Bradley P M, Morris J T
Marine Science Program, University of South Carolina, 29208, Columbia, SC, USA.
Department of Biological Sciences, University of South Carolina, 29208, Columbia, SC, USA.
Oecologia. 1991 Jan;85(3):375-380. doi: 10.1007/BF00320613.
The effects of short- and long-term exposure to a range in concentration of sea salts on the kinetics of NH uptake by Spartina alterniflora were examined in a laboratory culture experiment. Long-term exposure to increasing salinity up to 50 g/L resulted in a progressive increase in the apparent K but did not significantly affect V (mean V=4.23±1.97 μmole·g·h). The apparent K increased in a nonlinear fashion from a mean of 2.66±1.10 μmole/L at a salinity of 5 g/L to a mean of 17.56±4.10 μmole/L at a salinity of 50 g/L. These results suggest that the long-term effect of exposure to total salt concentrations within the range 5-50 g/L was a competitive inhibition of NH uptake in S. alterniflora. No significant NH uptake was observed in S. alterniflora exposed to 65 g/L sea salts. Short-term exposure to rapid changes in salinity significantly affected both V and K. Reduction of solution salinity from 35 to 5 g/L did not change V but reduced K by 71%. However, exposing plants grown at 5 g/L salinity to 35 resulted in an decrease in V of approximately 50%. Exposure of plants grown at 35 g/L to a total sea salt concentration of 50 g/L for 48h completely inhibited uptake of NH . For both experiments, increasing salinity led to an increase in the apparent K similar to that found in response to long-term exposure. Our data are consistent with a conceptual model of changes in the productivity of S. alterniflora in the salt marsh as a function of environmental modification of NH uptake kinetics.
在一项实验室培养实验中,研究了短期和长期暴露于不同浓度海盐对互花米草吸收铵动力学的影响。长期暴露于盐度增加至50 g/L的环境中,表观米氏常数(K)逐渐增加,但对最大吸收速率(V)没有显著影响(平均V = 4.23±1.97 μmol·g·h)。表观K以非线性方式增加,从盐度为5 g/L时的平均2.66±1.10 μmol/L增加到盐度为50 g/L时的平均17.56±4.10 μmol/L。这些结果表明,长期暴露于5-50 g/L范围内的总盐浓度对互花米草吸收铵具有竞争性抑制作用。在暴露于65 g/L海盐的互花米草中未观察到显著的铵吸收。短期暴露于盐度的快速变化对V和K均有显著影响。将溶液盐度从35 g/L降低到5 g/L不会改变V,但K降低了71%。然而,将生长在5 g/L盐度下的植物暴露于35 g/L盐度会导致V降低约50%。将生长在35 g/L盐度下的植物暴露于总海盐浓度为50 g/L的环境中48小时,完全抑制了铵的吸收。对于这两个实验,盐度增加导致表观K增加,这与长期暴露的结果相似。我们的数据与一个概念模型一致,即盐沼中互花米草生产力的变化是铵吸收动力学环境改变的函数。