Literature DB >> 20932930

Morphofunctional modifications in gill mitochondria-rich cells of Mozambique tilapia transferred from freshwater to 70% seawater, detected by dual observations of whole-mount immunocytochemistry and scanning electron microscopy.

Jeong Hyun Choi1, Kyung Mi Lee, Mayu Inokuchi, Toyoji Kaneko.   

Abstract

Acute responses of gill mitochondria-rich (MR) cells to direct transfer from freshwater to 70% seawater were examined in a euryhaline teleost Mozambique tilapia (Oreochromis mossambicus). Scanning electron microscopic (SEM) observations revealed that apical openings of MR cells were morphologically classified into an apical pit, a convex apical surface, a concave apical surface, and a transitory apical surface. Meanwhile, in whole-mount immunocytochemistry with anti-Na+/K+-ATPase (NKA), T4 antibody (detecting apical Na+/Cl⁻ cotransporter (NCC) and basolateral Na+/K+/2 Cl⁻ cotransporter (NKCC)), and anti-Na+/H+ exchanger-3 (NHE3), NKA-immunoreactive MR cells were functionally classified into immature cells without both NKCC/NCC and NHE3 (type I), ion-absorptive cells with apical NCC (type II), those with apical NHE3 (type III), and ion-secretory cells with basolateral NKCC (type IV). Dual observations of whole-mount immunocytochemistry and SEM clearly showed morphofunctional alterations in MR cells. After transfer to 70% seawater, type-II MR cells with a convex surface or pit closed their apical openings to suspend ion absorption. Type-III MR cells with a concave surface or pit were transformed into type-IV MR cells with an enlarged pit, via a transitory surface. Our findings indicate functional plasticity of type-III/IV MR cells to switch ion-transport functions, whereas type-II MR cells are considered to be specific for freshwater adaptation.
Copyright © 2010 Elsevier Inc. All rights reserved.

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Year:  2010        PMID: 20932930     DOI: 10.1016/j.cbpa.2010.09.019

Source DB:  PubMed          Journal:  Comp Biochem Physiol A Mol Integr Physiol        ISSN: 1095-6433            Impact factor:   2.320


  9 in total

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2.  The inner opercular membrane of the euryhaline teleost: a useful surrogate model for comparisons of different characteristics of ionocytes between seawater- and freshwater-acclimated medaka.

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4.  Prolactin 177, prolactin 188, and extracellular osmolality independently regulate the gene expression of ion transport effectors in gill of Mozambique tilapia.

Authors:  Mayu Inokuchi; Jason P Breves; Shunsuke Moriyama; Soichi Watanabe; Toyoji Kaneko; Darren T Lerner; E Gordon Grau; Andre P Seale
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Review 5.  Why can Mozambique Tilapia Acclimate to Both Freshwater and Seawater? Insights From the Plasticity of Ionocyte Functions in the Euryhaline Teleost.

Authors:  Mayu Inokuchi; Junya Hiroi; Toyoji Kaneko
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Authors:  S Fridman; K J Rana; J E Bron
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7.  Immunohistochemical characterization and change in location of branchial ionocytes after transfer from freshwater to seawater in the euryhaline obscure puffer, Takifugu obscurus.

Authors:  Tie Ding; Yan Shi; Wen Duan; Sufei Hu; Zhe Zhao
Journal:  J Comp Physiol B       Date:  2020-07-26       Impact factor: 2.230

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Authors:  Hiroshi Miyanishi; Mayu Inokuchi; Shigenori Nobata; Toyoji Kaneko
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Review 9.  Osmoregulation in zebrafish: ion transport mechanisms and functional regulation.

Authors:  Ying-Jey Guh; Chia-Hao Lin; Pung-Pung Hwang
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  9 in total

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