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[磷源对高磷利用效率野生大麦基因型根际土壤磷组分的影响]

[Effects of phosphorus sources on phosphorus fractions in rhizosphere soil of wild barley genotypes with high phosphorus utilization efficiency].

作者信息

Cai Qiu-Yan, Zhang Xi-Zhou, Li Ting-Xuan, Chen Guang-Deng

出版信息

Ying Yong Sheng Tai Xue Bao. 2014 Nov;25(11):3207-14.

Abstract

High P-efficiency (IS-22-30, IS-22-25) and low P-efficiency (IS-07-07) wild barley cultivars were chosen to evaluate characteristics of phosphorus uptake and utilization, and properties of phosphorus fractions in rhizosphere and non-rhizosphere in a pot experiment with 0 (CK) and 30 mg P · kg(-1) supplied as only Pi (KH2PO4), only Po (phytate) or Pi + Po (KH2PO4+ phytate). The results showed that dry matter and phosphorus accumulation of wild barley in the different treatments was ranked as Pi > Pi + Po > Po > CK. In addition, dry matter yield and phosphorus uptake of wild barley with high P-efficiency exhibited significantly greater than that with low P-efficiency. The concentration of soil available phosphorus was significantly different after application of different phosphorus sources, which was presented as Pi > Pi + Po > Po. The concentration of soil available phosphorus in high P-efficiency wild barley was significantly higher than that of low P-efficiency in the rhizosphere soil. There was a deficit in rhizosphere available phosphorus of high P-efficiency wild barley, especially in Pi and Pi+Po treatments. The inorganic phosphorus fractions increased with the increasing Pi treatment, and the concentrations of inorganic phosphorus fractions in soil were sorted as follows: Ca10-P > O-P > Fe-P > Al-P > Ca2-P > Ca8-P. The contents of Ca2-P and Ca8-P for high P-efficiency wild barley showed deficits in rhizosphere soil under each phosphorus source treatment. In addition, enrichment of Al-P and Fe-P was observed in Pi treatment in rhizosphere soil. The concentrations of organic phosphorus fractions in soil were sorted as follows: moderate labile organic phosphorus > moderate resistant, resistant organic phosphorus > labile organic phosphorus. The labile and moderate labile organic phosphorus enriched in rhizosphere soil and the greatest enrichment appeared in Pi treatment. Furthermore, the concentrations of moderate resistant organic phosphorus and resistant organic phosphorus decreased in rhizosphere soil. The concentrations of labile and moderate labile organic phosphorus in rhizosphere soil of high P-efficiency wild barley were significantly higher than that of low P-efficiency wild barley in each phosphorus source treatment. However, moderate resistant organic phosphorus and resistant organic phosphorus concentrations had no significant difference between the two genotypes. Wild barley with high P-efficiency demonstrated a greater ability of mobilization and uptake Ca2-P, Ca8-P, Al-P and labile organic phosphorus than that with low P-efficiency under Pi deficiency.

摘要

选取高效(IS - 22 - 30、IS - 22 - 25)和低效(IS - 07 - 07)野生大麦品种,通过盆栽试验,设置0(CK)、仅供应Pi(KH₂PO₄)、仅供应Po(植酸)或Pi + Po(KH₂PO₄ + 植酸)30 mg P·kg⁻¹ 3种磷供应水平,研究其磷吸收利用特性及根际和非根际土壤磷组分特征。结果表明,不同处理下野生大麦的干物质和磷积累量排序为:Pi>Pi + Po>Po>CK。此外,高效野生大麦的干物质产量和磷吸收量显著高于低效野生大麦。施用不同磷源后土壤有效磷浓度差异显著,表现为Pi>Pi + Po>Po。高效野生大麦根际土壤有效磷浓度显著高于低效野生大麦。高效野生大麦根际有效磷存在亏缺,尤其是在Pi和Pi + Po处理中。无机磷组分随Pi处理增加而增加,土壤中无机磷组分浓度排序为:Ca₁₀ - P>O - P>Fe - P>Al - P>Ca₂ - P>Ca₈ - P。在各磷源处理下,高效野生大麦根际土壤中Ca₂ - P和Ca₈ - P含量表现为亏缺。此外,在Pi处理的根际土壤中观察到Al - P和Fe - P的富集。土壤中有机磷组分浓度排序为:中度活性有机磷>中度抗性、抗性有机磷>活性有机磷。活性和中度活性有机磷在根际土壤中富集,且在Pi处理中富集程度最大。此外,根际土壤中中度抗性有机磷和抗性有机磷浓度降低。在各磷源处理下,高效野生大麦根际土壤中活性和中度活性有机磷浓度显著高于低效野生大麦。然而,两种基因型的中度抗性有机磷和抗性有机磷浓度无显著差异。在缺磷条件下,高效野生大麦比低效野生大麦具有更强的活化和吸收Ca₂ - P、Ca₈ - P、Al - P和活性有机磷的能力。

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