首页> 外文期刊>Hydrobiologia >Effects of EDTA, feEDTA and soils on the phosphorus bioavailability for diatom and blue-green algal growth in oligotrophic waters studied by transplant biotests
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Effects of EDTA, feEDTA and soils on the phosphorus bioavailability for diatom and blue-green algal growth in oligotrophic waters studied by transplant biotests

机译:移植生物试验研究了EDTA,feEDTA和土壤对贫营养水中硅藻和蓝绿藻生长的磷生物有效性的影响

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Biotests with dilute natural populations of blue-green algae and diatoms from the eutrophic Lake Arungen were performed to study the effects of EDTA and FeEDTA in combination with phosphate and soil total reactive phosphate (Tot-P_r) on the growth rate in filtered water samples from the ultraoligotrophic Lake Lutvann. The factor limiting growth other than phosphorus was termed X-limitation. The results showed that the addition of phosphate in combination with EDTA, or FeEDTA, was sufficient to obtain positive growth rates for the algal populations, i.e. for decreasing or removing X limitation. EDTA and FeEDTA had different effects on the growth rate both for different populations and for different samples from Lake Lutvann collected at different time. Low growth limiting concentrations of EDTA or FeEDTA and phosphate in combination was shown to be highly interactive. The optimum EDTA and FeEDTA concentrations for p-limited growth were often about 0.1-0.5 #mu#m and 0.5-1.0 #mu#m, respectively. At these concentrations, many populations were able to grow at very low phosphate concentrations (P<1 #mu#g 1~(-1)). Additions of soils may have similar stimulating effects as EDTA and FeEDTA. The soils (added as P-source) and EDTA had interactive effects on the growth rate both at low and high concentrations varying with the soil types. The optimum concentration of EDTA varied between 0.05 and 0.5 #mu#m, but for the soil types it was very variable. The response of the populations varied considerably. This transplant biotest method, using an optimal concentration of FeEDTA and an optimal Fe: EDTA ratio to prevent X-limitation, should be useful for studying effects of soluble and adsorbed bioavailable phosphorus singly on the growth of diatoms and blue-green algal populations using oligotrophic lake water as medium.
机译:进行了富营养化阿伦根湖淡绿色藻类和硅藻的稀疏自然种群的生物测试,以研究EDTA和FeEDTA与磷酸盐和土壤总活性磷酸盐(Tot-P_r)结合对过滤后水样中生长速率的影响超寡营养的卢旺湖。除了磷以外,限制生长的因素称为X限制。结果表明,磷酸盐与EDTA或FeEDTA的组合足以获得藻类种群的正生长率,即降低或消除X限制。 EDTA和FeEDTA对不同种群和在不同时间从卢特温湖采集的不同样品的生长速率都有不同的影响。 EDTA或FeEDTA与磷酸盐结合的低生长限制浓度显示出高度的相互作用。 p限制生长的最佳EDTA和FeEDTA浓度通常分别为约0.1-0.5#μm和0.5-1.0#μm。在这些浓度下,许多种群能够在非常低的磷酸盐浓度下生长(P <1#mu#g 1〜(-1))。添加土壤可能具有与EDTA和FeEDTA相似的刺激作用。土壤(作为P源添加)和EDTA在低和高浓度下均随土壤类型的不同而对生长速率产生交互作用。 EDTA的最佳浓度在0.05到0.5#mu#m之间变化,但是对于土壤类型,它的变化很大。人群的反应差异很大。此移植生物测试方法使用最佳浓度的FeEDTA和最佳的Fe:EDTA比值来防止X限制,这对于研究可溶和吸附的可生物利用的磷对利用贫营养的硅藻和蓝绿色藻类种群生长的影响应该是有用的。湖水为介质。

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