Matskiv_2023_Comp.Biochem.Physiol.C.Toxicol.Pharmacol__109803

Reference

Title : Biochemical basis of resistance to multiple contaminations in the native and invasive populations of Dreissena polymorpha - Matskiv_2023_Comp.Biochem.Physiol.C.Toxicol.Pharmacol__109803
Author(s) : Matskiv T , Martyniuk V , Khoma V , Yunko K , Orlova-Hudim K , Gnatyshyna L , Geffard A , Palos-Ladeiro M , Stoliar O
Ref : Comparative Biochemistry & Physiology C Toxicol Pharmacol , :109803 , 2023
Abstract :

The zebra mussel Dreissena polymorpha (Pallas, 1771) is an invasive species and a valuable bioindicator in the inland waters. Nevertheless, the biochemical reasons for the unique competitiveness of zebra mussels are not clear. This study aimed to compare the native and invasive populations of D. polymorpha in their ability to withstand the same multiple environmental challenges (i.e. chemical: microplastics and caffeine; physical: temperatures). The specimens from the invasive population in west Ukraine (Tn) and native population at lower streams of river Dnipro (south Ukraine, Kh) were sampled in the August of 2021 y. Molluscs from both populations were treated simultaneously with microplastics (MP, 1 mg L(-1), pore size 2 microm); caffeine (Caf, 20.0 microg L(-1)) at 18 degreesC, elevated temperature (25 degreesC) and MP and Caf combinations at 18 degreesC and 25 degreesC for 14 days. Untreated molluscs exposed at 18 degreesC represented control groups. A set of the 20 markers of oxidative stress, biotransformation, detoxification and apoptosis were assayed in the total soft tissues. From the two controls, Kh-group indicated lower stressful impact. However, both populations increased caspase-3 and GST activities and lysosomal instability in most exposures, and cholinesterase and phenoloxidase activities under the heating and combine exposures, indicating the remarkable properties to respond to new challenges and synergistic effect of mixtures. Inter-population differences were related to the metallothionein, cathepsin D, cytochrome P540 and oxidative stress responses that reflect population-dependent adverse outcome pathways. The discriminant analysis separated two populations with a substantially lesser magnitude of responses in the invasive population as a sign of higher resistance.

PubMedSearch : Matskiv_2023_Comp.Biochem.Physiol.C.Toxicol.Pharmacol__109803
PubMedID: 38008240

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Citations formats

Matskiv T, Martyniuk V, Khoma V, Yunko K, Orlova-Hudim K, Gnatyshyna L, Geffard A, Palos-Ladeiro M, Stoliar O (2023)
Biochemical basis of resistance to multiple contaminations in the native and invasive populations of Dreissena polymorpha
Comparative Biochemistry & Physiology C Toxicol Pharmacol :109803

Matskiv T, Martyniuk V, Khoma V, Yunko K, Orlova-Hudim K, Gnatyshyna L, Geffard A, Palos-Ladeiro M, Stoliar O (2023)
Comparative Biochemistry & Physiology C Toxicol Pharmacol :109803