Evolutionary trade-offs in osmotic and ionic regulation and expression of gill ion transporter genes in high latitude, cold clime Neotropical crabs from the ‘end of the world’

Author:

McNamara John Campbell12ORCID,Maraschi Anieli Cristina1ORCID,Tapella Federico3ORCID,Romero Maria Carolina3ORCID

Affiliation:

1. Ciências e Letras de Ribeirão Preto, Universidade de São Paulo 1 Departamento de Biologia, Faculdade de Filosofia , , Ribeirão Preto 14040-901, SP , Brazil

2. Centro de Biologia Marinha, Universidade de São Paulo 2 , São Sebastião 11600-000, SP , Brazil

3. Centro Austral de Investigaciones Científicas, Consejo Nacional de Investigaciones Científicas y Técnicas 3 , Bernardo A. Houssay 200, V9410CAB Ushuaia, Tierra del Fuego , Argentina

Abstract

ABSTRACTOsmoregulatory findings on crabs from high Neotropical latitudes are entirely lacking. Seeking to identify the consequences of evolution at low temperature, we examined hyperosmotic/hypo-osmotic and ionic regulation and gill ion transporter gene expression in two sub-Antarctic Eubrachyura from the Beagle Channel, Tierra del Fuego. Despite sharing the same osmotic niche, Acanthocyclus albatrossis tolerates a wider salinity range (2–65‰ S) than Halicarcinus planatus (5–60‰ S); their respective lower and upper critical salinities are 4‰ and 12‰ S, and 63‰ and 50‰ S. Acanthocyclus albatrossis is a weak hyperosmotic regulator, while H. planatus hyperosmoconforms; isosmotic points are 1380 and ∼1340 mOsm kg−1 H2O, respectively. Both crabs hyper/hypo-regulate [Cl−] well with iso-chloride points at 452 and 316 mmol l−1 Cl−, respectively. [Na+] is hyper-regulated at all salinities. mRNA expression of gill Na+/K+-ATPase is salinity sensitive in A. albatrossis, increasing ∼1.9-fold at 5‰ compared with 30‰ S, decreasing at 40–60‰ S. Expression in H. planatus is very low salinity sensitive, increasing ∼4.7-fold over 30‰ S, but decreasing at 50‰ S. V-ATPase expression decreases in A. albatrossis at low and high salinities as in H. planatus. Na+/K+/2Cl− symporter expression in A. albatrossis increases 2.6-fold at 5‰ S, but decreases at 60‰ S versus 30‰ S. Chloride uptake may be mediated by increased Na+/K+/2Cl− expression but Cl− secretion is independent of symporter expression. These unrelated eubrachyurans exhibit similar systemic osmoregulatory characteristics and are better adapted to dilute media; however, the expression of genes underlying ion uptake and secretion shows marked interspecific divergence. Cold clime crabs may limit osmoregulatory energy expenditure by hyper/hypo-regulating hemolymph [Cl−] alone, apportioning resources for other energy-demanding processes.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Consejo Nacional de Investigaciones Científicas y Técnicas

Publisher

The Company of Biologists

Subject

Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics

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