Multifaceted Linkages among Eco-Climatic Factors, Plankton Abundance, and Gonadal Maturation of Hilsa Shad, Tenualosa ilisha, Populations in Bangladesh

Author:

Shohan Mobin Hossain1ORCID,Siddique Mohammad Abu Baker2,Mahalder Balaram1,Haque Mohammad Mahfujul1ORCID,Goswami Chayon3,Ahmed Md. Borhan Uddin2ORCID,Alam Mohammad Ashraful4,Bashar Md. Abul4,Mahmud Yahia5,Chowdhury Mahamudul Alam6,Hasan Md. Mahmudul1,Ahammad A. K. Shakur2ORCID

Affiliation:

1. Department of Aquaculture, Bangladesh Agricultural University, Mymensingh 2202, Bangladesh

2. Department of Fisheries Biology and Genetics, Bangladesh Agricultural University, Mymensingh 2202, Bangladesh

3. Department of Biochemistry and Molecular Biology, Bangladesh Agricultural University, Mymensingh 2202, Bangladesh

4. Bangladesh Fisheries Research Institute, Riverine Station, Chandpur 3602, Bangladesh

5. Bangladesh Fisheries Research Institute, Freshwater Station, Mymensingh 2201, Bangladesh

6. Institute of Marine Sciences, University of Chittagong, Chittagong 4331, Bangladesh

Abstract

An integrated multivariate approach was applied to gain a deeper understanding of the feeding biology of hilsa shad, Tenualosa ilisha, collected from six different aquatic habitats across Bangladesh. This approach involved linking climatic factors, ecological factors, plankton abundance in water, reproductive traits, and plankton ingestion data. Climatic data were obtained from the National Oceanic and Atmospheric Administration (NOAA) and Climate Data Online (CDO) databases on a monthly basis. Water quality parameters were observed on-site at various sampling sites. Plankton data from water bodies and hilsa guts were collected monthly from the study areas and analyzed in the laboratory. The results obtained were averaged for each month. The correlation tests, multivariate approaches, cluster analyses, and regression analyses revealed that the gonadosomatic index was primarily influenced by climatic factors, the abundance of ingested gut plankton, and heir compositions. The analysis of selectivity indices confirmed that plankton preferentially ingested selective taxa. Thirteen plankton groups were identified in the water column of six different hilsa habitats. The dominant phytoplankton groups were Bacillariophyceae (34–53%), Chlorophyceae (31–50%), Cyanophyceae (4–8%), and Euglenophyceae (1–3%). Additionally, Copepoda, Rotifera, and Cladocera were the most numerous zooplankton groups. Hilsa shad primarily consumed Bacillariophyceae (38–57%), Chlorophyceae (35–53%), and Cyanophyceae (4–6%). However, they also exhibited selective ingestion of higher quantities of Bacillariophyceae and Chlorophyceae to fulfill specific and unique metabolic needs. Cluster analysis revealed the variability of phytoplankton and zooplankton abundance in water and gut in relation to diverse locations. Combining all the datasets, a principal component analysis (PCA) was applied. The first two principal components explained more than 54% of the variability. The first component explained the association between the gonadosomatic index and eco-climatic factors, while the second component extracted the cluster of ingested gut plankton in relation to salinity and pH. Pearson’s correlations and linear regression analyses showed that the number of gut plankton had a positive influence on the gonadosomatic index (GSI). Finally, the outcomes from these extensive datasets have provided a better understanding of the selective feeding behavior and the influence of feeding biology on the gonadal maturation of T. ilisha. This understanding is likely to be useful for maintaining and improving the growth and productivity of the existing production systems for this transboundary species.

Funder

Bangladesh Fisheries Research Institute (BFRI).

Publisher

MDPI AG

Reference140 articles.

1. DoF (2022). National Fish Week Compendium, Department of Fisheries, Ministry of Fisheries and Livestock. (In Bengali).

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3. Islam, M.M., Islam, N., Habib, A., and Mozumder, M.M.H. (2020). Climate change impacts on a tropical fishery ecosystem: Implications and societal responses. Sustainability, 12.

4. Tropical hilsa shad (Tenualosa ilisha): Biology, fishery and management;Hossain;Fish Fish.,2019

5. Hilsa shad (Tenualosa ilisha): A review of its biology, fishery, and conservation status in Bangladesh;Almukhtar;Rev. Fish. Sci. Aquac.,2016

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