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在发育中的无尾两栖动物肢体中存在 Ribeiroia ondatrae 会破坏视黄酸水平。

Presence of Ribeiroia ondatrae in the developing anuran limb disrupts retinoic acid levels.

机构信息

Department of Ecology & Evolutionary Biology, University of Toronto, 25 Harbord Street, Toronto, ON, Canada, M5S 3G5.

出版信息

Parasitol Res. 2012 Jan;110(1):49-59. doi: 10.1007/s00436-011-2451-z. Epub 2011 May 26.

Abstract

The widespread reports of malformed frogs have sparked interest worldwide to try and determine the causes of such malformations. Ribeiroia ondatrae is a digenetic trematode, which has been implicated as one such cause, as this parasite encysts within the developing tadpole hind limb bud and inguinal region causing dramatic limb malformations. Currently, the mechanisms involved in parasite-induced limb deformities remain unclear. We sought to investigate whether the level of retinoic acid (RA), a morphogenetic factor known to play a critical role in limb bud formation, is altered by the presence of R. ondatrae within the infected tadpole. Alteration of RA levels within the limb bud caused by the presence of the parasite may be achieved in three ways. First, metacercariae are actively secreting RA; second, cercariae, upon entering the limb/inguinal region, may release a large amount of RA; finally, the metacercariae may induce either an increase in the synthesis or a decrease in the degradation of the host's endogenous retinoic acid levels. Here, we show through high performance liquid chromatography and mass spectrometry that limb bud tissue of Lithobates sylvaticus, which has been parasitised, contains 70% more RA compared to the unparasitised control. Furthermore, parasites that have encysted within the limb buds appear to contain substantially less RA (56%) than the free swimming cercariae (defined as the infectious stage of the parasite). Taken together, these data illustrate for the first time that encystment of R. ondatrae leads to an increase in RA levels in the tadpole limb bud and may offer insight into the mechanisms involved in parasite-induced limb deformities.

摘要

畸形青蛙的广泛报道引起了全世界的兴趣,试图确定这种畸形的原因。 Ribeiroia ondatrae 是一种双生性吸虫,被认为是导致这种畸形的原因之一,因为这种寄生虫在发育中的蝌蚪后肢芽和腹股沟区域内形成囊肿,导致严重的肢体畸形。目前,寄生虫引起的肢体畸形的机制尚不清楚。我们试图研究寄生虫存在时,视黄酸(RA)的水平是否会发生变化,视黄酸是一种形态发生因子,已知在肢芽形成中起关键作用。寄生虫存在时,肢芽中 RA 水平的改变可能通过三种方式实现。首先,囊蚴主动分泌 RA;其次,尾蚴进入肢/腹股沟区域时,可能会释放大量 RA;最后,囊蚴可能会增加宿主内源性视黄酸水平的合成或减少其降解。在这里,我们通过高效液相色谱和质谱法表明,已被寄生虫感染的 Lithobates sylvaticus 肢芽组织中 RA 的含量比未受感染的对照组高 70%。此外,在肢芽中形成囊肿的寄生虫似乎含有明显较少的 RA(56%)比自由游动的尾蚴(定义为寄生虫的感染阶段)。这些数据首次表明,R. ondatrae 的囊蚴形成导致蝌蚪肢芽中 RA 水平升高,并可能深入了解寄生虫引起的肢体畸形的机制。

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