献   

13.
Michaelis-Menten uptake kinetics were observed at all light intensities. With constant illumination, the Vmax and K1 in nitrate uptake over the natural light intensity range of 0 to 2000 E were 0.343 g-at NO3–N(g)-1 at protein-N h-1 and 26 E, respectively. Nitrate uptake was inhibited at higher light intensities. The Ks for nitrate uptake did not vary as a function of light intensity remaining relatively constant at 0.62 g-at NO3–N 1-1. With intermittent illumination, the Vmzx for light intensity in nitrate uptake over a light intensity range of 0 to 5000 E was 0.341 g-at NO3–N(g)-1-at protein-N h-1. No inhibition of nitrate uptake was observed at higher than natural light intensities. Chaetoceros curvisetus will probably never experience light inhibition of nitrate uptake under natural conditions.  相似文献   

14.
The dissolved organic nitrogen (DON) pool in marine waters contains a diverse mixture of compounds. It is therefore difficult to accurately estimate planktonic uptake of DON using the limited number of radiolabeled compounds commercially available. We describe a method to estimate DON uptake rates using 15N-labeled DON recently released from phytoplankton. To make 15N-labeled DON, we incubated surface water with 15NH 4 + and then isolated the DON, including any recently released DO15N, with ion retardation resin. This DON was then added to a freshly collected water sample from the same environment to quantify the rate of DON uptake. The technique was applied to investigate rates of DON uptake relative to inorganic nitrogen in the mesohaline Chesapeake Bay during May 1990 and August 1991. The May experiment took place after the spring bloom, and rates of DON uptake [ranging from 0.31 to 0.53 g-atom (g-at) Nl-1 h-1] often exceeded rates of NH 4 + and NO 3 - uptake combined. The rates of DON uptake at this time were higher than estimated bacterial productivity and were not correlated with bacterial abundance or bacterial productivity. They were, however, correlated with rates of NO 3 - uptake. In May, we estimate that only 7 to 32% of DON uptake was a result of urea utilization. In contrast, in August, when regenerated nutrients predominate in Chesapeake Bay, rates of DON uptake (ranging from 0.14 to 0.51 g-atom Nl-1 h-1) were an average of 50% of the observed rates of NH 4 + uptake. Consistent with the May experiment, rates of DON uptake were not correlated with bacterial production. A sizable fraction of DON uptake, however, appeared to be due to urea utilization; rates of urea uptake, measured independently, were equivalent to an average of 74% of the measured rates of DON uptake. These findings suggest that, during both periods of study, at least a fraction of the measured DON uptake may have been due to utilization by phytoplankton.  相似文献   

15.
Metabolism of two abundant echinoderm species constituting 99.6% of the epibenthic megafauna in the Santa Catalina Basin, off southern California, USA was measured at 1 300 m during the 1979 “Bathyal Expedition”. Specimens of the ophiuroid Ophiophthalmus normani and the holothurian Scotoplanes globosa, collected by the submersible “Alvin”, were individually placed in respirometers, and measured in situ for O2 consumption and ammonium excretion rates. For O. normani, weight-specific O2 consumption rates decreased with increasing weight and were of comparable magnitude to rates of deep-sea and shallow-water ophiuroids; excretion rates were highly variable. Population O2 consumption and excretion rates for O. normani (estimated from size-frequency distribution, abundance, and rate regression equations) were 1 129.28 μl O2 m-2 h-1 and 27.30 nmol NH 4 + m-2 h-1. Weight-specific O2 consumption and ammonium excretion rates of S. globosa decreased with increasing weight and were of comparable magnitude to rases of shallow-water holothurians. Population O2 constimption and excretion rates of S. globosa were 1.38 μl O2 m-2 h-1 and 4.86 nmol NH 4 + m-2 h-1. Combined population O2 consumption rates for O. normani and S. globosa are of comparable magnitude to that of the sediment community and plankton in the benthic boundary layer (sediment and overlying 50 m water column) of the Santa Catalina Basin.  相似文献   

16.
The kinetic response of ammonium- or silicate-limited and ammonium- or silicatestarved populations of Chaetoceros debilis, Skeletonema costatum, and Thalassiosira gravida was determined by a single addition of the limiting nutrient to a steady-state culture and subsequent monitoring of the nutrient disappearance of the limiting and non-limiting nutrients at frequent time intervals. The kinetic response of nonlimited (nutrient) populations of these three species was also determined. Three distinct modes of the uptake of the limiting nutrient were observed for ammonium-or silicate-limited populations of these three species, surge uptake (V s ), internally (cellular) controlled uptake (V i ), and externally (ambient limiting nutrient concentration) controlled uptake (V e ). Non-limited populations did not exhibit the three distinct segments of uptake, V s , V i and V e . Estimates of the maximal uptake rate (V max) and the Michaelis constant (K s ) were obtained from nutrient-limited populations during the V e segment of the uptake curve. Pooled values of V e for the three ammonium-limited populations yielded V max and K s estimates of 0.16 h-1 and 0.5 g-at NH4–N l-1. Kinetic data derived from the V e segment of the uptake curve for silicate-limited populations yielded different values of V max and K s for each of the three species. In a number of parameters that were measured, T. gravida was clearly different from C. debilis and S. costatum and its recovery from nutrient starvation was the slowest. Recovery of all species from silicate limitation or starvation was slower than from ammonium limitation or starvation. Ammonium-starved populations maintained a maximal uptake rate at a substrate concentration an order of magnitude lower (0.1 g-at NH4–N l-1) than that observed for NH4-limited populations (1.0 g-at NH4–N l-1). Adaptation to the severity of the nutrient limitation occurred as changes in the magnitude of cellular characteristics, such as short-term uptake potential (V s ) and affinity for the substrate (K s ). The consequence of these results are discussed in terms of another possible mechanism to explain changes in species composition and succession in nutrient-depleted environments.Contribution No. 944 from the Department of Oceanography, University of Washington, Seattle, Washington 98195, USA.  相似文献   

17.
Acute toxicity of ammonia was determined for cultured larval, postlarval, and wild adult lobsters (Homarus americanus) in 1988. Ammonia tolerance was found to increase with ontogenetic development. Based on 96-h LC50 values of 58 mg l–1 NH4 + + NH3 l–1 seawater (0.72 mg NH3 l–1) for Stage I larvae, 87 mg NH4 + + NH3 l–1 (1.7 mg NH3 l–1) for Stage II larvae, 125 mg NH4 + + NH3 l–1 (2.13 mg NH3) for Stage III larvae, 144 mg NH4 + + NH3 l–1 (2.36 mg NH3 l–1) for Stage IV postlarvae, 377 mg NH4 + + NH3 l–1 (5.12 mg NH3 l–1) for adult lobsters at 5°C and 219 mg NH4 + + NH3 l–1 (3.25 mg NH3 l–1) for adult lobsters at 20°C, recommendations for safe levels of total ammonia and un-ionized ammonia were calculated using an application factor of 0.1. Effects of ammonia on osmoregulatory capacity were studied on postlarvae and adults. Ability of postlarvae and adults to hyper-regulate in low-salinity media decreased after exposure to ammonia. In postlarval lobsters, osmoregulatory capacity was significantly affected in ammonia concentrations exceeding 32 mg l–1. Osmoregulatory capacity in adult lobsters (5 and 20°C) was affected at 150 mg l–1. In postlarval lobsters, a minimum exposure time of 12 h was required to impair osmoregulatory capacity. The decrease in hemolymph osmotic pressure was caused by lower hemolymph sodium concentrations. The presence of ammonia in the external medium could markedly affect the Na+/NH4 + transport mechanism by permanently, temporarily, or partially impairing the transport sites for sodium.  相似文献   

18.
The dissolved nitrogen pool in aquatic systems is comprised of many different nitrogen forms, both inorganic and organic. Interaction among these nitrogen forms at the level of uptake and enzyme activity is, with the exception of NH4+ and NO3, not completely understood. Nitrate reductase (NR) and urease (UA) activities in the marine diatom Thalassiosira weissflogii (Grunow) Fryxell et Hasle were measured in NO3, NH4+, and urea-sufficient cultures before and after challenge additions of NH4+, NO3, and urea in a factorial design. NR and UA were constitutively expressed during growth on NO3, NH4+, and urea. Growth on NH4+ or urea resulted in NR activities that were <10% of the activity observed in the NO3-grown culture, while growth on NO3 resulted in UA values that were ~35% of the activities during growth on either NH4+ or urea. The addition of NH4+ or urea to NO3-grown cultures resulted in an immediate decrease in cellular NO3 uptake rate, which was not mirrored by an immediate repression of in vitro NR activity; however, the diel peak in NR was suppressed in these challenge experiments. The addition of NO3 or NH4+ to urea-grown cultures resulted in non-significant decreases in the urea uptake rate. UA was not impacted by NO3 addition, but NH4+ addition significantly decreased UA throughout the experiment. These studies demonstrate that the uptake and assimilation of NO3 and urea may not be subject to the same internal feedback mechanism when challenged with other nitrogen substrates.Communicated by J.P. Grassle, New Brunswick  相似文献   

19.
Microcosms containing different densities of Corophium volutator, ranging from 0 to 6000 ind m-2, were incubated in a flow-through system. Benthic fluxes of CO2, O2, NO3 - and NH4 + were measured regularly. Thirteen days after setup the microcosms were sacrificed and sediment characteristics, pore water NO3 -, NH4 + and exchangeable NH4 + concentrations, and potential nitrification activity were measured. The presence of C. volutator increased overall mineralization processes due to burrow construction and irrigation. The amphipods increased the ratio CO2/O2 fluxes from 0.73 to 0.86 in microcosms inhabited by 0 and 6000 ind m-2, respectively. Burrow ventilation removed NH4 + from the sediment, which was nitrified in the oxic layer and transported NO3 - to the burrow sediment, where denitrification potential was enhanced. Nitrification and total denitrification rates (denitrification of NO3 - coming from the overlying water and of NO3 - generated within the sediment) were calculated and discussed. Bioturbation by C. volutator increased both nitrification and denitrification, but denitrification was stimulated more than nitrification. Denitrification of NO3 - coming from the overlying water was stimulated 1.2- and 1.7-fold in microcosms containing 3000 and 6000 ind m-2 relative to control microcosms. The presence of C. volutator (6000 ind m-2) stimulated nitrogen removal from the system, as dinitrogen, 1.5-fold relative to non-bioturbated microcosms. C. volutator individuals used in our study were collected from Norsminde Fjord, Denmark, in 1990.  相似文献   

20.
Nitrogen uptake by the kelp Ecklonia maxima Osbeck and phytoplankton was examined under different conditions of nutrient availability in a kelp bed off the Cape of Good Hope by measuring nutrient depletion in large plastic bags by the kelp and 15N uptake by phytoplankton. E. maxima took up nitrate and ammonia, but not urea, and showed only a weak preference for reduced nitrogen. Phytoplankton absorbed all three forms of nitrogen available, with a preference for ammonia and urea. Ambient nitrate concentration exhibited a marked and rapid decrease with northerly winds and an increase in response to offshore southerly winds. Nitrogen uptake by E. maxima was linearly related to ambient concentration and did not saturate even at nitrate concentrations >20g-at N l-1, resulting in a significantly higher tissue nitrogen content under upwelling conditions. Nitrate imported by upwelling was the chief source of nitrogen utilised within the kelp bed. Locally regenerated nitrogen (ammonia and urea) was calculated to contribute only ca 4% of total nitrogen uptake during upwelling and 30% during the relaxation or downwelling phase.  相似文献   

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