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钻入并穿透皮肤:蛙类壶菌病感染的生态基因组学。

Getting under—and through—the skin: ecological genomics of chytridiomycosis infection in frogs.

机构信息

Sainte-Justine Hospital Research Centre, Department ofPediatrics, University of Montreal, 3175 Chemin de la CoteSainte-Catherine, Montreal, Quebec H3T 1C5, Canada.

出版信息

Mol Ecol. 2012 Jul;21(13):3095-7. doi: 10.1111/j.1365-294x.2012.05624.x.

Abstract

Amphibian species around the world are currently becoming endangered or lost at a rate that outstrips other vertebrates—victims of a combination of habitat loss, climate change and susceptibility to emerging infectious disease (Stuart et al. 2004). One of the most devastating such diseases is caused by the chytrid fungus Batrachochytrium dendrobatidis (Bd), which infects hundreds of amphibian species on multiple continents. While Bd itself has been characterized for some time, we still know little about the mechanisms that make it so deadly. In this issue of Molecular Ecology, Rosenblum et al. describe a genomic approach to this question, reporting the results of a genome-wide analysis of the transcriptional response to Bd in the liver, skin and spleen of mountain yellow-legged frogs (Rana mucosa and R. sierrae: Fig. 1) (Rosenblum et al. 2012). Their results indicate that the skin is not only the first, but likely the most important, line of defence in these animals. Strikingly, they describe a surprisingly modest immune response to infection in Rana, a result that may help explain variable Bd susceptibility across populations and species.

摘要

目前,全世界的两栖动物正以前所未有的速度濒临灭绝或消失,它们是栖息地丧失、气候变化和易感染新出现的传染病等多种因素的受害者(Stuart 等人,2004 年)。其中最具破坏性的疾病之一是由蛙壶菌(Batrachochytrium dendrobatidis,Bd)引起的,这种真菌感染了多个大洲的数百种两栖动物。尽管人们已经对 Bd 进行了一段时间的研究,但我们仍然不太了解使它如此致命的机制。在本期《分子生态学》中,Rosenblum 等人描述了一种针对这一问题的基因组方法,报告了对山溪鲵(Rana mucosa 和 R. sierrae:图 1)肝脏、皮肤和脾脏对 Bd 反应的全基因组转录组分析结果(Rosenblum 等人,2012 年)。他们的研究结果表明,皮肤不仅是这些动物的第一道防线,而且可能是最重要的防线。引人注目的是,他们描述了山溪鲵对感染的免疫反应非常温和,这一结果可能有助于解释不同种群和物种对 Bd 的易感性差异。

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