• 中文核心期刊
  • CSCD来源期刊
  • 中国科技核心期刊
  • CA、CABI、ZR收录期刊

不同供磷水平对水生绿肥红萍生物固氮效率和生长速率的影响

Effects of Phosphorus Applications on Growth and Biological Nitrogen Fixation of Azolla

  • 摘要:
    目的 红萍(Azolla)是稻田优质水生绿肥,具有极高的生物固氮(Biological nitrogen fixation, BNF)效率。供磷水平是决定红萍能否快速生长和高效固氮的关键因素之一。本研究旨在探明不同磷水平对红萍生长和固氮作用的影响。
    方法 通过温室水培试验,设置低磷(对照,1.1 mg·L−1 P)、中磷(11 mg·L−1 P)和高磷(22 mg·L−1 )3个处理,测定不同处理下红萍的生物量、生长速率、BNF速率、生物固氮量,以及红萍的可溶性糖含量、含氮率、种群厚度、覆盖度、根长、叶间距等形态的变化。
    结果 供磷水平对红萍的生长和BNF效率具有显著影响。低磷、中磷和高磷处理下,红萍生物量鲜重每周分别增长747、967、1184 g·m−2,生物固氮量每周分别增长1.78、2.41、3.05 g·m−2。与低磷处理相比,中磷和高磷处理分别使红萍生长速率增加29%和58%,路径分析表明红萍生长速率的增加得益于红萍BNF速率和生物固氮量的增加,BNF速率在中磷和高磷处理下增幅分别高达36%和71%。而BNF速率的增加得益于红萍可溶性糖周转的加快以及红萍覆盖度的提高。
    结论 增施磷肥可大幅提高红萍的生物固氮效率和生长速率,养萍初期通过重施磷肥可快速实现红萍的快速扩繁和对水面的全覆盖,本研究可为稻田养萍技术的应用提供科学指导。

     

    Abstract:
    Objective Being an element promoting the biological nitrogen fixation (BNF) of the potentially applicable aquatic green fertilizer Azolla for rice farming, phosphorus (P) application was evaluated to optimize the practice.
    Method In a greenhouse hydroponic experimentation, low P (LP as control at 1.1 mg·L−1), medium P (MP at 11 mg·L−1 ), or high P (HP at 22 mg·L−1) was applied to grow azolla plants. Biomass, growth rate, BNF rate, BNF amount, morphology, soluble sugar, nitrogen, population thickness, growth area, root length, and leaf spacing of the azolla plants were measured.
    Result P applications affected significantly on the azolla growth and BNF. Weekly, the applications yielded the fresh plant biomass at 747 g·m−2 on LP, 967 g·m−2 on MP, and 1184 g·m−2 on HP, and the BNF amount at 1.78 g·m−2 on LP, 2.41 g·m−2 on MP, and 3.05 g·m−2 on HP. MP and HP boosted the growth rate by 29% and 58%, respectively, over LP. The path analysis attributed the enhancements to the up to 36% rises on BNF rate and 71% on BNF amount. And the BNF rate was increased due to an accelerated soluble sugar conversion and expanded growth area of the plants on the pond.
    Conclusion The increased supply of P significantly enhanced the BNF and growth of azolla. Thereby, rapid propagation and extended coverage on the water surface of the plants were achieved at the initial stage of cultivation. By virtue of co-cultivation with azolla in a paddy field, rice production could be significantly improved through the highly efficient BNF of the aquatic fern.

     

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