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High- and low-throughput scoring of fat mass and body fat distribution in C. elegans

机译:秀丽隐杆线虫的脂肪量和体内脂肪分布的高通量和低通量评分

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摘要

Fat accumulation is a complex phenotype affected by factors such as neuroendocrine signaling, feeding, activity, and reproductive output. Accordingly, the most informative screens for genes and compounds affecting fat accumulation would be those carried out in whole living animals. Caenorhabditis elegans is a well-established and effective model organism, especially for biological processes that involve organ systems and multicellular interactions, such as metabolism. Every cell in the transparent body of C. elegans is visible under a light microscope. Consequently, an accessible and reliable method to visualize worm lipid-droplet fat depots would make C. elegans the only metazoan in which genes affecting not only fat mass but also body fat distribution could be assessed at a genome-wide scale. Here we present a radical improvement in oil red O worm staining together with high-throughput image-based phenotyping. The three-step sample preparation method is robust, formaldehyde-free, and inexpensive, and requires only 15. min of hands-on time to process a 96-well plate. Together with our free and user-friendly automated image analysis package, this method enables C. elegans sample preparation and phenotype scoring at a scale that is compatible with genome-wide screens. Thus we present a feasible approach to small-scale phenotyping and large-scale screening for genetic and/or chemical perturbations that lead to alterations in fat quantity and distribution in whole animals.
机译:脂肪堆积是一种复杂的表型,受多种因素影响,例如神经内分泌信号传导,进食,活动和生殖输出。因此,对影响脂肪积累的基因和化合物最有信息意义的筛选是在整个活体动物中进行的筛选。秀丽隐杆线虫是一种公认​​的有效模型生物,特别是涉及器官系统和多细胞相互作用(例如新陈代谢)的生物过程。在光学显微镜下可以看到秀丽隐杆线虫透明体内的每个细胞。因此,可视化蠕虫脂滴脂肪库的一种可访问且可靠的方法将使秀丽隐杆线虫成为唯一的后生动物,在该后生动物中,不仅可以影响全脂质量而且可以影响全脂分布的基因可以在全基因组范围内评估。在这里,我们提出了油红O蠕虫染色以及基于高通量图像的表型分析的根本改进。该三步样品制备方法坚固耐用,不含甲醛且价格便宜,并且仅需要15分钟的动手时间即可处理96孔板。与我们的免费且用户友好的自动图像分析软件包一起,该方法使秀丽隐杆线虫样品的制备和表型评分与全基因组屏幕兼容。因此,我们提出了一种可行的方法,用于小规模的表型鉴定和大规模筛选遗传和/或化学扰动,从而导致整个动物的脂肪数量和分布发生变化。

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