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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Measuring Caenorhabditis elegans Spatial Foraging and Food Intake Using Bioluminescent Bacteria
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Measuring Caenorhabditis elegans Spatial Foraging and Food Intake Using Bioluminescent Bacteria

机译:测量Caenorhabditise elegans使用生物发光细菌的空间觅食和食物摄入量

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For most animals, feeding includes two behaviors: foraging to find a food patch and food intake once a patch is found. The nematode Caenorhabditis elegans is a useful model for studying the genetics of both behaviors. However, most methods of measuring feeding in worms quantify either foraging behavior or food intake, but not both. Imaging the depletion of fluorescently labeled bacteria provides information on both the distribution and amount of consumption, but even after patch exhaustion a prominent background signal remains, which complicates quantification. Here, we used a bioluminescent Escherichia coli strain to quantify C. elegans feeding. With light emission tightly coupled to active metabolism, only living bacteria are capable of bioluminescence, so the signal is lost upon ingestion. We quantified the loss of bioluminescence using N2 reference worms and mutants, and found a nearly 100-fold increase in signal-to-background ratio and lower background compared to loss of fluorescence. We also quantified feeding using aggregating mutant worms. We found that groups of mutants first clear bacteria from within the cluster before foraging collectively for more food; similarly, during large population swarming, only worms at the migrating front are in contact with bacteria. These results demonstrate the usefulness of bioluminescent bacteria for quantifying feeding and generating insights into the spatial pattern of food consumption.
机译:对于大多数动物而言,喂养包括两种行为:一旦找到补丁,觅食以找到食物补丁和食物摄入量。 Nematode CaenorhabditiseDellyAs是研究两种行为的遗传学的有用模型。然而,大多数测量蠕虫饲养的方法量化了觅食行为或食物摄入量,而不是两者。成像荧光标记的细菌的耗尽提供了有关消费的分布和量的信息,但即使在擦除耗尽之后仍然存在着突出的背景信号,其使定量复杂化。在这里,我们使用生物发光大肠杆菌大肠杆菌菌株来定量C.杆状杆子喂养。通过紧密耦合到活性新陈代谢的发光,只有生物细菌能够进行生物发光,因此在摄入时信号丢失。我们使用N2参考蠕虫和突变体来量化生物发光的丧失,并且与荧光损失相比,信号 - 背景比和较低的背景下发现近100倍的增加。我们还使用聚集突变蠕虫量化饲料。我们发现突变体群体首先从群体内澄清细菌,在共同觅食之前觅食;同样,在大人物蜂拥而至,只有迁移前的蠕虫才与细菌接触。这些结果证明了生物发光细菌的用量,用于量化饲料和产生食物消耗的空间模式的洞察力。

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