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Effects of Air Contact on Growth Inorganic Carbon Sources and Nitrogen Uptake by an Amphibious Freshwater Macrophyte.

机译:空气接触对两栖淡水大型植物的生长无机碳源和氮吸收的影响。

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摘要

Callitriche cophocarpa Sendtner is a heterophyllous amphibious macrophyte that produces apical rosettes of floating leaves. The importance of air contact for inorganic carbon and N uptake and for growth was investigated. Plants were grown with the floating rosette in contact with air of various humidities (10, 50, and >90% relative humidity) and with the submerged parts in N-free water at 350 [mu]M free CO2 and the roots in sediment with low or high NH3-N content. Humidity greatly affected the transpiration rate, whereas growth rate and N content were unaffected and were comparable to values measured for fully submerged shoots. Air contact had, however, a significant impact on growth when the free CO2 concentration in the water was low. Thus, the growth rate of shoots with air contact was about 3 times faster than the rate of fully submerged shoots when grown at air-equilibrium concentration of dissolved free CO2 in the water (16 [mu]M). This difference decreased with increased dissolved free CO2 concentration in the water, and the two shoot types grew at the same rate when the submerged shoots received >350 [mu]M free CO2. The quantitative importance of the floating rosette for total carbon uptake declined also with decreased ratio of floating rosette to total shoot weight. It is concluded that floating rosettes can enhance the inorganic carbon uptake of Callitriche. In contrast, air contact is of minor importance for nutrient transport.
机译:Callitriche cophocarpa Sendtner是一种杂种两栖大型植物,可产生漂浮叶的顶端花环。研究了空气接触对无机碳和氮吸收以及生长的重要性。使植物漂浮的玫瑰花结与各种湿度(相对湿度为10%,50%和> 90%的空气)接触,然后将其浸没在无N水中的游离二氧化碳浓度为350μM的植物中,根部沉积在土壤中。 NH3-N含量低或高。湿度极大地影响了蒸腾速率,而生长速率和氮含量未受影响,与完全淹没枝条的测量值相当。但是,当水中的游离CO2浓度低时,空气接触会对生长产生重大影响。因此,当在空气平衡浓度的水中溶解的游离CO 2(16μM)下生长时,与空气接触的枝条的生长速率比完全淹没的枝条的生长速率快约3倍。随着水中溶解的游离CO 2浓度的增加,该差异减小,并且当淹没的苗接受>350μM的游离CO 2时,两种苗类型以相同的速率生长。漂浮莲座丛对总碳吸收的定量重要性也随着漂浮莲座丛与总苗重的比率降低而降低。结论是漂浮的玫瑰花结可以增强Callitriche的无机碳吸收。相比之下,空气接触对于营养物的运输次要。

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