Delineating impact of climatic variable(s) on commercial fish landings in a tropical river through multi-species modelling


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Authors

  • Anil Kumar Yadav ICAR-CIFRI, Barrackpore
  • Rohan Kumar Raman
  • Simanku Borah
  • Dharm Nath Jha
  • Malay Naskar
  • Shyamal Chandra Sukla Das
  • Kishore Kumar Das
  • Rakesh Kumar
  • Sullip Kumar Majhi
  • Basanta Kumar Das

https://doi.org/10.21077/ijf.2025.72.1.152167-01

Keywords:

Brahmaputra, Dynamic factor analysis, Fish landings, Precipitation, Sustainable fisheries

Abstract

For effective fisheries management and sustainable development of fisheries in the Indian segment of the Brahmaputra River, it is crucial to examine how fish landing patterns have been influenced by climatic factors over recent years. In this context, this study aimed to assess the impact of climatic variables, specifically precipitation, on commercial fisheries in the Brahmaputra River at Uzanbazar (Guwahati) using a multi-species modelling approach. The annual data from 1987 to 2017, encompassing precipitation and multi-species fish landings, including Indian major carps (IMC), catfishes, minor carps, featherbacks, miscellaneous fishes and hilsa was utilised for the study. To analyse this, the Dynamic Factor Analysis (DFA) technique was employed to identify common trends and quantify the effects of precipitation on the different fish groups/species. Based on the model selection criterion, the optimal DFA model revealed three distinct common trends with an unconstrained covariance matrix. Trend-1 primarily represented the landings of minor carps, catfishes, and IMC; Trend-2 was
associated with miscellaneous fishes and featherbacks and Trend-3 corresponded to hilsa landings. Precipitation was incorporated as an explanatory variable in the optimally selected DFA model to characterise the relationship between fish landings and climatic factors. The results indicated that annual precipitation significantly influenced the landings of catfishes, hilsa, featherbacks and miscellaneous fishes. Specifically, a significant positive regression coefficient was observed for miscellaneous fish landings, whereas significant negative regression coefficients were found for hilsa, catfishes and featherbacks. The comparison between the standardised empirical fish landings and the predicted landings from the DFA model showed a good agreement. This study represents the first application of the DFA approach to explore common trends in commercial fish landings and the influence of precipitation on these landings in the Brahmaputra River. The findings can inform the development of sustainable management strategies for multispecies commercial fisheries in riverine ecosystem.

Keywords: Brahmaputra, Dynamic factor analysis, Fish landings, Precipitation, Sustainable fisheries

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Author Biography

  • Anil Kumar Yadav, ICAR-CIFRI, Barrackpore

    Senior Scientist

References

Abrial, E., Espínola, L. A., Rabuffetti, A. P., Eurich, M. F., Paira, A. R., Blettler, M. C. M. and Amsler, M. L. 2019. Variability of hydrological connectivity and fish dynamics in a wide subtropical–temperate floodplain. River Res. Appl., 35 (9): 1520–1529.

Bhattacharjya, B. K., Bhaumik, U. and Sharma, A. P. 2017. Fish habitat and fisheries of Brahmaputra River in Assam, India. Aquat. Ecosyst. Health Manag., 20 (1-2): 102–115.

Borah, S., Das, P., Bhattacharjya, B. K., Yadav, A. K., Saud, B. J. and Das, B. K. 2020. A report on the occurrence of Bangana dero (Hamilton, 1822) from Deepor beel (Ramsar site no. 1207), Brahmaputra valley, Assam. J. Appl. & Nat. Sci., 12 (2): 202–206.

Borah, S., Landge, A. T., Bhattacharjya, B. K., Chakraborty, S. K., Ramteke, K. K., Barman, J., Bhagawati, K. and Saud, B. J. 2014. Variation in morphometric and meristic traits of Aspidoparia morar from Brahmaputra and Barak Rivers of Assam, India. J. Appl. & Nat. Sci., 6 (1): 262–266.

Boruah, S. and Biswas, S. P. 2002a. Ecohydrology and fisheries of the upper Brahmaputra basin. Environmentalist, 22 (2): 119–131.

Boruah, S. and Biswas, S. P. 2002b. Application of ecohydrology in the Brahmaputra River. Ecohydrol. Hydrobiol., 2 (1-4): 79–87.

Bower, L. M., Keppeler, F. W., Cunha, E. R., Quintana, Y., Saenz, D. E., Lopez-Delgado, E. O., Bokhutlo, T., Arantes, C. C., Andrade, M. C., Robertson, C. R. and Mayes, K. B. 2019. Effects of hydrology on fish diversity and assemblage structure in a Texan coastal plains river. Trans. Am. Fish. Soc., 148 (1): 207–218.

Box, G. E. P., Jenkins, G. M., Reinsel and G. C. 1994. Time series analysis: Forecasting and control. 3rd edition, Prentice Hall, Englewood Cliff, New Jersey, 598 pp.

Chen, C. S., Pierce, G. J., Wang, J., Robin, J. P., Poulard, J. C., Pereira, J., Zuur, A. F., Boyle, P. R., Bailey, N., Beare, D. J., Jereb, P., Ragonese, S., Manninii, A. and Orsi-Relinii, L. 2006. The apparent disappearance of Loligo forbesi from the south of its range in the 1990s: Trends in Loligo spp. abundance in the northeast Atlantic and possible environmental influences. Fish. Res., 78 (1): 44–54.

Choudhury, M., Chandra, R. and Kolekar, V. 1980. On the trend and seasonal indices of fish catch statistics at Uzan Bazar fish assembly centre. J. Inland Fish. Soc. India, 12 (1): 92–99.

CIFRI, 1987–2014. Annual reports 1987–2014. Central Inland Fisheries Research Institute, Barrackpore, India.

Das, N. N, Lindsey C. C. and Khan, M. S. 1994. Correlations between annual catches of the Hilsa shad Tenualosa ilisha in the Ganges and Indus River and rainfall two year earlier. In: Chou L. M., Munro, A. D. and Lam, T. J. (Eds.), Proceedings of the Third Asian Fisheries Forum, 26–30 October 1992. Asian Fisheries Society, Manila, Philippines, p. 228–231.

Das, P., Borah, S., Yadav, A. K., Bhattarcharjya, B. K. and Das, B. K. 2018. Open-water fisheries of Assam and strategies for its development. Fishing Chimes, 38 (1&2): 17–28.

Das, S. C. S., Jha, D. N., Alam, A., Borah, S., Kumar, V., Srivastava, K., Thakur, V. R., Sahoo, A. K. and Das, B. K. 2022. Assessing assemblage pattern, health status and environmental drivers of macrobenthic invertebrate community structure for sustainable management in a tropical tributary of River Ganga, India. Sust. Wat. Resour. Man., 8 (5): 1–11.

Das, S. C. S., Khan, A., Alam, A., Dubey, V. K. and Joshi, K. D. 2020. Piscine diversity, community structure and distributional patterns of the west Ramganga River: a mid-Himalayan tributary of river Ganga. Indian J. Anim. Sci. 90 (1): 109–115.

Debnath, D., Saud, B. J., Bhattacharjya, B. K., Yengkokpam, S. and Yadav, A. K. 2015. Perceived and probable impact of climate change on fisheries ecology of River Brahmaputra in Assam, India. Fishing Chimes 34 (12): 48–51.

Duncan, D. B. 1995. Multiple range and multiple F tests. Biometrics, 11(1): 1–42.

Gillson, J., Suthers, I. and Scandol, J. 2012. Effects of flood and drought events on multi-species, multi-method estuarine and coastal fisheries in eastern Australia. Fisheries Manag. Ecol., 19 (1): 54–68.

Grubh, A. R. and Winemiller, K. O. 2018. Spatiotemporal variation in wetland fish assemblages in the Western Ghats region of India. Knowl. Manag. Aquat. Ecosyst., 419: 35.

Jha, D. N., Alam, A., Das, S. C. S., Thakur, V. R., Kumar, J., Gupta, M., Srivastava, R. S. and Das, B. K. 2020. Chronological variation in landing of Indian Major Carp (IMC) of Ganga River. World Water Policy, 6 (1): 142–151.

Jha, D. N., Joshi, K. D. and Tyagi, R. K. 2017. Declined commercial catch of Gangetic Indian major carps at Allahabad. J. Inland Fish. Soc. India, 49 (1): 11–14.

Jhingran, V. G. 1975. Fish and fisheries of India. Hindustan Publishing Corporation, New Delhi, India, 954 pp.

Joshi, K. D., Das, S. C. S., Pathak, R. K., Khan, A., Sarkar, U. K. and Roy. K. 2018. Pattern of reproductive biology of endangered Golden mahseer Tor putitora (Hamilton, 1822) with special reference to regional climate change implication on breeding phenology from lesser Himalayan region. India. J. Appl. Anim. Res., 46 (1): 1289–1295.

Joshi, K. D., Jha, D. N., Alam, A., Das, S. C. S., Srivastava, S. K. and Kumar, V. 2014. Massive invasion of resilient exotic fishes in the river Ganga: A case study at Allahabad stretch. J. Inland Fish. Soc. India, 46 (1): 92–95.

Motwani, M. P., Jayram, K. C. and Sehgal, K. L. 1962. Fish and fisheries of the Brahmaputra River system, Assam. Fish fauna with observations on their zoo-geographical distribution. Trop. Ecol., 3 (1&2): 17–43.

Naskar, M., Chandra, G., Sahu, S. K. and Raman, R. K. 2017. A modeling framework to quantify the influence of hydrology on the abundance of a migratory Indian Shad, the Tenualosa ilisha. N. Am. J. Fish. Manage. 37 (6): 1208–1219.

Raman, R. K., Mohanty, S. K., Bhatta, K. S., Karna, S. K., Sahoo, A. K., Mohanty, B. P. and Das, B. K. 2018. Time series forecasting model for fisheries in Chilika lagoon (a Ramsar site, 1981), Odisha, India: a case study. Wetl. Ecol. Manag., 26 (4): 677–687.

Raman, R. K., Naskar, M., Sahu, S. K., Chandra, G. and Das, B. K. 2020. A Multispecies modelling approach to assess the influence of hydrological regime on commercial fisheries in a tropical river–estuary system. Reg. Stud. Mar. Sci., 34: 101035.

Sarker, M. N., Naser, M. N., Uddin, M. S., Das, N. N. and Humayun, M. 2019. On the management of single fish species of Hilsa shad (Tenualosa ilisha) resources of Bangladesh. Bangladesh J. Zool., 47 (1): 173–183.

Sathianandan, T. V., Kuriakose, S., Mini, K. G., George, G. and Zacharia, P. U. 2016. Trends in abundance of marine fishery resources in India examined through dynamic factor analysis. Indian J. Fish., 63 (2): 19–23.

Sugunan, V. V. and Bhattacharjya, B.K 2000. Ecology and fisheries of beels in Assam. ICAR-CIFRI, Barrackpore, India, 81 pp.

Tyagi, R. K. and Mandal, S.K. 2008. Sampling methodologies for estimation of inland fish catch in India. ICAR-CIFRI, Barrackpore, India, 71 pp.

Vass, K. K., Das, M. K., Srivastava, P. K. and Dey, S. 2009. Assessing the impact of climate change on inland fisheries in River Ganga and its plains in India. Aquat. Ecosyst. Health Manag., 12 (2): 138–151.

Vass, K. K. and Moza, U. 2011. Riverine Fisheries, In: Handbook of Fisheries and Aquaculture. Indian Council of Agricultural Research, New Delhi, pp. 169–207.

Yadav, A. K. 2022. Application of statistical tools for analyzing fish catches in river Brahmaputra with special emphasis on time-series modelling. Ph.D. (Statistics) Thesis, Gauhati University, Guwahati, India, 193 pp.

Yadav, A. K., Borah, S., Das, K. K., Raman, R. K., Das, P., Das and B.K. 2022a. Modeling of Hilsa (Tenualosa ilisha) landings in the lower stretch of River Brahmaputra, Assam, India under time-series framework. ScienceAsia, 48 (3): 367–372.

Yadav, A. K., Borah, S., Bhattacharjya, B. K., Das, K. K. and Das, B. K. 2022b. Decadal Shift in Fish Landings and Catch Composition in Brahmaputra River, Assam, India. Research Biotica, 4 (3): 132–138.

Yadav, V. K., Jahageerdar, S. and Adinarayana, J. 2020. Modeling framework to study the influence of environmental variables for forecasting the quarterly landing of total fish catch and catch of small major pelagic fish of north-west Maharashtra coast of India. Natl. Acad. Sci. Lett., 43 (6): 515–518.

Yadava, Y. S. and Sugunan, V. V. 1992. Factors related to decline of fisheries in the river Brahmaputra. ICAR-CIFRI, Barrackpore, India, 19 pp.

Zar, J. 1975. Biostatistical analysis. Prentice Hall Inc., Eaglewood Cliffs, N.J., 620 pp.

Zuur, A. F., Tuck, I. D. and Bailey, N. 2003. Dynamic factor analysis to estimate common trends in fisheries time series. Can. J. Fish. Aquat. Sci., 60 (5): 542–552.

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Submitted

2024-05-29

Published

2025-05-25

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Yadav, A. K., Rohan Kumar Raman, Simanku Borah, Dharm Nath Jha, Malay Naskar, Shyamal Chandra Sukla Das, Kishore Kumar Das, Rakesh Kumar, Sullip Kumar Majhi, & Basanta Kumar Das. (2025). Delineating impact of climatic variable(s) on commercial fish landings in a tropical river through multi-species modelling. Indian Journal of Fisheries, 72(1). https://doi.org/10.21077/ijf.2025.72.1.152167-01
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