Collaborative multi-stakeholder approach for preliminary exploratory trials of mesopelagic resources in the Indian EEZ


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Authors

  • Sujitha Thomas CMFRI
  • Remesan M. P
  • Rajesh K.M
  • Akhilesh K. V
  • Divya Viswambharan
  • Sunil Kumar Ail Kumar Ail
  • Bindu Sulochanan
  • Prajith K. K.
  • Shoba Joe Kizhakudan
  • Shelton Padua
  • Jeyakumari A.
  • Anas K. K.
  • Ganga U.
  • Shinoj P.
  • Remya L.
  • Livi Wilson
  • Jayshankar J
  • Laly S J
  • Sreepriya Prakasan
  • Ranjit kumar Nadella
  • Ashik P. S.
  • Nadhiya T B
  • Akhila U A
  • Abdul Luhai
  • George Ninan
  • Grinson George

https://doi.org/10.21077/

Keywords:

Deep-sea trawling , Mesopelagic fisheries, Karnataka coast, Participatory research, Indian EEZ

Abstract

This study reports findings from preliminary commercial trials conducted in India’s Exclusive Economic Zone (EEZ) to explore the commercial potential of mesopelagic resources in the south-eastern Arabian Sea along the Karnataka coast. Two modified commercial multiday trawl vessels equipped with navigation and fish detection systems conducted 15 midwater trawl hauls at depths of 300-800 m, during night time over a three-month period (January, April, and May 2025). The trials employed a midwater trawl with a 70 m headline, 45 mm mesh, and 20 mm codend mesh, specifically designed for mesopelagic operations, targeting species exhibiting diel vertical migration. A participatory framework involving fishers, boat owners, and industry stakeholders, was adopted to improve operational efficiency, facilitate technology adoption, and support value-chain development. The fishing trials yielded a species-rich catch comprising 40 species belonging to 38 families and 20 orders, with Ophidiidae (23.32%), Pentanchidae (15.94%), and Trachichthyidae (15.05) being dominant families. The average catch per haul was ±1.8 t, with a catch catch rate of approximately 120 kg h-1. Surface water parameters indicated low chlorophyll a concentrations and variable dissolved oxygen levels. Operational and management challenges included gear failures, post-harvest spoilage due to the fragile nature of several species and i nadequate cold storage facilities.  Jellyfish bycatch was observed as an important operational and ecological challenge. Modifications to fishing gear such as the use of Ethylene Vinyl Acetate (EVC) floats, improved gear resilience during deep water operations. Overall, the study highlights the opportunity for further exploration of mesopelagic resources in India’s deep waters, while emphasising the need for further gear innovation, sy stematic abundance mapping, targeted ecological research, and con tinued stakeholder collaboration, for sustainable development.

Keywords: Arabian Sea, Karnataka coast, Mesopelagic fishes, Mesopelagic trawling, Participatory approach

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Author Biography

  • Sujitha Thomas, CMFRI
    Principal Scientist, Demersal Fisheries Division

References

American Public Health Association; American Water Works Association; Water Environment Federation, 2022. Standard Methods for the Examination of Water and Wastewater, 24th edn. APHA Press, Washington, DC.

Augustina, A. T., Sreeram, M. P., Sukumaran, S., Jose, A., Sreekumar, K., Xavier, B., & George, G., (2025). Bridging the gap: Seven New Distributional Records from the west coast of India with Phylogenetic Reconstruction of the Indian Deep-sea Ophidiiformes. Regional Studies in Marine Science, 104016. https://doi.org/10.1016/j.rsma.2025.104016

Boopendranath, M.R., 2007. Responsible fishing operations with special reference to trawl systems. Fish. Chime, 27(8): 107-113.

Boopendranath, M. R., Vijayan, P. K., Remesan, M. P., Anandan, R., Ninan, G., Zynudheen, A. A. Das , S., Rajeswari, G., Raghu Prakash, R. , Sankar, T. V., Panda, S. K., Mohan, C. O., Vipin, P. M., Fernandez, T. J.,Renju, R., Mahato, P. K., Pradeep, K., Rajamoorthy, K., Sherief, M. P. S., Baby, L. and Abhilash, S., 2012a. Final Report on CIFT Project Component on Development of Harvest and Post-harvest Technologies for Utilization of Myctophid Resources in the Arabian Sea pertaining to MoES/CMLRE Project on Assessment of Myctophid Resources in the Arabian Sea and Development of Harvest and Post-harvest Technologies. CIFT, Cochin: 246 p.

Boopendranath, M.R., Pradeep, K., Thomas, S.N., Remesan, M.P., & Vipin, P.M., 2012b. Midwater trawls for the exploitation of myctophid resources in the Arabian Sea. Fishery Technology, 49(2): 155-160.

Castellón, A., & Olivar, M.P., 2023. VERDA: A multisampler tool for mesopelagic nets. Journal of Marine Science and Engineering, 11(1), 72.

CMFRI (2013). Annual report 2012-13. Central Marine Fisheries Research Institute. http://eprints.cmfri.org.in/id/eprint/9465

CMFRI (2023). Annual Report 2022. Central Marine Fisheries Research Institute. http://eprints.cmfri.org.in/id/eprint/17732

Eschmeyer, W. N., Fricke, R., & Van der Lan, R. (Eds.) (2022). Catalog of fishes: Genera, Species. California Academy of Science. http.//researcharchive.calacademy.org/research/ichthyology/catalog/ fshcatmain.asp.

FAO (2022). The State of World Fisheries and Aquaculture 2022. In FAO eBooks, 266 p. https://doi.org/10.4060/cc0461en

Ganga, U., Thomas, J. P., & Sukumaran, S., 2015. A new species of the Genus Harpadon (Aulopiformes, Synodontidae) from the north-eastern Arabian Sea, India. https://epubs.icar.org.in/index.php/IJF/article/view/37993

Gj∅Saeter, J., 1984. Mesopelagic fish, a large potential resource in the Arabian Sea. Deep Sea Research Part a Oceanographic Research Papers, 31(6–8), 1019–1035. https://doi.org/10.1016/0198-0149(84)90054-2

Grimaldo, E., Herrmann, B., Brčić, J., Cerbule, K., Brinkhof, J., Grimsmo, L., & Jacques, N., 2022. Prediction of potential net panel selectivity in mesopelagic trawls. Ocean Engineering, 260, 111964. https://doi.org/10.1016/j.oceaneng.2022.111964

Irigoien, X., Klevjer, T. A., Røstad, A., Martinez, U., Boyra, G., Acuña, J. L., Bode, A., Echevarria, F., Gonzalez-Gordillo, J. I., Hernandez-Leon, S., Agusti, S., Aksnes, D. L., Duarte, C. M., & Kaartvedt, S., 2014. Large mesopelagic fishes biomass and trophic efficiency in the open ocean. Nature Communications, 5(1). https://doi.org/10.1038/ncomms4271

Jayaprakash, A.A., 1996. Mesopelagic fishes from equatorial waters contiguous to Indian EEZ. Bulletin of Central Marine Fisheries Research Institute, 48: 51-58.

Joseph, M. M., & Jayaprakash, A. A. (2003). Status of exploited marine fishery resources of India. In Central Marine Fisheries Research Institute eBooks. http://eprints.cmfri.org.in/6017/

Karuppasamy, P. K., Balachandran, K., George, S., Balu, S., Persis, V., & Menon, N. G., 2006. A check list of fishes collected by IKMT from the DSL survey in the Indian EEZ of Arabian Sea. J Ind Hydro, 9(2), 311-316.

Lam, V., & Pauly, D., 2005. Mapping the global biomass of mesopelagic fishes. Sea Around Us Project Newsletter, 30(4), 4.

Manjebrayakath, H., 2012. Distribution, diversity and biology of deep-sea fishes in the Indian EEZ. Doctoral dissertation, ICAR-Central Marine Fisheries Research Institute, Kochi.

Meera, K., Sanjeevan, V., Prakash, R. R., & Hashim, M., 2024. An updated checklist of Myctophids of Western Indian Ocean with 6 new records. Regional Studies in Marine Science, 73, 103450. https://doi.org/10.1016/j.rsma.2024.103450

Menon, N. G., 2002. Completion report on the project: studies on the deep scattering layer. DOD, New Delhi, 634.

Mostarda, E., Harold, A.S., Sutton, T.T. & Hulley, P.A., 2023. Identification guide to the mesopelagic fishes of the western Indian Ocean. FAO Species Identification Guide for Fishery Purposes. Rome, FAO. https://doi.org/10.4060/cc7822en

MPEDA (2023). Annual report 2022-23. Marine Products Export Development Authority, Ministry of Commerce & Industry, Government of India.

Nelson, J. S., 2006. Fishes of the World 4th edition John Wiley & Sons. Nueva York.

Pradeep, Kaushalya & M, VIPIN & Ravi, Renju & Fernandez, T. & Remesan, M. & Boopendranath, M R., 2012. Field Identification Manual of Myctophid Fishes in Indian Ocean. CIFT, Cochin.

Sajeevan, M., 2009. Deep-sea Teleostean Species-Diversity off the South West coast of India (7o N-10o N lat.). Asian Fisheries Science, 22(2). https://doi.org/10.33997/j.afs.2009.22.2.024

Shawyer, M., & Pizzali, A. F. M. (2003). The use of ice on small fishing vessels. In Food and Agriculture Organization of the United Nations eBooks (Issue 1). http://www.fao.org/3/a-y5013e.pdf

Sinha, Anrose, & Das, P., 2017. Indian Deep Sea Fisheries - Its prospects, issues and challenges. Journal of Aquaculture & Marine Biology, 5(2). https://doi.org/10.15406/jamb.2017.05.00112

Suuronen, P., Chopin, F., Glass, C., Løkkeborg, S., Matsushita, Y., Queirolo, D. & Rihan, D., 2018. Low impact and fuelefficient fishing—Looking beyond the horizon. Fisheries Research, 206: 1-9.

Valinassab, T., Pierce, G. J., & Johannesson, K., 2007. Lantern fish (Benthosema pterotum) resources as a target for commercial exploitation in the Oman Sea. Journal of Applied Ichthyology, 23(5), 573–577. https://doi.org/10.1111/j.1439-0426.2007.01034.x

Venmathi Maran, B. A., Aungtonya, C., Hoe, C. C., Metillo, E. B., Miyake, H., Iesa, I., Arsiranant, I., Karunarathne, K. D., Densing, L. A. F., de Croos, M. D. S. T., Rizman-Idid, M., Yap, N. W. L., Nilamani, N., Sianturi, O. R., Rungraung, P., Kwang, S. Y., Sharifuzzaman, S. M., Widiastuti, & Das, Y. (2021). Field guide to the jellyfish of Western Pacific. Centre for Marine and Coastal Studies, Universiti Sains Malaysia.

Venu, S., & Kurup, B. M., 2002. Distribution and abundance of deep sea fishes along the west coast of India. Fishery Technology, 39(1). http://epubs.icar.org.in/ejournal/index.php/FT/article/view/17899

Vipin, P. M., Ravi, R., Fernandez, T. J., Pradeep, K., Boopendranath, M. R., & Remesan, M. P., 2012. Distribution of myctophid resources in the Indian Ocean. Reviews in Fish Biology and Fisheries, 22(2), 423–436. https://doi.org/10.1007/s11160-011-9244-4

Wedemeyer-Strombel, K. R., Peterson, M. J., Sanchez, R. N., Chavarría, S., Valle, M., Altamirano, E., Gadea, V., Sowards, S. K., Tweedie, C. E., & Liles, M. J., 2019. Engaging fishers’ ecological knowledge for Endangered Species Conservation: Four Advantages to Emphasizing Voice in Participatory Action Research. Frontiers in Communication, 4. https://doi.org/10.3389/fcomm.2019.00030

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Submitted

2025-10-22

Published

2026-09-30

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How to Cite

Thomas, S., M. P, R. ., K.M, R. ., K. V, A. ., Viswambharan, D. ., Kumar Ail, S. K. A., Sulochanan, B. ., K. K., P. ., Joe Kizhakudan, S. ., Padua, S. ., A., J. ., K. K., A. ., U., G. ., P., S. ., L., R., Wilson, L. ., J, J., S J, L. ., Prakasan, S. ., … George, G. (2026). Collaborative multi-stakeholder approach for preliminary exploratory trials of mesopelagic resources in the Indian EEZ. Indian Journal of Fisheries, 73(3). https://doi.org/10.21077/
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