Shenoy V V, Kalagudi G M
Research and Training Centre, Mahyco Research Foundation, 8-2-703 AG Heights, Road No. 12, Banjara Hills, Hyderabad 500034, AP, India.
Biotechnol Adv. 2005 Nov;23(7-8):501-13. doi: 10.1016/j.biotechadv.2005.01.004.
Phosphorus (P) is one of the least available mineral nutrients to the plants in many cropping environments. Sub-optimal P nutrition can lead to yield losses in the range of 10% to 15% of the maximal yields. P deficiency is more critical in highly withered soils as well as in calcareous and alkaline soils. Amelioration attempts by addition of phosphatic fertilizers are economically and ecologically unsound as the efficiency of added phosphatic fertilizers is very low. Inoculation with the mineral phosphate solubilizing microbes has not helped much due to inconsistent performance of the inoculants under field conditions. These factors have led to examine the opportunities for developing genetically enhanced plants with better P use efficiency (PUE) through efficient P absorption, transportation and internal utilization. In order to improve the PUE in crop plants, it is important to explore genetic variation for all its associated traits. Inter- and intra-specific variations for these traits are known to exist and are shown to be under genetic and physiological controls, but modified by the plant-environment interactions. A more comprehensive understanding of the molecular and physiological basis of P uptake, transportation and utilization is leading to formulation of strategies aimed at developing better P efficient cultivars suited for sustainable cropping with less P fertilizer inputs. Issues relating to enhancing PUE through genetic manipulations of crop cultivar parameters are discussed.
在许多种植环境中,磷(P)是植物可利用性最低的矿质营养元素之一。磷营养不足会导致产量损失,幅度可达最高产量的10%至15%。在高度干旱的土壤以及石灰性和碱性土壤中,缺磷问题更为严重。由于添加磷肥的效率很低,通过添加磷肥来改善缺磷状况在经济和生态方面都不合理。由于接种剂在田间条件下表现不稳定,接种解磷微生物并没有起到太大作用。这些因素促使人们去研究通过高效吸收、运输和内部利用磷来培育磷利用效率(PUE)更高的转基因植物的可能性。为了提高作物的磷利用效率,探索其所有相关性状的遗传变异很重要。已知这些性状存在种间和种内变异,并且显示受遗传和生理控制,但会受到植物与环境相互作用的影响。对磷吸收、运输和利用的分子和生理基础有更全面的了解,有助于制定旨在培育更适合可持续种植且磷肥投入较少的磷高效品种的策略。本文讨论了通过对作物品种参数进行基因操作来提高磷利用效率的相关问题。