在高thc含量的大麻(cannabis sativa L.)花序中,腺毛的发育、形态和成熟受植物年龄和基因型的影响。

Zamir K Punja, Darren B Sutton, Tommy Kim
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引用次数: 6

摘要

背景:高四氢大麻酚(thc)植物雌性花序苞片组织上形成的腺状头状毛状体是萜烯和大麻素的重要来源。植物年龄和大麻基因型对头状毛发育、形态和成熟的影响尚未得到广泛研究。了解毛状体随时间发生的各种发育变化,以及基因型和植物年龄对分布、数量和形态特征的影响,应该有助于更好地了解大麻的质量和一致性。方法:利用光镜和扫描电镜对“白鲸”和“太空女王”两种基因型花发育3 ~ 8周的苞片组织进行了观察。在花序内的不同位置记录了上、下苞片表面的头状毛状体的数量。观察不同时间点的分布、茎形成程度、腺头直径、树脂产量、开裂和衰老程度。采后处理和干燥对另外5个基因型的毛状体形态的影响进行了研究。结果:观察到两种腺毛类型:球茎型和头状型(无梗或柄)。在花发育第3周和第6周,“太空女王”的头状毛状体数量和茎长显著高于“白鲸”(P = 0.05)。两种基因型在6周时苞片表面下部的柄头状毛明显多于上部,而在3周时无柄头状毛占主导地位。在茎的形成过程中,表皮细胞和皮下细胞有不同程度的伸长,产生显著的长度变化(从20 μm到1100 μm)。腺头直径在40 ~ 110 μm之间。柄头状腺头的成熟伴随着棕色发育,紫外线自身荧光减少,头部衰老和开裂。从腺头分泌的树脂物质以液滴的形式出现在角质层表面,导致许多头粘在一起或塌陷。干燥过程对毛状体形态有影响。结论:大麻基因型和株龄对头状毛的数量、发育和成熟程度均有影响。对毛状体发育的观察表明,不同步形成导致苞片上毛状体成熟的不同阶段。毛柄长度也在选择的两种基因型之间以及随着时间的推移而变化。基因型之间发育阶段和成熟的可变性可能导致最终产品中总大麻素水平的变化。收获后的处理和干燥对毛状体形态有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Glandular trichome development, morphology, and maturation are influenced by plant age and genotype in high THC-containing cannabis (Cannabis sativa L.) inflorescences.

Glandular trichome development, morphology, and maturation are influenced by plant age and genotype in high THC-containing cannabis (Cannabis sativa L.) inflorescences.

Glandular trichome development, morphology, and maturation are influenced by plant age and genotype in high THC-containing cannabis (Cannabis sativa L.) inflorescences.

Glandular trichome development, morphology, and maturation are influenced by plant age and genotype in high THC-containing cannabis (Cannabis sativa L.) inflorescences.

Background: Glandular capitate trichomes which form on bract tissues of female inflorescences of high THC-containing Cannabis sativa L. plants are important sources of terpenes and cannabinoids. The influence of plant age and cannabis genotype on capitate trichome development, morphology, and maturation has not been extensively studied. Knowledge of the various developmental changes that occur in trichomes over time and the influence of genotype and plant age on distribution, numbers, and morphological features should lead to a better understanding of cannabis quality and consistency.

Methods: Bract tissues of two genotypes-"Moby Dick" and "Space Queen"-were examined from 3 weeks to 8 weeks of flower development using light and scanning electron microscopy. Numbers of capitate trichomes on upper and lower bract surfaces were recorded at different positions within the inflorescence. Observations on distribution, extent of stalk formation, glandular head diameter, production of resin, and extent of dehiscence and senescence were made at various time points. The effects of post-harvesting handling and drying on trichome morphology were examined in an additional five genotypes.

Results: Two glandular trichome types-bulbous and capitate (sessile or stalked)-were observed. Capitate trichome numbers and stalk length were significantly (P = 0.05) greater in "Space Queen" compared to "Moby Dick" at 3 and 6 weeks of flower development. Significantly more stalked-capitate trichomes were present on lower compared to upper bract surfaces at 6 weeks in both genotypes, while sessile-capitate trichomes predominated at 3 weeks. Epidermal and hypodermal cells elongated to different extents during stalk formation, producing significant variation in length (from 20 to 1100 μm). Glandular heads ranged from 40 to 110 μm in diameter. Maturation of stalked-capitate glandular heads was accompanied by a brown color development, reduced UV autofluorescence, and head senescence and dehiscence. Secreted resinous material from glandular heads appeared as droplets on the cuticular surface that caused many heads to stick together or collapse. Trichome morphology was affected by the drying process.

Conclusion: Capitate trichome numbers, development, and degree of maturation were influenced by cannabis genotype and plant age. The observations of trichome development indicate that asynchronous formation leads to different stages of trichome maturity on bracts. Trichome stalk lengths also varied between the two genotypes selected for study as well as over time. The variability in developmental stage and maturation between genotypes can potentially lead to variation in total cannabinoid levels in final product. Post-harvest handling and drying were shown to affect trichome morphology.

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