Skip to main navigation Skip to search Skip to main content

Diversification, niche adaptation, and evolution of a candidate phylum thriving in the deep Critical Zone

  • Wenlu Feng
  • , Xiaonan Wan
  • , Yiran Zhang
  • , John Quensen
  • , Tom A. Williams
  • , Michael Thompson
  • , Matthew Streeter
  • , Yang Zhang
  • , Shuo Jiao
  • , Gehong Wei
  • , Yuanjun Zhu
  • , Jie Gu
  • , James M. Tiedje
  • , Xun Qian
  • Northwest A and F University
  • Michigan State University
  • Iowa State University

Research output: Contribution to journalArticlepeer-review

16   Link opens in a new tab Citations (SciVal)

Abstract

The deep subsurface soil microbiome encompasses a vast amount of understudied phylogenetic diversity and metabolic novelty, and the metabolic capabilities and ecological roles of these communities remain largely unknown. We observed a widespread and relatively abundant bacterial phylum (CSP1-3) in deep soils and evaluated its phylogeny, ecology, metabolism, and evolutionary history. Genome analysis indicated that members of CSP1-3 were actively replicating in situ and were widely involved in the carbon, nitrogen, and sulfur cycles. We identified potential adaptive traits of CSP1-3 members for the oligotrophic deep soil environments, including a mixotrophic lifestyle, flexible energy metabolisms, and conservation pathways. The ancestor of CSP1-3 likely originated in an aquatic environment, subsequently colonizing topsoil and, later, deep soil environments, with major CSP1-3 clades adapted to each of these distinct niches. The transition into the terrestrial environment was associated with genome expansion, including the horizontal acquisition of a range of genes for carbohydrate and energy metabolism and, in one lineage, high-affinity terminal oxidases to support a microaerophilic lifestyle. Our results highlight the ecology and genome evolution of microbes in the deep Critical Zone.
Original languageEnglish
Article numbere2424463122
JournalProceedings of the National Academy of Sciences
Volume122
Issue number12
Early online date25 Mar 2025
DOIs
Publication statusPublished - 25 Mar 2025

Funding

This work was supported by the National Natural Science Foundation of China (42277412 and 42207463), 111 Center (B23036), the Shaanxi Innovation Support Program (2024RS-CXTD-68), and the Agricultural Key-scientific and Core-technological Project of Shaanxi Province (2023NYGG011). We are grateful to Phillip Kerr and Brennan Slater from the University of Iowa for their assistance with drilling soil samples, and the cooperation of Keith Schilling of the Iowa Geological Survey for enabling the drilling and associated staff and equipment support. We also thank Chad Graeve of the Hitchcock Nature Center (HNC) for site access and a wealth of history and site information, and Nathan Cannon and Jeff Seagi of Loess Hills State Forest for information and access to the LHSF site. We thank Michelle Quigley for conducting the X-ray computed tomography analysis. We are grateful to Ala Khaleel of Iowa State University for conducting the water-extractable C and N analyses. We thank Calla O\u2019Connor, Quinn Pare, and Mitchell Grinshpun from Michigan State University for their assistance in DNA extractions. We thank the High-Performance Computing platform of Northwest A&F University and the Institute for Cyber-Enabled Research at Michigan State University for providing computing resources.

FundersFunder number
Michigan State University
Northwest A and F University
University of Iowa
National Natural Science Foundation of China42207463, 42277412
Agricultural Key-scientific and Core-technological Project of Shaanxi Province2023NYGG011
Shaanxi Innovation Support Program2024RS-CXTD-68
Overseas Expertise Introduction Center for Discipline Innovation of Food Nutrition and Human Health (111 Center)B23036

    Keywords

    • ecology
    • evolution
    • microbiology

    ASJC Scopus subject areas

    • General

    Fingerprint

    Dive into the research topics of 'Diversification, niche adaptation, and evolution of a candidate phylum thriving in the deep Critical Zone'. Together they form a unique fingerprint.

    Cite this