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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Resin secretory canals in Protium heptaphyllum (Aubl.) Marchand. (Burseraceae): a tridimensional branched and anastomosed system
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Resin secretory canals in Protium heptaphyllum (Aubl.) Marchand. (Burseraceae): a tridimensional branched and anastomosed system

机译:树脂分泌物在术术术术术术术(中毒。)Marchand。 (Burseraceae):一个趋势分支和吻合系统

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Protium heptaphyllum is a Burseraceae species known by the production of aromatic resin with medicinal, economic, and ecological values. Information on the development, architecture, and lifetime of the secretory system are crucial to understand the resin production and contribute to a more sustainable tapping regime. We investigated the histology and ultrastructure of the secretory canals under a developmental point of view. Stem samples were analyzed under light and transmission electron microscopy by conventional and cytochemical methods. Secretory canals, originated from procambium and cambium, occurred immersed in the primary and secondary phloem. Mature canals have a secretory epithelium and a wide lumen where the exudate is accumulated. A sheath of parenchyma cells with meristematic features surrounds the epithelium. The canals originate by schizogenesis and develop by schyzolysigenesis. Canals active in secretion occurred since the shoot apex and near the cambium. In the dilation zone of the secondary phloem, secretory canals exhibit sclerified epithelial and sheath cells and are inactive in secretion. Secreting epithelial cells have subcellular apparatus consistent with oleoresin, polysaccharides, and enzymes secretion. Pectinase and cellulase were cytochemically detected in developing canals and are involved in cell wall changes associated to canal growth and release of exudate. In P. heptaphyllum, the secretory system has a complex structure resultant from longitudinal growth, lateral ramification, and fusion of the adjacent canals, in addition to intrusive growth of both epithelial and sheath cells. Although some anatomical results are already known, ultrastructural data represent the novelty of this work. Our findings can contribute to the establishment of more efficient and sustainable techniques for resin extraction in this species.
机译:七叶原鱼藻是一种以生产芳香树脂而闻名的牛蒡科植物,具有药用、经济和生态价值。有关分泌系统的开发、结构和使用寿命的信息对于了解树脂生产至关重要,并有助于建立更可持续的开采制度。我们从发育的角度研究了分泌管的组织学和超微结构。茎样本通过常规方法和细胞化学方法在光镜和透射电镜下进行分析。分泌管起源于原形成层和形成层,浸没在初生韧皮部和次生韧皮部中。成熟的根管有分泌上皮和宽阔的管腔,渗出物在管腔中积聚。上皮周围有一层具有分生组织特征的薄壁细胞鞘。运河起源于裂殖形成,发展于裂殖形成。从茎尖开始,在形成层附近出现分泌活跃的管。在次生韧皮部的扩张区,分泌管显示硬化的上皮细胞和鞘细胞,分泌不活跃。分泌上皮细胞具有亚细胞结构,与油树脂、多糖和酶的分泌相一致。果胶酶和纤维素酶在发育中的根管中被细胞化学检测到,并参与与根管生长和渗出物释放相关的细胞壁变化。在七叶拟青霉中,除了上皮细胞和鞘细胞的侵入性生长外,分泌系统还具有复杂的结构,这是由纵向生长、侧向分支和相邻管融合形成的。虽然已经知道一些解剖学结果,但超微结构数据代表了这项工作的新颖性。我们的发现有助于建立更有效和可持续的树脂提取技术。

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