Literature DB >> 10222589

Calcium homeostasis in crustacea: the evolving role of branchial, renal, digestive and hypodermal epithelia.

M G Wheatly1.   

Abstract

Crustaceans serve as an ideal model for the study of calcium homeostasis due to their natural molting cycle. Demineralization and remineralization of the calcified cuticle is accompanied by bidirectional Ca transfer across the primary Ca transporting epithelia: gills, antennal gland (kidney), digestive system, and cuticular hypodermis. The review will demonstrate how a continuum of crustaceans can be used as a paradigm for the evolution of Ca transport mechanisms. Generally speaking, aquatic crustaceans rely primarily on branchial Ca uptake and accordingly are affected by water Ca content; terrestrial crustaceans rely on intake of dietary Ca across the digestive epithelium. Synchrony of mineralization at the cuticle vs. storage sites will be presented Physiological and behavioral adaptations have evolved to optimize Ca balance during the molting cycle in different Ca environments. Intracellular Ca regulation reveals common mechanisms of apical and basolateral membrane transport as well as intracellular sequestration. Regulation of cell Ca concentration will be discussed in intermolt and during periods of the molting cycle when transepithelial Ca flux is significantly elevated. Molecular characterization of the sarco-/endoplasmic reticular Ca pump in aquatic species reveals the presence of two isoforms that originate from a single gene. This gene is differentially expressed during the molting cycle. Gene expression may be regulated by a suite of hormones including ecdysone, calcitonin, and vitamin D. Perspectives for future research are presented.

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Year:  1999        PMID: 10222589     DOI: 10.1002/(sici)1097-010x(19990601)283:7<620::aid-jez2>3.3.co;2-v

Source DB:  PubMed          Journal:  J Exp Zool        ISSN: 0022-104X


  7 in total

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2.  Additive effect of calcium depletion and low resource quality on Gammarus fossarum (Crustacea, Amphipoda) life history traits.

Authors:  Marc Rollin; Romain Coulaud; Michael Danger; Bénédicte Sohm; Justine Flayac; Alexandre Bec; Arnaud Chaumot; Olivier Geffard; Vincent Felten
Journal:  Environ Sci Pollut Res Int       Date:  2017-06-17       Impact factor: 4.223

3.  Ocean acidification: effects of pH on 45Ca uptake by lobster branchiostegites.

Authors:  Lilian Nagle; Skye Brown; Arianna Krinos; Gregory A Ahearn
Journal:  J Comp Physiol B       Date:  2018-07-14       Impact factor: 2.200

Review 4.  Toxicological perspective on the osmoregulation and ionoregulation physiology of major ions by freshwater animals: Teleost fish, crustacea, aquatic insects, and Mollusca.

Authors:  Michael B Griffith
Journal:  Environ Toxicol Chem       Date:  2016-12-30       Impact factor: 3.742

5.  Identification of the Otopetrin Domain, a conserved domain in vertebrate otopetrins and invertebrate otopetrin-like family members.

Authors:  Inna Hughes; Jonathan Binkley; Belen Hurle; Eric D Green; Arend Sidow; David M Ornitz
Journal:  BMC Evol Biol       Date:  2008-02-06       Impact factor: 3.260

6.  Comparative ultrastructure and carbohydrate composition of gastroliths from astacidae, cambaridae and parastacidae freshwater crayfish (crustacea, decapoda).

Authors:  Gilles Luquet; María S Fernández; Aïcha Badou; Nathalie Guichard; Nathalie Le Roy; Marion Corneillat; Gérard Alcaraz; José L Arias
Journal:  Biomolecules       Date:  2012-12-21

7.  Haemolymph constituents and osmolality as functions of moult stage, body weight, and feeding status in marron, Cherax cainii () and yabbies, Cherax destructor (Clark, 1936).

Authors:  Ha Van Mai; Ravi Fotedar
Journal:  Saudi J Biol Sci       Date:  2016-04-06       Impact factor: 4.219

  7 in total

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