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首页> 外文期刊>HortScience >Effects of Irrigation Water Salinity on the Growth, Gas Exchange Parameters, and Ion Concentration of Hot Pepper Plants Modified by Leaching Fractions
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Effects of Irrigation Water Salinity on the Growth, Gas Exchange Parameters, and Ion Concentration of Hot Pepper Plants Modified by Leaching Fractions

机译:浸出水分对浸出级分改性辣椒植物生长,气体交换参数和离子浓度的影响

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摘要

In this experiment, the responses of plant growth, gas exchange parameters, and ion concentration to different levels of irrigation water salinity (ECiw of 0.9, 1.6, 2.7, 4.7 and 7.0 dS.m(-1)) and leaching fractions (LFs of 0.17, 0.29) were investigated in hot pepper plants. The pot experiment was conducted using a completely randomized block design with four replications in a rain shelter. Results showed that the height of the hot pepper plants decreased as the ECiw was increased from 25 d after transplanting (DAT) and increased when the LF was increased from 55 DAT. Neither the ECiw nor the LF influenced the root length. An increase in the EC iw caused the suppression of the stem diameter (SD); leaf length; leaf area; leaf chlorophyll content (CCI); dry biomass of roots, stems, and leaves; net photosynthesis (P-n); stomatal conductance (g(s)); transpiration rate (T-r); and intercellular CO2 concentration (C-i). An increase in the LF caused the SD, leaf length, leaf area, and dry biomass of stems and leaves to increase. However, the dry biomass of roots and the P-n, g(s), T-r, and C-i were not significantly affected by the LF, except for the C-i measured on 23 DAT and the T-r on 76 DAT. The Na+ concentrations in the roots and stems increased, whereas the K+/Na+ ratios decreased as the ECiw increased. An increase in the LF led to a decrease in the Na+ concentration of the roots and stems, whereas there was an increase in the K+ concentration in the stems and the K+/Na+ ratios in the roots and stems. Collectively, an increase in the ECiw had an adverse effect on plant growth and gas exchange and led to the accumulation of the Na+ concentration in the roots and stems, whereas an increase in the LF enhanced plant growth, leaf transpiration, and K+ concentration and reduced the accumulation of the Na+ concentration in the roots and stems. We suggest that higher quantity of water should be applied in higher saline irrigation for satisfactory performance for hot pepper growth.
机译:在该实验中,植物生长,气体交换参数和离子浓度的反应与不同水平的灌溉水盐水(ECIW为0.9,1.6,2.7,4.7和7.0 ds.m(-1))和浸出级分(LFS在辣椒植物中研究了0.17,0.29)。使用完全随机化的块设计进行罐实验,在雨水避难所中有四种复制。结果表明,在移植后(DAT)后ECIW从25d增加,辣椒植物的高度随着25天而增加,当LF从55日增加时增加。 ECIW和LF都不会影响根长度。 EC IW的增加导致杆直径抑制(SD);叶长度;叶面积;叶叶绿素含量(CCI);干生物量根,茎和叶子;净光合作用(P-N);气孔电导(g(s));蒸腾率(T-R);和细胞间CO 2浓度(C-1)。 LF的增加导致SD,叶长度,叶面积和干生物质和干生物量增加。然而,除了在23个DAT和76 DAT上测量的C-I测量外,RF的干生物量和P-N,G(S),T-R和C-1没有显着影响。根部和茎中的Na +浓度增加,而k + / na +比随着ECIW的增加而降低。 LF的增加导致根部和茎的Na +浓度的降低,而茎中的K +浓度增加,根部和茎中的K + / Na +比率增加。集体,ECIW的增加对植物生长和气体交换产生不利影响,并导致了根部和茎中Na +浓度的积累,而LF增强的植物生长,叶片蒸腾和k +浓度增加根和茎中Na +浓度的积累。我们建议较高量的水应适用于盐水灌溉以获得令人满意的辣椒生长性能。

著录项

  • 来源
    《HortScience》 |2018年第7期|共6页
  • 作者单位

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Jiangsu Key Lab Agr Meteorol Nanjing 210044 Jiangsu Peoples R China;

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Jiangsu Key Lab Agr Meteorol Nanjing 210044 Jiangsu Peoples R China;

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Jiangsu Key Lab Agr Meteorol Nanjing 210044 Jiangsu Peoples R China;

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Jiangsu Key Lab Agr Meteorol Nanjing 210044 Jiangsu Peoples R China;

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Jiangsu Key Lab Agr Meteorol Nanjing 210044 Jiangsu Peoples R China;

    Hohai Univ Coll Water Conservancy &

    Hydropower Engn Nanjing 210098 Jiangsu Peoples R China;

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

    leaching levels; photosynthetic response; leaf transpiration; stomatal conductance; K+/Na+ ratio;

    机译:浸出水平;光合作用响应;叶片蒸腾;气孔电导;K + / Na +比率;

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