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温带牧场土壤中的磷酸酶活性:磷酸二酯酶活性对不稳定有机磷周转的潜在调控

Phosphatase activity in temperate pasture soils: Potential regulation of labile organic phosphorus turnover by phosphodiesterase activity.

作者信息

Turner Benjamin L, Haygarth Philip M

机构信息

Institute of Grassland and Environmental Research (IGER), North Wyke Research Station, Okehampton, Devon EX20 2SB, UK.

出版信息

Sci Total Environ. 2005 May 15;344(1-3):27-36. doi: 10.1016/j.scitotenv.2005.02.003. Epub 2005 Apr 13.

Abstract

Phosphatase enzymes regulate organic phosphorus (P) turnover in soil, but a clear understanding remains elusive. To investigate this, phosphomonoesterase and phosphodiesterase activities were determined by using para-nitrophenol (pNP) analogue substrates in a range of temperate pasture soils from England and Wales. Substrate-induced phosphatase activity ranged between 2.62 and 12.19 micromol pNP g-1 soil h-1 for phosphomonoesterase and between 0.25 and 2.24 micromol pNP g-1 soil h-1 for phosphodiesterase. Activities were correlated strongly with soil pH and labile organic P extracted in sodium bicarbonate, although the relationships differed markedly for the two enzymes. Acidic soils contained high phosphomonoesterase activity, low phosphodiesterase activity, and high concentrations of labile organic P, whereas the reverse was true in more neutral soils. As most of the organic P inputs to soil are phosphate diesters, it therefore seems likely that phosphodiesterase activity regulates labile organic P turnover in pasture soils. The low phosphodiesterase activity in acidic soils may be linked to the dominance of fungi or an effect of sorption on the enzyme. These results suggest that greater emphasis should be placed on understanding the role of phosphodiesterase activity in the cycling of soil organic P.

摘要

磷酸酶可调节土壤中有机磷(P)的周转,但目前仍缺乏清晰的认识。为了对此进行研究,在英格兰和威尔士的一系列温带牧场土壤中,使用对硝基苯酚(pNP)类似物底物测定了磷酸单酯酶和磷酸二酯酶的活性。磷酸单酯酶的底物诱导磷酸酶活性在2.62至12.19微摩尔pNP g-1土壤h-1之间,磷酸二酯酶的底物诱导磷酸酶活性在0.25至2.24微摩尔pNP g-1土壤h-1之间。虽然两种酶的关系明显不同,但活性与土壤pH值和碳酸氢钠提取的活性有机磷密切相关。酸性土壤中磷酸单酯酶活性高、磷酸二酯酶活性低且活性有机磷浓度高,而在中性更强的土壤中情况则相反。由于输入到土壤中的大部分有机磷是磷酸二酯,因此磷酸二酯酶活性似乎调节着牧场土壤中活性有机磷的周转。酸性土壤中磷酸二酯酶活性低可能与真菌的优势地位或吸附对该酶的影响有关。这些结果表明,应更加重视了解磷酸二酯酶活性在土壤有机磷循环中的作用。

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