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Whole Genome and Global Gene Expression Analyses of the Model Mushroom Flammulina velutipes Reveal a High Capacity for Lignocellulose Degradation

小火焰菌属 蘑菇 生物 木质素 基因 纤维素 基因组 真菌 食品科学 植物 生物化学
作者
Young‐Jin Park,Jeong Hun Baek,Seonwook Lee,Changhoon Kim,Hwanseok Rhee,Hyungtae Kim,Jeong‐Sun Seo,Hae‐Ran Park,Dae-Eun Yoon,Jae-Young Nam,Hong-Il Kim,Jong-Guk Kim,Hyeokjun Yoon,Hee‐Wan Kang,Jae‐Yong Cho,Eun‐Sung Song,Gi‐Ho Sung,Young‐Bok Yoo,Chang‐Soo Lee,Byoung‐Moo Lee,Won‐Sik Kong
出处
期刊:PLOS ONE [Public Library of Science]
卷期号:9 (4): e93560-e93560 被引量:123
标识
DOI:10.1371/journal.pone.0093560
摘要

Flammulina velutipes is a fungus with health and medicinal benefits that has been used for consumption and cultivation in East Asia. F. velutipes is also known to degrade lignocellulose and produce ethanol. The overlapping interests of mushroom production and wood bioconversion make F. velutipes an attractive new model for fungal wood related studies. Here, we present the complete sequence of the F. velutipes genome. This is the first sequenced genome for a commercially produced edible mushroom that also degrades wood. The 35.6-Mb genome contained 12,218 predicted protein-encoding genes and 287 tRNA genes assembled into 11 scaffolds corresponding with the 11 chromosomes of strain KACC42780. The 88.4-kb mitochondrial genome contained 35 genes. Well-developed wood degrading machinery with strong potential for lignin degradation (69 auxiliary activities, formerly FOLymes) and carbohydrate degradation (392 CAZymes), along with 58 alcohol dehydrogenase genes were highly expressed in the mycelium, demonstrating the potential application of this organism to bioethanol production. Thus, the newly uncovered wood degrading capacity and sequential nature of this process in F. velutipes, offer interesting possibilities for more detailed studies on either lignin or (hemi-) cellulose degradation in complex wood substrates. The mutual interest in wood degradation by the mushroom industry and (ligno-)cellulose biomass related industries further increase the significance of F. velutipes as a new model.
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