Genomic Analysis Enlightens Agaricales Lifestyle Evolution and Increasing Peroxidase Diversity

被引:92
作者
Ruiz-Duenas, Francisco J. [1 ]
Barrasa, Jose M. [2 ]
Sanchez-Garcia, Marisol [3 ,15 ]
Camarero, Susana [1 ,16 ]
Miyauchi, Shingo [4 ]
Serrano, Ana [1 ]
Linde, Dolores [1 ]
Babiker, Rashid [1 ]
Drula, Elodie [5 ]
Ayuso-Fernandez, Ivan [1 ,17 ]
Pacheco, Remedios [1 ]
Padilla, Guillermo [1 ]
Ferreira, Patricia [6 ,7 ]
Barriuso, Jorge [1 ]
Kellner, Harald [8 ]
Castanera, Raul [9 ,18 ]
Alfaro, Manuel [9 ]
Ramirez, Lucia [9 ]
Pisabarro, Antonio G. [9 ]
Riley, Robert [10 ]
Kuo, Alan [10 ]
Andreopoulos, William [10 ]
LaButti, Kurt [10 ]
Pangilinan, Jasmyn [10 ]
Tritt, Andrew [10 ]
Lipzen, Anna [10 ]
He, Guifen [10 ]
Yan, Mi [10 ]
Ng, Vivian [10 ]
Grigoriev, Igor, V [10 ,11 ]
Cullen, Daniel [12 ]
Martin, Francis [4 ]
Rosso, Marie-Noelle [13 ]
Henrissat, Bernard [5 ,14 ]
Hibbett, David [3 ]
Martinez, Angel T. [1 ]
机构
[1] CSIC, Ctr Invest Biol Margarita Salas CIB, Madrid, Spain
[2] Alcala Univ, Life Sci Dept, Alcala De Henares, Spain
[3] Clark Univ, Dept Biol, Worcester, MA USA
[4] INRAE, Lab Excellence ARBRE, Champenoux, France
[5] Aix Marseille Univ, Architecture & Fonct Macromol Biol, CNRS, Marseille, France
[6] Zaragoza Univ, Biochem & Mol & Cellular Biol Dept, Zaragoza, Spain
[7] Zaragoza Univ, BIFI, Zaragoza, Spain
[8] Tech Univ Dresden, Int Inst Zittau, Zittau, Germany
[9] Inst Multidisciplinary Res Appl Biol, IMAB UPNA, Pamplona, Spain
[10] Lawrence Berkeley Natl Lab, US Dept Energy DOE Joint Genome Inst JGI, Berkeley, CA USA
[11] Univ Calif Berkeley, Dept Plant & Microbial Biol, Berkeley, CA USA
[12] USDA, Forest Prod Lab, Madison, WI 53705 USA
[13] Aix Marseille Univ, Biodiversite & Biotechnol Fong, INRAE, Marseille, France
[14] King Abdulaziz Univ, Dept Biol Sci, Jeddah, Saudi Arabia
[15] Swedish Univ Agr Sci, Uppsala Bioctr, Uppsala, Sweden
[16] Max Planck Inst Plant Breeding Res, Cologne, Germany
[17] Norwegian Univ Life Sci NMBU, As, Norway
[18] CSIC IRTA UAB UB, Ctr Res Agr Genom, Barcelona, Spain
基金
美国国家科学基金会;
关键词
Agaricales; lifestyle evolution; lignocellulose decay; plant cell-wall degrading enzymes; ligninolytic peroxidases; ancestral-sequence reconstruction; WOOD DECAY; DEGRADING ENZYMES; DEGRADATION; MECHANISMS; SEQUENCE; ACTIVATION; CELLULOSE; INSIGHTS; DATABASE; PROVIDE;
D O I
10.1093/molbev/msaa301
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
As actors of global carbon cycle, Agaricomycetes (Basidiomycota) have developed complex enzymatic machineries that allow them to decompose all plant polymers, including lignin. Among them, saprotrophic Agaricales are characterized by an unparalleled diversity of habitats and lifestyles. Comparative analysis of 52 Agaricomycetes genomes (14 of them sequenced de novo) reveals that Agaricales possess a large diversity of hydrolytic and oxidative enzymes for lignocellulose decay. Based on the gene families with the predicted highest evolutionary rates-namely cellulose-binding CBM1, glycoside hydrolase GH43, lytic polysaccharide monooxygenase AA9, class-II peroxidases, glucose-methanol-choline oxidase/dehydrogenases, laccases, and unspecific peroxygenases-we reconstructed the lifestyles of the ancestors that led to the extant lignocellulose-decomposing Agaricomycetes. The changes in the enzymatic toolkit of ancestral Agaricales are correlated with the evolution of their ability to grow not only on wood but also on leaf litter and decayed wood, with grass-litter decomposers as the most recent eco-physiological group. In this context, the above families were analyzed in detail in connection with lifestyle diversity. Peroxidases appear as a central component of the enzymatic toolkit of saprotrophic Agaricomycetes, consistent with their essential role in lignin degradation and high evolutionary rates. This includes not only expansions/losses in peroxidase genes common to other basidiomycetes but also the widespread presence in Agaricales (and Russulales) of new peroxidases types not found in wood-rotting Polyporales, and other Agaricomycetes orders. Therefore, we analyzed the peroxidase evolution in Agaricomycetes by ancestralsequence reconstruction revealing several major evolutionary pathways and mapped the appearance of the different enzyme types in a time-calibrated species tree.
引用
收藏
页码:1428 / 1446
页数:19
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