Validation of Real-time PCR Reference Genes of Muscle Metabolism in Harvested Spiny-Cheek Crayfish (Faxonius limosus) Exposed to Seasonal Variation

Artykuł - publikacja recenzowana


Tytuł
Validation of Real-time PCR Reference Genes of Muscle Metabolism in Harvested Spiny-Cheek Crayfish (Faxonius limosus) Exposed to Seasonal Variation
Odpowiedzialność
Natalia Śmietana, Remigiusz Panicz, Małgorzata Sobczak, Piotr Eljasik, Przemysław Śmietana
Twórcy
Sumy twórców
5 autorów
Punktacja publikacji
Osoba Dysc. Pc k m P U Pu Opis
0000-0002-5238-0653 6.7 100 1 5 100,00 1,0000 100,0000 Art.
Brak ORCID Brak deklaracji dyscypliny
Gł. język publikacji
Angielski (English)
Data publikacji
2020
Objętość
13 (stron).
Szacowana objętość
0,81 (arkuszy wydawniczych)
Identyfikator DOI
10.3390/ani10071140
Adres URL
https://www.mdpi.com/2076-2615/10/7/1140/pdf
Uwaga ogólna
Received: 27 May 2020 / Revised: 3 July 2020 / Accepted: 4 July 2020 / Published: 6 July 2020.
Uwaga ogólna
This article belongs to the Section Animal Genetics and Genomics.
Finansowanie
This study was funded by the Department of Meat Sciences of the West Pomeranian University of Technology, Szczecin.
Finansowanie
This study was funded by the Institute of Marine and Environmental Sciences of the University of Szczecin.
Cechy publikacji
  • Oryginalny artykuł naukowy
Słowa kluczowe
Czasopismo
Animals
( ISSN 2076-2615 )
Kraj wydania: Szwajcaria (Schweiz)
Zeszyt: tom 10 zeszyt 7
Nr: 1140
Pobierz opis jako:
BibTeX, RIS
Data zgłoszenia do bazy Publi
2020-11-05
PBN
Wyświetl
WorkId
25326

Abstrakt

en

Real-time quantitative reverse transcription PCR (RT-qPCR) is a sensitive and broadly used technique of assessing gene activity. To obtain a reliable result, stably expressed reference genes are essential for normalization of transcripts in various samples. To our knowledge, this is the first systematic analysis of reference genes for normalization of RT-qPCR data in spiny-cheek crayfish (Faxonius limosus). In this study, expression of five candidate reference genes (actb, β-actin; gapdh, glyceraldehyde-3-phosphate dehydrogenase; eif, eukaryotic translation initiation factor 5a; ef-1α, elongation factor-1α; and tub, α-tubulin) in muscle samples from male and female F. limosus in spring and autumn was analyzed. Additionally, the most stable reference genes were used for accurate normalization of five target genes, i.e., tnnc, troponin c; ak, arginine kinase; fr, ferritin; ccbp-23, crustacean calcium-binding protein 23; and actinsk8, skeletal muscle actin 8. Results obtained using the geNorm and NormFinder algorithms showed high consistency, and differences in the activity of the selected actb with eif genes were successfully identified. The spring and autumn activities of the target genes (except ak) in the muscle tissue of males and females differed significantly, showing that both sexes are immensely involved in an array of breeding behaviors in spring, and females intensively recover in the autumn season. Characterization of first reference genes in spiny-cheek crayfish will facilitate more accurate and reliable expression studies in this key species.

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