Effects of recombinant aquaporin 3 and seawater acclimation on the expression of aquaporin 3 and 8 mRNAs in the parr and smolt stages of rainbow trout, oncorhynchus mykiss SCOPUS KCI

Title
Effects of recombinant aquaporin 3 and seawater acclimation on the expression of aquaporin 3 and 8 mRNAs in the parr and smolt stages of rainbow trout, oncorhynchus mykiss
Author(s)
Kim, N.N.; Choi, Y.J.; Lim, S.-G.; Kim, B.-S.; Choi, C.Y.
Alternative Author(s)
김나나
Publication Year
2016
Abstract
This study aimed to examine the role of two aquaporin isoforms (AQP3 and AQP8) in response to the hyperosmotic challenge of transitioning from freshwater (FW) to seawater (SW) during parr and smoltification (smolt) using the rainbow trout, Oncorhynchus mykiss. We examined the changes in the expression of AQPs mRNAs in the gills and intestine of the parr and smolt stages of rainbow trout transferred from FW to SW using quantitative real-time PCR in an osmotically changing environment [FW, SW, and recombinant AQP3 (rAQP3) injection at two dosage rates]. Correspondingly, AQPs were greater during smoltification than during parr stages in the rainbow trout. Plasma osmolality and gill Na+/K+-ATPase activity increased when the fish were exposed to SW, but these parameters decreased when the fish were exposed to SW following treatment with rAQP3 during the transition to seawater. Our results suggest that AQPs play an important role in water absorbing mechanisms associated with multiple AQP isoforms in a hyperosmotic environment. © 2016, Korea Ocean Research and Development Institute. All rights reserved.
ISSN
1598-141X
URI
https://sciwatch.kiost.ac.kr/handle/2020.kiost/2296
DOI
10.4217/OPR.2016.38.2.103
Bibliographic Citation
Ocean and Polar Research, v.38, no.2, pp.103 - 113, 2016
Publisher
Korea Ocean Research and Development Institute
Subject
acclimation; osmoregulation; protein; RNA; salmonid; seawater; smolt; Oncorhynchus mykiss
Keywords
Osmoregulation; Parr; Rainbow trout; Recombinant aquaporin 3; Smolt
Type
Article
Language
English
Document Type
Article
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