Published August 18, 2023 | Version v1

TABLE 1 in Rhodolith-forming coralline red algae in the CaCO biofactory - A case study from the Serravallian of tropical northeastern Indian Ocean

  • 1. Birbal Sahni Institute of Palaeosciences, 53 University Road, Lucknow — 226 007, Uttar Pradesh (India) & Department of Applied Geology, Indian Institute of Technology (Indian School of Mines), Dhanbad — 826 004, Jharkhand (India)
  • 2. University of Milano-Bicocca, Department of Earth and Environmental Sciences, Piazza della Scienza 4, I- 20126, Milano (Italy)
  • 3. Birbal Sahni Institute of Palaeosciences, 53 University Road, Lucknow — 226 007, Uttar Pradesh (India) & Department of Geology, Faculty of Science, Universiti Malaya, 50603 Kuala Lumpur (Malaysia)
  • 4. Birbal Sahni Institute of Palaeosciences, 53 University Road, Lucknow — 226 007, Uttar Pradesh (India) & Centre of Advanced Study in Geology, University of Lucknow, Lucknow — 226007, Uttar Pradesh (India)
  • 5. Department of Applied Geology, Indian Institute of Technology (Indian School of Mines), Dhanbad — 826 004, Jharkhand (India)
  • 6. Birbal Sahni Institute of Palaeosciences, 53 University Road, Lucknow — 226 007, Uttar Pradesh (India) Sahni Institute of Palaeosciences, 53 University Road, Lucknow - 226 007, Uttar Pradesh (India)

Description

TABLE 1.— Comparison of biometric measurements of the identified geniculate and non-geniculate coralline algae.Abbreviations: D, diameter; H, height; L, length; PF, peripheral filaments; Po, postigenous filaments; Pr, primigenous filaments; VC, ventral core.

TaxaFeatures/ CharacteristicsDimensionsNumber of measuments (n)RangeMean (M)Standard Deviation (SD)
? Lithothamnion valens (Fig. 3A, B)VCL1516 to 18 µm16.80.74
D158 to 11 µm9.21.1
PFL308 to 15 µm10.62.41
D308 to 10 µm8.80.74
Multiporate conceptaclesD584 to 117 µm96.612.611
H550 to 91 µm70.214.42
ProtuberancesL32898 to 3017 µm2942.654.08
D3826 to 1391 µm1072236
Phymatolithon sp. (Fig. 3C, D)VCL2016 to 20 µm181.67
D2012 to 14 µm12.80.74
PFL508 to 10 µm8.80.74
D506 to 9 µm7.41.01
Epithallial cellsL98 to 15 µm10.62.41
D9± 5 µm––
Multiporate conceptaclesD10360 to 480 µm40042.4
H10140 to 180 µm16014.1
Mesophyllum sp. (Fig. 3E)VCL2512 to 24 µm189.4
D256 to 10 µm81.41
PFL508 to 25 µm15.66.2
D506 to 20µm12.84.7
Multiporate conceptaclesD3140 to 180 µm16014.14
H385 to 140 µm11522.72
ThallusL31141 to 1322 µm122175.36
D3600 to 715 µm643.351.456
Mesophyllum roveretoi Conti, 1943 (Fig. 3F)VCL2014 to 20 µm16.62.15
D208 to 12 µm101.41
PFL2014 to 31 µm216.35
D208 to 28 µm17.27.98
Multiporate conceptaclesD3229 to 2352312.6
H371 to 9682.310.3
Lithoporella melobesiodies (Foslie) Foslie, 1909 (Fig. 4A, B)PrL1512 to 18 µm15.63.2
D1522 to 38 µm31.68.5
PoL3016 to 32 µm24.38.02
D308 to 20 µm14.336.02
Uniporate conceptaclesD3174 to 400 µm291.3113.26
H371 to 140 µm––
Neogoniolithon sp. (Fig. 4C)VCL2010 to 28 µm19.66.5
D207 to 12 µm9.21.7
PFL509 to 20 µm14.44.3
D505 to 11 µm9.42.4
Uniporate conceptaclesD3550 to 600 µm576.620.75
H3200 to 300 µm25040.82
Spongites fruticulosus Kützing, 1841 (Fig. 4D, E)VCL5016 to 24 µm19.42.6
D5012 to 18 µm152
PFL10012 to 22 µm16.43.9
D1008 to 18 µm12.63.5
Epithallial cellsL65 to 7 µm5.80.74
D68 to 14 µm10.62.15
Titanoderma pustulatum (Lamouroux) Nägeli, 1858 (Fig. 4F)VCL2012 to 18 µm152
D208 to 15 µm123.8
PFL507 to 18 µm12.63.8
D508 to 16 µm11.22.9
Uniporate conceptaclesD17110 to 140 µm12510
H1772 to 94 µm83.87.9
Amphiroa sp. (Fig. 4G-J)Core region (long cells)L200 to 40050 to 90 µm66.617.25
D200 to 4008 to 20 µm12.84.2
Core region (short cells)L60 to 8016 to 40 µm24.88.9
D60 to 809 to 19 µm14.23.6
IntergeniculaL12 to 20651 to 1109 µm920195
D12 to 20256 to 338 µm29833.5
Corallina sp. (Fig. 5A-C)Core regionL105 to 24518 to 24 µm21.22.1
D105 to 2458 to 12 µm101.4
IntergeniculaL7 to 35350 to 1092µm647.33330
D7 to 35134 to180 µm154.619.07
Sporolithon cf. airoldii (Fig. 5D)VCL258 to 16 µm11.42.6
D253 to 8 µm5.41.85
PFL505 to 12 µm9.42.5
D504 to 10 µm7.62.2
Sporangial compartmentsL7080 to 120 µm10114.9
D7035 to 48 µm41.44.58
Sporolithon praeerythraeum (Airoldi) Vannucci, Piazza, Fravega & Basso, 2000 (Fig. 5E, F)PFL5014 to 26 µm18.64.2
D5010 to 12 µm10.960.68
Sporangial compartmentsL1530 to 36 µm32.32.1
D1559 to 68 µm6110

Notes

Published as part of Dey, Rikee, Basso, Daniela, Chakraborty, Arindam, Roy, Lopamudra, Bhaumik, Ajoy Kumar & Ghosh, Amit K., 2023, Rhodolith-forming coralline red algae in the CaCO biofactory - A case study from the Serravallian of tropical northeastern Indian Ocean, pp. 550-551 in Comptes Rendus Palevol 22 (26) on page 550, DOI: 10.5852/cr-palevol2023v22a26, http://zenodo.org/record/14224623

Files

Files (9.8 kB)

Name Size Download all
md5:5eafe3543c64ad0e44e88c5d6c2796ae
9.8 kB Download

System files (26.1 kB)

Name Size Download all
md5:6c66e95e6982a4990093addf931c87cb
26.1 kB Download

Additional details

References

  • CONTI S. 1943. - Contributo allo studio delle Corallinacee del terziario italiano. II. Le Corallinacee del Miocene del Bacino Ligure-Piemontese. Palaeontographia Italica 41: 37 - 61.
  • FOSLIE M. 1909. - Algologiske notiser. VI. Det Kongelige Norske Videnskabers Selskabs Skrifter 1909. Trondheim 2: 1 - 63.
  • KUTZING F. T. 1841. - Ueber die " Polypieres calciferes " des Lamouroux, in FISHER K. C. F. (ed.), Zu der offentlichen Prufung sammtlicher Classen der Realschule zu Nordhausen. Nordhausen, Realschule: 3 - 34.
  • NAGELI C. 1858. - Die Starkekorner, in NAGELI C. & KRAMER C. (eds), Pflanzenphysiologische Untersuchungen. Friedrich Schulthess, Zurich, 624 p.