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特定阶段果蝇卵泡中晚期分离的效用。

The utility of stage-specific mid-to-late Drosophila follicle isolation.

作者信息

Spracklen Andrew J, Tootle Tina L

机构信息

Department of Anatomy and Cell Biology, University of Iowa Carver College of Medicine.

出版信息

J Vis Exp. 2013 Dec 2(82):50493. doi: 10.3791/50493.

Abstract

Drosophila oogenesis or follicle development has been widely used to advance the understanding of complex developmental and cell biologic processes. This methods paper describes how to isolate mid-to-late stage follicles (Stage 10B-14) and utilize them to provide new insights into the molecular and morphologic events occurring during tight windows of developmental time. Isolated follicles can be used for a variety of experimental techniques, including in vitro development assays, live imaging, mRNA expression analysis and western blot analysis of proteins. Follicles at Stage 10B (S10B) or later will complete development in culture; this allows one to combine genetic or pharmacologic perturbations with in vitro development to define the effects of such manipulations on the processes occurring during specific periods of development. Additionally, because these follicles develop in culture, they are ideally suited for live imaging studies, which often reveal new mechanisms that mediate morphological events. Isolated follicles can also be used for molecular analyses. For example, changes in gene expression that result from genetic perturbations can be defined for specific developmental windows. Additionally, protein level, stability, and/or posttranslational modification state during a particular stage of follicle development can be examined through western blot analyses. Thus, stage-specific isolation of Drosophila follicles provides a rich source of information into widely conserved processes of development and morphogenesis.

摘要

果蝇卵子发生或卵泡发育已被广泛用于增进对复杂发育和细胞生物学过程的理解。本方法论文描述了如何分离中期至后期卵泡(10B-14期),并利用它们来深入了解在发育时间的紧密窗口期发生的分子和形态学事件。分离出的卵泡可用于多种实验技术,包括体外发育分析、实时成像、mRNA表达分析和蛋白质的western blot分析。10B期(S10B)或更后期的卵泡将在培养中完成发育;这使得人们能够将基因或药物干扰与体外发育相结合,以确定此类操作对特定发育时期发生的过程的影响。此外,由于这些卵泡在培养中发育,它们非常适合进行实时成像研究,这通常会揭示介导形态学事件的新机制。分离出的卵泡也可用于分子分析。例如,可以针对特定的发育窗口定义由基因干扰导致的基因表达变化。此外,通过western blot分析可以检测卵泡发育特定阶段的蛋白质水平、稳定性和/或翻译后修饰状态。因此,果蝇卵泡的阶段特异性分离为广泛保守的发育和形态发生过程提供了丰富的信息来源。

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