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Enhancing phosphorus and zinc acquisition efficiency in rice: a critical review of root traits and their potential utility in rice breeding

机译:提高水稻磷和锌的获取效率:对根系性状及其在水稻育种中潜在用途的批判性综述

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摘要

Background: Rice is the world's most important cereal crop and phosphorus (P) and zinc (Zn) deficiency are major constraints to its production. Where fertilizer is applied to overcome these nutritional constraints it comes at substantial cost to farmers and the efficiency of fertilizer use is low. Breeding crops that are efficient at acquiring P and Zn from native soil reserves or fertilizer sources has been advocated as a cost-effective solution, but would benefit from knowledge of genes and mechanisms that confer enhanced uptake of these nutrients by roots. Scope: This review discusses root traits that have been linked to P and Zn uptake in rice, including traits that increase mobilization of P/Zn from soils, increase the volume of soil explored by roots or root surface area to recapture solubilized nutrients, enhance the rate of P/Zn uptake across the root membrane, and whole-plant traits that affect root growth and nutrient capture. In particular, this review focuses on the potential for these traits to be exploited through breeding programmes to produce nutrient-efficient crop cultivars. Conclusions: Few root traits have so far been used successfully in plant breeding for enhanced P and Zn uptake in rice or any other crop. Insufficient genotypic variation for traits or the failure to enhance nutrient uptake under realistic field conditions are likely reasons for the limited success. More emphasis is needed on field studies in mapping populations or association panels to identify those traits and underlying genes that are able to enhance nutrient acquisition beyond the level already present in most cultivars.
机译:背景:稻米是世界上最重要的谷物作物,磷(P)和锌(Zn)的缺乏是其生产的主要制约因素。为了克服这些营养障碍而施用肥料时,农民付出了沉重的代价,肥料使用效率低下。有人提倡能从本地土壤储备或肥料来源中有效获取磷和锌的育种作物,是一种经济高效的解决方案,但它将受益于基因和机制知识,这些知识和机制可增强根部对这些养分的吸收。范围:本综述讨论与水稻吸收磷和锌有关的根系性状,包括增加从土壤中吸收磷/锌的动员,增加根系或根系表层探索的土壤量以重新吸收可溶性养分,增强土壤中养分的性状。根膜上P / Zn吸收的速率以及影响根生长和养分吸收的整株植物性状。尤其是,本综述着重于通过育种计划利用这些性状来生产高养分作物的潜力。结论:迄今为止,很少有根性状已成功用于植物育种,以提高水稻或任何其他作物对磷和锌的吸收。性状的基因型变异不足或在实际田间条件下未能提高养分吸收能力,可能是成功率有限的原因。需要在绘制种群或关联面板图时更加注重实地研究,以鉴定能够提高营养获取能力的特征和潜在基因,使其超过大多数品种已经存在的水平。

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