Additional file 2 of Hologenome analysis reveals independent evolution to chemosymbiosis by deep-sea bivalves

Additional file 2: Table S1. Constitution of prokaryotes in the gill of C. bisecta based on 16S rDNA amplicon analysis. Table S3. Putative transproter genes in SCbi. Table S4. Genes in biosynthesis pathways of amino acids and cofactors. Table S11. The expansion and contraction events among the three...

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Hauptverfasser: Guo, Yang, Meng, Lingfeng, Wang, Minxiao, Zhong, Zhaoshan, Li, Denghui, Zhang, Yaolei, Li, Hanbo, Zhang, Huan, Seim, Inge, Li, Yuli, Jiang, Aijun, Ji, Qianyue, Su, Xiaoshan, Chen, Jianwei, Fan, Guangyi, Li, Chaolun, Liu, Shanshan
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creator Guo, Yang
Meng, Lingfeng
Wang, Minxiao
Zhong, Zhaoshan
Li, Denghui
Zhang, Yaolei
Li, Hanbo
Zhang, Huan
Seim, Inge
Li, Yuli
Jiang, Aijun
Ji, Qianyue
Su, Xiaoshan
Chen, Jianwei
Fan, Guangyi
Li, Chaolun
Liu, Shanshan
description Additional file 2: Table S1. Constitution of prokaryotes in the gill of C. bisecta based on 16S rDNA amplicon analysis. Table S3. Putative transproter genes in SCbi. Table S4. Genes in biosynthesis pathways of amino acids and cofactors. Table S11. The expansion and contraction events among the three symbiotic bivalves (Conchocele bisecta, Archivesica marissinica, Gigantidas platifrons). Table S12. Counts of pfam domains related to the glycosyl hydrolase families in bivalve genomes. Table S13. Number of Pfam protein families related to the PRRs that involved in bacterial recognition.
doi_str_mv 10.6084/m9.figshare.26986315
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Microbiology
title Additional file 2 of Hologenome analysis reveals independent evolution to chemosymbiosis by deep-sea bivalves
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