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Table representation of search results timeline featuring number of search results per year.

Year Number of Results
1921 1
1947 1
1951 1
1952 1
1953 1
1961 1
1963 1
1964 2
1966 1
1968 1
1974 1
1975 2
1976 6
1978 7
1979 1
1980 2
1981 3
1982 3
1983 3
1985 3
1986 4
1987 4
1988 5
1989 1
1990 4
1991 4
1992 4
1993 6
1994 6
1995 7
1996 7
1997 9
1998 13
1999 10
2000 22
2001 13
2002 15
2003 17
2004 15
2005 26
2006 71
2007 81
2008 84
2009 73
2010 70
2011 78
2012 80
2013 87
2014 94
2015 103
2016 104
2017 89
2018 100
2019 120
2020 113
2021 123
2022 140
2023 122
2024 86

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1,764 results

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Page 1
Complex mitogenomic rearrangements within the Pectinidae (Mollusca: Bivalvia).
Malkócs T, Viricel A, Becquet V, Evin L, Dubillot E, Pante E. Malkócs T, et al. BMC Ecol Evol. 2022 Mar 10;22(1):29. doi: 10.1186/s12862-022-01976-0. BMC Ecol Evol. 2022. PMID: 35272625 Free PMC article.
BACKGROUND: Scallops (Bivalvia: Pectinidae) present extraordinary variance in both mitochondrial genome size, structure and content, even when compared to the extreme diversity documented within Mollusca and Bivalvia. ...At the scale of the Pectinidae, we fou …
BACKGROUND: Scallops (Bivalvia: Pectinidae) present extraordinary variance in both mitochondrial genome size, structure and co …
Development of a DNA Metabarcoding Method for the Identification of Bivalve Species in Seafood Products.
Gense K, Peterseil V, Licina A, Wagner M, Cichna-Markl M, Dobrovolny S, Hochegger R. Gense K, et al. Foods. 2021 Oct 28;10(11):2618. doi: 10.3390/foods10112618. Foods. 2021. PMID: 34828894 Free PMC article.
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 …
We present a DNA metabarcoding method allowing the identification of bivalve species belonging to the bivalve families Mytilidae (mussels), …
Effects of bioactive extracellular compounds and paralytic shellfish toxins produced by Alexandrium minutum on growth and behaviour of juvenile great scallops Pecten maximus.
Borcier E, Morvezen R, Boudry P, Miner P, Charrier G, Laroche J, Hegaret H. Borcier E, et al. Aquat Toxicol. 2017 Mar;184:142-154. doi: 10.1016/j.aquatox.2017.01.009. Epub 2017 Jan 20. Aquat Toxicol. 2017. PMID: 28142089 Review.
The objective of this experimental study was to assess the effects of PST and BEC produced by A. minutum upon juvenile great scallops Pecten maximus. Scallops were exposed for one week to two different strains of A. minutum, the first producing both PST and BEC and …
The objective of this experimental study was to assess the effects of PST and BEC produced by A. minutum upon juvenile great scallops
Marine Biotoxins in Whole and Processed Scallops from the Argentine Sea.
Goya AB, Baqer D, Alexander RP, Stubbs P, Dean K, Lewis AM, Coates L, Maskrey BH, Turner AD. Goya AB, et al. Mar Drugs. 2022 Oct 10;20(10):634. doi: 10.3390/md20100634. Mar Drugs. 2022. PMID: 36286458 Free PMC article.
In the Argentine Sea, this has been identified as an issue for the offshore fisheries of Patagonian scallops (Zygochlamys patagonica), leading to potentially harmful effects on consumers. ...These findings highlight that paralytic shellfish toxins with an unusual toxin pro …
In the Argentine Sea, this has been identified as an issue for the offshore fisheries of Patagonian scallops (Zygochlamys patagonica) …
Energy metabolism of juvenile scallops Nodipecten subnodosus under acute increased temperature and low oxygen availability.
Salgado-García RL, Kraffe E, Tripp-Valdez MA, Ramírez-Arce JL, Artigaud S, Flye-Sainte-Marie J, Mathieu-Resuge M, Sicard MT, Arellano-Martínez M, Racotta IS. Salgado-García RL, et al. Comp Biochem Physiol A Mol Integr Physiol. 2023 Apr;278:111373. doi: 10.1016/j.cbpa.2023.111373. Epub 2023 Jan 20. Comp Biochem Physiol A Mol Integr Physiol. 2023. PMID: 36690296
Scallops were exposed to control conditions (treatment C: 22 C, 7.1 mg O(2) L(-1) or PO(2) 156.9 mmHg), acute hyperthermia under normoxia (treatment T: 30 C, 6.0 mg O(2) L(-1) or PO(2) 150.9 mmHg) or acute hyperthermia plus hypoxia (treatment TH: 30 C, 2.5 mg O(2) L(-1) or
Scallops were exposed to control conditions (treatment C: 22 C, 7.1 mg O(2) L(-1) or PO(2) 156.9 mmHg), acute hyperthermia under norm
Tetrodotoxin Detection in Japanese Bivalves: Toxification Status of Scallops.
Yasukawa S, Shirai K, Namigata K, Ito M, Tsubaki M, Oyama H, Fujita Y, Okabe T, Suo R, Ogiso S, Watabe Y, Matsubara H, Suzuki N, Hirayama M, Sugita H, Itoi S. Yasukawa S, et al. Mar Biotechnol (NY). 2023 Oct;25(5):666-676. doi: 10.1007/s10126-023-10199-3. Epub 2023 Jan 17. Mar Biotechnol (NY). 2023. PMID: 36648572
In this study, 14 species/subspecies of bivalves from various Japanese waters were subjected to LC-MS/MS analysis to reveal TTX toxification state, demonstrating that the Pectinidae, including C. farreri akazara, Chlamys farreri nipponensis, Chlamys (Mimachlamys) nobilis, …
In this study, 14 species/subspecies of bivalves from various Japanese waters were subjected to LC-MS/MS analysis to reveal TTX toxification …
An SCD gene from the Mollusca and its upregulation in carotenoid-enriched scallops.
Li X, Ning X, Dou J, Yu Q, Wang S, Zhang L, Wang S, Hu X, Bao Z. Li X, et al. Gene. 2015 Jun 10;564(1):101-8. doi: 10.1016/j.gene.2015.02.071. Epub 2015 Mar 26. Gene. 2015. PMID: 25816753
Bivalves possess an adductor muscle, which is normally white in scallops. However, a new variety of Yesso scallop (Patinopecten yessoensis), the 'Haida golden scallop', can be distinguished by its adductor muscle's orange colour, which is caused by carotenoid accumulation. …
Bivalves possess an adductor muscle, which is normally white in scallops. However, a new variety of Yesso scallop (Patinopecten yesso …
Occupational asthma in a seafood restaurant worker: cross-reactivity of shrimp and scallops.
Goetz DW, Whisman BA. Goetz DW, et al. Ann Allergy Asthma Immunol. 2000 Dec;85(6 Pt 1):461-6. doi: 10.1016/S1081-1206(10)62572-0. Ann Allergy Asthma Immunol. 2000. PMID: 11152166
Bronchial challenge with extracts of shrimp and scallops each produced an isolated early asthmatic response. OBJECTIVE: To investigate cross-reactivity of shrimp (phylum Arthropoda) and scallops (phylum Mollusca). ...IgE ELISA inhibition demonstrated 17% to 28% inhi …
Bronchial challenge with extracts of shrimp and scallops each produced an isolated early asthmatic response. OBJECTIVE: To investigat …
Convergent and parallel evolution in life habit of the scallops (Bivalvia: Pectinidae).
Alejandrino A, Puslednik L, Serb JM. Alejandrino A, et al. BMC Evol Biol. 2011 Jun 14;11:164. doi: 10.1186/1471-2148-11-164. BMC Evol Biol. 2011. PMID: 21672233 Free PMC article.
BACKGROUND: We employed a phylogenetic framework to identify patterns of life habit evolution in the marine bivalve family Pectinidae. Specifically, we examined the number of independent origins of each life habit and distinguished between convergent and parallel trajector …
BACKGROUND: We employed a phylogenetic framework to identify patterns of life habit evolution in the marine bivalve family Pectinidae
Molecular analysis of larvae suggests the existence of a second species of Sulcascaris (Nematoda: Anisakidae: Anisakinae) in the Japanese moon scallop (Ylistrum japonicum) from Japanese waters.
Sata N, Nakano T. Sata N, et al. Parasitol Int. 2023 Feb;92:102674. doi: 10.1016/j.parint.2022.102674. Epub 2022 Sep 8. Parasitol Int. 2023. PMID: 36089202
Additionally, given that many pectinid scallops have been reported as intermediate host of S. sulcata, the present study implies that pectinid scallops may also represent the primary intermediate hosts for the present Japanese Sulcascaris species. Because S. sulcata …
Additionally, given that many pectinid scallops have been reported as intermediate host of S. sulcata, the present study implies that …
1,764 results