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首页> 外文期刊>Journal of Plant Nutrition and Soil Science >Silicon nutrition of rice is affected by soil pH, weathering and silicon fertilisation
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Silicon nutrition of rice is affected by soil pH, weathering and silicon fertilisation

机译:水稻的硅营养受土壤pH,风化和硅肥的影响

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摘要

Silicon (Si) is a beneficial element for tropical grasses such as rice (Oryza sativa) and responses to applications of Si are common on highly weathered soils. However, the importance of pH (and hence Si speciation), weathering and fertilisation on Si uptake is still poorly understood. The responses of rice to Si fertilisation were studied in two variably weathered basalt soils (Red Ferrosol, Grey Vertosol) adjusted at different pH values (5.5–9.5) with three levels of acidulated wollastonite. Soil Si was extracted using deionised water (H2O), 0.01 M CaCl2, or 0.5 M NH4OAc. Significant increases in Si uptake and rice biomass were observed in the Red Ferrosol following fertilisation (p 0.01). Greater biomass production was observed at lower pH, due to decreased Si sorption and higher solution Si concentrations. Silicon uptake by rice was greater at low pH, despite similar extractable Si concentrations; suggesting a relationship between Si speciation and uptake. In contrast, Si uptake and rice shoot dry matter in the less weathered Grey Vertosol were unaffected by Si fertilisation (p 0.05) except at the highest rate and lowest pH (5.5). Solution Si concentrations were controlled by precipitation/polymerisation reactions in equilibrium with specific soil pH values rather than adsorption processes. Silicon speciation effects (monosilicic acid vs. silicate ions) were unable to be measured due to an induced phosphorus deficiency in both soils at pH values 8.5. In conclusion, weathered soils are more responsive to Si fertilisation and Si uptake is increased at low pH.
机译:硅(Si)是水稻等热带草的有益元素,在高风化土壤上对硅的施用普遍存在反应。然而,人们对pH(以及硅形态),风化和施肥对硅吸收的重要性的了解仍然很少。在两种不同风化的玄武岩土壤中(红色铁磁,灰色维托索),在三种酸化硅灰石的不同pH值(5.5-9.5)下对水稻对硅肥的响应进行了研究。用去离子水(H 2 O),0.01 M CaCl 2 或0.5 M NH 4 OAc提取土壤Si。施肥后在红色铁肥中观察到硅吸收和水稻生物量的显着增加(p <0.01)。由于降低的硅吸附和较高的溶液硅浓度,在较低的pH值下观察到更高的生物量生产。尽管可提取的硅浓度相似,但在低pH条件下,水稻对硅的吸收更大。提示硅形态和吸收之间的关系。相比之下,风化程度较低的灰色Vertosol中的硅吸收和水稻新梢干物质不受硅施肥的影响(p> 0.05),但最高速率和最低pH值(5.5)除外。通过与特定土壤pH值平衡的沉淀/聚合反应而不是吸附过程来控制溶液中Si的浓度。由于在pH值> 8.5的两种土壤中均会引起磷缺乏,因此无法测量硅的形态影响(单硅酸与硅酸根离子)。总之,风化土壤对硅肥的反应更敏感,并且在低pH条件下硅的吸收量增加。

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