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间作对花生根际动态和铁吸收基因表达的影响:改善花生铁营养的作用。

Dynamics in the rhizosphere and iron-uptake gene expression in peanut induced by intercropping with maize: role in improving iron nutrition in peanut.

机构信息

Key Laboratory of Plant-Soil Interactions, MOE, Centre for Resource, Environment and Food Security, College of Resources and Environmental Sciences, China Agricultural University, Beijing 100193, China.

Key Laboratory of Plant-Soil Interactions, MOE, Centre for Resource, Environment and Food Security, College of Resources and Environmental Sciences, China Agricultural University, Beijing 100193, China.

出版信息

Plant Physiol Biochem. 2014 Mar;76:36-43. doi: 10.1016/j.plaphy.2013.12.019. Epub 2014 Jan 11.

Abstract

The intercropping of maize with peanuts is an effective cropping practice. Indeed, peanut/maize intercropping reportedly improves the iron nutrition of peanuts in calcareous soils. The limited evidence available suggests that the improved Fe nutrition in intercropping is largely attributable to a rhizosphere effect of maize. In this study, the effects of peanut/maize intercropping on the Fe nutritional status of peanut associated with the dynamics of the rhizosphere processes and Fe uptake gene expression induced by the interaction of the two species at various growth days were investigated. The results suggest that an interspecific rhizosphere effect improves Fe nutrition in peanut, as shown by changes in the rhizosphere available Fe concentration, pH, and Olsen-P concentration, based on time-course changes in peanut-maize interaction. The increase in available Fe in the rhizosphere of peanut ranged from 0.2 to 2.64 mg kg(-1). The transition from the vegetative to reproductive stage was a key turning point in the time-course of changes in the rhizosphere processes in intercropping. There was more consistently positive effect of intercropping on peanut Fe nutrition after 53 days. Moreover, the expression of AhFRO1 and AhYSL1 was expressed at significantly higher level in intercropped peanuts compared to monocropped peanut at the vegetative stage, indicating a role for these genes in Fe improvement in intercropped peanuts. We conclude that the enhanced time-course changes in the rhizosphere processes and iron uptake gene expression with a consistent positive interspecific effect appear to be one of the mechanisms underlying the improved Fe nutrition in intercropped peanut plants.

摘要

玉米与花生间作是一种有效的种植方式。事实上,花生/玉米间作据称可以改善石灰性土壤中花生的铁营养。现有有限的证据表明,间作中改善的铁营养主要归因于玉米的根际效应。在这项研究中,研究了花生/玉米间作对花生铁营养状况的影响,以及在不同生长天数两种作物相互作用下,根际过程的动态和铁吸收基因表达的变化。结果表明,种间根际效应改善了花生的铁营养,这表现在根际有效铁浓度、pH 值和Olsen-P 浓度随花生-玉米相互作用的时间变化而发生变化。根际中有效铁的增加范围为 0.2 至 2.64 毫克/千克。从营养生长到生殖生长的过渡是间作中根际过程时间变化的关键转折点。在 53 天后,间作对花生铁营养的影响更为一致。此外,与单作花生相比,间作花生在营养生长阶段 AhFRO1 和 AhYSL1 的表达水平明显更高,表明这些基因在间作花生铁素改良中发挥作用。我们得出结论,根际过程和铁吸收基因表达的增强时间变化以及种间一致的积极效应似乎是改善间作花生植物铁营养的机制之一。

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