首页> 外文期刊>Acta Physiologiae Plantarum >The effect of phosphorus deficiency on nutrient uptake, nitrogen fixation and photosynthetic rate in mashbean, mungbean and soybean
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The effect of phosphorus deficiency on nutrient uptake, nitrogen fixation and photosynthetic rate in mashbean, mungbean and soybean

机译:缺磷对豆,绿豆和大豆养分吸收,固氮和光合速率的影响

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摘要

Phosphorous (P) fertilization is the major mineral nutrient yield determinant among legume crops. However, legume crops vary widely in the ability to take up and use P during deficiency. The aim here was to compare P uptake and translocation, biological nitrogen fixing ability and photosynthetic rate among mashbean (Vigna aconitifolia cv. 'Mash-88'), mungbean (Vigna radiata cv. 'Moong-6601') and soybean (Glycine max L. cv. 'Tamahomare') during deficiency in hydroponics. Two treatments, the withdrawalof P from the solution (P-deprivation) and continued P at 160 mu M (P sufficient) were effected at the pod initiation stage. Plants were grown for 20 days. Short-term labeling with ~(32)P showed the uptake and distribution of P into plant parts. Withdrawal of P from the solution reduced biomass, photosynthetic activity, and nitrogen fixing ability in mungbean, and mashbean more than in soybean. P deprivation decreased P accumulation more than N accumulation. The decrease was more severe in mungbean andmashbean than soybean. More P was translocated and distributed into leaves in soybean than in mungbean and mashbean. Leaf P amount was more correlated to leaf area than to photosynthetic rate per unit leaf area among all three legume species. The results indicate that selection for increased efficiency of P utilization and leaf area may be used to improve leguminous crops.
机译:磷(P)施肥是豆类作物中主要的矿质养分产量决定因素。但是,豆类作物在缺乏时吸收和利用磷的能力差异很大。目的是比较was豆(Vigna aconitifolia cv。'Mash-88'),绿豆(Vigna radiata cv。'Moong-6601')和大豆(Glycine max L)的P吸收和转运,生物固氮能力和光合速率在缺水培法时出现“ Tamahomare”。在豆荚起始阶段进行了两种处理,即从溶液中抽出P(剥夺P)和在160μM上连续施用P(足够P)。植物生长20天。 〜(32)P的短期标记显示P被植物部分吸收和分布。从溶液中提取磷比绿豆和豆降低了生物量,光合活性和固氮能力。 P剥夺减少的P积累大于N积累。绿豆和mash豆的下降比大豆更为严重。与绿豆和P豆相比,大豆中更多的磷易位并分布到叶片中。在所有三种豆科植物中,叶片P的含量与叶片面积的相关性高于与单位叶面积的光合速率的相关性。结果表明,提高磷利用效率和叶面积的选择可用于改良豆科作物。

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