水分胁迫条件下磷和铁对大豆生物量生产和养分分配的影响

V. Rotaru
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摘要

通过盆栽试验,研究了施用磷和铁对2种大豆生物量产量和养分分配的影响。水分胁迫条件下生长在碳酸黑钙土(低铁、低磷)上的L. Merr品种。磷和铁分别施于0和100 mg P kg-1土壤;0和5 mg铁kg-1土壤)。对照植株在70%持水量(WHC)条件下生长,对照植株在35%持水量(WHC)条件下生长2周。在不同的磷和铁水平下,黄豆品种(黄豆品种、利库利奇品种)的叶片、根系干质量积累和结瘤均存在较大的差异。结果表明,无论养分供应如何,干旱都显著降低了生物量产量,且在养分供应不足的情况下,干旱的不利影响更为明显。叶片发育和根瘤生长对水分亏缺和养分供应不足最为敏感。充足的磷和铁供应增加了大豆品种的干物质产量和养分浓度。无铁处理植株各部位磷浓度显著高于无铁处理。施磷降低了铁在叶片中的分配。试验结果表明,磷、铁充足营养对磷利用效率有正向影响。因此,充足的磷和铁供应维持了大豆植株的高水平生长,改善了磷和铁的状态,部分缓解了干旱对大豆植株的影响。
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EFFECTS OF PHOSPHORUS AND IRON ON BIOMASS PRODUCTION AND NUTRIENTS PARTITIONING IN SOYBEAN CULTIVARS UNDER WATER STRESS CONDITION
A pot experiment was conducted to investigate the effects of P and Fe application on the biomass production and nutrients partitioning of two soybeans (Glycine max. L. Merr) cultivars grown in carbonated chernoziom (low in Fe and P) under water stress conditions. P and Fe were applied at two levels (0 and 100 mg P kg-1 soil; 0 and 5 mg Fe kg-1 soil). Control plants were grown at 70% water holding capacity (WHC) while their counterparts were subjected to 35% WHC water stress at initial flowering stage for two weeks. Considerable variability was observed in leaves, roots dry mass accumulation and nodulation among the soybean cultivars (Zodiac, Licurici) at both P and Fe levels in relation to water regimes. The results showed that drought significantly reduced biomass production irrespective of nutrient supply and its adverse effect was more pronounced at low nutrient supply. Leaf development and nodules growth were the most sensitive to water deficit and insufficient nutrient supply. Adequate P and Fe supply increased dry matter production and nutrient concentrations for soybean cultivars. Phosphorus concentration in plant parts was significantly higher at nil Fe compared with Fe application. Phosphorus application decreased Fe allocation to the leaves. The experimental results demonstrated that there was a positive effect of P and Fe adequate nutrition on P use efficiency. Hence, the sufficient phosphorus and iron supply maintained growth at high level, improved P and Fe status and partially alleviated drought effect on soybean plants.
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