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Petersen, Jillian M; Zielinski, Frank U; Pape, Thomas; Seifert, Richard; Moraru, Cristina; Amann, Rudolf; Hourdez, Stéphane; Girguis, Peter R; Wankel, Scott D; Barbe, Valerie; Pelletier, Eric; Fink, Dennis; Borowski, Christian; Bach, Wolfgang; Dubilier, Nicole (2011): Results of H2-consumption experiments during METEOR cruise M64/2 [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.807171, In supplement to: Petersen, JM et al. (2011): Hydrogen is an energy source for hydrothermal vent symbioses. Nature, 476, 176-180, https://doi.org/10.1038/nature10325

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Published: 2011 (exact date unknown)DOI registered: 2013-05-09

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Abstract:
The discovery of deep-sea hydrothermal vents in 1977 revolutionized our understanding of the energy sources that fuel primary productivity on Earth. Hydrothermal vent ecosystems are dominated by animals that live in symbiosis with chemosynthetic bacteria. So far, only two energy sources have been shown to power chemosynthetic symbioses: reduced sulphur compounds and methane. Using metagenome sequencing, single-gene fluorescence in situ hybridization, immunohistochemistry, shipboard incubations and in situ mass spectrometry, we show here that the symbionts of the hydrothermal vent mussel Bathymodiolus from the Mid-Atlantic Ridge use hydrogen to power primary production. In addition, we show that the symbionts of Bathymodiolus mussels from Pacific vents have hupL, the key gene for hydrogen oxidation. Furthermore, the symbionts of other vent animals such as the tubeworm Riftia pachyptila and the shrimp Rimicaris exoculata also have hupL. We propose that the ability to use hydrogen as an energy source is widespread in hydrothermal vent symbioses, particularly at sites where hydrogen is abundant.
Related to:
Lackschewitz, Klas Sven; Armini, M; Augustin, Nico; Dubilier, Nicole; Edge, David; Engemann, Greg; Fabian, M; Felden, Janine; Franke, Philipp; Gärtner, Andrea; Garbe-Schönberg, Dieter; Gennerich, Hans-Hermann; Hüttig, D; Marbler, Herwig; Meyerdierks, Anke; Pape, Thomas; Perner, Kerstin; Reuter, Markus; Ruhland, Götz; Schmidt, K; Schott, Thorsten; Schröder, Michael; Schroll, G; Seiter, Christian; Stecher, Jens; Strauss, Harald; Viehweger, Marc; Weber, Stefan; Wenzhöfer, Frank; Zielinski, Frank (2005): Mid-Atlantic Expedition 2005, Cruise No. 64, Leg 2, Longterm study of hydrothermalism and biology at the Logatchev field, Mid-Atlantic Ridge at 14°45' N (revisit 2005, HYDROMAR II), 6 May - 6 June 2005, Fortaleza (Brazil) - Dakar (Senegal). METEOR-Berichte, Leitstelle Meteor, Institut für Meereskunde der Universität Hamburg, 05, 171 pp, hdl:10013/epic.32337.d001
Zielinski, Frank (2009): Geobiological coupling of hydrothermal vent fluids with endosymbiotic primary producers of bathymodiolus mussels from hydrothermal vents on the Mid-Atlantic Ridge [dissertation]. University of Bremen, Germany, 159 pp, urn:nbn:de:gbv:46-diss000115375
Funding:
German Research Foundation (DFG), grant/award no. 5471797: From Mantle to Ocean: Energy-, Material- and Life-cycles at Spreading Axes
Coverage:
Median Latitude: 14.752900 * Median Longitude: -44.979020 * South-bound Latitude: 14.751700 * West-bound Longitude: -44.980200 * North-bound Latitude: 14.753500 * East-bound Longitude: -44.977800
Date/Time Start: 2005-05-17T00:00:00 * Date/Time End: 2005-05-26T00:00:00
Minimum Elevation: -3053.0 m * Maximum Elevation: -3003.0 m
Event(s):
M64/2-244-ROV  * Latitude: 14.753000 * Longitude: -44.978800 * Date/Time: 2005-05-17T00:00:00 * Elevation: -3032.0 m * Location: Mid-Atlantic Ridge at 10-15°N * Campaign: M64/2 (HYDROMAR2) * Basis: Meteor (1986) * Method/Device: Remote operated vehicle (ROV) * Comment: IRINA II; OBT and OBP positioned, biological sampling
M64/2-263-ROV  * Latitude: 14.753300 * Longitude: -44.979300 * Date/Time: 2005-05-22T00:00:00 * Elevation: -3045.0 m * Location: Mid-Atlantic Ridge at 10-15°N * Campaign: M64/2 (HYDROMAR2) * Basis: Meteor (1986) * Method/Device: Remote operated vehicle (ROV) * Comment: IRINA II, QUEST; Biological sampling, OBT re-positioning
M64/2-266-ROV  * Latitude Start: 14.753000 * Longitude Start: -44.979000 * Latitude End: 14.751700 * Longitude End: -44.977800 * Date/Time: 2005-05-23T00:00:00 * Elevation Start: -3034.0 m * Elevation End: -3003.0 m * Location: Mid-Atlantic Ridge at 10-15°N * Campaign: M64/2 (HYDROMAR2) * Basis: Meteor (1986) * Method/Device: Remote operated vehicle (ROV) * Comment: IRINA II and Site B; Profiler and biological sampling, Fluid sampling
Comment:
Hydrogen consumption incubations
Sampling site:
For on-board physiological experiments specimens of Bathymodiolus puteoserpentis were sampled at the Logatchev hydrothermal vent field on the northern MAR. Mussels were sampled using nets (40 cm length, 20 cm diameter opening, mesh size 335 µm [Hydrobios, Kiel, Germany]) handled by the manipulator arm of the remotely operated vehicles (ROVs) Quest 4000 m (MARUM, Bremen, Germany).
Mussel dissection for shipboard incubations:
For hydrogen consumption experiments, tissues from three individuals were used in each experiment. Mussels were opened with a scalpel by cutting through the posterior and anterior adductor muscles. Viability was tested by prodding the foot with a dissection needle and only mussels whose foot contracted were used. The foot and both gills were separated from the remaining tissue using dissection scissors. Tissue pieces of 6 mm in diameter were cut out of the gill and the foot tissues using a steel hole-puncher. One tissue piece from each individual was frozen in liquid nitrogen for weight determination in the home laboratory. The mean wet weight was 34.2 mg +/- 10.5 mg (n=18). For negative controls, foot tissues that do not contain endosymbiotic bacteria and boiled gill tissues were used.
Experimental setup:
Glass serum vials (58 ml) were fully filled with chilled (4°C) sterile-filtered (0.22 µm) bottom seawater retrieved from 3000 m water depth. One piece of gill tissue was placed in the vial, the vial closed with a gas-tight rubber stopper avoiding any inclusion of air bubbles, and crimped with aluminum seals. Control vials contained foot tissue, boiled gill tissue or no tissue at all. 20 ml of hydrogen gas (100 ppm in helium, Linde) were injected through the rubber stopper using a gas-tight syringe with a second syringe allowing pressure compensation through the outflow of seawater. All vials were placed up-side down to avoid possible gas exchange via the rubber stopper and incubated at 4°C on a slowly rotating table. At given time points a subsample was taken with a gas-tight syringe from the headspace with the pressure decrease compensated through the inflow of chilled sterile-filtered seawater from a second syringe.
Analysis of the headspace hydrogen content:
The hydrogen concentration in the headspace was determined using a gas chromatograph (Thermo Trace GC ultra) equipped with a packed stainless steel column (Molecular Sieve 5A, carrier gas: He) and a pulse discharge detector (PDD). Recording and calculation of results was performed using a PC operated integration system (Thermo Chrom Card A/D). Analytical procedures were calibrated daily with commercial gas standards (Linde).
Incubation conditions and rate calculations:
The concentrations of dissolved hydrogen and oxygen were calculated from Crozier and Yamamoto (1974) [Solubility of hydrogen in water, seawater, and NaCl solutions. Journal of Chemical and Engineering Data, 19(3), 242-244, doi:10.1021/je60062a007] and Weiss (1970) [Weiss, Ray F (1970): Solubility of nitrogen, oxygen and argon in water and seawater. Deep Sea Research Part I: Oceanographic Research Papers, 17, 721-735, doi:10.1016/0011-7471(70)90037-9] under the assumption of Henry's law i.e. that the concentration of a dissolved gas in a solution is directly proportional to the partial pressure of that gas above the solution. The molar volume of an ideal gas (22.414 l mol-1) was used to convert between the partial pressure of a gas (ppm) and the amount of the gas (in moles) in the headspace. The rates of hydrogen removal from the headspace [in nmol h-1 (piece tissue)-1] were calculated for the first 60 minutes after addition of the electron source performing non-linear regression through the data points obtained during the complete incubation period of up to 60 hours. Exponential and hyperbolic regression described by the equations f=a*exp(b/(x+c)) and f=y0+(a*b)/(b+x) gave well-fitting regression curves (R2 = 0.920 and 0.921, respectively; standard error of estimate 6.434 and 6.400, respectively). The effect of methodological hydrogen removal from the headspace through subsampling was considered. The rates at which hydrogen disappeared from incubation vials containing only seawater but no tissues (chemical oxidation, hydrogen loss by diffusion) were subtracted from the tissue rates. Resulting rates were then normalized to gram wet weight (in nmol h-1 [g wet weight]-1).
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Event labelEvent
Sample IDSample IDZielinski, Frank
Time in minutesTime minminZielinski, Frank
HydrogenH2ppmvZielinski, Frankheadspace
Hydrogen concentrationH2nmolZielinski, Frankdissolved
Wet massWet mmgZielinski, Frank
Hydrogen consumption rateH2 cons ratenmol/hZielinski, Frankper gill tissue piece
Hydrogen consumption rate per weightH2 cons ratenmol/h/gZielinski, Franknormalized to wet weight
CommentCommentZielinski, Frankrelated to H2 consumption rate
Size:
986 data points

Data

Download dataset as tab-delimited text — use the following character encoding:


Event

Sample ID

Time min [min]

H2 [ppmv]

H2 [nmol]

Wet m [mg]

H2 cons rate [nmol/h]

H2 cons rate [nmol/h/g]

Comment
M64/2-263-ROV 263ROV/5 gill010089
M64/2-263-ROV263ROV/5 gill1205450
M64/2-263-ROV263ROV/5 gill8551317
M64/2-263-ROV263ROV/5 gill12752525
M64/2-263-ROV263ROV/5 gill1815816
M64/2-263-ROV263ROV/5 gill2475716
M64/2-263-ROV263ROV/5 gill26.76778.13weight not determined
M64/2-266-ROV 266ROV/7-1 gill010089
M64/2-266-ROV266ROV/7-1 gill1206560
M64/2-266-ROV266ROV/7-1 gill4802630
M64/2-266-ROV266ROV/7-1 gill11401119
M64/2-266-ROV266ROV/7-1 gill16201019
M64/2-266-ROV266ROV/7-1 gill1905919
M64/2-266-ROV266ROV/7-1 gill2610818
M64/2-266-ROV266ROV/7-1 gill28.219.53566.72
M64/2-266-ROV266ROV/7-2 gill010089
M64/2-266-ROV266ROV/7-2 gill1207367
M64/2-266-ROV266ROV/7-2 gill5253034
M64/2-266-ROV266ROV/7-2 gill12451020
M64/2-266-ROV266ROV/7-2 gill16651020
M64/2-266-ROV266ROV/7-2 gill1920920
M64/2-266-ROV266ROV/7-2 gill2475720
M64/2-266-ROV266ROV/7-2 gill56.014.99433.89
M64/2-266-ROV266ROV/7-3 gill010089
M64/2-266-ROV266ROV/7-3 gill1204541
M64/2-266-ROV266ROV/7-3 gill1230811
M64/2-266-ROV266ROV/7-3 gill1710912
M64/2-266-ROV266ROV/7-3 gill1980611
M64/2-266-ROV266ROV/7-3 gill2595811
M64/2-266-ROV266ROV/7-3 gill27.833.66980.26
M64/2-266-ROV(266/7) seawater control 1010089
M64/2-266-ROV(266/7) seawater control 11209285
M64/2-266-ROV(266/7) seawater control 14509184
M64/2-266-ROV(266/7) seawater control 112308984
M64/2-266-ROV(266/7) seawater control 116059084
M64/2-266-ROV(266/7) seawater control 119807980
M64/2-266-ROV(266/7) seawater control 124607780
M64/2-266-ROV(266/7) seawater control 10.18not applicable
M64/2-266-ROV(266/7) seawater control 2010089
M64/2-266-ROV(266/7) seawater control 212010295
M64/2-266-ROV(266/7) seawater control 25409287
M64/2-266-ROV(266/7) seawater control 212907475
M64/2-266-ROV(266/7) seawater control 217109787
M64/2-266-ROV(266/7) seawater control 220258884
M64/2-266-ROV(266/7) seawater control 225358583
M64/2-266-ROV(266/7) seawater control 20.21not applicable
M64/2-281-ROV 281ROV/3-1 gill010089
M64/2-281-ROV281ROV/3-1 gill607266
M64/2-281-ROV281ROV/3-1 gill4802630
M64/2-281-ROV281ROV/3-1 gill10801422
M64/2-281-ROV281ROV/3-1 gill17551422
M64/2-281-ROV281ROV/3-1 gill24451121
M64/2-281-ROV281ROV/3-1 gill36151221
M64/2-281-ROV281ROV/3-1 gill49.724.48711.59
M64/2-281-ROV281ROV/3-2 gill010089
M64/2-281-ROV281ROV/3-2 gill5103427
M64/2-281-ROV281ROV/3-2 gill11552723
M64/2-281-ROV281ROV/3-2 gill19051617
M64/2-281-ROV281ROV/3-2 gill26251617
M64/2-281-ROV281ROV/3-2 gill37051416
M64/2-281-ROV281ROV/3-2 gill53.825.11730.09
M64/2-281-ROV281ROV/3-3 gill010089
M64/2-281-ROV281ROV/3-3 gill608781
M64/2-281-ROV281ROV/3-3 gill5105846
M64/2-281-ROV281ROV/3-3 gill12303543
M64/2-281-ROV281ROV/3-3 gill18603342
M64/2-281-ROV281ROV/3-3 gill26102739
M64/2-281-ROV281ROV/3-3 gill37652138
M64/2-281-ROV281ROV/3-3 gill39.813.43388.25
M64/2-281-ROV(281ROV/3) seawater control 1010089
M64/2-281-ROV(281ROV/3) seawater control 1609386
M64/2-281-ROV(281ROV/3) seawater control 14959184
M64/2-281-ROV(281ROV/3) seawater control 110959084
M64/2-281-ROV(281ROV/3) seawater control 117408883
M64/2-281-ROV(281ROV/3) seawater control 124457980
M64/2-281-ROV(281ROV/3) seawater control 136307880
M64/2-281-ROV(281ROV/3) seawater control 10.14not applicable
M64/2-281-ROV(281ROV/3) seawater control 2010089
M64/2-281-ROV(281ROV/3) seawater control 2609890
M64/2-281-ROV(281ROV/3) seawater control 25558983
M64/2-281-ROV(281ROV/3) seawater control 211558782
M64/2-281-ROV(281ROV/3) seawater control 218458481
M64/2-281-ROV(281ROV/3) seawater control 225658180
M64/2-281-ROV(281ROV/3) seawater control 236907578
M64/2-281-ROV(281ROV/3) seawater control 20.18not applicable
M64/2-244-ROV 244ROV/5-1 gill (not transplanted)010089
M64/2-244-ROV244ROV/5-1 gill (not transplanted)1208578
M64/2-244-ROV244ROV/5-1 gill (not transplanted)9606361
M64/2-244-ROV244ROV/5-1 gill (not transplanted)17404955
M64/2-244-ROV244ROV/5-1 gill (not transplanted)24604252
M64/2-244-ROV244ROV/5-1 gill (not transplanted)36151221
M64/2-244-ROV244ROV/5-1 gill (not transplanted)5.19147.07weight not determined
M64/2-244-ROV244ROV/7-1 gill (1 day transplanted)010190
M64/2-244-ROV244ROV/7-1 gill (1 day transplanted)5406964
M64/2-244-ROV244ROV/7-1 gill (1 day transplanted)9905452
M64/2-244-ROV244ROV/7-1 gill (1 day transplanted)15605351
M64/2-244-ROV244ROV/7-1 gill (1 day transplanted)22204246
M64/2-244-ROV244ROV/7-1 gill (1 day transplanted)27454447
M64/2-244-ROV244ROV/7-1 gill (1 day transplanted)34653845
M64/2-244-ROV244ROV/7-1 gill (1 day transplanted)25.56.00170.50
M64/2-244-ROV244ROV/7-2 gill (1 day transplanted)09584
M64/2-244-ROV244ROV/7-2 gill (1 day transplanted)4357267
M64/2-244-ROV244ROV/7-2 gill (1 day transplanted)9605956
M64/2-244-ROV244ROV/7-2 gill (1 day transplanted)15005252
M64/2-244-ROV244ROV/7-2 gill (1 day transplanted)21605252
M64/2-244-ROV244ROV/7-2 gill (1 day transplanted)26853545
M64/2-244-ROV244ROV/7-2 gill (1 day transplanted)34353345
M64/2-244-ROV244ROV/7-2 gill (1 day transplanted)29.73.65101.87
M64/2-244-ROV244ROV/7-3 gill (1 day transplanted)010089
M64/2-244-ROV244ROV/7-3 gill (1 day transplanted)5108780
M64/2-244-ROV244ROV/7-3 gill (1 day transplanted)15006464
M64/2-244-ROV244ROV/7-3 gill (1 day transplanted)22506162
M64/2-244-ROV244ROV/7-3 gill (1 day transplanted)26405962
M64/2-244-ROV244ROV/7-3 gill (1 day transplanted)36307880
M64/2-244-ROV244ROV/7-3 gill (1 day transplanted)25.31.7947.30
M64/2-244-ROV244ROV/7-1 gill boiled (1 day transplanted)09888
M64/2-244-ROV244ROV/7-1 gill boiled (1 day transplanted)5709688
M64/2-244-ROV244ROV/7-1 gill boiled (1 day transplanted)15609184
M64/2-244-ROV244ROV/7-1 gill boiled (1 day transplanted)22808883
M64/2-244-ROV244ROV/7-1 gill boiled (1 day transplanted)26408582
M64/2-244-ROV244ROV/7-1 gill boiled (1 day transplanted)34208482
M64/2-244-ROV244ROV/7-1 gill boiled (1 day transplanted)0.12not applicable
M64/2-244-ROV244ROV/7-2 gill boiled (1 day transplanted)09786
M64/2-244-ROV244ROV/7-2 gill boiled (1 day transplanted)5859688
M64/2-244-ROV244ROV/7-2 gill boiled (1 day transplanted)10808479
M64/2-244-ROV244ROV/7-2 gill boiled (1 day transplanted)15009486
M64/2-244-ROV244ROV/7-2 gill boiled (1 day transplanted)22807878
M64/2-244-ROV244ROV/7-2 gill boiled (1 day transplanted)0.22not applicable
M64/2-244-ROV244ROV/7-3 gill boiled (1 day transplanted)010089
M64/2-244-ROV244ROV/7-3 gill boiled (1 day transplanted)4508579
M64/2-244-ROV244ROV/7-3 gill boiled (1 day transplanted)9758781
M64/2-244-ROV244ROV/7-3 gill boiled (1 day transplanted)14708076
M64/2-244-ROV244ROV/7-3 gill boiled (1 day transplanted)22207272
M64/2-244-ROV244ROV/7-3 gill boiled (1 day transplanted)26408075
M64/2-244-ROV244ROV/7-3 gill boiled (1 day transplanted)33607674
M64/2-244-ROV244ROV/7-3 gill boiled (1 day transplanted)0.12not applicable
M64/2-244-ROV244ROV/7-1 foot (1 day transplanted)010089
M64/2-244-ROV244ROV/7-1 foot (1 day transplanted)6009285
M64/2-244-ROV244ROV/7-1 foot (1 day transplanted)10959084
M64/2-244-ROV244ROV/7-1 foot (1 day transplanted)15908681
M64/2-244-ROV244ROV/7-1 foot (1 day transplanted)22208581
M64/2-244-ROV244ROV/7-1 foot (1 day transplanted)27307476
M64/2-244-ROV244ROV/7-1 foot (1 day transplanted)35108078
M64/2-244-ROV244ROV/7-1 foot (1 day transplanted)50.90.19not applicable
M64/2-244-ROV244ROV/7-3 foot (1 day transplanted)09988
M64/2-244-ROV244ROV/7-3 foot (1 day transplanted)6009588
M64/2-244-ROV244ROV/7-3 foot (1 day transplanted)10508580
M64/2-244-ROV244ROV/7-3 foot (1 day transplanted)16208379
M64/2-244-ROV244ROV/7-3 foot (1 day transplanted)21908882
M64/2-244-ROV244ROV/7-3 foot (1 day transplanted)27308079
M64/2-244-ROV244ROV/7-3 foot (1 day transplanted)0.20not applicable
M64/2-244-ROV244ROV/8-1 gill (5 days transplanted)010089
M64/2-244-ROV244ROV/8-1 gill (5 days transplanted)1205954
M64/2-244-ROV244ROV/8-1 gill (5 days transplanted)10202023
M64/2-244-ROV244ROV/8-1 gill (5 days transplanted)14102225
M64/2-244-ROV244ROV/8-1 gill (5 days transplanted)17701120
M64/2-244-ROV244ROV/8-1 gill (5 days transplanted)25801019
M64/2-244-ROV244ROV/8-1 gill (5 days transplanted)24.822.60656.46
M64/2-244-ROV244ROV/8-2 gill (5 days transplanted)010089
M64/2-244-ROV244ROV/8-2 gill (5 days transplanted)1206762
M64/2-244-ROV244ROV/8-2 gill (5 days transplanted)9602428
M64/2-244-ROV244ROV/8-2 gill (5 days transplanted)13202428
M64/2-244-ROV244ROV/8-2 gill (5 days transplanted)25651323
M64/2-244-ROV244ROV/8-2 gill (5 days transplanted)41.416.73484.78
M64/2-244-ROV244ROV/8-3 gill (5 days transplanted)010089
M64/2-244-ROV244ROV/8-3 gill (5 days transplanted)1208679
M64/2-244-ROV244ROV/8-3 gill (5 days transplanted)17405765
M64/2-244-ROV244ROV/8-3 gill (5 days transplanted)24004059
M64/2-244-ROV244ROV/8-3 gill (5 days transplanted)29.15.46154.86
M64/2-244-ROV(244ROV/8) seawater control 1 (5 days transplanted)010089
M64/2-244-ROV(244ROV/8) seawater control 1 (5 days transplanted)11109587
M64/2-244-ROV(244ROV/8) seawater control 1 (5 days transplanted)13809688
M64/2-244-ROV(244ROV/8) seawater control 1 (5 days transplanted)18608984
M64/2-244-ROV(244ROV/8) seawater control 1 (5 days transplanted)25808282
M64/2-244-ROV(244ROV/8) seawater control 1 (5 days transplanted)0.18not applicable
M64/2-244-ROV(244ROV/8) seawater control 2 (5 days transplanted)010089
M64/2-244-ROV(244ROV/8) seawater control 2 (5 days transplanted)10209386
M64/2-244-ROV(244ROV/8) seawater control 2 (5 days transplanted)14259587
M64/2-244-ROV(244ROV/8) seawater control 2 (5 days transplanted)17858783
M64/2-244-ROV(244ROV/8) seawater control 2 (5 days transplanted)26258783
M64/2-244-ROV(244ROV/8) seawater control 2 (5 days transplanted)0.15not applicable
M64/2-244-ROV244ROV/9-1 gill (7 days transplanted)010089
M64/2-244-ROV244ROV/9-1 gill (7 days transplanted)1807772
M64/2-244-ROV244ROV/9-1 gill (7 days transplanted)5408275
M64/2-244-ROV244ROV/9-1 gill (7 days transplanted)17704350
M64/2-244-ROV244ROV/9-1 gill (7 days transplanted)25652942
M64/2-244-ROV244ROV/9-1 gill (7 days transplanted)35852139
M64/2-244-ROV244ROV/9-1 gill (7 days transplanted)21.02.1959.00
M64/2-244-ROV244ROV/9-2 gill (7 days transplanted)010089
M64/2-244-ROV244ROV/9-2 gill (7 days transplanted)1808982
M64/2-244-ROV244ROV/9-2 gill (7 days transplanted)5408176
M64/2-244-ROV244ROV/9-2 gill (7 days transplanted)13355962
M64/2-244-ROV244ROV/9-2 gill (7 days transplanted)17705560
M64/2-244-ROV244ROV/9-2 gill (7 days transplanted)25804154
M64/2-244-ROV244ROV/9-2 gill (7 days transplanted)36003252
M64/2-244-ROV244ROV/9-2 gill (7 days transplanted)26.22.1959.19
M64/2-244-ROV244ROV/9-3 gill (7 days transplanted)010089
M64/2-244-ROV244ROV/9-3 gill (7 days transplanted)1808074
M64/2-244-ROV244ROV/9-3 gill (7 days transplanted)4807671
M64/2-244-ROV244ROV/9-3 gill (7 days transplanted)11705356
M64/2-244-ROV244ROV/9-3 gill (7 days transplanted)17553345
M64/2-244-ROV244ROV/9-3 gill (7 days transplanted)25052542
M64/2-244-ROV244ROV/9-3 gill (7 days transplanted)36451740
M64/2-244-ROV244ROV/9-3 gill (7 days transplanted)42.13.4595.87
M64/2-244-ROV(244ROV/9) seawater control 1 (7 days transplanted)010089
M64/2-244-ROV(244ROV/9) seawater control 1 (7 days transplanted)1809083
M64/2-244-ROV(244ROV/9) seawater control 1 (7 days transplanted)4808982
M64/2-244-ROV(244ROV/9) seawater control 1 (7 days transplanted)11107976
M64/2-244-ROV(244ROV/9) seawater control 1 (7 days transplanted)16507675
M64/2-244-ROV(244ROV/9) seawater control 1 (7 days transplanted)25508378
M64/2-244-ROV(244ROV/9) seawater control 1 (7 days transplanted)0.17not applicable
M64/2-244-ROV(244ROV/9) seawater control 2 (7 days transplanted)010089
M64/2-244-ROV(244ROV/9) seawater control 2 (7 days transplanted)1809184
M64/2-244-ROV(244ROV/9) seawater control 2 (7 days transplanted)5409184
M64/2-244-ROV(244ROV/9) seawater control 2 (7 days transplanted)16058580
M64/2-244-ROV(244ROV/9) seawater control 2 (7 days transplanted)23858279
M64/2-244-ROV(244ROV/9) seawater control 2 (7 days transplanted)0.15not applicable
M64/2-244-ROV244ROV/10-1 gill (10 days transplanted)010089
M64/2-244-ROV244ROV/10-1 gill (10 days transplanted)1208881
M64/2-244-ROV244ROV/10-1 gill (10 days transplanted)7956261
M64/2-244-ROV244ROV/10-1 gill (10 days transplanted)20404248
M64/2-244-ROV244ROV/10-1 gill (10 days transplanted)27302740
M64/2-244-ROV244ROV/10-1 gill (10 days transplanted)33901335
M64/2-244-ROV244ROV/10-1 gill (10 days transplanted)29.12.8377.96
M64/2-244-ROV244ROV/10-2 gill (10 days transplanted)010089
M64/2-244-ROV244ROV/10-2 gill (10 days transplanted)1208780
M64/2-244-ROV244ROV/10-2 gill (10 days transplanted)9006967
M64/2-244-ROV244ROV/10-2 gill (10 days transplanted)21306463
M64/2-244-ROV244ROV/10-2 gill (10 days transplanted)27004654
M64/2-244-ROV244ROV/10-2 gill (10 days transplanted)33303048
M64/2-244-ROV244ROV/10-2 gill (10 days transplanted)1.5540.35weight not determined
M64/2-244-ROV244ROV/10-3 gill (10 days transplanted)010089
M64/2-244-ROV244ROV/10-3 gill (10 days transplanted)1208982
M64/2-244-ROV244ROV/10-3 gill (10 days transplanted)7207974
M64/2-244-ROV244ROV/10-3 gill (10 days transplanted)26106970
M64/2-244-ROV244ROV/10-3 gill (10 days transplanted)32254962
M64/2-244-ROV244ROV/10-3 gill (10 days transplanted)32.32.5168.46
M64/2-244-ROV(244ROV/10) seawater control 1 (10 days transplanted)010089
M64/2-244-ROV(244ROV/10) seawater control 1 (10 days transplanted)1208982
M64/2-244-ROV(244ROV/10) seawater control 1 (10 days transplanted)9008579
M64/2-244-ROV(244ROV/10) seawater control 1 (10 days transplanted)20857975
M64/2-244-ROV(244ROV/10) seawater control 1 (10 days transplanted)35856672
M64/2-244-ROV(244ROV/10) seawater control 1 (10 days transplanted)0.18not applicable
M64/2-244-ROV(244ROV/10) seawater control 2 (10 days transplanted)010089
M64/2-244-ROV(244ROV/10) seawater control 2 (10 days transplanted)1209084
M64/2-244-ROV(244ROV/10) seawater control 2 (10 days transplanted)7508176
M64/2-244-ROV(244ROV/10) seawater control 2 (10 days transplanted)20407875
M64/2-244-ROV(244ROV/10) seawater control 2 (10 days transplanted)26708578
M64/2-244-ROV(244ROV/10) seawater control 2 (10 days transplanted)34506270
M64/2-244-ROV(244ROV/10) seawater control 2 (10 days transplanted)0.18not applicable