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High potential activity of alkaline phosphatase in the benthic nepheloid layer of a large mesotrophic lake: implications for phosphorus regeneration in oxygenated hypolimnion

机译:大型中营养湖泊底栖肾状体层中碱性磷酸酶的高潜在活性:对含氧低lim的磷再生的影响

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Although the benthic nepheloid layer (BNL) in freshwater and marine systems is known to be an active site of material transformations, information is limited regarding the extent of and mechanisms underlying phosphorus regeneration in the BNL. We found that potential activity of particle-bound alkaline phosphatase (APase) was remarkably high in the BNL of a large (surface area: 674 km(2); maximum depth: 104 m), mesotrophic lake (Lake Biwa, Japan) during periods of thermal stratification. The enhancement in the BNL of other ectoenzyme activities was not as pronounced as that of the APase; the ratios of the particle-bound potential activities in the BNL relative to those in the upper hypolimnion were 2.6 +/- 1. 0 (mean +/- SE, n = 22) and 2.0 +/- 0.6 for P-glucosidase and leucine aminopeptidase, respectively, whereas the corresponding ratio for APase was 4.5 +/- 2.3. The APase activity increased in the BNL with increasing concentrations of soluble reactive phosphorus, inconsistent with a general notion that phosphate represses microbial synthesis of APase. Incubation experiments revealed that the net regeneration of P proceeded in waters collected in the BNL at rates comparable to the in situ accumulation rate of soluble reactive phosphorus in the hypolimnion of the basin. Our data suggest that the enzymatic cleavage of the P moiety of organic phosphorus contributes to the active regeneration of P in the oxic BNL of Lake Biwa.
机译:尽管已知淡水和海洋系统中的底栖星状胶体层(BNL)是物质转化的活跃场所,但有关BNL中磷再生的程度和机理的信息有限。我们发现,在一定时期内,中营养湖泊(日本琵琶湖)的大(表面积:674 km(2);最大深度:104 m)的BNL中,颗粒结合碱性磷酸酶(APase)的潜在活性非常高。热分层。其他外酶活性在BNL中的增强不如APase增强。 BNL中粒子结合的潜在活性相对于上层次卧层中的粒子的潜在活性之比为2.6 +/- 1. 0(平均+/- SE,n = 22)和P-葡萄糖苷酶和亮氨酸的2.0 +/- 0.6分别为氨肽酶,而APase的相应比例为4.5 +/- 2.3。 BNL中的APase活性随可溶性反应性磷浓度的增加而增加,这与磷酸盐抑制APase的微生物合成的一般概念不一致。孵化实验表明,磷的净再生是在BNL收集的水中进行的,其速率与盆地下缘可溶性可溶性磷的原位累积速率相当。我们的数据表明,有机磷P部分的酶促裂解有助于琵琶湖含氧BNL中P的主动再生。

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