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Pezizomycetes genomes reveal the molecular basis of ectomycorrhizal truffle lifestyle

机译:Pezizomycetes揭示基因组的分子基础真菌松露的生活方式

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摘要

Tuberaceae is one of the most diverse lineages of symbiotic truffle-forming fungi. To understand the molecular underpinning of the ectomycorrhizal truffle lifestyle, we compared the genomes of Piedmont white truffle (Tuber magnatum), Perigord black truffle (Tuber melanosporum), Burgundy truffle (Tuber aestivum), pig truffle (Choiromyces venosus) and desert truffle (Terfezia boudieri) to saprotrophic Pezizomycetes. Reconstructed gene duplication/loss histories along a time-calibrated phylogeny of Ascomycetes revealed that Tuberaceae-specific traits may be related to a higher gene diversification rate. Genomic features in Tuber species appear to be very similar, with high transposon content, few genes coding lignocellulose-degrading enzymes, a substantial set of lineage-specific fruiting-body-upregulated genes and high expression of genes involved in volatile organic compound metabolism. Developmental and metabolic pathways expressed in ectomycorrhizae and fruiting bodies of T. magnatum and T. melanosporum are unexpectedly very similar, owing to the fact that they diverged -100 Ma. Volatile organic compounds from pungent truffle odours are not the products of Tuber-specific gene innovations, but rely on the differential expression of an existing gene repertoire. These genomic resources will help to address fundamental questions in the evolution of the truffle lifestyle and the ecology of fungi that have been praised as food delicacies for centuries.
机译:块菌科是最多样化的血统之一共生truffle-forming真菌。真菌的分子基础松露的生活方式,我们的基因组进行比较皮埃蒙特白松露(块茎magnatum),佩里戈尔黑松露(即),勃艮第松露(块茎aestivum),猪松露松露(Choiromyces venosus)和沙漠Pezizomycetes。历史在重复/损失time-calibrated发展史的子囊菌Tuberaceae-specific特质可能有关基因多样化率较高。在块茎物种似乎非常的特性类似的,一些基因转座子含量高编码lignocellulose-degrading酶大量的lineage-specificfruiting-body-upregulated基因和高在挥发性有机相关基因的表达化合物代谢。ectomycorrhizae和途径果期T . magnatum和T的尸体。即意外非常相似,由于他们分化-100 Ma。有机化合物从辛辣的松露的气味不是Tuber-specific基因的产物创新,但依赖微分现有的基因的表达。基因组资源将帮助解决发展的基本问题松露的生活方式和真菌的生态被誉为食物美味佳肴世纪。

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