首页> 外文期刊>Journal of bacteriology >Scanning electron microscopy of surface ultrastructure changes during meiosporangium maturation and meiospore liberation in the aquatic fungus Allomycpes arbuscula.
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Scanning electron microscopy of surface ultrastructure changes during meiosporangium maturation and meiospore liberation in the aquatic fungus Allomycpes arbuscula.

机译:扫描电镜在水生真菌异丝菌的介孢子囊成熟和介孢子释放过程中表面超微结构的变化。

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Alterations in wall ultrastructure accompanying resistant sporangium maturation and meiospore liberation in Allomyces arbuscula were examined by scanning electron microscopy. Three discrete wall layers were identified, each of which underwent marked changes during processes leading to zoospore release. The outermost wall layer, the hyphal sheath continuous with the hypha, was physically altered during the maturation process preparatory to induction and release of meiospores. The integrity of this wall layer was broken, and it was no longer closely juxtaposed to the heavy pitted wall layer that lay beneath it. A fibrillar matrix seemed to cement the two layers to one another before this desiccation. A single, raised, longitudinal dehiscence ridge on each meiosporangium appeared to be a structurally differentiated region of the pitted wall layer at which sporangium rupture occurred to permit emergence of the protoplast. By its thickness the pitted wall layer was likely to provide mechanical rigidity to the meiosporangium. Beneath the pitted wall layer, another thin, flexible wall layer surrounded the protoplast. From this structure, a single exit papilla was cleaved at the apical region to effect the release of meiospores from the protruding protoplast. Thus a sequence of structural changes in well-differentiated multiple wall layers is implicated in the sporulation process in this organism.
机译:通过扫描电子显微镜检查,在丛枝菌中伴随着抗孢子囊成熟和孢子的释放而引起的壁超微结构的变化。确定了三个离散的壁层,每个层在导致游动孢子释放的过程中经历了明显的变化。最外壁层,即与菌丝连续的菌丝鞘,在成熟过程中发生了物理变化,为诱导和释放介孔做好了准备。该壁层的完整性被破坏,并且不再与位于其下的沉重的凹坑壁层并列。在此干燥之前,纤维状基质似乎将这两层粘合在一起。每个中脉孢子囊上的单个凸起的纵向开裂ridge似乎是凹孔壁层的结构差异区域,在此发生孢子囊破裂,从而允许原生质体的出现。凹坑壁层的厚度很可能为中孔提供机械刚度。在有凹痕的壁层下面,另一薄而柔软的壁层包围了原生质体。从该结构,在顶端区域切割单个出口乳头以实现从突出的原生质体释放中孔。因此,在该生物体的孢子形成过程中牵涉到分化良好的多层壁中的一系列结构变化。

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