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Differential survivorship of congeneric ornamental fishes under forecasted climate changes are related to anaerobic potential
Gonçalves, Luciana Mara Fé; Silva, Maria de Nazaré Paula da; Val, Adalberto Luis; Almeida-Val, Vera Maria Fonseca de.
  • Gonçalves, Luciana Mara Fé; Instituto Nacional de Pesquisas da Amazônia. Laboratório de Ecofisiologia e Evolução Molecular. Manaus. BR
  • Silva, Maria de Nazaré Paula da; Instituto Nacional de Pesquisas da Amazônia. Laboratório de Ecofisiologia e Evolução Molecular. Manaus. BR
  • Val, Adalberto Luis; Instituto Nacional de Pesquisas da Amazônia. Laboratório de Ecofisiologia e Evolução Molecular. Manaus. BR
  • Almeida-Val, Vera Maria Fonseca de; Instituto Nacional de Pesquisas da Amazônia. Laboratório de Ecofisiologia e Evolução Molecular. Manaus. BR
Genet. mol. biol ; 41(1): 107-118, Jan.-Mar. 2018. tab, graf
Article in English | LILACS | ID: biblio-892474
ABSTRACT
Abstract Two Amazonian closely related tetras - cardinal Paracheirodon axelrodi and green neon P. simulans - were artificially acclimatized to environmental chambers mimicking future climate change scenarios (mild, moderate and extreme), using a microcosm facility. P. simulans survived (100%) to all scenarios after 30 days exposure, while P. axelrodi presented decreasing survival percentages according to environmental severity. These differences may be the reflection of distinct natural acclimatization to microhabitats between the species, which differ in thermal conditions. Survival responses might be related to differences in relative gene expression of lactate dehydrogenase (Ldh), suggesting that P. axelrodi anaerobic potential is lower or non-existent compared to P. simulans, not tolerating long-term thermal challenges. Accordingly, increases in temperature and in CO2 levels caused increases in energy demand and resulted in activation of the anaerobic pathway, as demonstrated by the higher enzyme levels measured in head and tail portions of both species. Sustained anaerobic glycolysis is possible when fish live in challenging environments (low oxygen or high temperature). Our results clearly show that P. simulans has a larger scope for survival to higher energy demands due to its increased anaerobic potential compared to P. axelrodi.


Full text: Available Index: LILACS (Americas) Language: English Journal: Genet. mol. biol Journal subject: Genetics Year: 2018 Type: Article / Project document Affiliation country: Brazil Institution/Affiliation country: Instituto Nacional de Pesquisas da Amazônia/BR

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Full text: Available Index: LILACS (Americas) Language: English Journal: Genet. mol. biol Journal subject: Genetics Year: 2018 Type: Article / Project document Affiliation country: Brazil Institution/Affiliation country: Instituto Nacional de Pesquisas da Amazônia/BR