Assessing differences in macrofaunal assemblages as a factor of sieve mesh size, distance between samples, and time of sampling

Environ Monit Assess. 2017 Aug;189(8):413. doi: 10.1007/s10661-017-6127-8. Epub 2017 Jul 22.

Abstract

With increasing cascading effects of climate change on the marine environment, as well as pollution and anthropogenic utilization of the seafloor, there is increasing interest in tracking changes to benthic communities. Macrofaunal surveys are traditionally conducted as part of pre-incident environmental assessment studies and post-incident monitoring studies when there is a potential impact to the seafloor. These surveys usually characterize the structure and/or spatiotemporal distribution of macrofaunal assemblages collected with sediment cores; however, many different sampling protocols have been used. An assessment of the comparability of past and current survey methods was in need to facilitate future surveys and comparisons. This was the aim of the present study, conducted off the Oregon coast in waters 25-35 m deep. Our results show that the use of a sieve with a 1.0-mm mesh size gives results for community structure comparable to results obtained from a 0.5-mm mesh size, which allows reliable comparisons of recent and past spatiotemporal surveys of macroinfauna. In addition to our primary objective of comparing methods, we also found interacting effects of seasons and depths of collection. Seasonal differences (summer and fall) were seen in infaunal assemblages in the wave-induced sediment motion zone but not deeper. Thus, studies where wave-induced sediment motion can structure the benthic communities, especially during the winter months, should consider this effect when making temporal comparisons. In addition, some macrofauna taxa-like polychaetes and amphipods show high interannual variabilities, so spatiotemporal studies should make sure to cover several years before drawing any conclusions.

Keywords: Assemblage; Continental shelf; Infauna; Macroinvertebrate; Season; Sieve mesh size.

MeSH terms

  • Animals
  • Aquatic Organisms / classification*
  • Aquatic Organisms / growth & development
  • Biodiversity*
  • Climate Change
  • Environmental Monitoring / instrumentation*
  • Environmental Monitoring / methods
  • Invertebrates / classification*
  • Invertebrates / growth & development
  • Oregon
  • Seasons