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Fluorescent Beads Are a Versatile Tool for Staging Caenorhabditis elegans in Different Life Histories

机译:荧光珠是在不同生活史中分期秀丽隐杆线虫的多功能工具

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摘要

Precise staging of Caenorhabditis elegans is essential for developmental studies in different environmental conditions. In favorable conditions, larvae develop continuously through four larval stages separated by molting periods. Distinguishing molting from intermolt larvae has been achieved using transgenes with molting reporters, therefore requiring strain constructions, or careful observation of individuals for pharyngeal pumping or behavioral quiescence. In unfavorable conditions, larvae can enter the stress-resistant and developmentally arrested dauer larva stage. Identifying dauer larvae has been based on their ability to withstand detergent selection, precluding identification of recovering animals or of mutants with defects in dauer morphogenesis. Here, we describe a simple method to distinguish molting larvae or dauer larvae from intermolt larvae that bypasses the limitations of current methods. Fluorescent latex beads are mixed with the bacterial food source and ingested by intermolt larvae and adults. Molting and dauer larvae do not feed, and therefore lack beads in their digestive tract. The presence of beads can be determined using a dissecting microscope at magnifications as low as 100 ×, or by using a wormsorter for high-throughput experiments. We find that continuously developing bead-lacking larvae display hallmarks of molting, including expression of the mlt-10::gfp molting marker and a lack of pharyngeal pumping. Furthermore, wild-type and mutant dauer larvae produced by any of three common methods are accurately identified by a lack of beads. Importantly, this method is effective in SDS-sensitive mutant backgrounds and can identify recovering dauer larvae, a stage for which there is no other method of positive selection.
机译:秀丽隐杆线虫的精确分期对于在不同环境条件下的发育研究至关重要。在有利的条件下,幼虫通过蜕皮期分开的四个幼虫阶段连续生长。通过使用具有蜕皮报道基因的转基因已经实现了将蜕皮幼虫与蜕皮中的幼虫区分开来,因此需要构建菌株,或者仔细观察个体以进行咽抽动或行为停止。在不利条件下,幼虫会进入抗应激并发育停滞的道尔幼虫阶段。鉴定道尔幼虫的能力是基于它们抵抗洗涤剂选择的能力,因此无法鉴定出恢复的动物或道尔形态发生缺陷的突变体。在这里,我们描述了一种简单的方法来区分蜕皮的幼虫或dauer的幼虫与间虫的幼虫,这绕开了当前方法的局限性。将荧光乳胶珠与细菌食物来源混合,并由蜕皮幼虫和成虫摄取。蜕皮和幼仔不喂食,因此在消化道中没有珠子。可以使用解剖显微镜以低至100倍的放大倍数确定珠子的存在,或使用蠕虫分选仪进行高通量实验来确定珠子的存在。我们发现,不断发展的无珠幼虫显示出蜕皮的标志,包括mlt-10 :: gfp蜕皮标记的表达和咽部抽水的缺乏。此外,通过缺少珠子可以准确地鉴定出通过三种常见方法中的任何一种产生的野生型和突变型道尔幼虫。重要的是,该方法在对SDS敏感的突变体背景中有效,并且可以鉴定出恢复的道尔幼虫,这一阶段没有其他的阳性选择方法。

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