首页> 外文期刊>Applied Soil Ecology >Phosphorus accumulation characteristics in ce:italic>Polygonum hydropiper/ce:italic> and rhizosphere properties affected by poultry manure application
【24h】

Phosphorus accumulation characteristics in ce:italic>Polygonum hydropiper/ce:italic> and rhizosphere properties affected by poultry manure application

机译:& Ce:斜体>聚四元液中的磷积累特性:斜视>斜体>和根际物质受家禽粪便应用

获取原文
获取原文并翻译 | 示例
           

摘要

Land-applied poultry manure threatens to water environments, particularly because of its high concentration of phosphorus (P).Polygonum hydropiperis efficient in extracting soil excess P, thereby reducing the risk of P runoff and leaching. Rather, little is understood about the effects of poultry manure on soil properties and the P-accumulating characteristics of this plant species. Two pot experiments were conducted to investigate P accumulation and rhizosphere properties in a mining ecotype (ME) ofP. hydropiperfrom Shifang phosphate-mining area and the contrasting non-mining ecotype (NME), with the first experiment at different poultry manure application rates (0, 25, 50, 75, 100?g?kg?1dry soil) and the second experiment under the optimum poultry manure concentration (75?g?kg?1) over three growth periods. The ME’s shoot biomass and P accumulation increased with poultry manure application rates up to 75?g?kg?1and increased with increasing growth periods. Shoot biomass and P accumulation of the ME were significantly greater than those of the NME at 75?g?kg?1in both experiments. At the optimum poultry manure rate (75?g?kg?1), H2O-Pi (Pi, inorganic P), H2O–, NaHCO3? and NaOH-Po (Po, organic P) were more depleted in ME rhizosphere than NME rhizosphere whereas NaHCO3? and NaOH-Pi increased more in ME rhizosphere than NME rhizosphere, irrespective of growth periods. Soil acid and alkaline phosphatases, phosphodiesterase and phytase activities of the ME significantly increased with manure rates up to 75?g?kg?1. Higher enzymatic activities were observed in poultry manure soil than the control and in the rhizospheric soil than bulk soil. The ME showed significantly greater activities of rhizospheric acid phosphatase and phytase than the NME in poultry manure soil at 8?weeks, when its P accumulation showed the largest increase. Therefore, the ME can extract much greater P than the NME from poultry manure-amended soil, probably through the changes in its rhizosphere properties.
机译:陆地应用家禽粪便威胁到水环境,特别是由于其高浓度的磷(P).Polygonum湿度效率在提取土壤过量p中,从而降低了P径流和浸出的风险。相反,关于家禽粪肥对土壤性质和这种植物物种的施加蓄积特性的影响很少。进行了两种盆栽实验,以调查矿化生态型(ME)的P累积和根际特性。磷化物磷酸矿区磷酸磷酸矿区和对比的非开采生态型(NME),在不同的家禽粪便施用速率(0,25,50,75,100Ω·kg?1dry土壤)和第二实验在三个生长期上,最佳家禽粪便浓度(75?g?kg?1)。我的射击生物量和P累积增加了禽类施肥率高达75?kg?1和增长时期增加。拍摄生物量和PE的P累积显着大于75μmE的NME?kg?1在两个实验中。以最佳的家禽粪便(75?g?kg?1),H 2 O-Pi(Pi,无机P),H2O-,NaHCO3?和Naoh-Po(PO,有机P)比NME根际更耗尽,而不是NMERhizoffe,而Nahco3?无论生长期如何,Naoh-Pi都比NME根际更高,而不是NME根际。土壤酸和碱性磷酸酶,ME的磷酸二酯酶和植酸酶活性显着增加,粪便速率高达75Ω·克?kg?1。在家禽土壤中观察到比对照和脱钻土壤的肥料粪便和散装土壤中更高的酶活性。当其P累积显示最大增加时,ME表现出疏散性酸性磷酸酶和植酸酶的活性显着更大的猪毒性酸磷酸酶和植酸酶活性。因此,我可以比来自家禽粪便修正的土壤的NME提取更大的p,可能是通过其根际特性的变化。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号