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单个果蝇胚胎的细胞培养。II. X连锁胚胎致死基因的培养

Cell culture of individual Drosophila embryos. II. Culture of X-linked embryonic lethals.

作者信息

Cross D P, Sang J H

出版信息

J Embryol Exp Morphol. 1978 Jun;45:173-87.

PMID:97357
Abstract

Results are reported from the culturing in vitro of cells from individual early gastrulae of the following four groups of X-linked embryonic lethal mutants of Drosophila melanogaster. (1) Notch lethals, Five Notch mutants were studied which have been reported to give similar abnormalities in whole embryos: the nervous system displays a three-fold hypertrophy as part of a shift in the pattern of differentiation within ectodermal derivatives, and mesodermal derivatives do not differentiate. An hypertrophy of nerve was found in cell cultures prepared from embryos of all five mutants. In addition, four of the five alleles consistently gave abnormalities of muscle differentiation: when compared to controls, Notch cultures had a reduced frequency of myotubes, and displayed unusual clusters of myocytes which had either failed to fuse or had fused incompletely. Results from mixed cultures prepared from two embryos were consistent with the autonomous expression of nerve and muscle abnormalities by Notch-8 cells in the presence of wild-type cells. It is argued that the Notch locus has a direct role in the differentiation of both nerve and muscle. (2) white deficiencies. Cells carrying either of two deficiencies gave a clear-cut pattern of abnormalities: initial cellular differentiations were normal, but nerve, muscle and fat-body cells progressively deteriorated during the culture period. Mixed cultures showed that wild-type cells could not 'rescue' mutant muscle and fat-body cells; however, the status of the autonomy of mutant nerve abnormalities in these cultures was unclear. Both white deficiencies remove cytological band 3C1, and this permits a comparison of results with those from cultures of cells from Notch-8 embryos (also deficient for 3C1). Abnormalities displayed in cultures of the two types of mutant show no overlap. Therefore no consistent cellular abnormality can be attributed to absence of band 3C1. (3) lethal(1)myospheroid. In contrast to earlier observations on in vitro cell cultures (Donady & Seecof, 1972) muscle was seen to differentiate, though its morphology was extremely abnormal. Observations indicated that all cell types within the cultures had poor properties of adhesion to a glass substrate. It is argued that the observed abnormalities are not consistent with a mutant lesion which is restricted to the basement membrane (contra Wright, 1960), and that all cell types carry a basic defect which may reside in the cell membrane. (4) shibirets alleles. Cultures of two temperature-sensitive lethal shibire alleles (shits1), shits3) were normal at the permissive temperature of 22 degrees C. At the restrictive temperature (29 degrees C) early cell differentiation was normal but subsequent development was blocked. This blockage could be partially reversed by shifting cultures to the permissive temperature after as much as 10 days exposure to the high temperature. It is suggested that shits cells are mutant in a process which is basic to several cell types.

摘要

本文报告了对黑腹果蝇四组X连锁胚胎致死突变体单个早期原肠胚细胞进行体外培养的结果。(1)Notch致死突变体。研究了五个Notch突变体,据报道它们在整个胚胎中会产生相似的异常:神经系统出现三倍肥大,这是外胚层衍生物分化模式转变的一部分,中胚层衍生物则不分化。在由所有五个突变体的胚胎制备的细胞培养物中都发现了神经肥大。此外,五个等位基因中的四个始终导致肌肉分化异常:与对照相比,Notch培养物中肌管的频率降低,并且显示出异常的肌细胞簇,这些肌细胞要么未能融合,要么融合不完全。由两个胚胎制备的混合培养物的结果与Notch - 8细胞在野生型细胞存在下神经和肌肉异常的自主表达一致。有人认为Notch基因座在神经和肌肉的分化中具有直接作用。(2)白眼缺失突变体。携带两种缺失之一的细胞呈现出明显的异常模式:最初的细胞分化是正常的,但神经、肌肉和脂肪体细胞在培养期间逐渐退化。混合培养表明野生型细胞不能“拯救”突变的肌肉和脂肪体细胞;然而,这些培养物中突变神经异常的自主性状态尚不清楚。两种白眼缺失都去除了细胞学带3C1,这使得可以将结果与来自Notch - 8胚胎(也缺失3C1)细胞培养物的结果进行比较。两种类型突变体培养物中显示的异常没有重叠。因此,没有一致的细胞异常可以归因于3C1带的缺失。(3)致死(1)类肌球体突变体。与早期对体外细胞培养的观察结果(Donady & Seecof,1972)相反,虽然肌肉的形态极其异常,但仍可观察到其分化。观察表明培养物中的所有细胞类型对玻璃基质的粘附特性都很差。有人认为观察到的异常与仅限于基底膜的突变损伤不一致(与Wright,1960的观点相反),并且所有细胞类型都存在可能存在于细胞膜中的基本缺陷。(4)麻痹等位基因。两种温度敏感致死性麻痹等位基因(shits1、shits3)的培养物在允许温度22摄氏度时是正常的。在限制温度(29摄氏度)下,早期细胞分化正常,但随后的发育被阻断。在暴露于高温长达10天后将培养物转移到允许温度下,这种阻断可以部分逆转。有人认为shits细胞在一个对几种细胞类型都很基本的过程中发生了突变。

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