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Bibliographic Details
Main Authors: Lian, Zheng-Han, Salam, Nimaichand, Tan, Sha, Yuan, Yang, Li, Meng-Meng, Li, Yu-Xian, Liu, Ze-Tao, Hu, Chao-Jian, Lv, Ai-Ping, OuYang, Yu-Ting, Lu, Cai-Yu, Zhang, Jing-Yi, Chen, Ying, Chen, Le-Bin, Luo, Zhen-Hao, Ma, Bin, Hua, Zheng-Shuang, Jiao, Jian-Yu, Li, Wen-Jun, Liu, Lan
Format: Artículo científico
Language:en
Published: iMeta 2024
Online Access:https://pubmed.ncbi.nlm.nih.gov/39742307/
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Table of Contents:
  • Metagenomic analysis sheds light on the mixotrophic lifestyle of bacterial phylum . Lian, Zheng-Han Salam, Nimaichand Tan, Sha Yuan, Yang Li, Meng-Meng Li, Yu-Xian Liu, Ze-Tao Hu, Chao-Jian Lv, Ai-Ping OuYang, Yu-Ting Lu, Cai-Yu Zhang, Jing-Yi Chen, Ying Chen, Le-Bin Luo, Zhen-Hao Ma, Bin Hua, Zheng-Shuang Jiao, Jian-Yu Li, Wen-Jun Liu, Lan is a novel bacterial phylum proposed based on hot spring metagenomes and public metagenome-assembled genomes, classified within the -- superphylum. This globally distributed phylum consists of one class and five orders, with the majority of its members being facultative anaerobes. Notably, the order utilizes hydrogen as an electron donor for carbon fixation through the Calvin Benson Bassham cycle. Phylogenetic and metabolic analyses reveal the phylum's key role in the carbon cycle, with frequent horizontal gene transfer events influencing its evolutionary trajectory.