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Floral Nectary Anatomy and Ultrastructure in Mycoheterotrophic Plant,Epipogium aphyllumSw. (Orchidaceae)

机译:肌萎缩植物,骨膜植物植物植物植物植物植物植物植物植物植物植物植物植物植物植物植物植物植物植物植物植物植物植物植物植物植物植物植物软糖素。 (兰科西)

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Epipogium aphyllumis a European-Asian obligatory mycoheterotrophic orchid containing no chlorophyll. Flowers are not resupinate with a sack-shape spur and cordate lip, which is divided into two parts: the basal (hypochile) and distal one (epichile). The floral analysis provides strong evidence to conclude that nectar is secreted on the upper surface of pink-coloured papillate ridges and epidermal (adaxial) cells at different place in spur, especially at the apex. The exudation on papillae has been observed through the entire anthesis and it has been stained on polysaccharides, proteins, and lipids. The dense cytoplasm of papillae contains profuse endoplasmic reticulum, plentiful vesicles (bigger ones with tannin-like materials), numerous mitochondria, sometimes dictyosomes, starch grains, and plastids with tubular structures. The large electron-dense bodies in cell walls are structurally the same as tannin-like materials from vesicles that are in contact with plasmalemma. The rupture of thin layer of swelled cuticle is caused by pressure of gathered substances exuded due to granulocrine secretion. The idioblasts with raphides occur mainly in tepals tissue. The dynamic changes of the nectar exudation, released through endocrine secretion, have been noticeable during the anthesis: both on the lip and inside the spur. The nectar secretion is not dependent on the colour form ofE. aphyllumblooming shoots. The floral biology and ultrastructure differ from mycoheterotrophic plants known up to date.
机译:Epipogium Hehyllumis欧洲亚洲强制性肌萎缩植物植物不含叶绿素。鲜花不会随着麻袋刺和柔软的唇缘来回旋转,分为两部分:基础(次刀)和远端(外膜)。花卉分析提供了强有力的证据来得出结论,花蜜在粉红色的乳头脊和表皮(adaxial)细胞的上表面上分泌,在旋转的不同位置,特别是在顶点。已经通过整个开花术观察到乳头的渗出,并且它已染色在多糖,蛋白质和脂质上。乳头的致密细胞质含有丰富的内质网,丰富的囊泡(更大的囊泡样材料),众多线粒体,有时是Dictyosomes,淀粉颗粒和具有管状结构的塑体。细胞壁中的大型电子密集体在结构上与来自与离子术接触的囊泡的单宁的材料相同。膨胀角质层的破裂是由于粒粒分泌由于颗粒分泌而渗出的收集物质的压力引起的。具有raphides的鉴定主要发生在Tepals组织中。通过内分泌分泌释放的花蜜渗出的动态变化,在花序中一直明显:锯齿和浇口内。花蜜分泌不依赖于颜色形式。一个神经灌木的枝条。花卉生物学和超微结构与迄今为止已知的肌肌营养植物不同。

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