Carkner Michelle Katherine, Gao Xiaopeng, Entz Martin H
Department of Plant Science, University of Manitoba, Winnipeg, MB, Canada.
Department of Soil Science, University of Manitoba, Winnipeg, MB, Canada.
Front Plant Sci. 2023 Jul 18;14:1225174. doi: 10.3389/fpls.2023.1225174. eCollection 2023.
Organic farming in extensive production regions, such as the Canadian prairies have a particularly difficult challenge of replenishing soil reserves of phosphorus (P). Organic grains are exported off the farm while resupply of lost P is difficult due to limited availability of animal manures and low solubility of rock organic fertilizers. As a result, many organic farms on the prairies are deficient in plant-available P, leading to productivity breakdown. A portion of the solution may involve crop genetic improvement. A hypothetical 'catch and release' wheat ideotype for organic production systems is proposed to (i) enhance P uptake and use efficiency but (ii) translocate less P from the vegetative biomass into the grain. Root traits that would improve P uptake efficiency from less-available P pools under organic production are explored. The need to understand and classify 'phosphorus use efficiency' using appropriate indices for organic production is considered, as well as the appropriate efficiency indices for use if genetically selecting for the proposed ideotype. The implications for low seed P and high vegetative P are considered from a crop physiology, environmental, and human nutrition standpoint; considerations that are imperative for future feasibility of the ideotype.
在诸如加拿大大草原这样的粗放生产地区,有机农业面临着补充土壤磷(P)储备的特别艰巨挑战。有机谷物被运出农场,而由于动物粪便供应有限以及岩石有机肥料的低溶解性,难以补充流失的磷。结果,大草原上的许多有机农场缺乏植物可利用的磷,导致生产力下降。部分解决方案可能涉及作物遗传改良。本文提出了一种用于有机生产系统的假想“捕获与释放”小麦理想型,以(i)提高磷的吸收和利用效率,但(ii)减少从营养生物量向籽粒转运的磷。探讨了在有机生产条件下能够提高从有效性较低的磷库中吸收磷效率的根系性状。本文考虑了使用适合有机生产的指标来理解和分类“磷利用效率”的必要性,以及在对所提出的理想型进行遗传选择时适用的效率指标。从作物生理学、环境和人类营养角度考虑了低籽粒磷和高营养体磷的影响;这些考虑对于该理想型未来的可行性至关重要。