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不同基质和生长调节剂对陀螺果硬枝扦插生根及生长的影响
Effects of Different Substrates and Growth Regulators on Rooting and Growth of Melliodendron xylocarpum Cuttings
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摘要: 为探究不同基质和生长调节剂对陀螺果硬枝扦插生根及苗木生长的影响,采用4因素3水平正交试验设计,系统分析了基质配比、生长调节剂的种类与浓度、处理时间等因素对扦插苗根系形态及苗木生长的影响。结果表明:V(蛭石)∶V(珍珠岩)=3∶1基质有利于扦插苗根径增粗但抑制纵向生长;V(黄沙)∶V(蛭石)=1∶1基质有利于提高扦插苗比根长、生长长度与生物量;纯蛭石基质处理显著促进扦插苗根系数量与根系表面积增长。IAA处理有利于提高扦插苗的生根率和比根长,生长调节剂浓度为500 mg/L的处理扦插苗在生根率和地上部分生物量上显著优于其他处理。30 min生长调节剂处理时间表现最优,能够提高扦插苗生根率和地上部分生物量。极差分析显示,4因素对各生长指标的综合影响依次为生长调节剂浓度>处理时间>基质配比>生长调节剂种类。因此,T6处理的扦插苗生根率达100 %,且根系质量及苗木生长方面最好,隶属函数值最高;T8与T14处理次之,T9处理效果最差。Abstract: To investigate the effects of different substrate compositions and plant growth regulators on the rooting and seedling growth of Melliodendron xylocarpum hardwood cuttings, a four-factor, three-level orthogonal experimental design was conducted. The study systematically analyzed the effects of substrate composition, type and concentration of growth regulators, and treatment duration on root morphology, and seedling growth. The results demonstrated that a vermiculite: perlite (3∶1) substrate promoted root diameter thickening but inhibited vertical growth, whereas a river sand: vermiculite (1∶1) mixture enhanced specific root length, shoot elongation, and biomass accumulation. Pure vermiculite significantly improved root number and surface area (P<0.05). Among growth regulators, IAA treatment effectively enhanced rooting percentage and specific root length. A concentration of 500 mg/L significantly increased rooting rate and aboveground biomass (P<0.05). A 30-minute treatment duration yielded the most favorable outcomes across multiple parameters. Range analysis indicated that growth regulator concentration exerted the greatest influence on overall performance, followed by treatment duration, substrate composition, and growth regulator type. Comprehensive evaluation showed that treatment T6 achieved a 100% rooting rate and the best root quality and seedling growth performance, with the highest membership function value (0.73). Treatments T8 and T14 ranked second and third, respectively, while T9 was the least effective. This study provides theoretical and technical support for optimizing the cutting propagation techniques of Melliodendron xylocarpum.