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Auxin-Mediated Sterility Induction System for Longevity and Mating Studies in Caenorhabditis elegans

机译:生长素介导的不育诱导系统用于秀丽隐杆线虫的长寿和交配研究

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摘要

The ability to control both the means and timing of sexual reproduction provides a powerful tool to understand not only fertilization but also life history trade-offs resulting from sexual reproduction. However, precisely controlling fertilization has proved a major challenge across model systems. An ideal sterility induction system should be external, non-toxic, and reversible. Using the auxin-inducible degradation system targeting the gene within the nematode Caenorhabditis elegans, we designed a means of externally inducing spermatogenesis arrest. We show that exposure to auxin during larval development induces both hermaphrodite self-sterility and male sterility. Moreover, male sterility can be reversed upon cessation of auxin exposure. The sterility induction system developed here has multiple applications in the fields of spermatogenesis and mating systems evolution. Importantly, this system is also a highly applicable tool for aging studies. In particular, we show that auxin-induced self-sterility is comparable to the commonly used chemically-induced FUdR sterility, while offering multiple benefits, including being less labor intensive, being non-toxic, and avoiding compound interactions with other experimental treatments.
机译:控制性繁殖的方式和时间的能力提供了一个强大的工具,不仅可以了解受精,还可以了解性繁殖导致的生活史权衡。但是,精确控制施肥已被证明是跨模型系统的主要挑战。理想的无菌诱导系统应该是外部的,无毒的和可逆的。使用针对线虫秀丽隐杆线虫内基因的生长素诱导型降解系统,我们设计了一种从外部诱导精子发生停止的方法。我们表明,在幼虫发育过程中暴露于生长素会诱导雌雄同体的自我不育和男性不育。此外,停止生长素的暴露可以逆转男性不育。这里开发的不育诱导系统在精子发生和交配系统进化领域中有多种应用。重要的是,该系统还是用于老化研究的高度适用的工具。特别是,我们显示出生长素诱导的自我无菌性可与常用化学诱导的FUdR无菌性相媲美,同时具有多种好处,包括劳动强度低,无毒,避免与其他实验方法的化合物相互作用。

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