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不同树龄牛樟枝条和叶片木质纤维素与精油成分分析

Analysis of lignocellulose and essential oil components in branches and leaves of Cinnamomum kanahirae at different ages

  • 摘要: 为缓解牛樟芝段木栽培对10 a以上高龄牛樟的依赖,本研究系统评估了5、8、10年生牛樟枝条与叶片的理化特性及精油特征,探讨低龄组织替代高龄段木的可行性。每树龄选3株健康牛樟,采集枝条与叶片样品,测定纤维素、半纤维素、木质素、可溶性糖、淀粉及生物碱含量;采用水蒸气蒸馏- 气相色谱-质谱联用技术分析精油得率与成分。结果表明:5、8年生牛樟叶片的可溶性糖含量显著高于10年生,淀粉含量则显著低于后者;枝条木质素含量在不同树龄间无显著差异;5年生牛樟叶片精油得率为1.5%,显著高于10年生(0.8%)。低龄组织的纤维素、半纤维素含量略高于高龄组织,木质素含量相近,且生物碱可通过水浸处理有效降低。5、8年生牛樟枝条与叶片在主要碳骨架成分及精油产量上具备替代高龄段木的潜力,后续可通过水浸、酶解等工艺优化可溶性糖、淀粉及生物碱含量,使其营养环境接近10年生木材,为牛樟芝短周期栽培提供新原料。

     

    Abstract: To alleviate the dependence of Taiwanofungus camphorata cultivation on Cinnamomum kanehirae (CK) logs older than 10 years, we systematically evaluated the physicochemical traits and essential oil profiles of young CK branches and leaves to explore their feasibility as substitutes. Leaves and branches were harvested from three trees at each age (5, 8 and 10 years). The contents of cellulose, hemicellulose, lignin, soluble sugar, starch and alkaloids were quantified. The essential oil yield and components were analyzed by steam distillation coupled with GC/MS. The soluble sugar content in the leaves of 5- and 8-year-old CK trees was significantly higher than that of 10-year-old trees, while the starch content was significantly lower. No significant differences in lignin content were observed among the branches of different ages. The essential oil yields of the leaves of 5-year-old CK trees was1.5%, which were significantly higher than that of 10-year-old trees (0.8%) (P=0.0455). The cellulose and hemicellulose contents were slightly higher in young tissues, while the lignin content was similar. The alkaloid content could be readily reduced by water extraction. Thus, 5-8-year-old CK branches and leaves already possess the major carbon skeleton components and oil productivity required to replace 10-year-old logs. Subsequent adjustments to soluble sugar, starch, and alkaloids levels via water soaking or enzymatic treatment can further approximate the nutritional environment of 10-year-old wood, offering new feedstock for short-cycle T. camphorata cultivation.

     

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