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在田间和区域尺度上提高磷循环和利用的选择。

Options for Improved Phosphorus Cycling and Use in Agriculture at the Field and Regional Scales.

出版信息

J Environ Qual. 2019 Sep;48(5):1247-1264. doi: 10.2134/jeq2019.02.0070.

Abstract

Soil phosphorus (P) cycling in agroecosystems is highly complex, with many chemical, physical, and biological processes affecting the availability of P to plants. Traditionally, P fertilizer recommendations have been made using an insurance-based approach, which has resulted in the accumulation of P in many intensively managed agricultural soils worldwide and contributed to the widespread water quality issue of eutrophication. To mitigate further environmental degradation and because future P fertilizer supplies are threatened due to finite phosphate rock resources and associated geopolitical and quality issues, there is an immediate need to increase P use efficiency (PUE) in agroecosystems. Through cultivar selection and improved cropping system design, contemporary research suggests that sufficient crop yields could be maintained at reduced soil test P (STP) concentrations. In addition, more efficient P cycling at the field scale can be achieved through agroecosystem management that increases soil organic matter and organic P mineralization and optimizes arbuscular mycorrhizal fungi (AMF) symbioses. This review paper provides a perspective on how agriculture has the potential to utilize plant and microbial traits to improve PUE at the field scale and accordingly, maintain crop yields at lower STP concentrations. It also links with the need to tighten the P cycle at the regional scale, including a discussion of P recovery and recycling technologies, with a particular focus on the use of struvite as a recycled P fertilizer. Guidance on directions for future research is provided.

摘要

农业生态系统中的土壤磷(P)循环非常复杂,许多化学、物理和生物学过程都会影响 P 对植物的有效性。传统上,采用保险式方法来推荐 P 肥,这导致全球许多集约化管理的农业土壤中 P 积累,导致了水体富营养化这一广泛的水质问题。为了减轻进一步的环境退化,并且由于有限的磷矿石资源以及相关的地缘政治和质量问题威胁到未来的 P 肥供应,因此立即需要提高农业生态系统中的 P 利用效率(PUE)。通过品种选择和改进的种植系统设计,当代研究表明,在降低土壤测试 P(STP)浓度的情况下,仍然可以维持足够的作物产量。此外,通过增加土壤有机质和有机 P 矿化以及优化丛枝菌根真菌(AMF)共生体的农业生态系统管理,可以在田间尺度上实现更有效的 P 循环。本文综述了农业如何利用植物和微生物特性来提高田间尺度的 PUE,并相应地维持较低 STP 浓度下的作物产量,提供了一个视角。它还与在区域尺度上收紧 P 循环的需求相关联,包括对 P 回收和再循环技术的讨论,特别关注使用鸟粪石作为回收 P 肥。提供了对未来研究方向的指导。

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