...
首页> 外文期刊>Communications in Soil Science and Plant Analysis >Phosphorus uptake from green manures and phosphate fertilizers applied in an acid tropical soil.
【24h】

Phosphorus uptake from green manures and phosphate fertilizers applied in an acid tropical soil.

机译:在酸性热带土壤中施用的绿肥和磷肥中的磷吸收量。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Quantifying the relative contribution of different phosphorus (P) sources to P uptake can lead to greater understanding of the mechanisms that increase available P in integrated P management systems. The 32P-33P double isotope labelling technique was used to determine the relative contribution of green manures (GMs) and P fertilizers to P uptake by Setaria grass (Setaria sphacelata) grown in an amended tropical acid soil (Bungor series) in a glasshouse study. The amendments were factorial combinations of GMs (Calopogonium caeruleum, Gliricidia sepium and Imperata cylindrica) and P fertilizers [phosphate rocks (PRs) from North Carolina (NCPR), China (CPR) and Algeria (APR), and triple superphosphate (TSP)]. Dry matter yield, P uptake, and P utilization from the amendments were monitored at 4, 8, and 15 weeks after establishment (WAE). The GMs alone or in combination with P fertilizers contributed less than 5% to total P uptake in this soil, but total P uptake into Setaria plants in the GM treatments was three to four times that of the P fertilizers because the GMs mobilized more soil P. Also, the GMs markedly increased fertilizer P utilization in the combined treatments, from 3% to 39% with CPR, from 6-9% to 19-48% with reactive PRs, and from 6% to 37% with TSP in this soil. Both PGM and the other decomposition products were probably involved in reducing soil P-retention capacity. Mobilization of soil P was most likely the result of the action of the other decomposition products. These results demonstrate the high potential of integrating GMs and PRs for managing P in tropical soils and the importance of the soil P mobilization capacity of the organic components. Even the low-quality Imperata GM enhanced the effectiveness of the reactive APR more than fourfold..
机译:量化不同磷(P)源对P吸收的相对贡献可以使人们更好地理解在集成P管理系统中增加可用P的机制。在温室研究中,使用32P-33P双同位素标记技术来确定绿肥(GMs)和P肥料对在改良的热带酸性土壤(Bungor系列)中生长的狗尾草(Setaria sphacelata)对P吸收的相对贡献。修正案是转基因作物(Calopogonium caeruleum,Gliricidia sepium和Imperata cylindrica)和P肥料的分解因子组合[来自北卡罗来纳州(NCPR),中国(CPR)和阿尔及利亚(APR)的磷酸盐岩(PRs)和三重过磷酸盐(TSP)] 。修订后的第4、8和15周(WAE)监测了修正案的干物质产量,P吸收和P利用率。单独使用转基因或与磷肥结合使用,在土壤中的总磷吸收量不到5%,但是在转基因处理中,Setaria植物对磷的总吸收量是磷肥的三到四倍,因为转基因可动员更多的土壤磷。此外,在这种土壤中,转基因处理使转基因肥料的肥料磷利用率显着提高,CPR从3%增加到39%,活性PR从6-9%增加到19-48%,TSP从6%增加到37% 。 PGM和其他分解产物都可能与降低土壤中P的保留能力有关。土壤P的动员极有可能是其他分解产物作用的结果。这些结果表明,整合GMs和PRs在管理热带土壤中的磷方面具有很高的潜力,并且有机成分对土壤P的迁移能力具有重要意义。即使是低品质的Imperata GM也将反应型APR的效力提高了四倍以上。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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