Effect of rhizobium inoculation on rhizosphere phosphorous dynamics and fertilised phosphorous use efficiency in a maize–pigeon pea intercropping system in weathered tropical soil

Saki Yamamoto, Shin Okazaki, Nakei D. Monica, Naoko Ohkama-Ohtsu, Haruo Tanaka, Soh Sugihara
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Abstract

Introduction

Low phosphorus (P) use efficiency (PUE) of fertiliser is a critical problem in sustainable crop production, especially in strongly weathered tropical soils with a high P-fixation capacity. Both intercropping and rhizobium inoculation have shown to improve the P availability of rhizosphere soil, but the effect of a combined approach of using both intercropping and rhizobium inoculation is still unclear. In this study, we aimed to evaluate the effect of rhizobium inoculation on the soil–plant P dynamics and fertilised PUE under the intercropping system in strongly weathered tropical soil.

Materials and Methods

We conducted an 85-day cultivation pot experiment with pigeon pea (PP) and maize using highly weathered tropical soil under eight treatments: monocropping (CS) or intercropping, with or without rhizobium (Bradyrhizobium elkanii USDA61) inoculation (−I, +I) and with or without P fertilisation (0P, 50P) (2 × 2 × 2 = 8 treatments). We evaluated the effects of intercropping and rhizobium inoculation on plant growth parameters, P dynamics of the rhizosphere and bulk soil using the Hedley P fractionation method, the amount of organic acid from plant roots as a plant P-mobilising capacity, and fertilised PUE.

Results

Total plant P uptake per pot was significantly increased by intercropping but not by combining intercropping and rhizobium inoculation, resulting in better fertilised PUE only in intercropping. The available inorganic P (Pi) and less labile Pi of the soil were higher in the rhizosphere than those in the bulk by intercropping under 50P and were similar in PP + I under 50 P. The amount of organic acid per pot under 50P increased with each treatment, that is, intercropping and rhizobium inoculation, but not with their combination.

Conclusion

The intercropping system has a strong potential to improve PUE by stimulating the P-mobilising capacity of intercropping plant roots, whereas rhizobium inoculation of the intercropping system did not improve PUE in this study.

Abstract Image

热带风化土壤玉米-豌豆间作系统接种根瘤菌对根际磷动态和施肥磷利用效率的影响
引言化肥的低磷利用效率是可持续作物生产中的一个关键问题,尤其是在具有高磷固定能力的强风化热带土壤中。间作和接种根瘤菌均能提高根际土壤磷的有效性,但间作和根瘤菌联合接种的效果尚不清楚。在本研究中,我们旨在评估在强风化热带土壤中,接种根瘤菌对间作系统下土壤-植物磷动态和施肥PUE的影响。材料和方法我们用高度风化的热带土壤对鸽子豌豆(PP)和玉米进行了为期85天的盆栽试验,分为八个处理:单作(CS)或间作,有或没有根瘤菌(Bradyrhizobium elkanii USDA61)接种(−I,+I)和有或没有磷施肥(0P,50P)(2 × 2. × 2. = 8个处理)。我们使用Hedley P分级法评估了间作和接种根瘤菌对植物生长参数、根际和大块土壤的磷动态、植物根系中有机酸的量作为植物的磷动员能力以及施肥PUE的影响。结果间作显著提高了单株对磷的吸收,而间作与接种根瘤菌的组合则没有显著提高,只有间作才能获得更好的PUE施肥效果。50P下间作土壤根际有效无机磷(Pi)和不稳定无机磷(Pi)均高于本体土壤,在PP中表现相似 + 我50岁以下 P、50P条件下,每盆有机酸含量随间作和接种根瘤菌处理的增加而增加,但不随间作与接种根瘤菌的组合而增加。结论间作系统通过刺激间作植物根系的磷动员能力,具有很强的改善PUE的潜力,而接种根瘤菌并不能改善PUE。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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