Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Development of a DNA Metabarcoding Method for the Identification of Bivalve Species in Seafood Products

View through CrossRef
The production of bivalve species has been increasing in the last decades. In spite of strict requirements for species declaration, incorrect labelling of bivalve products has repeatedly been detected. We present a DNA metabarcoding method allowing the identification of bivalve species belonging to the bivalve families Mytilidae (mussels), Pectinidae (scallops), and Ostreidae (oysters) in foodstuffs. The method, developed on Illumina instruments, targets a 150 bp fragment of mitochondrial 16S rDNA. We designed seven primers (three primers for mussel species, two primers for scallop species and a primer pair for oyster species) and combined them in a triplex PCR assay. In each of eleven reference samples, the bivalve species was identified correctly. In ten DNA extract mixtures, not only the main component (97.0–98.0%) but also the minor components (0.5–1.5%) were detected correctly, with only a few exceptions. The DNA metabarcoding method was found to be applicable to complex and processed foodstuffs, allowing the identification of bivalves in, e.g., marinated form, in sauces, in seafood mixes and even in instant noodle seafood. The method is highly suitable for food authentication in routine analysis, in particular in combination with a DNA metabarcoding method for mammalian and poultry species published recently.
Title: Development of a DNA Metabarcoding Method for the Identification of Bivalve Species in Seafood Products
Description:
The production of bivalve species has been increasing in the last decades.
In spite of strict requirements for species declaration, incorrect labelling of bivalve products has repeatedly been detected.
We present a DNA metabarcoding method allowing the identification of bivalve species belonging to the bivalve families Mytilidae (mussels), Pectinidae (scallops), and Ostreidae (oysters) in foodstuffs.
The method, developed on Illumina instruments, targets a 150 bp fragment of mitochondrial 16S rDNA.
We designed seven primers (three primers for mussel species, two primers for scallop species and a primer pair for oyster species) and combined them in a triplex PCR assay.
In each of eleven reference samples, the bivalve species was identified correctly.
In ten DNA extract mixtures, not only the main component (97.
0–98.
0%) but also the minor components (0.
5–1.
5%) were detected correctly, with only a few exceptions.
The DNA metabarcoding method was found to be applicable to complex and processed foodstuffs, allowing the identification of bivalves in, e.
g.
, marinated form, in sauces, in seafood mixes and even in instant noodle seafood.
The method is highly suitable for food authentication in routine analysis, in particular in combination with a DNA metabarcoding method for mammalian and poultry species published recently.

Related Results

Trace and Taste: actions to improve seafood literacy and responsible consumption
Trace and Taste: actions to improve seafood literacy and responsible consumption
As marine ecosystems face mounting pressures from overfishing and climate change, promoting sustainable seafood consumption has become essential for ocean conservation. The SEA2SEE...
A Comparison of Cell-Based and Cell-Cultured as Appropriate Common or Usual Names to Label Products Made from the Cells of Fish
A Comparison of Cell-Based and Cell-Cultured as Appropriate Common or Usual Names to Label Products Made from the Cells of Fish
ABSTRACT Using an online experiment with a nationally representative sample of 1200 adult American consumers, two “common or usual names,” “Cell-Based Seafood” and ...
An empirical assessment of common or usual names to label cell‐based seafood products
An empirical assessment of common or usual names to label cell‐based seafood products
Abstract An important consideration in the commercialization of cell‐based meat, poultry, and seafood is what common or usual name to use on package labels to m...
Maternal seafood consumption and fetal growth: a birth cohort study in urban China
Maternal seafood consumption and fetal growth: a birth cohort study in urban China
Abstract Background Seafood is a good source of essential fatty acids which has a presumably beneficial effect on develop...
Identifying future climate risks embedded in international seafood import portfolios
Identifying future climate risks embedded in international seafood import portfolios
Seafood, one of the most highly traded commodities, benefits diverse livelihoods and supports global nutrition by supplying critical fatty acids, micronutrients, and animal protein...
Environmental DNA Metabarcoding Detects Predators at Higher Rates Than Electrofishing
Environmental DNA Metabarcoding Detects Predators at Higher Rates Than Electrofishing
ABSTRACTThere are numerous downsides and risks associated with electrofishing; hence, environmental DNA (eDNA) metabarcoding is becoming increasingly common in aquatic ecological s...
Factors influencing the decision to buy fresh seafood online among Generation X consumers in Nakhon Si Thammarat Province, Thailand
Factors influencing the decision to buy fresh seafood online among Generation X consumers in Nakhon Si Thammarat Province, Thailand
The objectives of this study were to: 1) study the online purchase decision making behavior of consumers of Generation X in Nakhon Si Thammarat Province 2.) To analyze factors infl...

Back to Top