The gill-associated microbiome is the main source of wood plant polysaccharide hydrolases and secondary metabolite gene clusters in the mangrove shipworm Neoteredo reynei.
The gill-associated microbiome is the main source of wood plant polysaccharide hydrolases and secondary metabolite gene clusters in the mangrove shipworm Neoteredo reynei.
复制标题
DOI:
10.1371/journal.pone.0200437
复制
发表时间:
2018
期刊:
影响因子:
3.7
通讯作者:
Trindade-Silva AE
中科院分区:
文献类型:
--
作者:
Brito TL;Campos AB;Bastiaan von Meijenfeldt FA;Daniel JP;Ribeiro GB;Silva GGZ;Wilke DV;de Moraes DT;Dutilh BE;Meirelles PM;Trindade-Silva AE
Teredinidae are a family of highly adapted wood-feeding and wood-boring bivalves, commonly known as shipworms, whose evolution is linked to the acquisition of cellulolytic gammaproteobacterial symbionts harbored in bacteriocytes within the gills. In the present work we applied metagenomics to characterize microbiomes of the gills and digestive tract of Neoteredo reynei, a mangrove-adapted shipworm species found over a large range of the Brazilian coast. Comparative metagenomics grouped the gill symbiont community of different N. reynei specimens, indicating closely related bacterial types are shared. Similarly, the intestine and digestive gland communities were related, yet were more diverse than and showed no overlap with the gill community. Annotation of assembled metagenomic contigs revealed that the gill symbiotic community of N. reynei encodes a plethora of plant cell wall polysaccharides degrading glycoside hydrolase encoding genes, and Biosynthetic Gene Clusters (BGCs). In contrast, the digestive tract microbiomes seem to play little role in wood digestion and secondary metabolites biosynthesis. Metagenome binning recovered the nearly complete genome sequences of two symbiotic Teredinibacter strains from the gills, a representative of Teredinibacter turnerae “clade I” strain, and a yet to be cultivated Teredinibacter sp. type. These Teredinibacter genomes, as well as un-binned gill-derived gammaproteobacteria contigs, also include an endo-β-1,4-xylanase/acetylxylan esterase multi-catalytic carbohydrate-active enzyme, and a trans-acyltransferase polyketide synthase (trans-AT PKS) gene cluster with the gene cassette for generating β-branching on complex polyketides. Finally, we use multivariate analyses to show that the secondary metabolome from the genomes of Teredinibacter representatives, including genomes binned from N. reynei gills’ metagenomes presented herein, stands out within the Cellvibrionaceae family by size, and enrichments for polyketide, nonribosomal peptide and hybrid BGCs. Results presented here add to the growing characterization of shipworm symbiotic microbiomes and indicate that the N. reynei gill gammaproteobacterial community is a prolific source of biotechnologically relevant enzymes for wood-digestion and bioactive compounds production.
登录
查看更多内容
影响因子:
4.9
作者:
Altamia MA;Wood N;Fung JM;Dedrick S;Linton EW;Concepcion GP;Haygood MG;Distel DL
通讯作者:
Distel DL
影响因子:
48
作者:
Langmead, Ben;Salzberg, Steven L.
通讯作者:
Salzberg, Steven L.
影响因子:
4.4
作者:
Distel, DL;Beaudoin, DJ;Morrill, W
通讯作者:
Morrill, W
DOI:
10.1073/pnas.1620470114
发表时间:
2017-05-02
影响因子:
11.1
作者:
Distel, Daniel L.;Altamia, Marvin A.;Haygood, Margo G.
通讯作者:
Haygood, Margo G.
影响因子:
2.7
作者:
Kang DD;Froula J;Egan R;Wang Z
通讯作者:
Wang Z