Department of Biological Sciences, University of South Carolina, Columbia, SC, USA.
Methods Mol Biol. 2023;2677:81-97. doi: 10.1007/978-1-0716-3259-8_4.
Physiological status, particularly dietary input, has major impacts on the Drosophila melanogaster ovarian germline stem cell lineage. Moreover, several studies have shed light on the role that inter-organ communication plays in coordinating whole-organism responses to changes in physiology. For example, nutrient-sensing signaling pathways function within the fat body to regulate germline stem cells and their progeny in the ovary. Together with its incredible genetic and cell biological toolkits, Drosophila serves as an amenable model organism to use for uncovering molecular mechanisms that underlie physiological control of adult stem cells. In this methods chapter, we describe a general dietary manipulation paradigm, genetic manipulation of adult adipocytes, and whole-mount ovary immunofluorescence to investigate physiological control of germline stem cells.
生理状态,尤其是饮食摄入,对黑腹果蝇的卵巢生殖干细胞谱系有重大影响。此外,有几项研究揭示了器官间通讯在协调整个生物体对生理变化的反应方面所起的作用。例如,营养感应信号通路在脂肪体中发挥作用,以调节生殖干细胞及其在卵巢中的后代。果蝇与它令人难以置信的遗传和细胞生物学工具包一起,是一种适合用来揭示成年干细胞生理控制的分子机制的模式生物。在本方法章节中,我们描述了一种一般的饮食处理范例、成年脂肪细胞的遗传操作以及整体卵巢免疫荧光,以研究生殖干细胞的生理控制。