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Original Article

Temporal and spatial variability in metabolism of the Antarctic pelagic tunicate Salpa thompsoni Foxton, 1961

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Received 26 Jul 2023, Accepted 08 Apr 2024, Published online: 16 May 2024

References

  • Abolmasova GI. 1978. The exchange rate in some species of invertebrates from the Mediterranean Sea. Sea Biology. Kiev: Naukova Dumka Publishers. pp. 25–29. (In Russian).
  • Alcaraz М. 2016. Marine zooplankton and the metabolic theory of ecology: is it a predictive tool? Journal of Plankton Research. 38:762–770. doi: 10.1093/plankt/fbw012.
  • Alcaraz M, Saiz E, Fernandez JA, Trepat I, Figueiras F, Calbet A, Bautista B. 1998. Antarctic zooplankton metabolism: carbon requirements and ammonium excretion of salps and crustacean zooplankton in the vicinity of the Bransfield Strait during January 1994. Journal of Marine Systems. 17:347–359.
  • Allen JI, Polimene L. 2011. Linking physiology to ecology: towards a new generation of plankton models. Journal of Plankton Research. 33:989–997. doi: 10.1093/plankt/fbr032.
  • Anderson V. 1985. Filtration and ingestion rates of Salpa fusiformis Cuvier (Tunicata: Thaliacea): Effects of size, individual weight and algal concentration. Journal of Experimental Marine Biology and Ecology. 87:13–29. doi: 10.1016/0022-0981(85)90188-1.
  • Anninsky BE, Schepkina AM. 2004. Organic composition of Salpa thompsoni from the South Antarctic region. Monitoring Systems of Environment: Tools, models, monitoring: Scientific Proc. Sevastopol: p 281–285. (In Russian).
  • Artamonov Y, Romanov AS, Vnukov Y, Perov AA, Stepura II. 2003. Results of the Oceanographycal Research at the Western Bransfield Strait during March 2002. Ukrainian Antarctic Journal. 1:7–16. (In Russian). doi: 10.33275/1727-7485.1.2003.614.
  • Atkinson A, Hill SL, Pakhomov E, Siegel V, Anadon R, Chiba S, Daly KL, Downie R, Fielding S, Fretwell P, et al. 2004. KRILLBASE: a circumpolar database of Antarctic krill and salp numerical densities, 1926–2016. Earth System Science Data. 9:193–2107. doi: 10.5285/8b00a915-94e3-4a04-a903-dd4956346439.
  • Barneche D, Kulbicki M, Floeter S, Friedlander A, Maina J, Allen AP. 2014. Scaling metabolism from individuals to reef-fish communities at broad spatial scales. Ecology Letters. 17:1067–1076. doi: 10.1111/ele.12309.
  • Bernard KS, Steinberg DK, Scholield OME. 2012. Summertime grazing impact of the dominant macrozooplankton off the Western Antarctic Peninsula. Deep Sea Research Part I: Oceanographic Research Papers. 62:111–122. doi: 10.1016/j.dsr.2011.12.015.
  • Boaden PJS. 1989. Adaptation of intertidal sand meiofaunal oxygen uptake to temperature and population density. Scientia Marina. 53:329–334.
  • Bone Q, Carre C, Ryan KP. 2000. The endostyle and the feeding filter in salps (Tunicata). Journal of the Marine Biological Association of the United Kingdom. 80:523–534. doi: 10.1017/S0025315400002228.
  • Brierley AS, Cox MJ. 2010. Shapes of krill swarms and fish schools emerge as aggregation members avoid predators and access oxygen. Current Biology. 20:1758–1762. doi: 10.1016/j.cub.2010.08.041.
  • Brown JH, Gillooly JF, Allen AP, Savage VM, West GB. 2004. Toward a metabolic theory of ecology. Ecology. 85:1771–1789. doi: 10.1890/03-9000.
  • Cetta CM, Madin LP, Kremer P. 1986. Respiration and excretion by oceanic salps. Marine Biology. 91:529–537. doi: 10.1007/BF00392605.
  • Checkley Jr DM, Dagg MJ, Uye S-I. 1992. Feeding, excretion and egg production by individuals and populations of the marine, planktonic copepods, Acartia spp. and Centropages furcatus. Journal of Plankton Research. 14:71–96. doi: 10.1093/plankt/14.1.71.
  • Deibel A. 1982. Laboratory determined mortality, fecundity and growth rates of Thalia democratica Forskal and Dolioletta gegenbauri Uljanin (Tunicata, Thaliacea). Journal of Plankton Research. 4:143–153. doi: 10.1093/plankt/4.1.143.
  • Dodds PS, Rothman DH, Weitz JS. 2001. Re-examination of the “3/4-law” of Metabolism. Journal of Theoretical Biology. 209:9–27. doi: 10.1006/jtbi.2000.2238.
  • Drits AV, Semenova TN. 1989. Trophic characteristics of major planktonic phytphages from South Shetland Islands region during early spring. In: Ponomareva LA, editor. Complex Investigations of the Pelagic Zone of the Southern Ocean. Moscow: Shirshov Institute Oceanology Publishers; p. 66–78. (In Russian).
  • Dubischar CD, Bathmann UV. 1997. Grazing impact of copepods and salps on phytoplankton in the Atlantic sector of the Southern Ocean. Deep-Sea Research. 44:415–433.
  • Foxton P. 1961. Salpa fusiformis Cuvier and related species. Discovery Reports. 34:1–116.
  • Foxton P. 1966. The distribution and life history of Salpa thompsoni Foxton with observation on a related species, Salpa gerlachei Foxton. Discovery Reports. 21:1–116.
  • Grekov NA, Minkina NI, Samyshev EZ. 2003. Automated multichannel oximeter for ecological and physiological studies. Monitoring Systems of Environment: Collection of scientific researches. Sevastopol. 44–47. (In Russian).
  • Groeneveld Y, Berger U, Henschke N, Pakhomov E, Reiss C, Meyer B. 2020. Blooms of a key grazer in the Southern Ocean – an individual-based model of Salpa thompsoni. Progress in Oceanography. 185:102339. doi: 10.1016/j.pocean.2020.102339.
  • Harbison GR, Gilmer RW. 1976. The feeding rates of the pelagic tunicate Pegea confederata and two other salps1. Limnology and Oceanography. 21:517–528. doi: 10.4319/lo.1976.21.4.0517.
  • Henschke N, Pakhomov EA, Groeneveld J, Meyer B. 2018. Modelling the life cycle of Salpa thompsoni. Ecological Modelling. 387:17–26. doi: 10.1016/j.ecolmodel.2018.08.017.
  • Henschke N, Pakhomov EA. 2019. Latitudinal variations in Salpa thompsoni reproductive fitness. Limnology and Oceanography. 64:575–584. doi: 10.1002/lno.11061.
  • Iguchi N, Ikeda T. 2004. Metabolism and elemental composition of aggregate and solitary forms of Salpa thompsoni (Tunicata: Thaliacea) in waters off the Antarctic Peninsula during austral summer 1999. Journal of Plankton Research. 26:1025–1037. doi: 10.1093/plankt/fbh093.
  • Ikeda T. 1974. Nutritional ecology of marine zooplankton. Memoirs of the Faculty of Fisheries. Hokkaido University. 22:1–97. http://hdl.handle.net/2115/21857.
  • Ikeda T. 1977. The effect of laboratory conditions on the extrapolation of experimental measurements to the ecology of marine zooplankton. IV. Changes in respiration and excretion rates of boreal zooplankton species maintained under fed and starved conditions. Marine Biology. 41:241–252. doi: 10.1007/BF00394910.
  • Ikeda T, Bruce B. 1986. Metabolic activity and elemental composition of krill and other zooplankton from Prydz Bay, Antarctica, during early summer (November–December). Marine Biology. 92:545–555. doi: 10.1007/BF00392514.
  • Ikeda T, Dixon P. 1984. The influence of feeding on the metabolic activity of Antarctic krill (Euphausia superba Dana). Polar Biology. 3:1–9. doi: 10.1007/BF00265561.
  • Ikeda T, Mitchell AW. 1982. Oxygen uptake, ammonia excretion and phosphate excretion by krill and other antarctic zooplankton in relation to their body size and chemical composition. Marine Biology. 71:283–298. doi: 10.1007/BF00397045.
  • Ivleva IV. 1981. The temperature of the environment and the rate of energy metabolism in aquatic animals. Kiev: Naukova Dumka Publishers. (In Russian).
  • Kisselev IA. 1969. Plankton of the seas and continental waters. 1. Introductory and general problems of the planktology. pp. 1–658. Leningrad: Nauka Publishers. (In Russian).
  • Kearney M, Porter W. 2009. Mechanistic niche modelling: combining physiological and spatial data to predict species’ ranges. Ecology Letters. 12:334–350. doi: 10.1111/j.1461-0248.2008.01277.x.
  • Khailov KM, Popov AE. 1983. The concentration of living weight as a regulator of the functioning of aquatic organisms. Ecology of the sea. pp. 3–16. Kiev: Naukova Dumka Publishers. (In Russian).
  • Khailov KM, Prazukin AV, Minkina NI, Pavlova EV. 1999. Concentration and functional activity of living matter in condensations of different levels of organization. Successes of the Modern Biology. 119:3–14. (In Russian).
  • Kuzmenko LV. 2004. Phitoplankton in the Western Bransfield Strait. Ukrainian Antarctic Journal. 2:125–137. (In Russian). doi: 10.33275/1727-7485.2.2004.607.
  • Loeb VJ, Santora JA. 2012. Population dynamics of Salpa thompsoni near the Antarctic Peninsula: Growth rates and interannual variations in reproductive activity (1993–2009). Progress in Oceanography. 96:93–107. doi: 10.1016/j.pocean.2011.11.001.
  • Lomakin PD, Samyshev EZ. 2004. Oceanographic conditions in the area of the South Shetland Islands in March-April 1997, 1998 and their influence on krill distribution. Oceanology. 44:882–891. (In Russian).
  • Lombard F, Sciandra A, Gorsky G. 2005. Influence of body mass, food concentration, temperature and filtering activity on the oxygen uptake of the appendicularian Oikopleura dioica. Marine Ecology Progress Series. 301:149–158. doi: 10.3354/meps301149.
  • Madin LP, Deibel D. 1998. Feeding and energetics of Thaliaceae. In: Bone Q, editor. The biology of pelagic tunicates. Oxford: Oxford University Press; p. 81–114.
  • Madin LP, Purcell JE. 1992. Feeding, metabolism. and growth of Cyclosalpa bakeri in the subarctic Pacific. Limnology and Oceanography. 37:1236–1251. doi: 10.4319/lo.1992.37.6.1236.
  • Marshall SM. 1973. Advances in Marine Biology. Advances in Marine Biology. 11:57–120. doi: 10.1016/S0065-2881(08)60268-0.
  • Marshall SM, Nicholls AG, Orr AP. 1935. On the Biology of Calanus finmarchicus. Part VI. Oxygen Consumption in Relation to Environmental Conditions. Journal of the Marine Biological Association of the United Kingdom. 20:1–27. doi: 10.1017/S0025315400009991.
  • Mayzaud P. 1973. Respiration and nitrogen excretion of zooplankton. II. Studies of the metabolic characteristics of starved animals. Marine Biology. 21:19–28. doi: 10.1007/BF00351188.
  • Mayzaud P, Dallot S. 1973. Respiration et excrétion azotée du zooplancton. I. Evaluation des niveaux métaboliques de quelques espèces de Méditerranée occidentale. Marine Biology. 19:307–314. doi: 10.1007/BF00348899.
  • Minkina NI, Pavlova EV. 1995. Daily changes in the intensity of respiration of the ctenophore Mnemiopsis leidyi in the Black Sea. Oceanology. 35:241–245. (In Russian).
  • Minkina NI, Samyshev EZ, Chmyr VD, Seregin SA. 1999. Relative evaluation of assimilation of primary production by krill, salps and bacterioplankton in Atlantic Sector of Antarctic (ASA) under the condition of mass development of gelatinous animals. Abstracts of the 2nd Krill International Symposium (23–27 Aug. 1999. Santa Cruz, USA), pp. 33–35.
  • Minkina NI, Samyshev EZ. 2004. The specific rate of energy metabolism in Antarctic salps. Monitoring Systems of Environment. Means and monitoring: Scientific Proceedings, Sevastopol, pp. 286–294. (In Russian).
  • Minkina NI, Samyshev EZ. 2014. Energy metabolism of the Antarctic salpa (Salpa thompsoni Foxton) in a heterogeneous oceanographic field. Monitoring the state of the Antarctic environment and ensuring the activities of national expeditions: Materials 1st International Scientific-Practical Conference (May 26–29, 2014, Naroch, Belarus), Minsk, Ecological Perspective, pp. 159–164. (In Russian).
  • Pakhomov EA. 2004. Salp/krill interactions in the eastern Atlantic sector of the Southern Ocean. Deep Sea Research Part II: Topical Studies in Oceanography. 51:2645–2660. doi: 10.1016/j.dsr2.2001.03.001.
  • Pakhomov EA, Hunt BPV. 2017. Trans-Atlantic variability in ecology of the pelagic tunicate Salpa thompsoni near the Antarctic Polar Front. Deep-Sea Research II. 138:126–140. doi: 10.1016/j.dsr2.2017.03.001.
  • Pakhomov EA, Dubischar C, Strass V, Brichta M, Bathmann U. 2006. The tunicate Salpa thompsoni ecology in the Southern Ocean. I. Distribution, biomass, demography and feeding ecophysiology. Marine Biology. 149:609–623. doi: 10.1007/s00227-005-0225-9.
  • Pakhomov EA, Froneman PW, Perissinotto R. 2002. Salp/krill interactions in the Southern Ocean: spatial segregation and implications for the carbon flux. Deep Sea Research Part II: Topical Studies in Oceanography. 49:1881–1907. doi: 10.1016/S0967-0645(02)00017-6.
  • Pauli N-C, Metfies K, Pakhomov EA, Neuhaus S, Graeve M, Wenta P, Flintrop CM, Badewien TH, Iversen MH, Meyer B. 2021. Selective feeding in Southern Ocean key grazers—diet composition of krill and salps. Communications Biology. 4:1061. doi: 10.1038/s42003-021-02581-5.
  • Pavlova EV. 1975. Metabolism of Mediterranean zooplankton. Biological structure and productivity of planktonic communities of the Mediterranean Sea. Kiev: Naukova Dumka Publishers. pp. 124–144. (In Russian).
  • Popov AE. 1987. On the relationship of the intensity of energy metabolism of aquatic organisms with the concentration of their mass under experimental conditions. In: Zaika VE, editor. Ecology of marine organisms. Kiev: Naukova Dumka; p. 98–104. (In Russian).
  • Purcell JE, Fuentes V, Atienza D, Tilves U, Astorga D, Kawahara M, Hays GC. 2010. Use of respiration rates of scyphozoan jellyfish to estimate their effects on the food web. Hydrobiologia. 645:135–152. doi: 10.1007/s10750-010-0240-9.
  • Reinke M. 1987. On the feeding and locomotory Physiology of Salpa thompsoni and Salpa fusiformis. Berichte zur. Polarforschung. 36:1–88. (In German).
  • Samyshev EZ. 2000a. Conclusion on the state of the krill population and the pelagic ecosystem in the western region of the Atlantic part of the Antarctic in the pre-winter period of 1998. Bulletin of the Ukrainian Antarctic Center. 3:231–236. (In Russian).
  • Samyshev EZ. 2000b. Salps in the Atlantic Part of Antarctic (AChA): composition, abundance, distribution. Bulletin of the Ukrainian Antarctic Center. 3:237–240. (In Russian).
  • Samyshev EZ. 2002. Antarctic krill and the structure of planktonic community in its distribution area. The 2nd ed. (expand.). Moscow: Nauka Publishers.
  • Samyshev EZ, Bibik VA, Savich MS, Grishin AN, Okanev OA, Alekseenko VR. 1997. On the state of the krill population and pelagic ecosystem in the region of the Scotia Sea. Bulletinof the Ukrainian Antarctic Center. 1:132–136. (In Russian).
  • Samyshev EZ, Lushov AI, Efimov ES. 1980. About the change of a specific rate of energy metabolism of hydrobionts in the process of adaptation to experimental condition (on an example of Idotea baltica basteri from the Black Sea). Hydrobiological Journal. 6:94–96. (In Russian).
  • Satomi M, Pomeroy LR. 1965. Respiration and phosphorus excretion in some marine populations. Ecology. 46:877–881. doi: 10.2307/1934025.
  • Schneider G. 1992. A comparison of carbon-specific respiration rates in gelatinous and non-gelatinous zooplankton: a search for general rules in zooplankton metabolism. Helgoländer Meeresuntersuchungen. 46:377–388. doi: 10.1007/BF02367205.
  • Schwarz SS, Pyastolova OA, Dobrinskaya LA, Runkova GG. 1976. The effect of group in populations of aquatic animals and chemical ecology. Moscow: Nauka Publishers. p. 151 (In Russ.)
  • Scolardi KM, Daly KL, Pakhomov EA, Torres JJ. 2006. Feeding ecology and metabolism of the Antarctic cydippid ctenophore Callianira antarctica. Marine Ecology Progress Series. 317:111–126. doi: 10.3354/meps317111.
  • Sutherland KR, Madin LP, Stocker R. 2010. Filtration of submicrometer particles by pelagic tunicates. Proceedings of the National Academy of Sciences 107:15129–15134. doi: 10.1073/pnas.1003599107.
  • Swadling KM, Ritz DA, Nicol S, Osborn JE, Gurney LJ. 2005. Respiration rate and cost of swimming for Antarctic krill, Euphausia superba, in large groups in the laboratory. Marine Biology. 146:1169–1175. doi: 10.1007/s00227-004-1519-z.
  • Tilman D, Hillerislambers J, Harpole S, Dybzinski R, Fargione J, Clark C, Lehman C. 2004. Does metabolic theory apply to community ecology? It’s a matter of scale Ecology 85:1797–1799.
  • Trueblood LA. 2019. Salp metabolism: temperature and oxygen partial pressure effect on the physiology of Salpa fusiformis from the California Current. Journal of Plankton Research. 41:281–291. doi: 10.1093/plankt/fbz014.
  • Vinbeg GG. 1956. Energetic metabolism and food requirement of fishes. Minsk: Academy of Science. of Belarussia Publishers. p. 251. (In Russian).
  • Vinberg GG. 1960. Primary production of waters. Minsk: Academy of Sci. of Belarussia Publishers. p. 330. (In Russian).
  • von Harbou L, Dubischar CD, Pakhomov EA, Hunt BPV, Hagen W, Bathmann U. 2011. Salps in the Lazarev Sea, Southern Ocean: I. Feeding dynamics. Marine Biology. 158:2009–2026.

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