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纳米磷酸盐对大豆(Glycine max)生长和微生物组建立的实际评估。

A practical assessment of nano-phosphate on soybean (Glycine max) growth and microbiome establishment.

机构信息

Department of Biology, Queen's University, Kingston, ON, Canada.

Centre for the Analysis of Genome Evolution and Function, University of Toronto, Toronto, ON, Canada.

出版信息

Sci Rep. 2020 Jun 4;10(1):9151. doi: 10.1038/s41598-020-66005-w.

Abstract

The efficacy of needle-shaped nano-hydroxyapatite (nHA; Ca(PO)(OH)) as a phosphate (Pi) fertilizer was evaluated as well as its impact on soil and soybean (Glycine max) bacterial and fungal communities. Microbial communities were evaluated in soy fertilized with nHA using ITS (internal transcribed spacer) and 16S rRNA high-throughput gene sequencing. Separate greenhouse growth experiments using agriculturally relevant nHA concentrations and application methods were used to assess plant growth and yield compared with no Pi (-P), soluble Pi (+P), and bulk HA controls. Overall, nHA treatments did not show significantly increased growth, biomass, total plant phosphorus concentrations, or yield compared with no Pi controls. Soil and rhizosphere community structures in controls and nHA treatment groups were similar, with minor shifts in the nHA-containing pots comparable to bulk HA controls at equal concentrations. The implementation of nHA in an agriculturally realistic manner and the resulting poor soy growth advises that contrary to some reports under specialized conditions, this nano-fertilizer may not be a viable alternative to traditional Pi fertilizers. If nano-phosphate fertilizers are to achieve their conjectured agricultural potential, alternative nHAs, with differing morphologies, physicochemical properties, and interactions with the soil matrix could be investigated using the evaluative procedures described.

摘要

我们评估了针状纳米羟基磷灰石(nHA;Ca(PO)(OH))作为磷酸盐(Pi)肥料的功效,以及其对土壤和大豆(Glycine max)细菌和真菌群落的影响。使用 ITS(内部转录间隔区)和 16S rRNA 高通量基因测序评估了用 nHA 施肥的大豆中的微生物群落。使用与农业相关的 nHA 浓度和应用方法进行了单独的温室生长实验,以评估与无 Pi(-P)、可溶 Pi(+P)和块状 HA 对照相比的植物生长和产量。总体而言,与无 Pi 对照相比,nHA 处理并没有显著增加生长、生物量、总植物磷浓度或产量。对照和 nHA 处理组的土壤和根际群落结构相似,在含有 nHA 的盆中只有微小的变化,与等浓度的块状 HA 对照相似。以农业上实际的方式实施 nHA 以及由此导致的大豆生长不良表明,与一些在特殊条件下的报告相反,这种纳米肥料可能不是传统 Pi 肥料的可行替代品。如果纳米磷酸盐肥料要实现其推测的农业潜力,可以使用所描述的评估程序研究具有不同形态、物理化学性质和与土壤基质相互作用的替代 nHAs。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b87/7272607/2438e119ed2e/41598_2020_66005_Fig1_HTML.jpg

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