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Nitrogen Accumulation and Root Distribution of Grafted Tomato Plants as Affected by Nitrogen Fertilization

机译:氮肥造成嫁接番茄植物的氮气积累与根系

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Growth and yield typically increase when tomato plants are grafted to selected interspecific hybrid rootstocks from which distinctive root system morphologies are envisioned to aid nutrient uptake. We assessed these relationships using a range of exogenous nitrogen (N) supplies under field production conditions. This study analyzed the impact of N on growth, root distribution, N uptake, and N use of determinate 'Florida 47' tomato plants grafted onto vigorous, interspecific, hybrid tomato rootstocks 'Multifort' and 'Beaufort'. Six N rates, 56, 112, 168, 224, 280, and 336 kg.ha(-1), were applied to sandy soil in Live Oak, FL, during Spring 2010 and 2011. During both years, the leaf area index, aboveground biomass, and N accumulation (leaf blade, petiole, stem, and fruit) responded quadratically to the increase in N fertilizer rates. Averaged over the two seasons, the aboveground biomass, N accumulation, N use efficiency (NUE), and N uptake efficiency (NUpE) were approximate to 29%, 31%, 30%, and 33% greater in grafted plants than in nongrafted controls, respectively. More prominent increases occurred in the root length density (RLD) in the uppermost 15 cm of soil; for grafted plants, RLD values in this upper 15-cm layer were significantly greater than those of nongrafted plants during both years with an average increase of 69% over the two seasons. Across all the grafted and nongrafted plants, the RLD decreased along the soil profile, with approximate to 60% of the total RLD concentrated in the uppermost 0 to 15 cm of the soil layer. These results demonstrated a clear association between enhanced RLD, especially in the upper 15 cm of soil, and improvements in tomato plant growth, N uptake, and N accumulation with grafting onto vigorous rootstocks.
机译:Growth并且当番茄植物被移植到从中distinctive根系形态被设想以帮助养分吸收selected种间杂种砧木收益率通常会增加。我们使用现场生产条件下的范围内的外源氮(N)耗材评估这些关系。本研究分析的N于生长,根系分布,N摄取,和N使用确定的“佛罗里达47”番茄接枝到剧烈,种间,混合番茄砧木“Multifort”和“螺”的植物的影响。六氮水平,56,112,168,224,280,和336 kg.ha(-1),2010年和2011年春季期间施加到在活橡树,FL,砂土在两次年,叶面积指数,地上生物量,和N积累(叶片,叶柄,茎和果实)二次方响应于N施用量的增加。平均超过两个季节,地上生物量,N积累,N利用效率(NUE),和氮吸收效率(NUpE)为接近29%,31​​%,30%,和33%的在接枝植物比非接枝对照, 分别。更为突出的增加发生在土壤的最上层15厘米根长密度(RLD);用于接枝的植物,在该上部15厘米层RLD值比两者期间年的69%,比两个季节平均增加那些未接枝的植物显著更大。跨所有接枝和非接枝植物中,RLD沿土壤剖面减小,与近似总RLD集中在最上面的0至15厘米的土壤层中的60%。这些结果证明增强的RLD之间有明显的联系,特别是在高15厘米厚的土,并改善番茄植物生长,N摄取和氮累积与接枝到剧烈砧木。

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  • 来源
    《HortScience》 |2019年第11期|共8页
  • 作者单位

    Univ Florida Hort Sci Dept Gainesville FL 32611 USA;

    Univ Florida Hort Sci Dept Gainesville FL 32611 USA;

    Univ Florida Hort Sci Dept Gainesville FL 32611 USA;

    Univ Florida Hort Sci Dept Gainesville FL 32611 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 园艺;
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