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麦哲伦海山纳济莫夫海台锰结壳沉积物中原核生物的深度依赖性分布

Depth-Dependent Distribution of Prokaryotes in Sediments of the Manganese Crust on Nazimov Guyots of the Magellan Seamounts.

作者信息

Sun Jianxing, Zhou Hongbo, Cheng Haina, Chen Zhu, Yang Jichao, Wang Yuguang, Jing Chunlei

机构信息

School of Minerals Processing and Bioengineering, Central South University, Changsha, 410083, Hunan, People's Republic of China.

Key Laboratory of Biohydrometallurgy of Ministry of Education, Changsha, 410083, Hunan, People's Republic of China.

出版信息

Microb Ecol. 2023 Nov;86(4):3027-3042. doi: 10.1007/s00248-023-02305-8. Epub 2023 Oct 4.

Abstract

Deep ocean polymetallic nodules, rich in cobalt, nickel, and titanium which are commonly used in high-technology and biotechnology applications, are being eyed for green energy transition through deep-sea mining operations. Prokaryotic communities underneath polymetallic nodules could participate in deep-sea biogeochemical cycling, however, are not fully described. To address this gap, we collected sediment cores from Nazimov guyots, where polymetallic nodules exist, to explore the diversity and vertical distribution of prokaryotic communities. Our 16S rRNA amplicon sequencing data, quantitative PCR results, and phylogenetic beta diversity indices showed that prokaryotic diversity in the surficial layers (0-8 cm) was > 4-fold higher compared to deeper horizons (8-26 cm), while heterotrophs dominated in all sediment horizons. Proteobacteria was the most abundant taxon (32-82%) across all sediment depths, followed by Thaumarchaeota (4-37%), Firmicutes (2-18%), and Planctomycetes (1-6%). Depth was the key factor controlling prokaryotic distribution, while heavy metals (e.g., iron, copper, nickel, cobalt, zinc) can also influence significantly the downcore distribution of prokaryotic communities. Analyses of phylogenetic diversity showed that deterministic processes governing prokaryotic assembly in surficial layers, contrasting with stochastic influences in deep layers. This was further supported from the detection of a more complex prokaryotic co-occurrence network in the surficial layer which suggested more diverse prokaryotic communities existed in the surface vs. deeper sediments. This study expands current knowledge on the vertical distribution of benthic prokaryotic diversity in deep sea settings underneath polymetallic nodules, and the results reported might set a baseline for future mining decisions.

摘要

深海多金属结核富含钴、镍和钛,这些金属常用于高科技和生物技术应用,目前人们正通过深海采矿作业来关注其在绿色能源转型中的作用。多金属结核下方的原核生物群落可能参与深海生物地球化学循环,然而,目前对其尚未有全面描述。为填补这一空白,我们从存在多金属结核的纳济莫夫海山采集了沉积物岩芯,以探索原核生物群落多样性及其垂直分布。我们的16S rRNA扩增子测序数据、定量PCR结果以及系统发育β多样性指数表明,表层(0 - 8厘米)的原核生物多样性比深层(8 - 26厘米)高4倍以上,而异养生物在所有沉积物层中占主导地位。变形菌门是所有沉积物深度中最丰富的分类群(32 - 82%),其次是奇古菌门(4 - 37%)、厚壁菌门(2 - 18%)和浮霉菌门(1 - 6%)。深度是控制原核生物分布的关键因素,而重金属(如铁、铜、镍、钴、锌)也会显著影响原核生物群落在岩芯中的分布。系统发育多样性分析表明,表层原核生物组装受确定性过程控制,与深层的随机影响形成对比。表层检测到更复杂的原核生物共现网络进一步支持了这一点,这表明表层沉积物中存在比深层沉积物更多样化的原核生物群落。本研究扩展了当前关于多金属结核下方深海环境中底栖原核生物多样性垂直分布的知识,所报告的结果可能为未来的采矿决策提供基线。

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