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通过扫描电子显微镜观察丛枝异水霉有丝分裂孢子的释放与发育

Liberation and development of Allomyces arbuscula mitospores viewed by scanning electron microscopy.

作者信息

Seale T W, Delehanty J, Runyan R B

出版信息

J Bacteriol. 1974 Dec;120(3):1417-26. doi: 10.1128/jb.120.3.1417-1426.1974.

Abstract

Scanning electron microscopy has been employed to examine events in the release and development of mitospores of the aquatic fungus, Allomyces arbuscula. Among the salient features of spore release from the mitosporangium is the digestion of the inner matrix of the exit papillum. Hydrolysis appears to begin at the outer layer of the papillum plug matrix and probably results from activation of localized hydrolytic enzymes. The plug clearly consists of at least two different component layers. Elaboration of mitospores from the mitosporangium is depicted in several micrographs. Motile spores were induced to begin development, and the sequence of surface changes associated with the encystment process was studied. Time course studies show the retraction of the flagellum, the change from elipsoidal to spherical shape, and the deposition of the cell wall. Early in encystment, small vesicles accumulate on the surface of the plasma membrane. These enlarge and fuse to form the mature cyst wall. This surface view of cell wall deposition appears to support the possible role of gamma particles in cell wall synthesis during encystment.

摘要

扫描电子显微镜已被用于研究水生真菌阿氏丝囊霉有丝分裂孢子的释放和发育过程中的事件。从有丝分裂孢子囊释放孢子的显著特征之一是出口乳头内部基质的消解。水解似乎从乳头塞基质的外层开始,可能是局部水解酶激活的结果。这个塞子显然由至少两个不同的组成层构成。几张显微照片展示了有丝分裂孢子从有丝分裂孢子囊中发育的过程。诱导游动孢子开始发育,并研究了与包囊形成过程相关的表面变化序列。时间进程研究显示鞭毛的缩回、从椭圆形到球形的形状变化以及细胞壁的沉积。在包囊形成早期,小泡在质膜表面聚集。这些小泡扩大并融合形成成熟的囊壁。细胞壁沉积的这种表面观察结果似乎支持了γ颗粒在包囊形成过程中参与细胞壁合成的可能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cd3/245929/df3d8c4705db/jbacter00336-0434-a.jpg

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