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Iron‐ and aluminium‐induced depletion of molybdenum in acidic environments impedes the nitrogen cycle

Xiaoxuan Ge; Brian J. Vaccaro; Michael P. Thorgersen; Farris L. Poole; Erica L. Majumder; Grant M. Zane; Kara B. De León; W. Andrew Lancaster; Ji Won Moon; Charles J. Paradis; Frederick von Netzer; David A. Stahl; Paul D. Adams; Adam P. Arkin; Judy D. Wall; Terry C. Hazen; Michael W. W. Adams
Environmental Microbiology · Vol. 21, Issue 1 · pp. 152-163 · 2019

Abstract

Summary Anthropogenic nitrate contamination is a serious problem in many natural environments. Nitrate removal by microbial action is dependent on the metal molybdenum (Mo), which is required by nitrate reductase for denitrification and dissimilatory nitrate reduction to ammonium. The soluble form of Mo, molybdate (MoO 4 2− ), is incorporated into and adsorbed by iron (Fe) and aluminium (Al) (oxy) hydroxide minerals. Herein we used Oak Ridge Reservation (ORR) as a model nitrate‐contaminated acidic environment to investigate whether the formation of Fe‐ and Al‐precipitates could impede microbial nitrate removal by depleting Mo. We demonstrate that Fe and Al mineral formation that occurs as the pH of acidic synthetic groundwater is increased, decreases soluble Mo to low picomolar concentrations, a process proposed to mimic environmental diffusion of acidic contaminated groundwater. Analysis of ORR sediments revealed recalcitrant Mo in the contaminated core that co‐occurred with Fe and Al, consistent with Mo scavenging by Fe/Al precipitates. Nitrate removal by ORR isolate Pseudomonas fluorescens N2A2 is virtually abolished by Fe/Al precipitate‐induced Mo depletion. The depletion of naturally occurring Mo in nitrate‐ and Fe/Al‐contaminated acidic environments like ORR or acid mine drainage sites has the potential to impede microbial‐based nitrate reduction thereby extending the duration of nitrate in the environment.

Bibliographic Information

JournalEnvironmental Microbiology
PublisherWiley
Publication Date2019-01-01
Publication Year2019
Volume21
Issue1
Pages152-163
Document TypeJournal Article
Print ISSN1462-2912
eISSN1462-2920
DOI10.1111/1462-2920.14435
SubjectMicrobial Ecology

Access Information

NARA Access Coverage1999-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/14622920
Publisher PageOpen Publisher Page
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