Insights into the Evolutionary and Ecological Roles of Bathyarchaeia in Arsenic Detoxification

IF 11.3 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Jiaqi Wang, , , Changhai Duan, , , Xiaoyuan Feng, , , Yanling Qi, , , Jie Lian, , , Lizhong Wang, , , Meng Li*, , and , Baolan Hu*, 
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Abstract

Arsenic (As) is a prevalent toxic element, posing significant risks to organisms, including microbes. While microbial arsenic detoxification has been extensively studied in bacteria, archaeal mechanisms remain understudied. Here, we investigated arsenic resistance genes in Bathyarchaeia, one of the most abundant archaeal lineages on Earth. Comprehensive genomic analysis of 318 Bathyarchaeia representatives revealed a widespread distribution of arsenic resistance genes, with 60% of genomes harboring genes for arsenate reduction (arsR1 and arsC2), arsenite methylation (arsM), and arsenic transport (acr3, arsP, and arsB). Phylogenetic analysis revealed that these genes are widely distributed across 14 archaeal phyla, including Asgardarchaeota, Thermoproteota, and Thermoplasmatota, with close evolutionary relationships among these archaeal lineages. In situ investigation of sediment columns and laboratory microcosm experiments demonstrated a strong positive correlation between Bathyarchaeia abundance and arsenic concentrations, suggesting their adaptation to arsenic-rich environments. Molecular dating analysis placed the emergence of Bathyarchaeia at approximately 3.01 billion years ago, with the evolution of their arsenic resistance mechanisms closely tracking major geological events, including the Great Oxidation Event (2.4–2.1 Gya), Huronian Glaciation (2.29–2.25 Gya), and Cryogenian Glaciation (∼700 Mya). Our findings highlight the critical role of Archaea in the arsenic cycle and provide insights into the evolutionary history of arsenic resistance associated with paleogeochemical changes in Bathyarchaeia.

Abstract Image

Abstract Image

深海古菌在砷解毒中的进化和生态作用
砷(As)是一种普遍存在的有毒元素,对包括微生物在内的生物体构成重大风险。虽然微生物砷解毒已在细菌中广泛研究,但古细菌的机制仍未得到充分研究。在这里,我们研究了地球上最丰富的古细菌谱系之一深海古细菌的抗砷基因。对318个深海archaeia代表的综合基因组分析显示,砷抗性基因分布广泛,60%的基因组含有砷酸盐还原(arsR1和arsC2)、亚砷酸盐甲基化(arsM)和砷转运(acr3、arsP和arsB)基因。系统发育分析表明,这些基因广泛分布于14个古细菌门,包括Asgardarchaeota、Thermoproteota和Thermoplasmatota,这些古细菌谱系之间具有密切的进化关系。沉积物柱的原位调查和实验室微观实验表明,深海古菌丰度与砷浓度呈正相关,表明它们适应富砷环境。分子测年分析表明,深海archaeia的出现时间约为30.1亿年前,其抗砷机制的演变与主要地质事件密切相关,包括大氧化事件(2.4-2.1 Gya)、休伦冰期(2.29-2.25 Gya)和低温冰期(~ 700 Mya)。我们的发现突出了古细菌在砷循环中的关键作用,并提供了与深海古地球化学变化相关的砷抗性进化史的见解。
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来源期刊
环境科学与技术
环境科学与技术 环境科学-工程:环境
CiteScore
17.50
自引率
9.60%
发文量
12359
审稿时长
2.8 months
期刊介绍: Environmental Science & Technology (ES&T) is a co-sponsored academic and technical magazine by the Hubei Provincial Environmental Protection Bureau and the Hubei Provincial Academy of Environmental Sciences. Environmental Science & Technology (ES&T) holds the status of Chinese core journals, scientific papers source journals of China, Chinese Science Citation Database source journals, and Chinese Academic Journal Comprehensive Evaluation Database source journals. This publication focuses on the academic field of environmental protection, featuring articles related to environmental protection and technical advancements.
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