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增施CO2与LED补光互作对辣椒光合作用及品质的影响

王翠丽 杨世梅 陈志国 谢忠清 张自强

王翠丽,杨世梅,陈志国,等. 增施CO2与LED补光互作对辣椒光合作用及品质的影响 [J]. 福建农业学报,2022,37(1):67−73 doi: 10.19303/j.issn.1008-0384.2022.01.009
引用本文: 王翠丽,杨世梅,陈志国,等. 增施CO2与LED补光互作对辣椒光合作用及品质的影响 [J]. 福建农业学报,2022,37(1):67−73 doi: 10.19303/j.issn.1008-0384.2022.01.009
WANG C L, YANG S M, CHENG Z G, et al. Effects of CO2 and Supplemental LED on Photosynthesis and Quality of Chili Peppers [J]. Fujian Journal of Agricultural Sciences,2022,37(1):67−73 doi: 10.19303/j.issn.1008-0384.2022.01.009
Citation: WANG C L, YANG S M, CHENG Z G, et al. Effects of CO2 and Supplemental LED on Photosynthesis and Quality of Chili Peppers [J]. Fujian Journal of Agricultural Sciences,2022,37(1):67−73 doi: 10.19303/j.issn.1008-0384.2022.01.009

增施CO2与LED补光互作对辣椒光合作用及品质的影响

doi: 10.19303/j.issn.1008-0384.2022.01.009
基金项目: 甘肃省青年科技基金计划项目(20JR5RA070)
详细信息
    作者简介:

    王翠丽(1989−)女,硕士,助理研究员,主要从事设施蔬菜栽培生理与生长调控研究(E-mail:wangcl1116@163.com

    通讯作者:

    陈志国(1972−),男,副研究员,主要从事设施农作物病虫害防治研究(E-mail:157504778@qq.com

    谢忠清(1967−),男,高级农艺师,主要从事设施农作物生长调控研究(E-mail:1072207627@qq.com

  • 中图分类号: S 641.3

Effects of CO2 and Supplemental LED on Photosynthesis and Quality of Chili Peppers

  • 摘要:   目的  探究增施CO2与LED补光对日光温室辣椒光合特性和品质的影响,以期为提高日光温室辣椒光合作用和品质提供理论依据。  方法  以“华美105”辣椒为试材,采用二因素随机区组设计。因素L为LED补光,设3 个水平:L1(自然光)、L2(R∶B=5∶1)、L3(R∶B∶W=3∶2∶1);因素C为CO2含量,设2个水平:C1:自然条件下的 CO2含量为(400±50)μL·L−1,C2:增施CO2,使其含量为(800±50)μL·L−1;共6个处理:L1C1(对照)、L1C2、L2C1、L2C2、L3C1、L3C2。  结果  结果表明:增施CO2与LED补光能够增加辣椒株高和茎粗,L2C2和L3C2处理株高和茎粗均显著高于对照,株高和茎粗分别为88.33 cm,93.00 cm和12.00 mm,13.34 mm。L2C2处理辣椒叶绿素a、叶绿素b和总叶绿素含量较其他处理显著提高。增施CO2与LED补光增强辣椒净光合速率(Pn),各处理之间Pn无差异,但显著高于CK,其中L2C2处理Pn最高,较CK增加36.70%。维生素C、可溶性糖、可溶性蛋白均表现为L2C2和L3C2高于其他处理。  结论  对辣椒进行增施CO2与LED补光互作可有效提高辣椒光合特性和品质,其中L2C2处理可作为当地日光温室越冬茬辣椒栽培的最优选择。
  • 表  1  试验处理

    Table  1.   Treatments applied

    处理
    Treatment
    LED光
    LED lighting
    CO2含量
    CO2 concentration/(μL·L−1
    L1C1自然光400± 50
    L1C2自然光800 ± 50
    L2C1R∶B=5∶1400± 50
    L2C2R∶B=5∶1800 ± 50
    L3C1R∶B∶W=3∶2∶1400± 50
    L3C2R∶B∶W=3∶2∶1800 ± 50
    下载: 导出CSV

    表  2  增施CO2与LED补光互作对辣椒株高、茎粗的影响

    Table  2.   Effect of CO2 and LED on height and stem girth of pepper plant

    处理
    Treament
    株高
    Plant height/cm
    茎粗
    Stem diameter/mm
    L1C174.66±2.02 c9.68±0.37 c
    L1C275.67±2.18 bc10.02±0.30 bc
    L2C178.33±2.01 bc11.50±0.19 b
    L2C288.33±2.06 a13.34±0.57 a
    L3C184.67±2.18 ab10.47±0.32 bc
    L3C293.00±0.77 a12.00±0.28 ab
    注:表中同列不同字母表示不同处理之间差异显著(P<0.05)。
    Note: The different letters on a same column indicate significant differences between treatments (P<0.05).
    下载: 导出CSV

    表  3  增施CO2与LED补光互作对叶绿素含量的影响

    Table  3.   Effect of increased CO2 and supplemental LED on chlorophyll content of pepper plant

    处理
    Treament
    叶绿素a
    Chlorophyll a/(mg·g−1)
    叶绿素b
    Chlorophyll b/(mg·g−1)
    总叶绿素
    Chlorophyll/(mg·g−1)
    叶绿素a/b
    Chlorophyll a/b
    L1C10.89±0.05 c0.12±0.02 c1.02±0.08 c7.81±0.02 a
    L1C21.07±0.03 bc0.23±0.03 b1.29±0.03 b4.93±0.01 b
    L2C11.14±0.06 b0.20±0.01 bc1.34±0.06 b5.72±0.02 b
    L2C21.44±0.05 a0.34±0.01 a1.77±0.03 a4.33±0.02 c
    L3C11.04±0.08 bc0.25±0.02 ab1.29±0.10 b4.24±0.01 b
    L3C21.13±0.05 b0.29±0.04 ab1.42±0.09 b4.06±0.05 ab
    下载: 导出CSV

    表  4  增施CO2与LED补光互作对辣椒光合作用的影响

    Table  4.   Effect of increased CO2 and supplemental LED on photosynthesis of pepper plant

    处理Treament净光合速率Pn/(μmol·m−2·s−2 )胞间二氧化碳浓度Ci/(μmol·mol−1)气孔导度Gs/(mmo·m−2·s−2 )蒸腾速率Tr/(mmol·m−2·s−2
    L1C113.00±0.13b0.20±0.01b279.28±32.81b3.19±0.07b
    L1C213.63±1.36a0.33±0.07ab318.00±9.23ab3.56±0.51b
    L2C114.45±1.72a0.27±0.04ab304.67±34.25ab4.06±0.01ab
    L2C217.77±0.89a0.50±0.10a340.45±14.87a4.59±0.18a
    L3C113.57±0.75a0.34±0.04ab340.92±23.38a4.01±0.28ab
    L3C216.64±0.47a0.51±0.10a347.86±14.25a4.31±0.14a
    下载: 导出CSV

    表  5  增施CO2与LED补光互作对辣椒品质的影响

    Table  5.   Effect of increased CO2 and supplemental LED on chili pepper quality

    处理
    Treament
    维生素C含量
    Content of VC/
    (mg·g−1)
    可溶性糖含量
    Content of
    soluble sugar/
    %
    可溶性蛋白含量
    Content of
    soluble protein/
    (mg·g−1)
    L1C10.17±0.01 d0.96±0.05 c1.35±0.11 c
    L1C20.28±0.01 c1.02±0.03 c1.37±0.21 c
    L2C10.31±0.05 bc1.39±0.09 bc1.72±0.01 b
    L2C20.43±0.01 a1.73±0.21 a2.31±0.04 a
    L3C10.37±0.04 b1.57±0.21 ab1.87±0.01 b
    L3C20.39±0.04 ab1.78±0.04 a2.10±0.02 ab
    下载: 导出CSV
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  • 收稿日期:  2021-08-09
  • 修回日期:  2021-10-19
  • 网络出版日期:  2022-01-21
  • 刊出日期:  2022-01-28

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