中国农业科技导报 ›› 2017, Vol. 19 ›› Issue (10): 66-72.DOI: 10.13304/j.nykjdb.2017.0097

• 资源环境 生物药物 生物质转化 • 上一篇    下一篇

铵态氮和硝态氮对谷子形态和生物量的影响研究

崔纪菡1,2§,赵静1§,孟建3,刘猛1,赵宇1, 宋世佳1,夏雪岩1*,李顺国1*   

  1. 1.河北省农林科学院谷子研究所, 河北省杂粮研究实验室, 石家庄 050035; 2.河北农业大学农学院, 河北 保定 071000; 3.河北省农业技术推广站, 石家庄 050000
  • 收稿日期:2017-02-28 出版日期:2017-10-15 发布日期:2017-04-24
  • 通讯作者: 李顺国,研究员,硕士,研究方向为谷子栽培与经济。E-mail:lishunguo76@163.com;夏雪岩, 研究员,硕士,研究方向为作物栽培与育种。E-mail:xyxia7808@126.com
  • 作者简介:§崔纪菡与赵静为本文共同第一作者。崔纪菡,助理研究员,博士,研究方向为作物栽培。E-mail:cuijihancau@126.com;赵静,本科生,研究方向为生物科学。E-mail:821959754@qq.com。
  • 基金资助:
    公益性行业(农业)科研专项(201303133-1-6);河北省渤海粮仓科技示范工程项目;河北省科技研发计划项目(17236405D);石家庄市科学技术研究与发展计划项目(171490248A);河北省农林科学院农业科技创新人才队伍建设项目(F17E04)资助。

Effect of Ammonium Nitrogen and Nitrate Nitrogen on the Morphology and Biomass of Foxtail Millet (Setaria italic L.)

CUI Jihan1,2§, ZHAO Jing1§, MENG Jian3, LIU Meng1, ZHAO Yu1, SONG Shijia1, XIA Xueyan1*, LI Shunguo1*   

  1. 1.Minor Cereal Crops Research Laboratory of Hebei Province, Institute of Millet Crops, Hebei Academy of Agricultural and Forestry Sciences, Shijiazhuang 050035; 2.College of Agronomy, Hebei Agicultural University, Hebei Baoding 071000; 3.Hebei Agricultural Technology Extension General Station, Shijiazhuang 050011, China
  • Received:2017-02-28 Online:2017-10-15 Published:2017-04-24

摘要: 为了明确铵态氮和硝态氮营养对谷子形态和生物量的影响,合理选择谷子施氮形式,采用蛭石浇灌不同氮形态营养液的方法培养谷子植株。结果表明:两种氮形态显著影响了谷子形态和生物量累积,氮形态对根形态、穗长的促进作用无显著差异。氮形态在生物量、株高、叶面积、叶绿素含量方面的影响存在显著差异:相比铵态氮,硝态氮分别提高了17%的根重、32%的茎重、39%的叶重和40%的总生物量,硝态氮还提高了38%的株高和40%的叶面积;相比硝态氮,铵态氮提高了173%的叶绿素含量和12%的穗重。氮形态在根冠比和穗比重也存在极显著差异,相比硝态氮,铵态氮显著提高了8%的根冠比和44%的穗比重。以上结果表明,硝态氮显著促进谷子株高、叶面积、生物量的提高,在株体扩建方面发挥重要的作用,铵态氮显著促进谷子叶绿素合成和生殖器官建成,在功能建成方面发挥重要作用。

关键词: 铵态氮, 硝态氮, 谷子, 形态, 生物量

Abstract: In order to study the effect of ammonium nitrogen and nitrate nitrogen on morphology and biomass of foxtail millet (Setaria italic L.), and to provide effective references for reasonable selection of suite nitrogen form to foxtail miller, vermiculite cultivation method was adopted with nutrient solution. The results showed that the 2 nitrogen forms could significantly affect the morphology and biomass of foxtail millet, and nitrogen forms had no significant influence on root morphology and spike length. But, there were significant differences in influence of nitrogen form on plant height, biomass, leaf area and leaf chlorophyll content. Compared with ammonium nitrogen, nitrate nitrogen increased root weight by 17%, stem weight by 32%, leaf weight by 39%, total biomass by 40%. Besides, nitrate nitrogen increased plant height by 38%, leaf area by 40%. Compared with nitrate nitrogen, ammonium nitrogen increased chlorophyll content by 173%, and spike weight by 12%. There were significant differences in root/shoot ratio and spike proportion. Compared with nitrate nitrogen, ammonium nitrogen had increased root/shoot ratio by 8% and spike proportion by 44%. The above mentioned results indicated that nitrate nitrogen could significantly promote plant height, leaf area and biomass. While, ammonium nitrogen could significantly stimulate the synthesis of chlorophyll and construction of reproductive organ.

Key words: nitrate nitrogen, ammonium nitrogen, foxtail millet, morphology, biomass