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Plant availability of soil selenate additions and selenium distribution within wheat and ryegrass

机译:小麦和黑麦草中土壤硒酸盐添加量的植物有效性和硒分布

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Selenate fertilization is an effective way to secure selenium (Se) nutrition in Se-poor areas but the cycling of the added selenate in the soil-plant system requires further clarification. We examined the Se uptake efficiency of wheat and ryegrass and Se distribution within these plants in two pot experiments. The behaviour of added selenate in a sand soil under wheat was monitored by sequential extractions during a ten-week growing period. In addition, the relationship between Se uptake of ryegrass and the salt extractable and ligand exchangeable Se in a sand and silty clay soil were studied. The added selenate remained mainly salt soluble in the soil throughout the monitoring. Se uptake by wheat comprised 12% of the soluble Se pool in soil and extended over the whole period of growth. In wheat, over 50% of Se accumulated in grains. The Se uptake of ryegrass comprised, on average, 40% of the soil salt soluble Se. In ryegrass, over 80% of the Se accumulated in roots. The distribution pattern of Se in plants can clearly have a major influence on both the Se cycle in soil and the nutritional efficiency of Se fertilization. The simple salt extraction showed fertilization-induced changes in the soluble soil Se pool, whereas the ligand exchangeable Se fraction reflected the difference in the nonlabile Se status between the two soils.
机译:硒肥是确保贫硒地区硒营养的有效方法,但是添加的硒酸盐在土壤-植物系统中的循环需要进一步阐明。我们通过两个盆栽试验研究了小麦和黑麦草对硒的吸收效率以及这些植物中硒的分布。在十周的生长期中,通过顺序提取监测小麦下沙土中添加硒酸盐的行为。此外,研究了在沙子和粉质粘土中黑麦草的硒吸收与可盐提取和可配体交换的硒之间的关系。在整个监测过程中,添加的硒酸盐仍然主要溶于土壤中。小麦对硒的吸收占土壤可溶性硒总量的12%,并在整个生育期内扩展。在小麦中,Se中有超过50%的Se积累。黑麦草对硒的吸收平均占土壤盐溶性硒的40%。在黑麦草中,超过80%的Se积累在根中。硒在植物中的分布模式显然可以对土壤中的硒循环和硒施肥的营养效率产生重大影响。简单的盐提取显示了可溶性土壤中硒的施肥引起的变化,而配体可交换的硒分数反映了两种土壤中非不稳定硒状态的差异。

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