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Under the karst: detecting hidden subterranean assemblages using eDNA metabarcoding in the caves of Christmas Island, Australia

Environmental Studies and Forestry

Under the karst: detecting hidden subterranean assemblages using eDNA metabarcoding in the caves of Christmas Island, Australia

K. M. West, Z. T. Richards, et al.

Explore the intriguing world of subterranean aquatic life with this groundbreaking study conducted by Katrina M. West and colleagues. Using environmental DNA (eDNA) metabarcoding to uncover the biodiversity hidden within the caves and springs of Christmas Island, Australia, this research reveals significant patterns influenced by environmental factors such as salinity and dissolved oxygen.... show more
Abstract
Subterranean ecosystems are understudied and challenging to conventionally survey given the inaccessibility of underground voids and networks. In this study, we conducted a eukaryotic environmental DNA (eDNA) metabarcoding survey across the karst landscape of Christmas Island, (Indian Ocean, Australia) to evaluate the utility of this non-invasive technique to detect subterranean aquatic ‘stygofauna’ assemblages. Three metabarcoding assays targeting the mitochondrial 16S rRNA and nuclear 18S genes were applied to 159 water and sediment samples collected from 23 caves and springs across the island. Taken together, our assays detected a wide diversity of chordates, cnidarians, porifera, arthropods, molluscs, annelids and bryozoans from 71 families across 60 orders. We report a high level of variation between cave and spring subterranean community compositions which are significantly influenced by varying levels of salinity. Additionally, we show that dissolved oxygen and longitudinal gradients significantly affect biotic assemblages within cave communities. Lastly, we combined eDNA-derived community composition and environmental (water quality) data to predict potential underground interconnectivity across Christmas Island. We identified three cave and spring groups that showed a high degree of biotic and abiotic similarity indicating likely local connectivity. This study demonstrates the applicability of eDNA metabarcoding to detect subterranean eukaryotic communities and explore underground interconnectivity.
Publisher
Scientific Reports
Published On
Dec 08, 2020
Authors
Katrina M. West, Zoe T. Richards, Euan S. Harvey, Robert Susac, Alicia Grealy, Michael Bunce
Tags
environmental DNA
metabarcoding
biodiversity
Christmas Island
subterranean aquatic assemblages
karst landscape
ecological connectivity
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