Podbielski, Imke Anna; Schmittmann, Lara; Sanders, Trystan; Melzner, Frank (2023): Osmolyte concentrations of marine osmoconformers under low salinity stress from a systematic review and meta-analysis [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.958421, In: Podbielski, IA et al. (2023): Systematic review and meta-analysis investigating osmolyte concentrations of marine osmoconformers under low salinity stress [dataset bundled publication]. PANGAEA, https://doi.org/10.1594/PANGAEA.958457
Always quote citation above when using data! You can download the citation in several formats below.
Published: 2023-06-09 • DOI registered: 2023-07-08
Abstract:
This table contains a list of studies that report concentrations for multiple organic osmolytes. These concentrations were calculated into proportions of the total organic osmolyte pool and grouped by taxa (shown in figure 8 of Podbielski et al. 2022). If the sum deviates from 100% this may be caused by using the values for total solute given in the respective papers whenever they were reported. Here, slight deviations from 100% maybe due to rounding errors. Larger deviations are likely caused when total solutes and specific osmolytes were quantified with different techniques. For example, total solutes are sometimes determined as Ninhydrine-positive substances or quaternary ammonium compounds. This may include methylamines or other free amino acids which are not determined via targeted techniques to measure amino acids (i.e. via amino acid analyser). The column "Osmolyte, other" combines values for compounds (<5%) and, if present, values for other compounds, which were data given by the respective papers.
Keyword(s):
Supplement to:
Podbielski, Imke Anna; Schmittmann, Lara; Sanders, Trystan; Melzner, Frank (2022): Acclimation of marine invertebrate osmolyte systems to low salinity: A systematic review & meta-analysis. Frontiers in Marine Science, 9, 934378, https://doi.org/10.3389/fmars.2022.934378
Source:
Amende, Lynn M; Pierce Jr, Sidney K (1980): Cellular volume regulation in salinity stressed molluscs: The response of Noetia ponderosa (Arcidae) red blood cells to osmotic variation. Journal of Comparative Physiology B-Biochemical Systemic and Environmentalphysiology, 138(4), 283-289, https://doi.org/10.1007/BF00691562
Baginski, Richard M; Pierce Jr, Sidney K (1975): Anaerobiosis: A Possible Source of Osmotic Solute for High-salinity Acclimation in Marine Molluscs. Journal of Experimental Biology, 62(3), 589-598, https://doi.org/10.1242/jeb.62.3.589
Baginski, Richard M; Pierce Jr, Sidney K (1977): The time course of intracellular free amino acid accumulation in tissues of Modiolus demissus during high salinity adaptations. Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, 57(4), 407-412, https://doi.org/10.1016/0300-9629(77)90137-2
Costa, Charles J; Pierce Jr, Sidney K; Warren, Mary Kim (1980): The intracellular mechanism of salinity tolerance in polychaetes: Volume regulation by isolated Glycera dibranchiata red coelomocytes. Biological Bulletin, 159(3), 626-638, https://doi.org/10.2307/1540828
de Vooys, C G N (1991): Anaerobic metabolism in sublittoral living Mytilus galloprovincialis in the mediterranean—IV. Role of amino acids in adaptation to low salinities during anaerobiosis and aerobiosis. Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, 100(2), 423-431, https://doi.org/10.1016/0300-9629(91)90494-W
Deaton, Lewis E; Derby, Jennifer GS; Subhedar, Nishikant; Greenberg, Michael J (1989): Osmoregulation and salinity tolerance in two species of bivalve mollusc: Limnoperna fortunei and Mytilopsis leucophaeta. Journal of Experimental Marine Biology and Ecology, 133(1-2), 67-79, https://doi.org/10.1016/0022-0981(89)90158-5
Deaton, Lewis E; Hoffmann, Richard J (1988): Hypoosmotic volume regulation in the sea anemone Metridium senile. Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology, 91(1), 187-191, https://doi.org/10.1016/0742-8413(88)90185-5
George, P J; Damodaran, R (1999): The intracellular fluid isosmotic regulation in yellow clam Sunetta scripta L.(Mollusca: Bivalvia) acclimated to different salnities. Indian Journal of Geo-Marine Sciences, 28(1), 83-86, https://nopr.niscpr.res.in/handle/123456789/25614
Gilles, Raymond (1972): Osmoregulation in three molluscs: Acanthochitona discrepans (Brown), Glycymeris glycymeris (L.) and Mytilus edulis (L.). Biological Bulletin, 142(1), 25-35, https://doi.org/10.2307/1540243
Hiong, K C; Peh, W Y X; Loong, A M; Wong, W P; Chew, S F; Ip, Yuen K (2004): Exposure to air, but not seawater, increases the glutamine content and the glutamine synthetase activity in the marsh clam Polymesoda expansa. Journal of Experimental Biology, 207(26), 4605-4614, https://doi.org/10.1242/jeb.01334
Hoyaux, J; Gilles, Raymond; Jeuniaux, Ch (1976): Osmoregulation in molluscs of the intertidal zone. Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, 53(4), 361-365, https://doi.org/10.1016/S0300-9629(76)80157-0
Kapper, MA; Stickle, W B; Blakeney, E (1985): Volume regulation and nitrogen metabolism in the muricid gastropod Thais haemastoma. Biological Bulletin, 169(2), 458-475, https://doi.org/10.2307/1541495
Knight, Patricia-Ann; Loomis, Stephen H; Fell, Paul E (1992): The use of free amino acids for osmotic compensation by the euryhaline sponge Microciona prolifera (Ellis & Sollander). Journal of Experimental Marine Biology and Ecology, 163(1), 111-123, https://doi.org/10.1016/0022-0981(92)90150-9
Lin, Chia-Hao; Yeh, Po-Ling; Lee, Tsung-Han (2016): Ionic and Amino Acid Regulation in Hard Clam (Meretrix lusoria) in Response to Salinity Challenges. Frontiers in Physiology, 7, 368, https://doi.org/10.3389/fphys.2016.00368
Livingstone, D R; Widdows, J; Fieth, P (1979): Aspects of nitrogen metabolism of the common mussel Mytilus edulis: Adaptation to abrupt and fluctuating changes in salinity. Marine Biology, 53(1), 41-55, https://doi.org/10.1007/BF00386528
Neufeld, D S; Wright, S H (1996): Salinity Change and Cell Volume: the Response of Tissues from the Estuarine Mussel Geukensia Demissa. Journal of Experimental Biology, 199(7), 1619-1630, https://doi.org/10.1242/jeb.199.7.1619
Neufeld, D S; Wright, S H (1998): Effect of Cyclical Salinity Changes on Cell Volume and Function in Geukensia Demissa Gills. Journal of Experimental Biology, 201(9), 1421-1431, https://doi.org/10.1242/jeb.201.9.1421
Paynter, K T; Pierce Jr, Sidney K; Burreson, E M (1995): Levels of intracellular free amino acids used for salinity tolerance by oysters (Crassostrea virginica) are altered by protozoan (Perkinsus marinus) parasitism. Marine Biology, 122(1), 67-72, https://doi.org/10.1007/BF00349278
Pierce Jr, Sidney K (1971): A source of solute for volume regulation in marine mussels. Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, 38(3), 619-635, https://doi.org/10.1016/0300-9629(71)90129-0
Pierce Jr, Sidney K; Greenberg, Michael J (1973): The initiation and control of free amino acid regulation of cell volume in salinity-stressed marine bivalves. Journal of Experimental Biology, 59, 435-440
Pierce Jr, Sidney K; Minasian, Leo L (1974): Water balance of a euryhaline sea anemone, Diadumene leucolena. Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, 49(1), 159-167, https://doi.org/10.1016/0300-9629(74)90551-9
Pierce Jr, Sidney K; Rowland-Faux, L M; O'Brien, S M (1992): Different salinity tolerance mechanisms in Atlantic and Chesapeake Bay conspecific oysters: glycine betaine and amino acid pool variations. Marine Biology, 113(1), 107-115, https://doi.org/10.1007/BF00367644
Pierce Jr, Sidney K; Warren, Mary Kim; West, Hillary H (1983): Non-Amino Acid Mediated Volume Regulation in an Extreme Osmoconformer. Physiological and Biochemical Zoology, 56(3), 445-454, https://doi.org/10.1086/physzool.56.3.30152610
Podbielski, Imke Anna (2014): Acclimation potential of the invasive sea anemone Halliplanella lineata (Verrill 1898) to changing salinities [thesis]. Christian-Albrechts-Universität zu Kiel, 74 pp.
Potts, W T W (1958): The Inorganic and Amino Acid Composition of Some Lamellibranch Muscles. Journal of Experimental Biology, 35(4), 749-764, https://doi.org/10.1242/jeb.35.4.749
Ran, Zhaoshou; Li, Shuang; Zhang, Runtao; Xu, Jilin; Liao, Kai; Yu, Xuejun; Zhong, Yingying; Ye, Mengwei; Yu, Shanshan; Ran, Yun; Huang, Wei; Yan, Xiaojun (2017): Proximate, amino acid and lipid compositions in Sinonovacula constricta (Lamarck) reared at different salinities. Journal of the Science of Food and Agriculture, 97(13), 4476-4483, https://doi.org/10.1002/jsfa.8311
Sanders, Trystan (2018): Bioenergetics of calcification in mytilid bivalves along the Baltic Sea salinity gradient [dissertation]. Christian-Albrechts-Universität zu Kiel, 225 pp.
Schiedek, Doris (1997): Marenzelleria cf. viridis (Polychaeta: Spionidae) – ecophysiological adaptations to a life in the coastal waters of the Baltic Sea. Aquatic Ecology, 31(2), 199-210, https://doi.org/10.1023/A:1009907606161
Schmittmann, Lara (2017): Local adaptation of the common sea star Asterias rubens to different salinities [thesis]. Christian-Albrechts-Universität zu Kiel, 930pp.
Shick, J Malcolm (1976): Ecological Physiology and Genetics of the Colonizing Actinian Haliplanella Luciae. In: Mackie, GO (eds.), Coelenterate Ecology and Behavior, Springer US, Boston, MA, 137-146, https://doi.org/10.1007/978-1-4757-9724-4_15
Silva, Arnold Lawrence (1992): Effect of salinity on integumental transport in marine bivalves [dissertation]. University of Arizona, 151 pp.
Stickle, W B; Kapper, MA; Blakeney, E; Bayne, B L (1985): Effects of salinity on the nitrogen metabolism of the muricid gastropod, Thais (Nucella) lapillus (L.) (Mollusca: Prosobranchia). Journal of Experimental Marine Biology and Ecology, 91(1-2), 1-16, https://doi.org/10.1016/0022-0981(85)90217-5
Parameter(s):
License:
Creative Commons Attribution 4.0 International (CC-BY-4.0)
Status:
Curation Level: Enhanced curation (CurationLevelC) * Processing Level: PANGAEA data processing level 4 (ProcLevel4)
Size:
1122 data points
Data
| 1 RN | 2 ID | 3 Reference | 4 Phylum | 5 Class | 6 Species | 7 Taxa UID | 8 Taxa UID (URI) | 9 Taxa UID (Semantic URI) | 10 Sal | 11 Water descr | 12 Samp type | 13 Osmoregulation | 14 Ala [%] | 15 Arg [%] | 16 Aspartate [%] | 17 Asn [%] | 18 Betaine [%] | 19 Glutamate [%] | 20 Gln [%] | 21 Gly [%] | 22 Leu [%] | 23 Lys [%] | 24 Phe [%] | 25 Pro [%] | 26 Ser [%] | 27 Tau [%] | 28 Thr [%] | 29 Val [%] | 30 Osmolyte oth [%] |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 1 | 1 | Amende & Pierce 1980 | Mollusca | Bivalvia | Noetia ponderosa | Noetia ponderosa | marinespecies.org | urn:lsid:marinespecies.org:taxname:156909 | 27 | haematocytes | euryhaline | 5.07 | 12.96 | 1.74 | 7.31 | 5.36 | 2.68 | 2.10 | 3.77 | 47.50 | 3.04 | 8.62 | |||||||
| 2 | 2 | Baginski & Pierce 1975 | Mollusca | Bivalvia | Geukensia demissa | Geukensia demissa | marinespecies.org | urn:lsid:marinespecies.org:taxname:156859 | 36 | ventricle | euryhaline | 23.24 | 5.58 | 4.38 | 33.20 | 0.27 | 32.01 | 0.40 | 0.00 | ||||||||||
| 3 | 3 | Baginski & Pierce 1977 | Mollusca | Bivalvia | Geukensia demissa | Geukensia demissa | marinespecies.org | urn:lsid:marinespecies.org:taxname:156859 | 33 | gills | euryhaline | 26.75 | 4.03 | 2.76 | 26.11 | 40.34 | 0.00 | ||||||||||||
| 4 | 3 | Baginski & Pierce 1977 | Mollusca | Bivalvia | Geukensia demissa | Geukensia demissa | marinespecies.org | urn:lsid:marinespecies.org:taxname:156859 | 32 | ventricle | euryhaline | 9.54 | 6.71 | 4.59 | 18.02 | 61.13 | 0.00 | ||||||||||||
| 5 | 4 | Costa et al. 1980 | Annelida | Polychaeta | Glycera dibranchiata | Glycera dibranchiata | marinespecies.org | urn:lsid:marinespecies.org:taxname:157392 | 32 | muscle | euryhaline | 24.72 | 39.64 | 22.84 | 12.81 | 0.00 | |||||||||||||
| 6 | 4 | Costa et al. 1980 | Annelida | Polychaeta | Glycera dibranchiata | Glycera dibranchiata | marinespecies.org | urn:lsid:marinespecies.org:taxname:157392 | 32 | coelomocytes | euryhaline | 14.13 | 14.80 | 11.35 | 23.24 | 4.75 | 31.74 | 0.00 | |||||||||||
| 7 | 5 | De Vooys 1991 | Mollusca | Bivalvia | Mytilus galloprovincialis | Mytilus galloprovincialis | marinespecies.org | urn:lsid:marinespecies.org:taxname:140481 | 38 | muscle | euryhaline | 11.18 | 5.87 | 4.66 | 1.37 | 31.13 | 2.17 | 43.03 | 0.58 | 0.00 | |||||||||
| 8 | 5 | De Vooys 1991 | Mollusca | Bivalvia | Mytilus galloprovincialis | Mytilus galloprovincialis | marinespecies.org | urn:lsid:marinespecies.org:taxname:140481 | 38 | gills | euryhaline | 1.69 | 11.09 | 3.29 | 8.89 | 0.53 | 74.25 | 0.26 | 0.00 | ||||||||||
| 9 | 6 | Deaton & Hoffmann 1988 | Cnidaria | Anthozoa | Metridium senile | Metridium senile | marinespecies.org | urn:lsid:marinespecies.org:taxname:100982 | 31 | whole_body | euryhaline | 4.03 | 1.24 | 1.10 | 3.74 | 5.20 | 0.47 | 83.19 | 1.24 | 0.00 | |||||||||
| 10 | 7 | Deaton et al. 1989 | Mollusca | Bivalvia | Mytilopsis leucophaeata | Mytilopsis leucophaeata | marinespecies.org | urn:lsid:marinespecies.org:taxname:156887 | 19 | whole_body | oligohaline | 52.07 | 3.08 | 31.97 | 1.86 | 11.47 | |||||||||||||
| 11 | 8 | George & Damodaran 1999 | Mollusca | Bivalvia | Sunetta scripta | Sunetta scripta | marinespecies.org | urn:lsid:marinespecies.org:taxname:507898 | 35 | muscle | euryhaline | 9.76 | 2.47 | 2.79 | 8.79 | 33.67 | 2.20 | 6.70 | 2.25 | 16.41 | 1.23 | 10.62 | |||||||
| 12 | 8 | George & Damodaran 1999 | Mollusca | Bivalvia | Sunetta scripta | Sunetta scripta | marinespecies.org | urn:lsid:marinespecies.org:taxname:507898 | 35 | muscle | euryhaline | 7.17 | 4.03 | 9.40 | 22.78 | 1.15 | 6.78 | 0.77 | 39.92 | 1.09 | 8.06 | ||||||||
| 13 | 8 | George & Damodaran 1999 | Mollusca | Bivalvia | Sunetta scripta | Sunetta scripta | marinespecies.org | urn:lsid:marinespecies.org:taxname:507898 | 35 | mantle | euryhaline | 8.30 | 2.58 | 10.26 | 24.71 | 5.72 | 35.46 | 1.29 | 9.59 | ||||||||||
| 14 | 9 | Gilles 1972 | Mollusca | Polyplacophora | Acanthochitona discrepans | Acanthochitona discrepans | marinespecies.org | urn:lsid:marinespecies.org:taxname:138676 | 38 | muscle | euryhaline | 9.08 | 17.15 | 7.56 | 20.17 | 3.03 | 1.51 | 2.02 | 3.53 | 89.91 | 2.02 | 1.01 | 0.50 | ||||||
| 15 | 9 | Gilles 1972 | Mollusca | Bivalvia | Glycymeris glycymeris | Glycymeris glycymeris | marinespecies.org | urn:lsid:marinespecies.org:taxname:140025 | 38 | muscle | euryhaline | 13.46 | 11.87 | 17.00 | 9.56 | 3.72 | 0.35 | 1.06 | 1.42 | 6.02 | 83.42 | 1.59 | |||||||
| 16 | 9 | Gilles 1972 | Mollusca | Bivalvia | Mytilus edulis | Mytilus edulis | marinespecies.org | urn:lsid:marinespecies.org:taxname:140480 | 38 | muscle | euryhaline | 7.66 | 3.07 | 1.36 | 36.21 | 0.43 | 0.30 | 0.16 | 12.46 | 0.78 | 5.59 | 0.84 | 0.61 | 0.65 | |||||
| 17 | 10 | Hiong et al. 2004 | Mollusca | Bivalvia | Polymesoda expansa | Polymesoda expansa | marinespecies.org | urn:lsid:marinespecies.org:taxname:761286 | 30 | muscle | euryhaline | 66.83 | 4.67 | 6.02 | 4.13 | 0.91 | |||||||||||||
| 18 | 10 | Hiong et al. 2004 | Mollusca | Bivalvia | Polymesoda expansa | Polymesoda expansa | marinespecies.org | urn:lsid:marinespecies.org:taxname:761286 | 30 | muscle | euryhaline | 61.16 | 4.79 | 9.10 | 7.40 | 0.88 | |||||||||||||
| 19 | 10 | Hiong et al. 2004 | Mollusca | Bivalvia | Polymesoda expansa | Polymesoda expansa | marinespecies.org | urn:lsid:marinespecies.org:taxname:761286 | 30 | intestinal_tissue | euryhaline | 65.57 | 3.49 | 6.78 | 2.53 | 1.39 | |||||||||||||
| 20 | 10 | Hiong et al. 2004 | Mollusca | Bivalvia | Polymesoda expansa | Polymesoda expansa | marinespecies.org | urn:lsid:marinespecies.org:taxname:761286 | 30 | mantle | euryhaline | 72.67 | 4.48 | 5.58 | 1.78 | ||||||||||||||
| 21 | 11 | Hoyaux et al. 1976 | Mollusca | Polyplacophora | Acanthochitona discrepans | Acanthochitona discrepans | marinespecies.org | urn:lsid:marinespecies.org:taxname:138676 | 100% sea water | muscle | euryhaline | 5.76 | 10.89 | 4.80 | 12.81 | 1.92 | 0.96 | 1.28 | 2.24 | 57.09 | 1.28 | 0.64 | 0.32 | ||||||
| 22 | 11 | Hoyaux et al. 1976 | Mollusca | Gastropoda | Littorina littorea | Littorina littorea | marinespecies.org | urn:lsid:marinespecies.org:taxname:140262 | 100% sea water | muscle | euryhaline | 16.89 | 6.04 | 1.80 | 3.81 | 8.63 | 0.77 | 0.41 | 18.06 | 2.76 | 38.24 | 1.01 | 0.93 | 0.65 | |||||
| 23 | 11 | Hoyaux et al. 1976 | Mollusca | Bivalvia | Mytilus edulis | Mytilus edulis | marinespecies.org | urn:lsid:marinespecies.org:taxname:140480 | 100% sea water | muscle | euryhaline | 10.92 | 4.38 | 1.95 | 51.64 | 0.61 | 0.42 | 0.23 | 17.76 | 1.11 | 7.98 | 1.19 | 0.87 | 0.93 | |||||
| 24 | 11 | Hoyaux et al. 1976 | Mollusca | Gastropoda | Nucella lapillus | Nucella lapillus | marinespecies.org | urn:lsid:marinespecies.org:taxname:140403 | 100% sea water | muscle | euryhaline | 10.98 | 7.29 | 3.11 | 6.65 | 6.05 | 1.19 | 0.62 | 4.82 | 4.32 | 52.36 | 0.65 | 1.40 | 0.55 | |||||
| 25 | 11 | Hoyaux et al. 1976 | Mollusca | Gastropoda | Patella vulgata | Patella vulgata | marinespecies.org | urn:lsid:marinespecies.org:taxname:140685 | 100% sea water | muscle | euryhaline | 4.42 | 10.33 | 1.09 | 2.02 | 1.54 | 0.48 | 0.97 | 0.23 | 0.41 | 1.92 | 74.46 | 0.80 | 0.51 | 0.82 | ||||
| 26 | 11 | Hoyaux et al. 1976 | Mollusca | Bivalvia | Scrobicularia plana | Scrobicularia plana | marinespecies.org | urn:lsid:marinespecies.org:taxname:141424 | 100% sea water | muscle | euryhaline | 24.83 | 5.75 | 2.84 | 3.97 | 34.71 | 0.24 | 0.23 | 0.18 | 7.96 | 2.19 | 13.23 | 1.50 | 0.43 | 1.77 | ||||
| 27 | 12 | Kapper et al. 1985 | Mollusca | Gastropoda | Stramonita haemastoma | Stramonita haemastoma | marinespecies.org | urn:lsid:marinespecies.org:taxname:140417 | 35 | muscle | euryhaline | 25.62 | 4.99 | 7.26 | 7.71 | 14.06 | 1.36 | 9.30 | 6.80 | 5.44 | 1.81 | 15.87 | |||||||
| 28 | 13 | Knight et al. 1992 | Porifera | Demospongiae | Microciona prolifera | Microciona prolifera | marinespecies.org | urn:lsid:marinespecies.org:taxname:157404 | 30 | whole_body | euryhaline | 2.75 | 1.13 | 2.61 | 3.94 | 58.47 | 1.76 | 4.81 | 8.26 | 1.73 | 1.66 | 3.99 | 1.35 | 7.69 | |||||
| 29 | 14 | Lin et al. 2016 | Mollusca | Bivalvia | Meretrix lusoria | Meretrix lusoria | marinespecies.org | urn:lsid:marinespecies.org:taxname:397139 | 30 | gills | euryhaline | 4.32 | 0.44 | 0.44 | 1.83 | 0.84 | 23.65 | 0.00 | |||||||||||
| 30 | 14 | Lin et al. 2016 | Mollusca | Bivalvia | Meretrix lusoria | Meretrix lusoria | marinespecies.org | urn:lsid:marinespecies.org:taxname:397139 | 30 | mantle | euryhaline | 7.99 | 0.43 | 0.60 | 1.74 | 0.83 | 13.53 | 0.00 | |||||||||||
| 31 | 15 | Livingstone et al. 1979 | Mollusca | Bivalvia | Mytilus edulis | Mytilus edulis | marinespecies.org | urn:lsid:marinespecies.org:taxname:140480 | 30 | whole_body | euryhaline | 6.16 | 3.48 | 5.80 | 3.21 | 15.41 | 1.70 | 48.57 | 3.82 | 18.29 | |||||||||
| 32 | 16 | Neufeld & Wright 1996 b | Mollusca | Bivalvia | Geukensia demissa | Geukensia demissa | marinespecies.org | urn:lsid:marinespecies.org:taxname:156859 | 33 | gills | euryhaline | 8.86 | 5.51 | 4.43 | 10.34 | 1.14 | 66.60 | 0.34 | 2.78 | ||||||||||
| 33 | 16 | Neufeld & Wright 1996 b | Mollusca | Bivalvia | Geukensia demissa | Geukensia demissa | marinespecies.org | urn:lsid:marinespecies.org:taxname:156859 | 33 | mantle | euryhaline | 7.08 | 52.47 | 5.93 | 34.53 | 0.00 | |||||||||||||
| 34 | 17 | Neufeld & Wright 1998 | Mollusca | Bivalvia | Geukensia demissa | Geukensia demissa | marinespecies.org | urn:lsid:marinespecies.org:taxname:156859 | 33 | gills | euryhaline | 0.95 | 60.07 | 0.85 | 2.90 | 22.42 | 3.60 | ||||||||||||
| 35 | 18 | Paynter et al. 1995 | Mollusca | Bivalvia | Crassostrea virginica | Crassostrea virginica | marinespecies.org | urn:lsid:marinespecies.org:taxname:140657 | 20 | gills | euryhaline | 14.17 | 51.52 | 0.00 | |||||||||||||||
| 36 | 19 | Pierce & Greenberg 1972 | Mollusca | Bivalvia | Geukensia demissa | Geukensia demissa | marinespecies.org | urn:lsid:marinespecies.org:taxname:156859 | 36 | ventricle | euryhaline | 15.30 | 6.53 | 4.83 | 38.44 | 0.70 | 3.13 | 31.08 | 0.00 | ||||||||||
| 37 | 20 | Pierce & Minasian 1974 | Cnidaria | Anthozoa | Diadumene leucolena | Diadumene leucolena | marinespecies.org | urn:lsid:marinespecies.org:taxname:158230 | 29 | whole_body | euryhaline | 6.05 | 25.84 | 60.98 | 7.41 | 0.00 | |||||||||||||
| 38 | 21 | Pierce 1971 | Mollusca | Bivalvia | Geukensia demissa | Geukensia demissa | marinespecies.org | urn:lsid:marinespecies.org:taxname:156859 | 36 | mantle | euryhaline | 35.96 | 2.76 | 6.21 | 14.83 | 13.90 | 6.09 | 20.27 | 0.00 | ||||||||||
| 39 | 21 | Pierce 1971 | Mollusca | Bivalvia | Modiolus squamosus | Modiolus squamosus | marinespecies.org | urn:lsid:marinespecies.org:taxname:420706 | 41 | mantle | stenohaline | 4.82 | 5.88 | 2.63 | 9.64 | 1.49 | 74.59 | 0.96 | 0.00 | ||||||||||
| 40 | 22 | Pierce et al. 1983 | Mollusca | Gastropoda | Elysia chlorotica | Elysia chlorotica | marinespecies.org | urn:lsid:marinespecies.org:taxname:160280 | 31 | whole_body | euryhaline | 0.45 | 0.13 | 2.28 | 0.52 | 0.47 | 0.21 | 0.13 | 0.27 | 0.00 | |||||||||
| 41 | 23 | Potts 1958 | Mollusca | Bivalvia | Mytilus edulis | Mytilus edulis | marinespecies.org | urn:lsid:marinespecies.org:taxname:140480 | 30 | muscle | euryhaline | 4.15 | 38.86 | 0.00 | |||||||||||||||
| 42 | 23 | Potts 1958 | Mollusca | Bivalvia | Mytilus edulis | Mytilus edulis | marinespecies.org | urn:lsid:marinespecies.org:taxname:140480 | 30 | muscle | euryhaline | 3.36 | 38.24 | 0.00 | |||||||||||||||
| 43 | 24 | Ran et al. 2017 | Mollusca | Bivalvia | Sinonovacula constricta | Sinonovacula constricta | marinespecies.org | urn:lsid:marinespecies.org:taxname:413600 | 23 | whole_body | euryhaline | 7.07 | 7.78 | 9.44 | 19.57 | 4.99 | 8.32 | 7.18 | 3.74 | 3.88 | 5.09 | 4.90 | 4.84 | 13.23 | |||||
| 44 | 25 | Schiedek et al. 1997 | Annelida | Polychaeta | Marenzelleria cf. viridis | Marenzelleria | marinespecies.org | urn:lsid:marinespecies.org:taxname:129615 | 24 | whole_body | euryhaline | 41.58 | 5.31 | 3.87 | 20.39 | 4.23 | 0.00 | ||||||||||||
| 45 | 26 | Schmittmann 2017 | Echinodermata | Echinoidea | Asterias rubens | Asterias rubens | marinespecies.org | urn:lsid:marinespecies.org:taxname:123776 | 32 | intestinal_tissue | euryhaline | 2.92 | 0.71 | 0.44 | 1.07 | 0.56 | 66.30 | 0.68 | 2.84 | 0.48 | 1.25 | 15.35 | 0.62 | 1.07 | 5.72 | ||||
| 46 | 26 | Schmittmann 2017 | Echinodermata | Echinoidea | Asterias rubens | Asterias rubens | marinespecies.org | urn:lsid:marinespecies.org:taxname:123776 | 32 | intestinal_tissue | euryhaline | 2.29 | 0.78 | 0.44 | 1.20 | 0.90 | 64.84 | 0.93 | 2.63 | 0.40 | 0.80 | 17.41 | 0.70 | 1.09 | 5.58 | ||||
| 47 | 26 | Schmittmann 2017 | Echinodermata | Echinoidea | Asterias rubens | Asterias rubens | marinespecies.org | urn:lsid:marinespecies.org:taxname:123776 | 32 | intestinal_tissue | euryhaline | 1.20 | 0.20 | 0.73 | 0.42 | 0.70 | 84.42 | 0.25 | 2.49 | 0.12 | 0.47 | 3.54 | 0.46 | 0.53 | 4.48 | ||||
| 48 | 27 | Shick 1976 | Cnidaria | Anthozoa | Diadumene lineata | Diadumene lineata | marinespecies.org | urn:lsid:marinespecies.org:taxname:395099 | 30 | whole_body | euryhaline | 1.06 | 0.08 | 1.38 | 4.18 | 20.01 | 0.17 | 1.66 | 0.20 | 3.38 | 0.88 | 64.09 | 0.03 | 0.03 | 2.90 | ||||
| 49 | 28 | Silva 1992 | Mollusca | Bivalvia | Mytilus californianus | Mytilus californianus | marinespecies.org | urn:lsid:marinespecies.org:taxname:367837 | 32 | gills | euryhaline | 1.77 | 0.51 | 6.15 | 37.36 | 2.00 | 0.07 | 3.28 | 0.04 | 0.57 | 0.12 | 0.52 | 66.46 | 0.25 | 0.05 | 19.49 | |||
| 50 | 29 | Stickle et al. 1985 | Mollusca | Gastropoda | Nucella lapillus | Nucella lapillus | marinespecies.org | urn:lsid:marinespecies.org:taxname:140403 | 35 | muscle | euryhaline | 5.71 | 4.77 | 2.33 | 2.64 | 74.87 | 0.00 | ||||||||||||
| 51 | 30 | Turgeon 1973 | Mollusca | Gastropoda | Urosalpinx cinerea | Urosalpinx cinerea | marinespecies.org | urn:lsid:marinespecies.org:taxname:140429 | 30 | whole_body | euryhaline | 10.19 | 0.76 | 7.71 | 8.99 | 7.25 | 6.46 | 11.24 | 4.01 | 6.42 | 15.54 | 4.59 | 5.94 | 8.25 | |||||
| 52 | 30 | Turgeon 1973 | Mollusca | Gastropoda | Urosalpinx cinerea | Urosalpinx cinerea | marinespecies.org | urn:lsid:marinespecies.org:taxname:140429 | 30 | whole_body | euryhaline | 10.33 | 0.19 | 8.64 | 9.23 | 8.27 | 6.33 | 8.16 | 4.81 | 6.37 | 18.04 | 4.29 | 6.19 | 6.94 | |||||
| 53 | 31 | Sanders 2018 | Mollusca | Bivalvia | Mytilus edulis | Mytilus edulis | marinespecies.org | urn:lsid:marinespecies.org:taxname:140480 | 16 | gills | euryhaline | 5.28 | 2.02 | 17.75 | 11.01 | 5.66 | 3.11 | 13.86 | 3.69 | 2.12 | 2.10 | 35.66 | 4.55 | ||||||
| 54 | 31 | Sanders 2018 | Mollusca | Bivalvia | Mytilus edulis | Mytilus edulis | marinespecies.org | urn:lsid:marinespecies.org:taxname:140480 | 16 | gills | euryhaline | 2.44 | 1.64 | 9.62 | 4.68 | 4.11 | 1.31 | 65.26 | 2.98 | 1.07 | 2.06 | 5.59 | 4.53 | ||||||
| 55 | 32 | Podbielski 2014 | Cnidaria | Anthozoa | Diadumene lineata | Diadumene lineata | marinespecies.org | urn:lsid:marinespecies.org:taxname:395099 | 34 | whole-body | euryhaline | 40.47 | 19.11 | 15.12 | 25.29 | ||||||||||||||
| 56 | 33 | Pierce et al. 1992 | Mollusca | Bivalvia | Crassostrea virginica | Crassostrea virginica | marinespecies.org | urn:lsid:marinespecies.org:taxname:140657 | 11 | adductor muscle | euryhaline | 12.53 | 5.15 | 28.83 | 4.73 | 11.66 | 7.66 | 29.45 | 0.00 | ||||||||||
| 57 | 33 | Pierce et al. 1992 | Mollusca | Bivalvia | Crassostrea virginica | Crassostrea virginica | marinespecies.org | urn:lsid:marinespecies.org:taxname:140657 | 30 | adductor muscle | euryhaline | 40.12 | 4.80 | 3.54 | 6.35 | 21.10 | 16.23 | 7.86 | 0.00 | ||||||||||
| 58 | 33 | Pierce et al. 1992 | Mollusca | Bivalvia | Crassostrea virginica | Crassostrea virginica | marinespecies.org | urn:lsid:marinespecies.org:taxname:140657 | 11 | gills | euryhaline | 7.51 | 5.15 | 33.46 | 4.34 | 5.44 | 2.56 | 41.54 | 0.00 | ||||||||||
| 59 | 33 | Pierce et al. 1992 | Mollusca | Bivalvia | Crassostrea virginica | Crassostrea virginica | marinespecies.org | urn:lsid:marinespecies.org:taxname:140657 | 30 | gills | euryhaline | 25.77 | 4.67 | 7.52 | 5.23 | 20.98 | 16.47 | 19.35 | 0.00 |
