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SPATIAL AND TEMPORAL DISTRIBUTIONS OF LIVE SALT-MARSH FORAMINIFERA IN SOUTHERN NEW JERSEY: IMPLICATIONS FOR SEA-LEVEL STUDIES

  • Jennifer S. Walker*
  • , Nicole S. Khan
  • , Timothy A. Shaw
  • , Donald C. Barber
  • , Adam D. Switzer
  • , Benjamin P. Horton
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Geological reconstructions of relative sea-level change have been greatly enhanced by continuous high-resolution records with the use of salt-marsh foraminifera due to their relationship with tidal level in modern environments and subsequent preservation of tests in sediments. A detailed understanding of how live foraminifera assemblages compare to dead or total (live + dead) assemblages and the influence of environmental variables on foraminiferal distributions is essential for their use as a proxy to reconstruct sea level. Here, we evaluated small-scale spatial and temporal (seasonal and interannual) variability of live foraminifera assemblages from four high marsh monitoring stations along a salinity gradient in southern New Jersey over three years. In addition, we measured porewater and sedimentary variables and stable carbon isotopes during each sampling period every three months. In the 184 samples, we identified 11 live agglutinated foraminifera species and four distinct clusters of live foraminifera that correspond to the stations from which they were sampled and to the dead and total assemblages. We found no clear correlation over time between variability in live assemblages and measured environmental variables; however, elevation was the primary controlling factor influencing foraminiferal distributions, with secondary influences from salinity and substrate. The consistency of foraminiferal assemblages on spatial and temporal scales and among live, dead, and total assemblages further reinforces the value of salt-marsh foraminifera as reliable sealevel indicators. © 2023 Authors. All rights reserved.
Original languageEnglish
Pages (from-to)3-19
JournalJournal of Foraminiferal Research
Volume53
Issue number1
Online published23 Jan 2023
DOIs
Publication statusPublished - Jan 2023
Externally publishedYes

Funding

The authors thank Isabel Hong, Ane Garcia-Artola, An-dra Garner, and Tina Dura for their assistance in the field. JSW was funded by the David and Arleen McGlade Foundation, a Cushman Foundation for Foraminiferal Research Student Research Award, a Rutgers University Marine Field Station Graduate Student Award, and the U.S. National Science Foundation (award OCE-1804999). TAS and BPH were funded by the Ministry of Education Academic Research Fund MOE2019-T3-1-004, the National Research Foundation Singapore, and the Singapore Ministry of Education, under the Research Centres of Excellence initiative. Work by DB on this project was supported by the Harold F. Alderfer Fund for Environmental Studies at Bryn Mawr College. The authors acknowledge PALSEA (Palaeo-Constraints on Sea-Level Rise), a working group of the International Union for Quaternary Sciences (INQUA), and Past Global Changes (PAGES), which in turn received support from the Swiss Academy of Sciences and the Chinese Academy of Sciences. This work is a contribution to IGCP Project 725 \u2018Forecasting Coastal Change\u2019. This work is Earth Observatory of Singapore contribution 488. Appendices B and C can be found linked to the online version of this article.

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