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From Leguminosae/Gramineae Intercropping Systems to See Benefits of Intercropping on Iron Nutrition

机译:从豆科/禾本科间作系统了解间作对铁营养的好处

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摘要

To achieve sustainable development with a growing population while sustaining natural resources, a sustainable intensification of agriculture is necessary. Intercropping is useful for low-input/resource-limited agricultural systems. Iron (Fe) deficiency is a worldwide agricultural problem owing to the low solubility and bioavailability of Fe in alkaline and calcareous soils. Here, we summarize the effects of intercropping systems on Fe nutrition. Several cases showed that intercropping with graminaceous plants could be used to correct Fe nutrition of Leguminosae such as peanut and soybean or fruits such as Psidium guajava L., Citrus, grape and pear in calcareous soils. Intercropping systems have strong positive effects on the physicochemical and biochemical characteristics of soil and the microbial community due to interspecific differences and interactions in the rhizosphere. Rhizosphere interactions can increase the bioavailability of Fe with the help of phytosiderophores. Enriched microorganisms may also facilitate the Fe nutrition of crops. A peanut/maize intercropping system could help us understand the dynamics in rhizosphere and molecular mechanism. However, the role of microbiome in regulating Fe acquisition of root and the mechanisms underlying these phenomena in other intercropping system except peanut/maize need further work, which will help better utilize intercropping to increase the efficiency of Fe foraging.
机译:为了在人口不断增长的同时维持自然资源来实现可持续发展,必须持续进行农业集约化。间作对低投入/资源有限的农业系统很有用。由于铁在碱性和钙质土壤中的溶解度低和生物利用度低,铁(Fe)缺乏是一个世界性的农业问题。在这里,我们总结了间作系统对铁营养的影响。几个案例表明,在石灰质土壤中,与禾本科植物间作可用于纠正豆科植物的铁营养,如花生和大豆,或瓜果的番石榴,柑橘,葡萄和梨等。间作系统由于根际之间的种间差异和相互作用,对土壤和微生物群落的物理化学和生化特性具有强烈的积极影响。根际相互作用可借助植物铁载体提高铁的生物利用度。丰富的微生物也可以促进作物的铁营养。花生/玉米间作系统可以帮助我们了解根际动态和分子机理。然而,微生物组在调控铁的根系获得中的作用以及除花生/玉米之外的其他间作系统中这些现象的潜在机制还需要进一步研究,这将有助于更好地利用间作来提高铁的觅食效率。

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