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碳水化合物代谢基因向外生菌根鹅膏菌的水平转移。

Horizontal transfer of carbohydrate metabolism genes into ectomycorrhizal Amanita.

作者信息

Chaib De Mares Maryam, Hess Jaqueline, Floudas Dimitrios, Lipzen Anna, Choi Cindy, Kennedy Megan, Grigoriev Igor V, Pringle Anne

机构信息

Department of Microbial Ecology, University of Groningen, 9747 AG, Groningen, the Netherlands.

Department of Organismic and Evolutionary Biology, Harvard University, Cambridge, MA, 02138, USA.

出版信息

New Phytol. 2015 Mar;205(4):1552-1564. doi: 10.1111/nph.13140. Epub 2014 Nov 18.

Abstract

The genus Amanita encompasses both symbiotic, ectomycorrhizal fungi and asymbiotic litter decomposers; all species are derived from asymbiotic ancestors. Symbiotic species are no longer able to degrade plant cell walls. The carbohydrate esterases family 1 (CE1s) is a diverse group of enzymes involved in carbon metabolism, including decomposition and carbon storage. CE1 genes of the ectomycorrhizal A. muscaria appear diverged from all other fungal homologues, and more similar to CE1s of bacteria, suggesting a horizontal gene transfer (HGT) event. In order to test whether AmanitaCE1s were acquired horizontally, we built a phylogeny of CE1s collected from across the tree of life, and describe the evolution of CE1 genes among Amanita and relevant lineages of bacteria. CE1s of symbiotic Amanita were very different from CE1s of asymbiotic Amanita, and are more similar to bacterial CE1s. The protein structure of one CE1 gene of A. muscaria matched a depolymerase that degrades the carbon storage molecule poly((R)-3-hydroxybutyrate) (PHB). Asymbiotic Amanita do not carry sequence or structural homologues of these genes. The CE1s acquired through HGT may enable novel metabolisms, or play roles in signaling or defense. This is the first evidence for the horizontal transfer of carbohydrate metabolism genes into ectomycorrhizal fungi.

摘要

鹅膏菌属包含共生的外生菌根真菌和非共生的凋落物分解菌;所有物种都起源于非共生祖先。共生物种不再能够降解植物细胞壁。碳水化合物酯酶家族1(CE1s)是一组参与碳代谢的多种酶,包括分解和碳储存。外生菌根毒蝇鹅膏菌的CE1基因似乎与所有其他真菌同源物不同,并且与细菌的CE1s更相似,这表明发生了水平基因转移(HGT)事件。为了测试鹅膏菌的CE1s是否是通过水平方式获得的,我们构建了从整个生命树中收集的CE1s的系统发育树,并描述了鹅膏菌属和相关细菌谱系中CE1基因的进化。共生鹅膏菌的CE1s与非共生鹅膏菌的CE1s非常不同,并且与细菌的CE1s更相似。毒蝇鹅膏菌的一个CE1基因的蛋白质结构与一种降解碳储存分子聚(R)-3-羟基丁酸酯(PHB)的解聚酶相匹配。非共生鹅膏菌不携带这些基因的序列或结构同源物。通过HGT获得的CE1s可能会实现新的代谢,或在信号传导或防御中发挥作用。这是碳水化合物代谢基因水平转移到外生菌根真菌中的首个证据。

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