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42
result(s) for
"Sabella spallanzanii"
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Field evidence for microplastic interactions in marine benthic invertebrates
2021
Microplastics represent an important issue of concern for marine ecosystems worldwide, and closed seas, such as the Mediterranean, are among the most affected by this increasing threat. These pollutants accumulate in large quantities in benthic environments causing detrimental effects on diverse biocenoses. The main focus of this study is on the ‘polychaetes-microplastics’ interactions, particularly on two species of benthic polychaetes with different ecology and feeding strategies: the sessile and filter feeder
Sabella spallanzanii
(Gmelin, 1791) and the vagile carnivorous
Hermodice carunculata
(Pallas, 1766). Since not standardized protocols are proposed in literature to date, we compared efficiencies of diverse common procedures suitable for digesting organic matter of polychaetes. After the definition of an efficient digestion protocol for microplastics extraction for both polychaetes, our results showed high microplastics ingestion in both species. Microplastics were found in 42% of individuals
of S. spallanzanii
, with a mean of 1 (± 1.62) microplastics per individual, in almost all individuals of
H. carunculata
(93%), with a mean of 3.35 (± 2.60). These significant differences emerged between
S. spallanzanii
and
H. carunculata
, is probably due to the diverse feeding strategies. The susceptibility to this pollutant makes these species good bioindicators of the impact of microplastics on biota.
Journal Article
Evaluating Detection Limits of Next-Generation Sequencing for the Surveillance and Monitoring of International Marine Pests
by
Bott, Nathan J.
,
Wood, Susanna A.
,
Pochon, Xavier
in
Analytical methods
,
Aquatic Organisms - genetics
,
Asterias amurensis
2013
Most surveillance programmes for marine invasive species (MIS) require considerable taxonomic expertise, are laborious, and are unable to identify species at larval or juvenile stages. Therefore, marine pests may go undetected at the initial stages of incursions when population densities are low. In this study, we evaluated the ability of the benchtop GS Junior™ 454 pyrosequencing system to detect the presence of MIS in complex sample matrices. An initial in-silico evaluation of the mitochondrial cytochrome c oxidase subunit I (COI) and the nuclear small subunit ribosomal DNA (SSU) genes, found that multiple primer sets (targeting a ca. 400 base pair region) would be required to obtain species level identification within the COI gene. In contrast a single universal primer set was designed to target the V1-V3 region of SSU, allowing simultaneous PCR amplification of a wide taxonomic range of MIS. To evaluate the limits of detection of this method, artificial contrived communities (10 species from 5 taxonomic groups) were created using varying concentrations of known DNA samples and PCR products. Environmental samples (water and sediment) spiked with one or five 160 hr old Asterias amurensis larvae were also examined. Pyrosequencing was able to recover DNA/PCR products of individual species present at greater than 0.64% abundance from all tested contrived communities. Additionally, single A. amurensis larvae were detected from both water and sediment samples despite the co-occurrence of a large array of environmental eukaryotes, indicating an equivalent sensitivity to quantitative PCR. NGS technology has tremendous potential for the early detection of marine invasive species worldwide.
Journal Article
Integrated Multitrophic Aquaculture By-Products with Added Value: The Polychaete Sabella spallanzanii and the Seaweed Chaetomorpha linum as Potential Dietary Ingredients
2019
Aquaculture expansion is limited by the negative environmental impact of the waste and the need for alternative sources in the diet of reared fish. In this framework, for the first time, the survival rates, biomass gain, and fatty acid profiles of the polychaete Sabella spallanzanii and the macroalga Chaetomorpha linum, reared/cultivated as bioremediators in an integrated multitrophic aquaculture system (IMTA), were evaluated for their potential reuse applications. Results showed that these organisms represent a natural source of omega-3 and omega-6. On account of the overall results and the high biomass obtained as by-products, a preliminary study was performed employing both S. spallanzanii and C. linum as new dietary ingredients to feed different sized Dicentrarchus labrax. Fish survival rate, biomass growth, and specific growth rate were determined resulting in no significant differences between control and treated fishes. Histological analyses showed no alterations of the stomach tunica mucosa and submucosa in treated fishes. The eco-friendly approaches applied in the here-realized IMTA system could guarantee the achievement of sustainable by-products represented by the bioremediators S. spallanzanii and C. linum, as well as their reliability as a natural source of compounds beneficial to fish and human health.
Journal Article
Combined effects of pollution and bacterial infection in Sabella spallanzanii (Gmelin, 1971)
2025
Abstract Sabella spallanzanii is a Mediterranean tube-dwelling polychaete living in shallow water. Here we evaluate its ability to respond to individual and combined treatments of methylmercury exposure and Escherichia coli challenge – two typical stressors of the eutrophic environment populated by the animal. Methylmercury is one of the most dangerous and toxic pollutants in marine environments, capable of bioaccumulating and being biomagnified within the food web with consequences for marine organisms. Here, the enzymatic and immune responses of Sabella spallanzanii have been investigated after exposure to methylmercury, along with the combined impacts of E. coli infection. Fan worms were subjected to four different treatments: control conditions (buffer injection); E. coli injection; CH3HgCl exposure combined, or not, with E. coli injection. Electrophoresis was performed to highlight possible alterations in protein patterns, differentially expressed upon bacterial and pollution challenges. Furthermore, enzymatic activities related to immune and physiological responses were assessed in whole body extracts. Our findings reveal the impact of methylmercury on the immunomodulation of S. spallanzanii, particularly in relation to oxidative stress and inflammatory markers. Each treatment led to a modulation of all the tested enzymatic activities, and the combined responses drastically reduced lysozyme activity.
Journal Article
Linking Environmental DNA and RNA for Improved Detection of the Marine Invasive Fanworm Sabella spallanzanii
by
Laroche, Olivier
,
Inglis, Graeme J.
,
Wood, Susanna A.
in
Biodiversity
,
Cytochrome-c oxidase
,
Cytochromes
2019
Environmental DNA is increasingly being used in marine invasive species surveillance despite the inability to discriminate between contemporary intracellular (i.e. living) and extracellularly persistent (i.e. legacy) DNA fragments. Environmental RNA is emerging as a powerful alternative when distinguishing the living portion of a community is essential. A positive relationship between DNA and RNA signals may justify the use of DNA only for more rapid and cost-effective detections. In this study environmental DNA and RNA were co-extracted from settlement plates and water samples collected in the Auckland harbor, New Zealand. Samples were analyzed using a Sabella spallanzanii specific droplet digital PCR assay combined with metabarcoding of metazoan communities (Cytochrome c oxidase subunit I). The number and magnitude of S. spallanzanii detections was higher in DNA compared to RNA, and in water samples. A Receiver Operator Characteristics analysis supported a relationship between the magnitude of DNA signal and the likelihood of RNA detection for both sampled matrices. A prediction threshold of 400 COI copies in DNA samples provides an indicator for inferring the presence of living S. spallanzanii population in the conditions tested in this study. Metabarcoding community analysis revealed the taxonomic composition of the water samples to be more diverse than the plate samples which were largely dominated by mollusks. There was a strong association between mollusks and putative extracellular droplet digital PCR signals. Nevertheless, droplet digital PCR detection signals based on environmental DNA were negatively correlated with metabarcoding diversity indices on plates. This highlights complex interactions between environmental DNA and RNA detections and environmental matrices that can affect targeted approaches and need to be considered when designing surveillance programmes.
Journal Article
Microplastics Uptake by Four Filter Feeders
by
De Benedetto, Giuseppe Egidio
,
Rossi, Sergio
,
Arduini, Daniele
in
Animals
,
Aquaculture
,
Aquaculture industry
2024
Microplastics (MPs) are insidious plastic particles with sizes ranging from 1 to 5000 µm. Their presence has been reported all over the world. Recently, bioremediation to remove MPs from water columns using filter feeders as biofilters has been proposed. In a previous lab experiment, the MP bioremediation potential of four fouling organisms from a mariculture facility (Mytilus galloprovincialis, Sabella spallanzanii, Phallusia mammillata, Paraleucilla magna) was separately assessed in single-species experiment. Herein, a follow-up of the work is presented using a multi-species approach. The four organisms were placed together in the same 5 L beaker and fed with a concentration of 250 p/L 6 µm red polystyrene discernible particles. After digesting the organisms and counting the MPs in both the water and the organisms, the results of the two experiments were compared. In the previous experiment, S. spallanzanii had the highest particle retention (PR) value (PR = 88.01%), while in this experiment, P. mammillata has the lowest PR value (PR = 31%). The multi-species approach resulted in a higher number of plastics being removed from the water (88%) compared to the single-species experiments. These fouling organisms naturally exist as a community, acting as an efficient filter with complex morphologies and hydrodynamic features. Here, this simple marine animal forest is re-evaluated by exploiting the ecosystem services provided by these organisms as a solution to MP pollution problem in a mariculture environment.
Journal Article
Drop it all: extraction-free detection of targeted marine species through optimized direct droplet digital PCR
by
Stanton, Jo-Ann L.
,
Gemmell, Neil J.
,
Youngbull, Cody
in
Animals
,
Aquariums
,
Biological Monitoring
2024
Molecular biomonitoring programs increasingly use environmental DNA (eDNA) for detecting targeted species such as marine non-indigenous species (NIS) or endangered species. However, the current molecular detection workflow is cumbersome and time-demanding, and thereby can hinder management efforts and restrict the “opportunity window” for rapid management responses. Here, we describe a direct droplet digital PCR (direct-ddPCR) approach to detect species-specific free-floating extra-cellular eDNA (free-eDNA) signals, i.e ., detection of species-specific eDNA without the need for filtration or DNA extraction, with seawater samples. This first proof-of-concept aquarium study was conducted with three distinct marine species: the Mediterranean fanworm Sabella spallanzanii , the ascidian clubbed tunicate Styela clava , and the brown bryozoan Bugula neritina to evaluate the detectability of free-eDNA in seawater. The detectability of targeted free-eDNA was assessed by directly analysing aquarium marine water samples using an optimized species-specific ddPCR assay. The results demonstrated the consistent detection of S. spallanzanii and B. neritina free-eDNA when these organisms were present in high abundance. Once organisms were removed, the free-eDNA signal exponentially declined, noting that free-eDNA persisted between 24–72 h. Results indicate that organism biomass, specimen characteristics ( e.g ., stress and viability), and species-specific biological differences may influence free-eDNA detectability. This study represents the first step in assessing the feasibility of direct-ddPCR technology for the detection of marine species. Our results provide information that could aid in the development of new technology, such as a field development of ddPCR systems, which could allow for automated continuous monitoring of targeted marine species, enabling point-of-need detection and rapid management responses.
Journal Article
Invasive ecosystem engineers threaten benthic nitrogen cycling by altering native infaunal and biofouling communities
2020
Predicting the effects of invasive ecosystem engineering species in new bioregions has proved elusive. In part this is because separating biological effects from purely physical mechanisms has been little studied and yet could help predict potentially damaging bioinvasions. Here we tested the effects of a large bio-engineering fanworm
Sabella spallanzanii
(
Sabella
) versus worm-like structures (mimics) on gas and nutrient fluxes in a marine soft bottom sediment. Experimental plots of sediment in Hauraki Gulf (New Zealand) were used to test the hypothesis that ecosystem engineers negatively influence benthic ecosystem function through autogenic mechanisms, facilitating activity by biofouling organisms and competitive exclusion of native infauna. Enhanced physical structure associated with
Sabella
and mimics increased nitrogen fluxes, community metabolism and reduced denitrification from 23 μmol m
−2
h
−1
to zero at densities greater than 25 m
2
.
Sabella
plots on average had greater respiration (29%), NH
4
release (33%), and greater NO
3
release (52%) compared to mimics, suggesting allogenic (biological) mechanisms occur, but play a secondary role to autogenic (physical) mechanisms. The dominance of autogenic mechanisms indicates that bio-engineers are likely to cause significant impacts when established, regardless of fundamental differences in recipient regions or identity of the introduced bio-engineer. In the case of
Sabella spallanzanii
, compromised denitrification has the potential to tip the balance of net solute and gas exchanges and cause further ecological degradation in an already eutrophic system.
Journal Article
Reproductive strategy and gamete development of an invasive fanworm, Sabella spallanzanii (Polychaeta: Sabellidae), a field study in Gulf St Vincent, South Australia
by
Hutchings, Pat A.
,
Johnston, Emma L.
,
Dafforn, Katherine A.
in
Biology and Life Sciences
,
Body length
,
Body size
2018
Several reproductive strategies have been identified as key factors that contribute to the establishment and dispersal of invasive species in new environments. These strategies include early maturity, high reproductive capacity and flexibility in timing of reproduction. It is therefore critical to investigate the reproductive biology of target exotic species to understand their potential for population increase and invasive spread, and to inform management control strategies. The European fanworm, Sabella spallanzanii (Gmelin 1791), has established invasive populations along the southern coast of Australia. Gamete development and reproductive periodicity of this worm were investigated in two populations in Gulf St Vincent in South Australia over a 1 year period (July 2012 to June 2013). Samples of worms were collected monthly and dissected for histological analysis. Most individuals reached reproductive maturity at 70 mm body length (thorax and abdomen). Individuals from both populations contained mature and developing gametes year-round and a distinct spawning season was not observed. This may indicate sustained spawning by the population over the year, which provides a constant supply of new recruits to the area. Body length and egg size of worms from these populations were smaller than conspecifics in its native range and other invasive locations. Reproduction and development of S. spallanzanii differs not only between native and invasive locations, but also within invasive locations. This study has shown that S. spallanzanii exhibits a higher phenotypic plasticity and reproductive flexibility than previously known.
Journal Article
Preliminary Investigation of Microlitter Pollution in Low-Energy Hydrodynamic Basins Using Sabella spallanzanii (Polychaeta: Sabellidae) Tubes
by
Bonamano Simone
,
Scanu Sergio
,
Marcelli, Marco
in
Anthropogenic factors
,
Fluid dynamics
,
Fluid flow
2020
Harbor basins are strategically important and heavily impacted water bodies according to the water framework directive. Due to constant traffic, variety of activities, and low-energy hydrodynamics, these areas can have high degrees of water pollution. This study reports the results of the preliminary investigation of anthropogenic microlitter (AM) pollution in a semi-enclosed basin (Civitavecchia harbor; northern Tyrrhenian Sea, Italy) using the tubes built by the polychaete Sabella spallanzanii. The visual inspection showed AM particles within the tube structure as a result of its building process. The total average AM abundance was 20.8 ± 3.7 AM g−1. AM abundances and flushing time as the hydrodynamic parameter of water renewal highlight the homogeneity of the sampling area. The suitability of S. spallanzanii tubes as a potential tool to investigate the AM pollution level in sheltered and polluted environments is highlighted.
Journal Article