Pressure tolerance of tadpole larvae of the Atlantic ascidian Polyandrocarpa zorritensis: potential for deep-sea invasion
Abstract How deep-sea fauna evolved is a question still being investigated. One of the most accepted theories is that shallow water organisms migrated to deeper waters and gave origin to the deep-sea communities. However, many organisms are prevented from performing long vertical migrations by the i...
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doaj-3dea96b05e2146dbbd932e50b814d0702020-11-25T01:59:17ZengUniversidade de São PauloBrazilian Journal of Oceanography 1982-436X2015-12-0163451552010.1590/S1679-87592015100606304S1679-87592015000400515Pressure tolerance of tadpole larvae of the Atlantic ascidian Polyandrocarpa zorritensis: potential for deep-sea invasionPaulo Yukio Gomes SumidaArthur Ziggiatti GüthMiguel MiesAbstract How deep-sea fauna evolved is a question still being investigated. One of the most accepted theories is that shallow water organisms migrated to deeper waters and gave origin to the deep-sea communities. However, many organisms are prevented from performing long vertical migrations by the increasing hydrostatic pressure. Tadpole larvae of the ascidian Polyandrocarpa zorritensis were submitted to pressure treatments of 1, 50, 100 and 200 atm. Survival, settlement and metamorphosis rates were verified after 24 hour incubation in a pressure chamber. The majority of larvae settled (84%, 62%, 83% and 77% respectively) and successfully underwent metamorphosis (93%, 59%, 85% and 60%) in all pressure treatments. Larval mortality was of less than 15% in all treatments, except for the 50 atm treatment, which presented 38% mortality. Nearly 100% of the surviving larvae underwent metamorphosis in the treatments of 1, 50 and 100 atm. However, 1/3 of the individuals were still in their larval stages in the 200 atm treatment and presented delayed development. These data suggest that ascidian larvae can withstand the hydrostatic pressure levels found in the deep-sea. It is therefore feasible that the current abyssal ascidian species may have colonized the deep-sea through vertical migration and in only a few generations.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-87592015000400515&lng=en&tlng=enOceano profundoPressãoTolerânciaLarva de ascídiaPolyandrocarpa zorritensis |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Paulo Yukio Gomes Sumida Arthur Ziggiatti Güth Miguel Mies |
spellingShingle |
Paulo Yukio Gomes Sumida Arthur Ziggiatti Güth Miguel Mies Pressure tolerance of tadpole larvae of the Atlantic ascidian Polyandrocarpa zorritensis: potential for deep-sea invasion Brazilian Journal of Oceanography Oceano profundo Pressão Tolerância Larva de ascídia Polyandrocarpa zorritensis |
author_facet |
Paulo Yukio Gomes Sumida Arthur Ziggiatti Güth Miguel Mies |
author_sort |
Paulo Yukio Gomes Sumida |
title |
Pressure tolerance of tadpole larvae of the Atlantic ascidian Polyandrocarpa zorritensis: potential for deep-sea invasion |
title_short |
Pressure tolerance of tadpole larvae of the Atlantic ascidian Polyandrocarpa zorritensis: potential for deep-sea invasion |
title_full |
Pressure tolerance of tadpole larvae of the Atlantic ascidian Polyandrocarpa zorritensis: potential for deep-sea invasion |
title_fullStr |
Pressure tolerance of tadpole larvae of the Atlantic ascidian Polyandrocarpa zorritensis: potential for deep-sea invasion |
title_full_unstemmed |
Pressure tolerance of tadpole larvae of the Atlantic ascidian Polyandrocarpa zorritensis: potential for deep-sea invasion |
title_sort |
pressure tolerance of tadpole larvae of the atlantic ascidian polyandrocarpa zorritensis: potential for deep-sea invasion |
publisher |
Universidade de São Paulo |
series |
Brazilian Journal of Oceanography |
issn |
1982-436X |
publishDate |
2015-12-01 |
description |
Abstract How deep-sea fauna evolved is a question still being investigated. One of the most accepted theories is that shallow water organisms migrated to deeper waters and gave origin to the deep-sea communities. However, many organisms are prevented from performing long vertical migrations by the increasing hydrostatic pressure. Tadpole larvae of the ascidian Polyandrocarpa zorritensis were submitted to pressure treatments of 1, 50, 100 and 200 atm. Survival, settlement and metamorphosis rates were verified after 24 hour incubation in a pressure chamber. The majority of larvae settled (84%, 62%, 83% and 77% respectively) and successfully underwent metamorphosis (93%, 59%, 85% and 60%) in all pressure treatments. Larval mortality was of less than 15% in all treatments, except for the 50 atm treatment, which presented 38% mortality. Nearly 100% of the surviving larvae underwent metamorphosis in the treatments of 1, 50 and 100 atm. However, 1/3 of the individuals were still in their larval stages in the 200 atm treatment and presented delayed development. These data suggest that ascidian larvae can withstand the hydrostatic pressure levels found in the deep-sea. It is therefore feasible that the current abyssal ascidian species may have colonized the deep-sea through vertical migration and in only a few generations. |
topic |
Oceano profundo Pressão Tolerância Larva de ascídia Polyandrocarpa zorritensis |
url |
http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-87592015000400515&lng=en&tlng=en |
work_keys_str_mv |
AT pauloyukiogomessumida pressuretoleranceoftadpolelarvaeoftheatlanticascidianpolyandrocarpazorritensispotentialfordeepseainvasion AT arthurziggiattiguth pressuretoleranceoftadpolelarvaeoftheatlanticascidianpolyandrocarpazorritensispotentialfordeepseainvasion AT miguelmies pressuretoleranceoftadpolelarvaeoftheatlanticascidianpolyandrocarpazorritensispotentialfordeepseainvasion |
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