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首页> 外文期刊>Australian Journal of Botany >Ultrastructure of symbiotic germination of the orchid Dendrobium officinale with its mycobiont, Sebacina sp.
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Ultrastructure of symbiotic germination of the orchid Dendrobium officinale with its mycobiont, Sebacina sp.

机译:兰花石end兰与其共生菌Sebacina sp。的共生萌​​发的超微结构。

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摘要

Dendrobium officinale is an endangered epiphytic orchidaceous medicinal plant. Similar to other orchid plants, the seed germination of D. officinale under natural conditions depends nutritionally upon mycorrhizal fungi. The compatible fungi have been isolated from D. officinale protocorms using in situ seed baiting technique in our previous studies. However, the interaction between seed germination of D. officinale and its mycobiont is still unclear. In the present study, we investigated the morphological changes of seed and fungus during the symbiotic germination using a light microscope and transmission electron microscope. Seeds of D. officinale have no conspicuous suspensor cells. The fungus enters into the embryo cell through the posterior end of the embryo and colonises the cortical cell in the first stage of germination (Stage 1). Then, the hyphae form pelotons with the protocorm development (Stages 1-3). After protocorm formation, the reinvaded fungal hyphae conspicuously decrease. Invaded hyphae lose bioactivity, form clumps and start degeneration at Stage 4 or 5 (seedling development). When penetrating the neighbouring cortical cell, the fungal hyphae constrict to collar shape at the contacted site and follow by swelling in the apex. Our study suggested that fungi trigger protocorm development and concomitant reserve utilisation during the symbiotic germination
机译:铁皮石end是一种濒临灭绝的附生兰科药用植物。与其他兰花植物相似,D。officinale在自然条件下的种子发芽在营养上取决于菌根真菌。在我们以前的研究中,已经使用原位诱饵技术从D. officinale原球茎中分离出了兼容的真菌。然而,D.officinale的种子发芽与其真菌生物素之间的相互作用仍然不清楚。在本研究中,我们使用光学显微镜和透射电子显微镜研究了共生萌发期间种子和真菌的形态变化。 D. officinale的种子没有明显的悬浮细胞。真菌通过胚的后端进入胚细胞,并在萌芽的第一个阶段(阶段1)定居在皮质细胞中。然后,菌丝形成带有原球茎发育的果胶(阶段1-3)。原球茎形成后,重新侵入的真菌菌丝明显减少。入侵的菌丝在第4或第5阶段(幼苗发育)失去生物活性,形成团块并开始变性。当穿透邻近的皮质细胞时,真菌菌丝在接触部位收缩为领状,随后在先端肿胀。我们的研究表明,真菌在共生发芽过程中会触发原球茎的发育和相应的储备利用。

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