生物
共生
转录组
基因
植物
有机质
营养物
氧化酶
外生菌根
基因家族
生态学
菌根
酶
基因组
细菌
生物化学
基因表达
遗传学
作者
Firoz Shah,César Nicolás,Johan Bentzer,Magnus Ellström,Mark M. Smits,François Rineau,Björn Canbäck,Dimitrios Floudas,Robert Carleer,Gerald Lackner,Jana Braesel,Dirk Hoffmeister,Bernard Henrissat,Dag Ahrén,Tomas Johansson,David S. Hibbett,Francis Martin,Per Persson,Anders Tunlid
摘要
Summary Ectomycorrhizal fungi are thought to have a key role in mobilizing organic nitrogen that is trapped in soil organic matter ( SOM ). However, the extent to which ectomycorrhizal fungi decompose SOM and the mechanism by which they do so remain unclear, considering that they have lost many genes encoding lignocellulose‐degrading enzymes that are present in their saprotrophic ancestors. Spectroscopic analyses and transcriptome profiling were used to examine the mechanisms by which five species of ectomycorrhizal fungi, representing at least four origins of symbiosis, decompose SOM extracted from forest soils. In the presence of glucose and when acquiring nitrogen, all species converted the organic matter in the SOM extract using oxidative mechanisms. The transcriptome expressed during oxidative decomposition has diverged over evolutionary time. Each species expressed a different set of transcripts encoding proteins associated with oxidation of lignocellulose by saprotrophic fungi. The decomposition ‘toolbox’ has diverged through differences in the regulation of orthologous genes, the formation of new genes by gene duplications, and the recruitment of genes from diverse but functionally similar enzyme families. The capacity to oxidize SOM appears to be common among ectomycorrhizal fungi. We propose that the ancestral decay mechanisms used primarily to obtain carbon have been adapted in symbiosis to scavenge nutrients instead.
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