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首页> 外文期刊>日本土壤肥料学雑誌 >delta15N values of plants and soils in tea fields treated with commonly-used fertilization and rapeseed meal.
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delta15N values of plants and soils in tea fields treated with commonly-used fertilization and rapeseed meal.

机译:常用施肥和菜籽粉处理的茶园植物和土壤的delta15N值。

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摘要

The nitrogen dynamics in tea fields were investigated using delta15N as the indicator of nitrogen sources and nitrogen metabolisms. There were two fertilizer treatments, rapeseed meal only and commonly used fertilization (rapeseed meal during springand autumn and chemical fertilizers during summer). The deltaN15 fertilizers used were: -1.0o/oo in ammonium sulfate, -0.8o/oo in ammonium nitrate and +5.3o/oo in rapeseed meal. The delta15N values of soils in the 0-20 cm layer were similar in both of the fields, and those in the 20-40 cm layer were higher by~1o/oo in the field treated with rapeseed meal. The delta15N values of soil solution in the rapeseed meal field were higher by~7o/oo , and those in the upper layers of the fields treated with commonly-used fertilization were lowered by the application of chemical fertilizer. The delta15N values of the tea plants reflected those of the soil solutions, higher in the rapeseed meal field. Generally, the delta15N values of the tea plants were lower than the averages of those of the soil solutions, probably due to the rapid uptake of chemical fertilizer nitrogen and also due to isotopic fractionation during the uptake of nitrogen from the soil solutions. The variation of delta15N values in differenttea organs suggested the fractionation of nitrogen isotopics during metabolism and translocation of nitrogen in the plants.
机译:以delta15N为氮源和氮素代谢指标,研究了茶田中氮素的动态变化。有两种肥料处理方法:仅菜籽粉和常用的施肥(春季和秋季的菜籽粉和夏季的化肥)。所使用的deltaN15肥料为:硫酸铵中-1.0o / oo,硝酸铵中-0.8o / oo和菜籽粕中+ 5.3o / oo。在两个田间,0-20 cm层土壤的delta15N值相似,而在油菜粕处理下,20-40 cm层土壤的delta15N值高〜1o / oo。油菜粉田土壤溶液的delta15N值较高,约为〜7o / oo,而常用肥料施肥的土壤上层土壤的delta15N值通过使用化学肥料降低。茶树的delta15N值反映了土壤溶液的δ15N值,在菜籽粕领域较高。通常,茶树的delta15N值低于土壤溶液的平均值,这可能是由于化学肥料氮的快速吸收,也归因于从土壤溶液吸收氮的同位素分馏。不同茶器官中delta15N值的变化表明植物体内氮代谢和氮转运过程中氮同位素的分馏。

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