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发育中的昆虫胚胎中褶状和平滑分隔连接组装的阶段。

Stages in the assembly of pleated and smooth septate junctions in developing insect embryos.

作者信息

Lane N J, Swales L S

出版信息

J Cell Sci. 1982 Aug;56:245-62. doi: 10.1242/jcs.56.1.245.

Abstract

The stages that occur during the assembly of both pleated and smooth septate junctions in developing insect tissues have been examined. The oesophagus and mid-gut of the embryonic moth, and the oesophagus and central nervous system (CNS) of the locust embryo, have been investigated in thin sections and by freeze-fracture during the course of membrane biogenesis. The smooth septate junctions developing between the lateral borders of the mid-gut exhibit, in the early stages, individual intramembranous particles becoming aligned into short ridges. These ultimately migrate over the membrane face and fuse into longer arrays, which become stacked in parallel with other ridges to form the characteristic mature form of the junction just before hatching. Pleated septate junctions occur between the cells both of the oesophagus and of the perineurium, which ensheathes the neurones and the neuroglial cells in the locust CNS; these are also fully formed by the end of embryonic development. The pleated junctions appear to be assembled during the later stages of CNS or gut differentiation, arising first in embryos about two-thirds of the way through development. During their maturation, the initial event seems to be a membrane depression in the P face, which occurs in patches over the presumptive junctional membrane. Into these depressed regions or 'formation-plaque' areas, 8-10 nm particles appear to be inserted intramembranously in apparently random arrays. These particles are the most common elements but larger particles are also present; the former ultimately become aligned in a row. With time, other intramembranous particles come to lie in rows parallel to the original one. By hatching, the typical undulating stacks of parallel intramembranous particle rows are fully formed. Gap junctions also form between the same perineurial or oesophageal cells, usually before, but in some cases at the same time, or just after, the septate junctions have been assembled. Tricellular associations between cells also appear around the same time in embryonic development. The simultaneous assembly of these different junctions reflects a high degree of organizational capacity at the membrane level.

摘要

研究了发育中的昆虫组织中褶状和平滑分隔连接组装过程中发生的各个阶段。在膜生物发生过程中,对胚胎蛾的食管和中肠,以及蝗虫胚胎的食管和中枢神经系统(CNS)进行了薄切片和冷冻断裂研究。中肠侧缘之间形成的平滑分隔连接在早期阶段,单个膜内颗粒排列成短脊。这些颗粒最终在膜表面迁移并融合成更长的阵列,在孵化前与其他脊平行堆叠形成连接的特征性成熟形式。褶状分隔连接出现在食管细胞和围神经膜细胞之间,围神经膜包裹着蝗虫中枢神经系统中的神经元和神经胶质细胞;这些连接在胚胎发育结束时也完全形成。褶状连接似乎是在中枢神经系统或肠道分化的后期组装的,首先出现在发育约三分之二阶段的胚胎中。在其成熟过程中,最初的事件似乎是P面的膜凹陷,它出现在假定连接膜的斑块上。在这些凹陷区域或“形成斑块”区域,8 - 10纳米的颗粒似乎以明显随机的阵列插入膜内。这些颗粒是最常见的成分,但也存在较大的颗粒;前者最终排成一排。随着时间的推移,其他膜内颗粒也与原来的那排平行排列。到孵化时,典型的平行膜内颗粒行起伏堆叠完全形成。间隙连接也在相同的围神经膜或食管细胞之间形成,通常在分隔连接组装之前,但在某些情况下与分隔连接同时或在其之后形成。细胞间的三细胞连接在胚胎发育的同一时间也出现。这些不同连接的同时组装反映了膜水平上高度的组织能力。

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