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Dissolving mechanism of strain P17 on insoluble phosphorus of yellow-brown soil

机译:P17菌株对黄棕壤不溶性磷的溶解机理

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摘要

Strain P17 was a bacterial strain identified as Bacillus megaterium isolated from ground accumulating phosphate rock powder. The fermentation broth of strain P17 and the yellow-brown soil from Nanjing Agricultural University garden were collected to conduct this study. The simulation of fixed insoluble phosphorous forms after applying calcium superphosphate into yellow-brown soil was performed in pots, while available P and total P of soil were extremely positive correlative with those of groundwater. Then the dissolving effect of strain P17 on insoluble P of yellow-brown soil was studied. Results showed that Bacillus megaterium strain P17 had notable solubilizing effect on insoluble phosphates formed when too much water-soluble phosphorous fertilizer used. During 100 days after inoculation, strain P17 was dominant. Until the 120th day, compared with water addition, available P of strain P17 inoculation treated soil increased by 3 times with calcium superphosphate addition. Besides available P, pH, activity of acid and alkaline phosphatase and population of P-solubilizing microbes were detected respectively. P-solubilizing mechanism of P-solubilizing bacteria strain P17 seems to be a synergetic effect of pH decrease, organic acids, phosphatase, etc.
机译:P17菌株是一种细菌菌株,鉴定为从地面累积的磷酸盐岩粉中分离出的巨大芽孢杆菌。收集菌株P17的发酵液和南京农业大学花园的黄棕色土壤进行本研究。在盆中进行过磷酸钙施肥后,模拟固定的不溶性磷形态,而土壤中的有效磷和总磷与地下水的磷呈极显着正相关。然后研究了菌株P17对黄棕壤不溶性磷的溶解作用。结果表明,当使用过多的水溶性磷肥时,巨大芽孢杆菌菌株P17对形成的不溶性磷酸盐具有显着的增溶作用。接种后100天内,菌株P17占主导地位。直到第120天,与过水相比,过磷酸钙的添加使接种P17菌株的土壤中有效磷增加了3倍。除有效磷外,还分别检测了pH,酸和碱性磷酸酶的活性以及增溶P的微生物的数量。 P增溶细菌菌株P17的P增溶机理似乎是pH降低,有机酸,磷酸酶等的协同作用。

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