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Analysis of phosphorus use efficiency traits in Coffea genotypes reveals Coffea arabica and Coffea canephora have contrasting phosphorus uptake and utilization efficiencies

机译:对基因型中的磷利用效率特征进行分析后发现,阿拉伯咖啡和canephora canephora具有相反的磷吸收和利用效率

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摘要

Background and Aims: Phosphate (Pi) is one of the most limiting nutrients for agricultural production in Brazilian soils due to low soil Pi concentrations and rapid fixation of fertilizer Pi by adsorption to oxidic minerals and/or precipitation by iron and aluminum ions. The objectives of this study were to quantify phosphorus (P) uptake and use efficiency in cultivars of the species Coffea arabica L. and Coffea canephora L., and group them in terms of efficiency and response to Pi availability.ud udMethods: Plants of 21 cultivars of C. arabica and four cultivars of C. canephora were grown under contrasting soil Pi availabilities. Biomass accumulation, tissue P concentration and accumulation and efficiency indices for P use were measured.ud udKey Results: Coffee plant growth was significantly reduced under low Pi availability, and P concentration was higher in cultivars of C. canephora. The young leaves accumulated more P than any other tissue. The cultivars of C. canephora had a higher root/shoot ratio and were significantly more efficient in P uptake, while the cultivars of C. arabica were more efficient in P utilization. Agronomic P use efficiency varied among coffee cultivars and E16 Shoa, E22 Sidamo, Iêmen and Acaiá cultivars were classified as the most efficient and responsive to Pi supply. A positive correlation between P uptake efficiency and root to shoot ratio was observed across all cultivars at low Pi supply. These data identify Coffea genotypes better adapted to low soil Pi availabilities, and the traits that contribute to improved P uptake and use efficiency. These data could be used to select current genotypes with improved P uptake or utilization efficiencies for use on soils with low Pi availability and also provide potential breeding material and targets for breeding new cultivars better adapted to the low Pi status of Brazilian soils. This could ultimately reduce the use of Pi fertilizers in tropical soils, and contribute to more sustainable coffee production.
机译:背景与目的:磷酸盐(Pi)是巴西土壤中农业生产中限制性最强的营养素之一,原因是土壤中的Pi浓度低且通过吸附在氧化性矿物质上和/或铁和铝离子沉淀而使肥料Pi快速固定。这项研究的目的是量化阿拉伯咖啡(Coffea arabica L.)和咖啡(Coffea canephora L.)品种中磷(P)的吸收和利用效率,并根据效率和对Pi有效性的响应对它们进行分组。 ud ud方法:植物在不同的土壤Pi利用率下,分别种植了21个阿拉比卡栽培种和4个canephora栽培种。主要结果:在低Pi利用率下,咖啡植物的生长显着降低,而C. canephora品种中的P浓度更高。幼叶积累的P比其他任何组织都要多。 C. canephora品种的根/茎比更高,并且对P的吸收效率更高,而C. arabica的品种对P的吸收效率更高。在咖啡品种中,农艺磷的利用效率各不相同,E16 Shoa,E22 Sidamo,Imen和Acaiá品种被认为是对磷供应最有效且响应最快的品种。在所有低磷供应品种上,磷吸收效率与根冠比之间呈正相关。这些数据确定了咖啡因基因型更好地适应土壤磷的低利用率,以及有助于提高磷吸收和利用效率的性状。这些数据可用于选择目前具有较高磷吸收或利用效率的基因型,以供低磷可利用性的土壤使用,也可提供潜在的育种材料和目标,以更好地适应巴西土壤的低磷状态来培育新品种。这最终可以减少在热带土壤中使用Pi肥料,并有助于实现更可持续的咖啡生产。

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