IJMEC_2026v16n1

International Journal of Molecular Ecology and Conservation, 2026, Vol.16, No.1, 22-30 http://ecoevopublisher.com/index.php/ijmec 29 Danise S., Dominici S., Glover A., and Dahlgren T., 2014, Molluscs from a shallow-water whale-fall and their affinities with adjacent benthic communities on the Swedish west coast, Marine Biology Research, 10: 3-16. https://doi.org/10.1080/17451000.2013.793811 Danise S., Twitchett R., and Matts K., 2014, Ecological succession of a Jurassic shallow-water ichthyosaur fall, Nature Communications, 5. https://doi.org/10.1038/ncomms5789 Dasgupta S., Lin M., Liu S., Chen S., Xu H., Li J., Ta K., Li S., and Peng X., 2024, Depth and predation regulate consumption of dolphin carcasses in the hadal zone, Deep Sea Research Part I: Oceanographic Research Papers. https://doi.org/10.1016/j.dsr.2024.104282 Duperron S., Gaudron S., Rodrigues C., Cunha M., Decker C., and Olu K., 2013, An overview of chemosynthetic symbioses in bivalves from the North Atlantic and Mediterranean Sea, Biogeosciences, 10: 3241-3267. https://doi.org/10.5194/bg-10-3241-2013 Feldman R., Shank T., Black M., Baco A., Smith C., and Vrijenhoek R., 1998, Vestimentiferan on a whale fall, The Biological Bulletin, 194(2): 116-119. https://doi.org/10.2307/1543041 Georgieva M., Wiklund H., Ramos D., Neal L., Glasby C., and Gunton L., 2023, The annelid community of a natural deep-sea whale fall off eastern Australia, Records of the Australian Museum. https://doi.org/10.3853/j.2201-4349.75.2023.1800 Glover A., and Smith C., 2003, The deep-sea floor ecosystem: current status and prospects of anthropogenic change by the year 2025, Environmental Conservation, 30: 219-241. https://doi.org/10.1017/S0376892903000225 Goffredi S., Paull C., Fulton-Bennett K., Hurtado L., and Vrijenhoek R., 2004, Unusual benthic fauna associated with a whale fall in Monterey Canyon, California, Deep-Sea Research Part I: Oceanographic Research Papers, 51: 1295-1306. https://doi.org/10.1016/j.dsr.2004.05.009 Goffredi S., Wilpiszeski R., Lee R., and Orphan V., 2008, Temporal evolution of methane cycling and phylogenetic diversity of archaea in sediments from a deep-sea whale-fall in Monterey Canyon, California, The ISME Journal, 2: 204-220. https://doi.org/10.1038/ismej.2007.103 Hasegawa Y., 2009, Characterization of deep-sea microbial activities in a whale-fall sediment. Hilário A., Cunha M., Génio L., Marçal A., Ravara A., Rodrigues C., and Wiklund H., 2015, First clues on the ecology of whale falls in the deep Atlantic Ocean: results from an experiment using cow carcasses, Marine Ecology, 36: 82-90. https://doi.org/10.1111/maec.12246 Ibrahim E., Hedeny E., El-Sabbagh A., El-Kheir G., Osman A., Mahdy A., and Ahmed E., 2024, Shallow-water whale-fall communities: evidence from the middle-late Eocene basilosaurid whale bones, Wadi El-Hitan, Fayum, Egypt, Palaeoworld. https://doi.org/10.1016/j.palwor.2024.06.006 Levin L., Barry J., Felbeck H., Smith C., and Young C., 2007, Advances in vent, seep, whale- and wood-fall biology, Marine Ecology, 28: 1-2. https://doi.org/10.1111/j.1439-0485.2007.00153.x Levin L., Wei C., Dunn D., Amon D., Ashford O., Cheung W., Colaço A., Domínguez-CarrióC., Escobar E., Harden-Davies H., Drazen J., Ismail K., Jones D., Johnson D., Le J., Lejzerowicz F., Mitarai S., Morato T., Mulsow S., Snelgrove P., Sweetman A., and Yasuhara M., 2020, Climate change considerations are fundamental to management of deep-sea resource extraction, Global Change Biology, 26: 4664-4678. https://doi.org/10.1111/gcb.15223 Li Q., Liu Y., Li G., Wang Z., Zheng Z., Sun Y., Lei N., Li Q., and Zhang W., 2022, Review of the impact of whale fall on biodiversity in deep-sea ecosystems, 10. https://doi.org/10.3389/fevo.2022.885572 Lorion J., Duperron S., Gros O., Cruaud C., and Samadi S., 2009, Several deep-sea mussels and their associated symbionts are able to live both on wood and on whale falls, Proceedings of the Royal Society B: Biological Sciences, 276: 177-185. https://doi.org/10.1098/rspb.2008.1101 Lucas J., 2015, Faunal composition and community structure of the world's deepest whale-fall community: shedding light on the ecological role of Osedax (Polychaeta: Siboglinidae) and whale-fall biogeography. Lundsten L., Schlining K., Frasier K., Johnson S., Kuhnz L., Harvey J., Clague G., and Vrijenhoek R., 2010, Time-series analysis of six whale-fall communities in Monterey Canyon, California, USA, 57: 1573-1584. https://doi.org/10.1016/j.dsr.2010.09.003 McGann M., and Lundsten L., 2019, Influence of an upper bathyal whale-fall on benthic foraminifera of Monterey Canyon, California (USA), Micropaleontology. https://doi.org/10.47894/mpal.65.5.04 Moriya K., Jenkins R., Sekiguchi T., and Suzuki N., 2016, Succession of whale-fall ecosystems at shallow waters: mainly based on one year monitoring of deployed whale carcasses in aquarium tank and natural environments in Tsukumo Bay, Ishikawa, Japan, Japan Geoscience Union. Onishi Y., Shimamura S., Yamanaka T., Nakayama R., Ozaki K., Miyazaki M., Tsunogai U., and Fujiwara Y., 2018, Variation of geochemical environments associated with whale-fall biomass mineralization processes in the sediment during the mobile scavenger, enrichment opportunist, and sulfophilic stages, Marine Biology, 165: 1-17. https://doi.org/10.1007/s00227-018-3398-8

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