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The distribution and morphology of Fucus distichus in an estuarine environment and the effect of selected ions on the uptake of inorganic carbon and nitrate

机译:河口环境中墨角藻的分布和形态及选择离子对无机碳和硝酸盐吸收的影响

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摘要

The morphology, distribution, and habitat of dwarf and normal forms of Fucus distichus in Nehalem Bay were examined. The dwarf form lacked the holdfast and sexual structures of the normal form and was more highly branched. Examples of the dwarf form were found growing as outgrowths of fragmented normal forms indicating that both forms are the same species. The normal form occurred attached to rocks near the mouth of the bay in waters of oceanic salinity. The dwarf form occurred as a free-living form in the salt marshes and in waters of lower salinity. These observations suggested that the occurrence of the dwarf form is related to salinity.Nutrient uptake studies with nitrate and carbon demonstrated that both forms have similar responses to changes in salinity. The dwarf form however, was better adaptated to the lower salinities than the normal form. Both forms showed a drop in carbon uptake and a slight rise in nitrate uptake as salinity was decreased, but the dwarf form maintained near maximal carbon uptake rates to a much lower salinity.It was shown that carbon uptake is sensitive to sodium and potassium ions, and nitrate uptake is sensitive to potassium ions. Reducing the sodium ion concentration by changing the medium composition decreased the carbon uptake rate. This rate was reduced further by the addition of potassium ion. The addition of sodium and potassium specific ionophores to the medium also depressed the uptake rate of carbon. Nitrate uptake was relatively unaffected by decreased sodium concentrations, but was drastically reduced by elevated potassium levels. The potassium specific ionophore valinomycin also produced a significant drop in the nitrate uptake rate. These data suggested that chemical potentials for sodium and potassium drive the uptake of carbon and that potassium is involved in the uptake of nitrate in F. distichus.
机译:研究了Nehalem湾矮小岩藻和正常形态的形态,分布和生境。矮人形态缺乏正常形态的保持力和性结构,并且具有更高的分支性。发现矮人形态的例子随着破碎的正常形态的生长而增长,表明两种形态是同一物种。正常形态发生在海洋盐度水域中,附着在海湾口附近的岩石上。矮小形式以自由活动的形式出现在盐沼和盐度较低的水中。这些观察结果表明矮化形式的发生与盐度有关。硝酸盐和碳对养分的吸收研究表明,两种形式对盐度的变化具有相似的响应。但是,矮型比正常型更好地适应了较低的盐度。两种形式均显示出随着盐分降低,碳吸收量减少而硝酸盐吸收量略有增加,但矮化形式保持接近最大碳吸收率,但盐度要低得多,这表明碳吸收对钠和钾离子敏感,硝酸盐的吸收对钾离子敏感。通过改变培养基成分降低钠离子浓度可降低碳吸收速率。通过添加钾离子进一步降低了该速率。向培养基中添加钠和钾特异性离子载体也降低了碳的吸收速率。硝酸盐的吸收相对不受钠浓度降低的影响,但因钾水平升高而大大降低。钾特异性离子载体缬氨霉素也使硝酸盐吸收速率显着下降。这些数据表明钠和钾的化学势能驱动碳的吸收,钾参与了镰刀菌中硝酸盐的吸收。

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    Robinson Dale Howard;

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  • 年度 1983
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