不同施肥处理对芳樟叶精油及其主成分芳樟醇含量的影响  被引量:18

Effect of different fertilizer treatments on contents of essential oil and its main composition linalool in leaves of Cinnamomum camphora var.linaloolifera

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作  者:于静波[1] 张国防[1] 李左荣[1] 冯娟[1] 

机构地区:[1]福建农林大学林学院,福建福州350002

出  处:《植物资源与环境学报》2013年第1期76-81,共6页Journal of Plant Resources and Environment

基  金:福建省自然科学基金资助项目(2010j01064)

摘  要:为探讨不同施肥处理对芳樟(Cinnamomum camphora var.linaloolifera Fujita.)叶精油及其主成分芳樟醇含量的影响,运用三元二次回归正交旋转组合设计检测了不同N、P和K施肥条件下芳樟1年生扦插苗叶精油的含量和芳樟醇的相对含量并建立数学模型;通过对数学模型拟合的回归方程进行最优求解,确定最优施肥配比。结果表明:不同施肥处理对芳樟叶精油及芳樟醇相对含量的影响极显著,精油质量分数为1.53%~2.30%、芳樟醇相对含量为88.36%~94.87%。显著性分析结果显示:N和K施用量对精油含量分别有极显著和显著影响,N施用量对芳樟醇相对含量有显著影响而K施用量无显著影响,P施用量对精油含量和芳樟醇相对含量均无显著影响。N、P和K施用量与精油含量和芳樟醇相对含量数学模型的回归方程分别为Y=1.054+0.392X1-0.037X2+0.280X3+0.014X1X2-0.022X1X3+0.018X2X3-0.057X12+0.001X22-0.053X32和Y=87.206+2.802X1-0.279X2+1.115X3+0.180X1X2-0.147X1X3+0.396X2X3-0.525X12-0.137X22-0.275X32;据此计算出最优精油含量为2.22%,对应的N、P和K的每盆施用量分别为3.52、5.00和2.76 g;最优芳樟醇相对含量为95.18%,对应的N、P和K的每盆施用量分别为2.84、5.00和4.87 g。研究结果显示:N施用量对芳樟叶精油含量和芳樟醇相对含量的影响最大,最优精油含量和最优芳樟醇相对含量对应的施肥配比不完全相同,在生产中应根据生产目的并综合考虑各种环境因素确定合适的N、P和K施肥配比。In order to discuss influence of different fertilizer treatments on contents of essential oil and its main composition linalool in leaves of Cinnamomum camphora var. linaloolifera Fujita., essential oil content and linalool relative content in leaves of one-year-old cutting seedlings of C. camphora var. linaloolifera under different fertilizer conditions of N, P and K were tested by quadratic regression orthogonal rotational combination design with three factors and the mathematical models were established. And the optimal solution was obtained by mean of the established regression equation to determine the optimal fertilizer ratio. The results show that effect of different fertilizer treatments on essential oil content and linalool relative content are extremely significant, the mass ratio of essential oil is 1.53%-2.30%, while linalool relative content is 88.36%-94.87%. The significance analysis result shows that fertilizer amount of N and K have extremely significant and significant effects on essential oil content, respectively, while fertilizer amount of N has significant effect on linalool relative content but fertilizer amount of K has no significant effect on it, and fertilizer amount of P has no significant effect on both essential oil content and linalool relative content. The regression equations of the established mathematical models of essential oil content and linalool relative content with fertilizer amounts of N, P and K are Y = 1. 054+ 0. 392X1-0. 037X2 +0.280X3 +0. 014X1 X2-0.022X1X3 +0. 018X2X3 -0.057X1^2 +0. 001X2^2-0. 053X3^2 and Y = 87. 206 + 2. 802X1- 0. 279X2+ 1. 115X3+ 0. 180X1X2-0. 147X1X3+0. 396X2X3-0. 525X12-0. 137X2^2-0. 275X3^2, respectively. According to the regression equations, the calculated optimal content of essential oil is 2.22%, and the corresponding fertilizer amount per pot for N, P and K is 3.52, 5.00 and 2. 76 g, respectively; the optimal linalool relative content is 95. 18%, and the corresponding fertilizer amount per pot of N, P and K is 2.84, 5.00 an

关 键 词:芳樟 施肥处理 叶精油 芳樟醇 三元二次回归正交旋转组合设计 

分 类 号:Q946.8[生物学—植物学] S792.23[农业科学—林木遗传育种]

 

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