武爱龙, 潘浩汉, 吴建阳, 卜浩. 响应面法优化银叶金合欢组培快繁体系[J]. 福建农业科技, 2022, 53(8): 40-49. DOI: 10.13651/j.cnki.fjnykj.2022.08.007
    引用本文: 武爱龙, 潘浩汉, 吴建阳, 卜浩. 响应面法优化银叶金合欢组培快繁体系[J]. 福建农业科技, 2022, 53(8): 40-49. DOI: 10.13651/j.cnki.fjnykj.2022.08.007
    WU Ai-long, PAN Hao-han, WU Jian-yang, BU Hao. Optimization of the Tissue Culture and Rapid Propagation System of Acacia podalyriifolia by Response Surface Method[J]. Fujian Agricultural Science and Technology, 2022, 53(8): 40-49. DOI: 10.13651/j.cnki.fjnykj.2022.08.007
    Citation: WU Ai-long, PAN Hao-han, WU Jian-yang, BU Hao. Optimization of the Tissue Culture and Rapid Propagation System of Acacia podalyriifolia by Response Surface Method[J]. Fujian Agricultural Science and Technology, 2022, 53(8): 40-49. DOI: 10.13651/j.cnki.fjnykj.2022.08.007

    响应面法优化银叶金合欢组培快繁体系

    Optimization of the Tissue Culture and Rapid Propagation System of Acacia podalyriifolia by Response Surface Method

    • 摘要: 为建立银叶金合欢组培快繁技术体系,利用响应面法对其不定芽诱导、增殖以及生根培养基的配方进行优化。在前期单因素预试验基础上,以诱导率、增殖系数以及生根率为响应值,采用中心组合试验(Central Composite Design,CCD)设计以及Box-Behnken(BBD)试验设计响应面法优化银叶金合欢不定芽诱导、增殖及生根培养最佳激素配比。结果表明:银叶金合欢最适宜诱导培养基为MS+3.0 mg·L-16-BA+0.35 mg·L-1IBA+0.2 mg·L-1GA3,诱导率为 62.89%;最佳增殖培养基为MS+0.66 mg·L-16-BA+0.45 mg·L-1IBA+0.11 mg·L-1GA3,增殖系数为3.78;最佳生根培养基为1/2MS+0.64 mg·L-1IBA+0.14 mg·L-1 NAA,生根率为79.91%;同时根据响应面法因素间交互作用的等高线图和响应面图分析发现实际值符合预期。综上所述,通过响应面法建立的回归方程预测与实际试验拟合度较好,可用于银叶金合欢组培培养基条件的优化,移栽基质为黄心土+沙(V黄心土∶V沙=2∶1),移栽成活率可达90%以上。

       

      Abstract: In order to establish the technology system for the tissue culture and rapid propagation of Acacia podalyriifolia, the response surface method (RSM) was used to optimize the adventitious bud induction, proliferation and the rooting medium formula. Based on the previous single factor pre-test, the induction rate, proliferation coefficient and rooting rate were taken as the response values. The response surface methods of Central Composite Design (CCD) and Box-Behnken (BBD) test design were used to optimize the optimal hormone ratio for the adventitious bud induction, proliferation and rooting culture of Acacia podalyriifolia. The results showed that the optimum induction medium was MS+3.0 mg·L-1 6-BA+0.35 mg·L-1 IBA+0.2 mg·L-1 GA3, and the induction rate was 62.89%. The optimal proliferation medium was 1/2MS+0.66 mg/L 6-BA+0.45 mg·L-1 IBA+0.11 mg·L-1 GA3, and the proliferation coefficient was 3.78. The optimal rooting medium was 1/2MS+0.64 mg·L-1 IBA+0.14 mg·L-1 NAA, and the rooting rate was 79.91%. At the same time, the actual value was found to be in line with the expectation according to the contour line map and response surface analysis of the interaction between the factors of response surface method. In conclusion, the prediction of the regression equation established by using the response surface method had a good fitting degree with the actual experiment, which could be used to optimize the medium conditions for tissue culture of Acacia podalyriifolia. The transplanting substrate was yellow subsoil+sand (the volume ratio of yellow subsoil and sand was 2∶1), and the transplanting survival rate could reach more than 90%.

       

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