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叶道和分泌腔之间的结构考虑和差异在Asteraceae中.

Daniel M Martínez-Quezada1, Alicia Rojas-Leal2, José Luis Villaseñor2

  • 1Área de Biología, Departamento de Preparatoria Agrícola, Universidad Autónoma Chapingo, Carretera México-Texcoco Km 38.8, 56230, Texcoco, Mexico State, Mexico.

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在Asteraceae植物中,分泌道和腔体通过分裂形成类似地发展. 植物中的这些内部分泌结构可以通过它们的上皮层和来自不同系统组织的起源来区分.

关键词:
比登斯 (Bidens) 是一个比登斯 (Bidens) 的人.塔吉特斯 (Tagetes) 是一个名为塔吉特斯 (Tagetes) 的小行星.皮质细胞是表皮细胞.液原性 液原性的这是一种精神分裂症.秘书处结构 秘书处结构

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科学领域:

  • 植物解剖学 植物解剖学
  • 植物形态学植物形态学
  • 植物学 植物学

背景情况:

  • 分泌通道和腔体是种子植物中发现的内部分泌结构,在血管苗中尤其多样化.
  • 由于结构上的相似之处,区分运河和空洞是具有挑战性的.
  • 这些结构已知在像Rutaceae,Myrtaceae和Asteraceae这样的家族中.

研究的目的:

  • 为了比较两个Asteraceae物种的分泌通道和腔的本体发生.
  • 了解结构上的差异,并建立同质假设.
  • 根据发育和结构特征,在Asteraceae中区分道和腔.

主要方法:

  • 在Bidens odorata和Tagetes tenuifolia中研究了叶子的发育.
  • 使用甲基酸盐技术进行样本处理.
  • 分析了纵向和横向截面.

主要成果:

  • 在阿斯特拉系植物中,道和腔体都表现出分裂性发育,与鲁塔系植物的溶性发育不同.
  • 通道起源于前细胞,而腔由地面髓细胞产生的.
  • 基于分泌表皮质/层,表皮质/甲细胞修饰,以及前皮质系统起源,可以进行区分.

结论:

  • 由于结构和发育的相似之处,Asteraceae中的分泌通道和腔共享着密切的进化起源.
  • 血管外通道可能会导致Asteraceae叶子中的空洞.
  • 这些发现有助于区分和理解植物分泌结构的演变.