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裂殖酵母(粟酒裂殖酵母)接合过程中细胞壁的融合与侵蚀。

Fusion and erosion of cell walls during confugation in the fussion yeast (Schizosaccharomyces pombe).

作者信息

Calleja G B, Yoo B Y, Johnson B F

出版信息

J Cell Sci. 1977 Jun;25:139-55. doi: 10.1242/jcs.25.1.139.

Abstract

Conjugation in Schizosaccharomyces pombe was studied by transmission electron microscopy. Mural and nuclear events were scored from induction, the initial event, to meiosis I, the start of sporulation. These morphogenic markers were separately identifiable as flocculation, copulation, conjugation-tube formation, cross-wall formation, cross-wall erosion, conjugation-tube expansion, cytoplasmic fusion, de-differentiation of site of union, nuclear migration and karyogamy. The following were identified as new structural elements: sex hairs, which presumably mediate hydrogen bonding between cells during flocculation; crimp at the site of union; dark patch, which presumably serves as a leak-proof seal at the time of cross-wall erosion; suture, an electron-dense seam formed by the union of a copulant pair; and small electron-dense particles close to the site of wall erosion. No special structures on the cell wall could be identified as indicative of specific sites for potential copulatory activity. The discontinuity of the 2 cell walls at the site of union became so de-differentiated after fusion and erosion that it was no longer possible to pinpoint the site of union.

摘要

通过透射电子显微镜对粟酒裂殖酵母中的接合过程进行了研究。从诱导(初始事件)到减数分裂I(孢子形成的开始),对壁和核事件进行了评分。这些形态发生标记分别可识别为絮凝、交配、接合管形成、横壁形成、横壁侵蚀、接合管扩张、细胞质融合、结合位点去分化、核迁移和核配。以下被确定为新的结构元件:性毛,推测在絮凝过程中介导细胞间的氢键;结合位点处的卷曲;暗斑,推测在横壁侵蚀时起到防漏密封的作用;缝线,由一对交配细胞结合形成的电子致密缝;以及靠近壁侵蚀部位的小电子致密颗粒。细胞壁上没有特殊结构可被确定为潜在交配活性的特定部位。融合和侵蚀后,结合位点处两个细胞壁的不连续性变得如此去分化,以至于不再能够精确确定结合位点。

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