Life cycle of the cold-water coral Caryophyllia huinayensis

被引:0
作者
Thomas Heran
Jürgen Laudien
Rhian G. Waller
Verena Häussermann
Günter Försterra
Humberto E. González
Claudio Richter
机构
[1] Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung,Tjärnö Marine Laboratory
[2] University of Bremen,Facultad de Ciencias de la naturaleza, Escuela de Ingeniería en Gestión de Expediciones y Ecoturismo
[3] Fundación San Ignacio del Huinay,Facultad de Recursos Naturales, Escuela de Ciencias del Mar
[4] University of Gothenburg,Instituto de Ciencias Marinas y Limnológicas
[5] Universidad San Sebastián,undefined
[6] Pontificia Universidad Católica de Valparaíso (PUCV),undefined
[7] Universidad Austral de Chile,undefined
[8] Research Center: Dynamics of High Latitude Marine Ecosystems (FONDAP-IDEAL),undefined
来源
Scientific Reports | / 13卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Little is known about the biology of cold-water corals (CWCs), let alone the reproduction and early life stages of these important deep-sea foundation species. Through a three-year aquarium experiment, we described the reproductive mode, larval release periodicity, planktonic stage, larval histology, metamorphosis and post-larval development of the solitary scleractinian CWC Caryophyllia (Caryophyllia) huinayensis collected in Comau Fjord, Chilean Patagonia. We found that C. huinayensis is a brooder releasing 78.4 ± 65.9 (mean ± standard deviation [SD]) planula larvae throughout the year, a possible adaptation to low seasonality. Planulae had a length of 905 ± 114 µm and showed a well-developed gastrovascular system. After 8 ± 9.3 days (d), the larvae settled, underwent metamorphosis and developed the first set of tentacles after 2 ± 1.5 d. Skeletogenesis, zooplankton feeding and initiation of the fourth set of tentacles started 5 ± 2.1 d later, 21 ± 12.9 d, and 895 ± 45.9 d after settlement, respectively. Our study shows that the ontogenetic timing of C. huinayensis is comparable to that of some tropical corals, despite lacking zooxanthellae.
引用
收藏
相关论文
共 136 条
  • [1] Sun Z(2010)Planulation periodicity, settlement preferences and growth of two deep-sea octocorals from the northwest Atlantic Mar. Ecol. Prog. Ser. 410 71-87
  • [2] Hamel J-F(2017)Larval behaviour and longevity in the cold-water coral Front. Mar. Sci. 4 411-207
  • [3] Mercier A(1993) indicate potential for long distance dispersal Mar. Ecol. Prog. Ser. 97 193-63
  • [4] Strömberg SM(2014)Settlement of benthic marine invertebrates Deep-Sea Res. Part II Top. Stud. Oceanogr. 99 51-858
  • [5] Larsson AI(2003)Reproduction of deep-sea reef-building corals from the southwestern Atlantic Cont. Shelf Res. 23 847-675
  • [6] Rodriguez SR(2005)Reproductive ecology of a deep-water scleractinian coral, Coral Reefs 24 514-380
  • [7] Ojeda FP(2019), from the southeast Florida shelf Mar. Biol. 166 52-206
  • [8] Inestrosa NC(2005)The reproductive biology of two deep-water, reef-building scleractinians from the NE Atlantic Ocean Coral Reefs 24 594-2534
  • [9] Pires D(2011)Highly seasonal reproduction in deep-water emergent J. Mar. Biol. Assoc. U. K. 91 669-986
  • [10] Silva J(2011) (Scleractinia: Caryophylliidae) from the Northern Patagonian Fjords Mar. Biol. 158 371-269