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Nitrogen Fertilization and Irrigation Frequency Affect Hydrangea Growth and Nutrient Uptake in Two Container Types

机译:氮肥和灌溉频率影响绣球生长和两种集装箱类型的营养吸收

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摘要

Plant growth, water use, photosynthetic performance, and nitrogen (N) uptake of 'Merritt's Supreme' hydrangea (Hydrangea macrophylla) were investigated. Plants were fertilized with one of five N rates (0, 5, 10, 15, or 20 mM from NH4NO3), irrigated once or twice per day with the same total daily amount of water, and grown in either a paper biodegradable container or a traditional plastic container. Greater N rate generally increased plant growth index (PGI) in both plastic and biocontainers. Leaf and total plant dry weight (DW) increased with increasing N rate from 0 to 20 mM and stem and root DW were greatest when fertilized with 15 mM and 20 mM N. Plants fertilized with 20 mM N had the greatest leaf area and chlorophyll content in terms of SPAD reading. Container type had no influence on DW accumulation or leaf area. N concentrations (%) in leaves, roots, and the entire plant increased with increasing N rate. N concentrations in roots and in the entire plant were lower in biocontainers compared with plastic containers. Greater N rate generally increased daily water use (DWU), and biocontainers had greater DWU than plastic containers. The 20 mM N rate resulted in the highest net photosynthetic rate measured on 11 Sept. and 22 Sept. (65 and 76 days after treatment). Net photosynthetic rate (measured on 8 Oct.) and stomatal conductance (g(S)) (measured on 27 Aug., 22 Sept., and 8 Oct.) were lower in biocontainers compared with plastic containers. Two irrigations per day resulted in higher substrate moisture at 5-cm depth than one irrigation per day, and slightly increased PGI on 19 Aug. However, irrigation frequency did not affect photosynthetic rate, gS, or N uptake of hydrangea plants except in stems. Considering the increased water use of hydrangea plants when grown in the paper biocontainer and lower plant photosynthesis and N uptake, the tested paper biocontainer may not serve as a satisfactory sustainable alternative to traditional plastic containers.
机译:研究了植物生长,用水,光合性能和氮气(N)的含有'Merritt的至尊'绣球花(绣球花质Macrophylla)的摄取。用五个速率(0,5,11,15或20mm的植物,每天灌溉一次或两次,每天两次施用,并在纸可生物降解的容器或A中生长传统塑料容器。在塑料和生物容器中,较大的N比率通常增加植物生长指数(PGI)。叶片和总植物干重(DW)随着0至20毫米的速率增加而增加,茎和根DW最大,当用15毫米和20毫米N.用20 mm n受精时,植物有最大的叶面积和叶绿素含量在Spad阅读方面。容器类型对DW累积或叶面积没有影响。 N浓度(%)在叶子,根和整个植物中随着N的增加而增加。与塑料容器相比,生物切割器中的根部和整个植物中的浓度较低。较大的N率通常增加日常用水(DWU),生物切割器具有比塑料容器更大的DWU。 20毫米的速率导致9月11日和9月22日测量的最高净光合速率。(治疗后65和76天)。净光合速率(10月8日测量)和气孔电导(G(S))(9月22日测量,9月22日和10月8日测量)与塑料容器相比,生物切割仪较低。每天两次灌溉导致较高的底物水分在5厘米的灌溉中,每天灌溉,8月19日略微增加。然而,除茎外,灌溉频率不会影响绣球花植物的光合速率,GS或N吸收。考虑到绣球花植物的用水量增加时,在纸生长和较低的植物光合作用和N吸收中,测试纸生物切割器可能不作为传统塑料容器的令人满意的可持续替代品。

著录项

  • 来源
    《HortScience》 |2019年第1期|共8页
  • 作者单位

    Mississippi State Univ Dept Plant &

    Soil Sci Mississippi State MS 39762 USA;

    Mississippi State Univ Dept Plant &

    Soil Sci Mississippi State MS 39762 USA;

    Mississippi State Univ Dept Plant &

    Soil Sci Mississippi State MS 39762 USA;

    Mississippi State Univ Dept Plant &

    Soil Sci Mississippi State MS 39762 USA;

    ARS USDA Hort Crops Res Lab 3420 NW Orchard Ave Corvallis OR 97330 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 园艺;
  • 关键词

    nitrogen rate; water use; biocontainer;

    机译:氮速度;用水;生物纳米;

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