[Distribution Characteristics of Soil Phosphorus Forms and Phosphatase Activity at Different Altitudes in the Soil of Water-Level-Fluctuation Zone in Pengxi River, Three Gorges Reservoir].

Yi-Lun Gao, Fang Fang, Zi-Chao Tang, Rui Zhang, Yan-Xue Jiang, Jin-Song Guo
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Abstract

Phosphatases play important roles in converting organic phosphorus into inorganic phosphorus in soil. However, studies from this perspective on the water-level-fluctuation zone (WLFZ) of the Three Gorges Reservoir are limited. In this study, phosphatase activity and the forms of phosphorus were analyzed. Soil samples were collected in the river basin of the Penxi River in the WLFZ during a drying period. The correlation between phosphatase activity and phosphorus forms and the impacts of phosphatase activity on the phosphorus forms were analyzed. The results showed that the contents of H2O-Pi, NaHCO3-Pi, and NaOH-Pi in the soils of the WLFZ were higher than those in the soils by the river. In addition, a higher altitude resulted in higher contents of bio-enzymatically hydrolysable phosphorus and NaOH-Po. Furthermore, redundancy analysis (RDA) showed that the contents of organic matter and amorphous Fe and Mn were the main factors affecting soil organic phosphorus forms. The average activities of acid phosphomonoesterase (ACP), alkaline phosphomonoesterase (ALP), phosphodiesterase (PDE) (all in p-NP), and phytase (PAE) (in P) in the soils of the WLFZ were 1.40, 2.60, 0.44, and 11.43 μmol·(g·h)-1, respectively. Moreover, the activities of different phosphatases increased with altitude. Soil plant biomass and microbial biomass were important reasons for the difference in spatial distribution of phosphatase activity in the soil of the WLFZ. Phosphatase activities were significantly positively correlated with the contents of organic phosphorus forms but negatively correlated with the content of bioavailable phosphorus. A higher soil phosphatase activity and a lower content of bioavailable phosphorus were usually detected in soil samples taken at a higher altitude. In the early stage of flooding, phosphatase converted organic phosphorus into inorganic phosphorus at a relatively high rate, and the risk of phosphorus release to the overlying water body was also high. This study contributed to a comprehensive understanding of the geochemical cycle of soil phosphorus in the soil of the WLFZ.

[三峡库区蓬溪河消落带不同海拔土壤磷形态及磷酸酶活性的分布特征]。
磷酸酶在土壤有机磷转化为无机磷的过程中起着重要作用。然而,从这一角度对三峡库区消落带的研究还很有限。本研究分析了磷酸酶活性和磷的形态。在干旱期对长江区盆溪河流域进行了土壤样品采集。分析了磷酸酶活性与磷形态的相关性以及磷酸酶活性对磷形态的影响。结果表明:水长区土壤中H2O-Pi、NaHCO3-Pi和NaOH-Pi含量均高于沿江土壤;海拔越高,酶解磷和NaOH-Po含量越高。此外,冗余分析(RDA)表明,有机质和无定形铁、锰的含量是影响土壤有机磷形态的主要因素。WLFZ土壤酸性磷酸单酯酶(ACP)、碱性磷酸单酯酶(ALP)、磷酸二酯酶(PDE) (P - np)和植酸酶(PAE) (P)的平均活性分别为1.40、2.60、0.44和11.43 μmol·(g·h)-1。不同磷酸酶活性随海拔升高而升高。土壤植物生物量和微生物生物量是造成沃陵区土壤磷酸酶活性空间分布差异的重要原因。磷酸酶活性与有机磷形态含量呈极显著正相关,与生物有效磷含量呈极显著负相关。在海拔较高的地区,土壤中磷酸酶活性较高,而生物有效磷含量较低。洪涝前期,磷酸酶将有机磷转化为无机磷的速率较高,向上覆水体释放磷的风险也较高。该研究有助于全面了解长江区土壤磷的地球化学循环。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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