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Improvement of Rice Seedling Establishment in Sulfate-Applied Submerged Soil by Application of Molybdate

机译:钼酸盐改良硫酸盐淹没土壤中水稻幼苗的建立

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Sulfide ion generation in strictly reduced soil might be a factor impairing rice seedling establishment. The molybdate ion is known to suppress the microbial transformation of sulfide ions from sulfate ions. I investigated the effect of molybdate on rice establishment in sulfate-applied submerged soil. The establishment of rice seeds sown in sulfate-applied submerged soil was markedly improved by application of potassium molybdate at a rate of 1.5?15 mmol kg-1 dried soil. The application of potassium molybdate delayed the decline of the sulfur concentration in the soil solution near the seeds and the appearance of circular black stains, or insoluble iron sulfide indicating the generation of sulfide ion, around seeds in the soil. Irrespective of the application of molybdate, the redox potential near the seeds was low enough to allow generation of sulfide ions, implying that molybdate suppresses the generation of sulfide ions with no effect on redox potential. These results suggest that the application of molybdate could improve rice seedling establishment in sulfur-rich submerged soil by suppressing the generation of sulfide ions, that is a possible factor suppressing the establishment of rice seeds sown in sulfur-rich submerged soil.
机译:在严格还原的土壤中生成硫化物离子可能是损害水稻幼苗生长的一个因素。已知钼酸根离子可抑制硫化物离子从硫酸根离子的微生物转化。我研究了钼酸盐对施用硫酸盐的淹没土壤中水稻的影响。通过以1.5?15 mmol kg-1的干燥土壤施用钼酸钾,可以显着改善在硫酸盐淹没的土壤中播种的水稻种子的生长。钼酸钾的施用延缓了种子附近土壤溶液中硫浓度的下降,并延缓了土壤种子周围圆形黑色污点或不溶性硫化铁的出现,表明了硫化物离子的产生。无论使用钼酸盐如何,种子附近的氧化还原电势都足够低,以至于无法生成硫化物离子,这意味着钼酸盐抑制了硫化物离子的生成,而对氧化还原电势没有影响。这些结果表明,钼酸盐的施用可以通过抑制硫化物离子的产生来改善水稻在高硫淹没土壤中幼苗的建立,这可能是抑制在高硫淹没土壤中播种水稻种子的可能的因素。

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