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Monitoring ecdysteroid activities using genetically encoded reporter gene in Daphnia magna

机译:利用遗传编码的记者基因监测水蚤中蜕皮甾类的活性

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Ecdysteroid is an important hormone that regulates growth, reproduction, and embryogenesis in arthropods. However, little is known about its role and action mechanism in crustaceans, despite their pivotal role in aquatic ecosystem.Daphnia magna, a freshwater crustacean, is used as a classic model organism in ecology and ecotoxicology. Its ecdysteroid activity has been partially characterized previously. However, the spatio-temporal behavior of ecdysteroid, especially during early embryogenesis, when it is thought to have pivotal roles, is still unclear. Thus, we proposed a genetic modification approach by integrating a reporter gene exhibiting ecdysteroid activityin vivo.We used the clustered regularly interspaced palindromic repeats (CRISPR) genome editing technique, followed by non-homologous end-joining (NHEJ) pathway as the transgenesis method to generate the ecdysteroid reporter transgenicDaphnia. One transgenicDaphniacontaining one copy of the ecdysone response element (EcRE)-controlled reporter genemCherrywas successfully obtained and was designated EcRE-mCh.The expression of mCherry was observed during early embryogenesis starting from 12 h after ovulation (hao). The time-lapse imaging during 12–24 hao showed the growing expression of mCherry signal originating from the posterior section of embryo and then migrating toward the anterior section. From 18 hao, the signal was detected around the developing thoracic appendages and localized between the first to third thoracic segments. The establishment of this EcRE-mCh line and its ability to exhibit ecdysteroid activity spatio-temporally might serve as convenient tool to elucidate the roles of ecdysteroid during the early stage of animal development. Moreover, the expression ofmCherryin response to the presence of ecdysteroid in water suggests that EcRE-mCh could be used for monitoring ecdysteroid activities in environmental water.
机译:蜕皮类固醇是调节节肢动物生长,繁殖和胚胎发生的重要激素。尽管它们在水生生态系统中起着举足轻重的作用,但对其在甲壳类动物中的作用和作用机理知之甚少。淡水甲壳类动物蚤(Daphnia magna)被用作生态学和生态毒理学中的经典模式生物。它的蜕皮甾类活性先前已被部分表征。然而,蜕皮类固醇的时空行为,特别是在早期胚胎发生过程中,还被认为具有关键作用,目前尚不清楚。因此,我们提出了一种通过整合体内显示蜕皮甾体活性的报告基因的基因修饰方法。我们使用聚类的规则间隔回文重复序列(CRISPR)基因组编辑技术,然后使用非同源末端连接(NHEJ)途径作为转基因方法来产生蜕皮甾类记者转基因水蚤。成功获得了一个含有蜕皮激素反应元件(EcRE)控制的报告基因基因Cherry的拷贝的转基因水蚤,并将其命名为EcRE-mCh。从排卵后12h开始,在胚胎早期发生mCherry的表达(hao)。 12-24 hao期间的延时成像显示,mCherry信号的表达不断增长,其起源于胚胎的后部,然后向前部迁移。从18 hao开始,该信号被检测到正在发育的胸附件附近,并位于第一至第三胸段之间。这种EcRE-mCh系的建立及其在时空上表现出蜕皮甾体活性的能力可能是阐明动物体内早期蜕皮甾体作用的便捷工具。此外,mCherryin对水中蜕皮甾体存在的反应的表达表明,EcRE-mCh可用于监测环境水中蜕皮甾体的活性。

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