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10 results for “Autonomous Reef Monitoring Structures”

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zenodo44/100

Spineless and overlooked: DNA metabarcoding of autonomous reef monitoring structures reveals intra- and interspecific genetic diversity in Mediterranean invertebrates

<p>Sequence data and stepwise pipeline outputs associated with the article &quot;Spineless and overlooked: DNA metabarcoding of autonomous reef monitoring structures reveals intra- and interspecific genetic diversity in Mediterranean invertebrates&quot;.</p> <p>Preprint available here:&nbsp;<a href="https://doi.org/10.22541/au.167085544.47638352/v1">10.22541/au.167085544.47638352/v1</a></p> <p>Sequence data is deposited&nbsp;in fastq-format in folders by region (Palinuro.tar.gz, Livorno.tar.gz, and Rovinj.tar.gz) and a separate folder for controls (Controls.tar.gz). Each fastq-file contains sequences for a single PCR replicate named by sample and replicate number. Sample names are described in spineless_sample_names.csv. Positive control sequences are described in SM1_positive_controls.csv. Stepwise pipeline outputs are available in the folder Pipeline_outputs_stepwise.zip</p> <p>Scripts used to generate pipeline outputs as well as other aspects of the final article are available at&nbsp;<a href="https://github.com/thomasdotter/spineless-haplotypes">https://github.com/thomasdotter/spineless-haplotypes</a>.</p> <p>&nbsp;</p>

opencc-by-4.0Mar 2023View details →
zenodo36/100

Genbank and BOLD accession numbers of sequences from "New insights into the diversity of cryptobenthic Cirripectes blennies in the Mascarene Archipelago sampled using Autonomous Reef Monitoring Structures (ARMS)"

<p><strong>Abstract:</strong></p> <p>Autonomous Reef Monitoring Structures (ARMS) are artificial mini-reefs designed for standardised sampling of sessile and small motile cryptobenthic organisms. ARMS are also effective for collecting small cryptobenthic fishes, such as the combtooth blennies of the genus <em>Cirripectes</em>. Recent studies discovered several <em>Cirripectes</em> species endemic to islands or archipelagos, in spite of the generally broad distributions of tropical and subtropical blennies. Thus, in order to evaluate the diversity and distribution of <em>Cirripectes</em> species in the Mascarene Archipelago, a little studied region but an important biodiversity hotspot, complete mitochondrial genomes and nuclear rhodopsin genes were sequenced for 39 specimens collected with ARMS deployed on outer reef slopes at Reunion and Rodrigues islands. Mitochondrial COI sequences were analysed to integrate these specimens within the largest dataset of publicly available sequences. Three species were found in the Mascarene Archipelago, <em>Cirripectes&nbsp;castaneus, C.&nbsp;randalli, </em>and <em>C.&nbsp;stigmaticus</em>. <em>C.&nbsp;castaneus</em> and <em>C.&nbsp;stigmaticus</em> both have an Indo-Pacific distribution with several haplotypes shared among distant localities. In agreement with the literature, <em>C.&nbsp;randalli </em>shows a small-range endemism restricted to the Mascarenes. We confirmed the presence of <em>C.&nbsp;castaneus, C.&nbsp;randalli </em>and <em>C.&nbsp;stigmaticus </em>in Rodrigues, and the presence of <em>C.&nbsp;stigmaticus</em> in Reunion. This study contributes to fill the gaps in taxonomic and molecular knowledge of the reef cryptobiome in the South-West Indian Ocean, and provides the first complete mitogenomes for the genus, a crucial step for future molecular-based inventories (e.g. eDNA).</p> <p><strong>Content of this repository:</strong></p> <p>Genbank and BOLD accession numbers of sequences from&nbsp;&quot;New insights into the diversity of cryptobenthic <em>Cirripectes</em> blennies in the Mascarene Archipelago sampled using Autonomous Reef Monitoring Structures (ARMS)&quot; published in<em> Ecology and Evolution</em>&nbsp;(2023)</p>

opencc-by-4.0Dec 2022View details →
dryad36/100

Using standardized fish-specific autonomous reef monitoring structures (FARMS) to quantify cryptobenthic fish communities

<p>1. Biodiversity inventories and monitoring techniques for marine fishes often overlook small (&lt;5cm), bottom-associated ('cryptobenthic') fishes, and few standardized, comparative assessments of cryptobenthic fish communities exist. We sought to develop a standardized, quantitative survey method for cryptobenthic fishes that permits their sampling across a variety of habitats and conditions.</p> <p>2. Fish-specific autonomous reef monitoring structures (FARMS) are designed to sample cryptobenthic fishes using a suite of accessible and affordable materials. To generate a variety of microhabitats, FARMS consist of three layers of stacked PVC pipes in three different sizes, as well as a bottom and top level of loose PVC-pipe fragments in a mesh basket. We deployed FARMS across a variety of habitats, including coral reefs, seagrass beds, oyster reefs, mangroves, and soft-bottom habitats across six locations (Hawai'i, Texas, Panama, Saudi Arabia, Brazil, and Curaçao).</p> <p>3. From shallow estuaries to coral reefs beyond 100 m depth, FARMS attracted distinct communities of native cryptobenthic fishes with strong site or habitat specificity. Comparing the FARMS to communities sampled with alternative methods (enclosed clove-oil stations on coral reefs in Panama and oyster sampling units on oyster reefs in Texas) suggests that FARMS yield a subset of cryptobenthic species representative of those present on local coral and oyster reefs. While FARMS yield fewer individuals per sample and are restricted to cryptobenthic species, they are efficient sampling devices relative to the sampled area.</p> <p>4. We demonstrate that FARMS represent a useful tool for standardized collections of cryptobenthic fishes. While natural substrata are bound to yield more mature communities with a larger number of individuals and wider range of specialist species, the potential to deploy and retrieve FARMS in turbid environments, beyond regular SCUBA depth, and where fish collections using anesthetics or ichthyocides are forbidden suggests that they are a valuable complementary technique to survey fishes in aquatic ecosystems. Deploying FARMS in locations and habitats where cryptobenthic fish communities have not been studied in detail may yield many valuable specimens of unknown or poorly known species.</p>

opencc-zeroFeb 2023View details →
dryad36/100

Using standardized fish-specific autonomous reef monitoring structures (FARMS) to quantify cryptobenthic fish communities

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publicFeb 2023View details →
dryad36/100

Data from: The importance of standardization for biodiversity comparisons: a case study using Autonomous Reef Monitoring Structures (ARMS) and metabarcoding to measure cryptic diversity on Mo'orea coral reefs, French Polynesia

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publicMar 2018View details →
zenodo32/100

Matrix aggregation of species of Phyla Annelida (Polychaeta), Mollusca, Arthropoda (Decapoda, Stomatopoda, Amphipoda, and Chelicerata), and Echinodermata registered of the Caribbean Sea and Gulf of Mexico region by Ocean Biodiversity Information Systems of the research "Evaluation of the use of Autonomous Reef Monitoring Structures (ARMS) for capturing the biological diversity of two coral reefs in the Yucatán Península, México"

<p>This database consists of an aggregation matrix of species from Ocean Biodiversity Information Systems&nbsp;using as geographic filters the Caribbean Sea region (ID 34287) and the Gulf of Mexico region (ID 34287)&nbsp;nomenclature and hierarchical classification of each Phyla from&nbsp;&nbsp;World Register of Marine Species&nbsp;used for the calculation of average taxonomic distinction of species belonging to the Phyla Annelida (Polychaeta), Mollusca, Arthropoda (Decapoda, Stomatopoda, Amphipoda, and Chelicerata), and Echinodermata associated to Autonomous&nbsp;Reefs Monitoring Structures from the research&nbsp; &ldquo;Evaluation of the use of Autonomous Reef Monitoring Structures (ARMS) to estimate cryptic diversity in two coral reefs of the Yucatan Pen&iacute;nsula, M&eacute;xico&rdquo;</p> <p><strong>*Corresponding autor: </strong>edlinguerra@gmail.com</p> <p>BIS Ocean Biodiversity Information System. Available online:&nbsp;<a href="http://www.iobis.org/">www.iobis.org</a>.</p> <p>Horton, T.; Gofas, S.; Kroh, A.; Poore, G.C.B.; Read, G.; Rosenberg, G.; St&ouml;hr, S.; Bailly, N.; Boury-Esnault, N.; Brand&atilde;o, S.N.; et al. Improving nomenclatural consistency: A decade of experience in the World Register of Marine Species.&nbsp;<em>Eur. J. Taxon.</em>&nbsp;<strong>2017</strong>,&nbsp;<em>2017</em>, doi:10.5852/ejt.2017.389.</p> <p><span lang="EN-US">was produced in collaboration with the Biodiversidad Marina de Yucat&aacute;n project.&nbsp;</span><a href="https://www.bdmy.org.mx/carteles-publicaciones/" target="_blank" rel="noopener">https://www.bdmy.org.mx/,</a> Universidad Nacional Autonoma de M&eacute;xico and Escuela Nacional de Estudios Superiores</p>

opencc-by-nc-nd-4.0Sep 2021View details →
zenodo32/100

Database of Incidence per reef and región of the research "Evaluation of the use of Autonomous Reef Monitoring Structures (ARMS) for capturing the biological diversity of two coral reefs in the Yucatán Península, México"

<p><strong>*Corresponding autor: </strong>edlinguerra@gmail.com</p> <p>This database contains &nbsp;information of specimens of the cryptofauna assemblages identified by experts of each Phyla per reef and regi&oacute;n and is a complementary material of the research &ldquo;Evaluation of the use of Autonomous Reef Monitoring Structures (ARMS) to estimate cryptic diversity in two coral reefs of the Yucatan Pen&iacute;nsula, M&eacute;xico&rdquo;. For the present research, animals of the appropriate species and quality were selected and the minimum number required to obtain scientifically valid results were considered, all animals were anesthetized and deposited in National Collections: Colecci&oacute;n Regional de Crust&aacute;ceos de la Pen&iacute;nsula de Yucat&aacute;n (SEMARNAT number: YUC-CC-255-11), Colecci&oacute;n Regional de Moluscos de la Pen&iacute;nsula de Yucat&aacute;n (SEMARNAT number: YUC. -INV-240-01-11), Colecci&oacute;n Regional de Equinodermos de la Pen&iacute;nsula de Yucat&aacute;n (SEMARNAT number: DGVS-CC-307-18), Colecci&oacute;n Regional de Ascidias de la Pen&iacute;nsula de Yucat&aacute;n (SEMARNAT number: DGVS-CC-306-18), Colecci&oacute;n Regional de Briozoos de la Pen&iacute;nsula de Yucat&aacute;n (SEMARNAT number: DGVS-CC-308-18), Colecci&oacute;n Regional de Cnidarios de la Pen&iacute;nsula de Yucat&aacute;n (SEMARMAT number: YUC-CC-254-11), Colecci&oacute;n Regional de Policl&aacute;didos de la Pen&iacute;nsula de Yucat&aacute;n (105 Collection CONABIO) and Colecci&oacute;n Nacional del Phyla Porifera &ldquo;Gerardo Green&rdquo; of Universidad Nacional Aut&oacute;noma de M&eacute;xico, Facultad de Ciencias, Sisal, Mexico (UMDI-Sisal) and within accordance with scientific collection permits: PPF/DGOPA: 295/17, 300/17, 294/17, 293/17, PPF/DGOPA-076/19 issued by Mexico&rsquo;s State Secretaria de Agricultura, Ganaderia, Desarrollo Rural, Pesca y Alimentaci&oacute;n (SAGARPA).</p> <p><strong>CC-BY-NC-N</strong></p>

opencc-by-nc-nd-4.0Sep 2021View details →
zenodo28/100

Linked collectors and determiners for: Checklist of pioneer benthic taxa found on Autonomous Reef Monitoring Structures (ARMS) in Terra Nova Bay (Ross Sea, Antarctica).

Natural history specimen data linked to collectors and determiners held within, "Checklist of pioneer benthic taxa found on Autonomous Reef Monitoring Structures (ARMS) in Terra Nova Bay (Ross Sea, Antarctica)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/f024a3d3-7bb2-4985-be57-d890936769ff">https://bionomia.net/dataset/f024a3d3-7bb2-4985-be57-d890936769ff</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/f024a3d3-7bb2-4985-be57-d890936769ff">https://gbif.org/dataset/f024a3d3-7bb2-4985-be57-d890936769ff</a>. Formatted as a Frictionless Data package.

opencc-zeroAug 2024View details →
zenodo24/100

Abundance of benthic sessile fauna associated with ARMS from the research" Evaluation of the use of Autonomous Reef Monitoring Structures (ARMS) for capturing the biological diversity of two coral reefs in the Yucatán Península, México " using the point intersection method (400 points per plate on each side) with the CPCe v4.1 soft-ware (Coral Point Count with Excel extension v4.1)

<p><strong>*Corresponding autor: </strong>edlinguerra@gmail.com</p> <p>This database contains information on the abundance of benthic sessile fauna associated with ARMS from the research&nbsp;&ldquo;Evaluation of the use of Autonomous Reef Monitoring Structures (ARMS) to estimate cryptic diversity in two coral reefs of the Yucatan&nbsp;Pen&iacute;nsula, M&eacute;xico&rdquo;&nbsp;using the point intersection method (400 points per plate on each side) with the CPCe v4.1 soft-ware (Coral Point Count with Excel extension v4.1) to analyze&nbsp;</p> <p>Krebs, C.J. Estimating Density: Quadrats Counts. In&nbsp;<em>Ecological Methodology</em>; Addison-Wesley Educational Publishers, Inc., 1999; p. 69 ISBN 0321021738</p> <p>Kohler, K.; Gill, S. Coral Point Count with Excel extensions (CPCe): A Visual Basic program for the determination of coral and substrate coverage using random point count methodology.&nbsp;<em>Comput. Geosci.</em>&nbsp;<strong>2006</strong>,&nbsp;<em>32</em>, 1259&ndash;1269</p> <div> <p><span lang="EN-US">was produced in collaboration with the Biodiversidad Marina de Yucat&aacute;n project.&nbsp;</span><a href="https://www.bdmy.org.mx/carteles-publicaciones/" target="_blank" rel="noopener">https://www.bdmy.org.mx/,</a> Universidad Nacional Autonoma de M&eacute;xico, Harte Research Institute for Gulf of Mexico Studies and Escuela Nacional de Estudios Superiores</p> </div>

opencc-by-nc-nd-4.0Sep 2021View details →
zenodo20/100

MinION-in-ARMS: Nanopore sequencing to expedite barcoding of specimen-rich macrofaunal samples from Autonomous Reef Monitoring Structures

<p>DNA basecalling, demultiplexing information and sequence barcodes</p>

opencc-by-4.0May 2020View details →

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