沟施15N标记蔗叶的氮去向及对后茬甘蔗氮吸收的贡献

Nitrogen Fate of 15N-labeled Sugarcane Leaves in Furrow Application and Its Contribution to Nitrogen Uptake of the Subsequent Sugarcane Crop

  • 摘要:
    目的 探究沟施方式下蔗叶氮在后续两季甘蔗系统中的去向。
    方法 以甘蔗品种桂糖44号为材料,在田间条件下,分析15N标记蔗叶100%沟底施(R1)、100%沟面施(R2)、50%沟底施 + 50%沟面施(R3)、100%与沟土掺混(R4)的氮利用与去向。
    结果 4个处理的蔗叶氮分别有5.00% ~ 6.48%、5.55% ~ 6.25%被新植蔗和第一季宿根蔗吸收,对新植蔗和宿根蔗所需氮的贡献率分别为3.10% ~ 3.33%、2.02% ~ 2.20%,其中R1的吸收利用率累积较其他处理加0.25 ~ 1.97个百分点。种植两季甘蔗后,4个处理蔗叶氮残留在40 cm以上土层,残留率为55.00% ~ 61.65%,但R1残留较多,R4残留较少;蔗叶氮损失率为27.80% ~ 32.48%,但R4损失较多,R1损失较少。两季蔗茎干物质积累量累积以R4最高,较其他处理增加5.48% ~ 20.36%。
    结论 还田蔗叶氮的吸收利用率较低、残留较多,对甘蔗所需氮的直接贡献较小,但R4蔗茎生物产量较高。

     

    Abstract:
    Objective The aim was to investigate the fate of nitrogen (N) from sugarcane leaves under furrow application in the subsequent two sugarcane seasons, in order to provide a basis for the efficient utilization of sugarcane leaf incorporation into the soil.
    Method Using the sugarcane variety Guitang 44 as the experimental material, the N utilization and fate of 15N-labeled sugarcane leaves were analyzed with four treatments in the field: 100% leaves applied at the bottom of furrows (R1), 100% leaves applied on the surface of furrows (R2), 50% leaves applied at the bottom of furrows + 50% leaves applied on the surface of furrows (R3), and 100% leaves mixed with furrow soil (R4).
    Result Across the four treatments, 5.00% - 6.48% and 5.55% - 6.25% of N from sugarcane leaves were absorbed by newly planted sugarcane and first-ratoon sugarcane, respectively. The N from sugarcane leaves contributed 3.10% - 3.33% and 2.02% - 2.20% to the N requirements of newly planted sugarcane and first-ratoon sugarcane, respectively. The utilization rate of N from sugarcane leaves in R4 was cumulatively 0.25 - 1.97 percentage points higher than that in the other treatments. After two crops, the N from sugarcane leaves was retained in the soil layer above 40 cm for all treatments, with a residual rate of 55.00% - 61.65%, where R1 had higher residues and R4 had lower residues. The loss rate of N from sugarcane leaves was 27.80% - 32.48%, with R4 having higher losses and R1 having lower losses. In two crops, the cumulative dry matter accumulation in sugarcane stalks was the highest in R4, increasing by 5.48% - 20.36% compared with the other treatments.
    Conclusion The absorption and utilization rate of N from incorporated sugarcane leaves was very low, with a large amount of residue remaining, and its contribution to the N requirements of sugarcane was limited.

     

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