Long-term dynamics of breeding waterbirds in relation to habitat structures in a tropical irrigation wetland: evidence from Vettangudi Bird Sanctuary, Tamil Nadu, India

Authors

  • H. Maitreyi Annamalai University image/svg+xml
  • N. Raveendran Iragukal Amritha Nature Trust, 61, Ramachandra Thadaga Street, Thirumangalam, Madurai, Tamil Nadu 625706, India.
  • Reshmi Vijayan Department of Zoology, BJM Government College, Chavara, Kollam, Kerala 691583, India.
  • H. Byju Centre of Advanced Study in Marine Biology, Annamalai University, Parangipettai, Tamil Nadu 608502, India. https://orcid.org/0000-0002-6902-8023

DOI:

https://doi.org/10.11609/jott.10640.18.9.29583-29595

Keywords:

Colonial nesting, conservation management, habitat change, heronry, irrigation tanks, land use land cover, LULC, protected area, Sivagangai, wetland ecology

Abstract

Wetlands are critical habitats for breeding waterbirds, yet many are undergoing rapid ecological change due to hydrological alteration, land-use changes, and increasing anthropogenic pressures. We assessed long-term changes in breeding waterbird assemblages in Vettangudi Bird Sanctuary, an irrigation tank in Tamil Nadu, using data from eight breeding seasons (2012–2026). Total breeding waterbird abundance showed high interannual variability with no significant long-term trend. Nest abundance declined over time, from 396 nests in 2012–13 to as low as 163 in 2018–19, with only partial recovery to 190 in 2025–26. Breeding species richness declined, from 11 nesting species in 2016–17 to three species in 2025–26. The breeding community was dominated by Asian Openbill and Black-headed Ibis, while several species, like egrets and herons, showed declining trends or zero nesting in later years. In land-use and land-cover (LULC) analysis, water extent showed a significant negative relationship with breeding diversity during nest initiation (August: ρ = −0.74, p = 0.035), while no significant associations were observed during peak nesting (December). Nesting abundance showed a weak positive association with dense vegetation cover in both August (ρ = 0.43, p = 0.30) and December (ρ = 0.52, p = 0.20). Despite recent increases in water extent and vegetation cover, nesting abundance and species richness declined, suggesting that habitat extent alone does not determine breeding suitability. The observed declines are likely linked to changes in habitat quality, nesting substrate availability, particularly the removal of mature Parkinsonia aculeata trees, coupled with the increasing dominance of Neltuma juliflora. Hence, prioritising targeted conservation, long-term monitoring and management of stable hydrological conditions and nesting trees, and minimising disturbance during the breeding period, are key to sustaining breeding waterbird populations in such vulnerable, human-influenced wetlands.

References

Bibby, C.J. et al. (2000). Bird Census Techniques, 2nd Edition. Academic Press, 302 pp.

BirdLife International (2026). The World Database of Key Biodiversity Areas. www.keybiodiversityareas.org. Accessed on 20.iv.2026.

Bray, J.R. & J.T. Curtis (1957). An ordination of the upland forest communities of southern Wisconsin. Ecological Monographs 27(4): 325–349. https://doi.org/10.2307/1942268

Byju, H. et al. (2023a). A checklist of the avifauna of Samanatham tank, Madurai, Tamil Nadu, India. Journal of Threatened Taxa 15(9): 23857–23869. https://doi.org/10.11609/jott.8419.15.9.23857-23869

Byju, H. et al. (2023b). An updated checklist of avifauna from Melselvanoor-Keelselvanoor Bird Sanctuary, Ramanathapuram, Tamil Nadu, India. Advances in Zoology and Botany 11(3): 181–193. https://doi.org/10.13189/azb.2023.110304

Byju, H. et al. (2024). Avifaunal diversity assessment and conservation significance of Therthangal Bird Sanctuary, Ramanathapuram, Tamil Nadu: insights about breeding waterbirds. Journal of Threatened Taxa 16(9): 25802–25815. https://doi.org/10.11609/jott.8999.16.9.25802-25815

Byju, H. et al. (2025a). Disappearing colonies: temporal decline in abundance and nesting of waterbirds in a key Indian wetland. Wetlands Ecology and Management 33(4): 47. https://doi.org/10.1007/s11273-025-10067-y

Byju, H. et al. (2025b). The avifauna of Ramanathapuram, Tamil Nadu along the Southeast coast of India: waterbird assessments and conservation implications across key sanctuaries and Ramsar sites. PeerJ 13: e18899. https://doi.org/10.7717/peerj.18899

Byju, H. et al. (2025c). Diverging roles of natural and artificial lagoons in supporting shorebird communities in the Gulf of Mannar, southeast coast of India. Journal of Coastal Conservation 29: 1–15. https://doi.org/10.1007/s11852-025-01163-5

Byju, H. et al. (2025d). Avifaunal diversity and conservation status of waterbirds in Pillaimadam Lagoon, Palk Bay, India. Journal of Threatened Taxa 17(4): 26789–26802. https://doi.org/10.11609/jott.9432.17.4.26789-26802

Chandrasekaran, S. et al. (2014). Impact of Prosopis juliflora on nesting success of breeding wetland birds at Vettangudi Bird Sanctuary, South India. Current Science 106(5): 676–678.

Charalambous, C. et al. (2024). Temporal variation in habitat quality shapes the distribution–abundance relationship in waterbirds at landscape scale. Ecosphere 15(12): e70088. https://doi.org/10.1002/ecs2.70088

Choi, Y.S. et al. (2007). Foraging habitat preferences of herons and egrets. Journal of Ecology and Environment 30(3): 237–244.

Dodd, M.G. & T.M. Murphy (1995). Accuracy and precision of techniques for counting Great Blue Heron nests. Journal of Wildlife Management 59(4): 667–673. https://doi.org/10.2307/3801942

Frank, S.J.D. et al. (2021). Heronry distribution and site preference dynamics of tree-nesting colonial waterbirds in Tamil Nadu. PeerJ 9: e12256. https://doi.org/10.7717/peerj.12256

Gonzalez, A. & R.J. Fletcher Jr. (2025). Causes of nest failure vary with water depth, nesting substrate, and adverse weather in the endangered wetland-breeding Rostrhamus sociabilis plumbeus (Everglade Snail Kite). Ornithological Applications 127(3): duaf032. https://doi.org/10.1093/ornithapp/duaf032

Hafner, H. (2000). Heron nest site conservation, pp. 201–217. In: Kushlan, J.A. & H. Hafner (eds.). Heron Conservation. Academic Press, San Diego.

Ion, C. et al. (2026). Environmental drivers of waterbird colonies’ dynamic in the Danube Delta Biosphere Reserve under the context of climate and hydrological change. Birds 7(1): 6. https://doi.org/10.3390/birds7010006

Kalam, A. & A.J. Urfi (2008). Foraging behaviour and prey size of the Painted Stork. Journal of Zoology 274: 198–204. https://doi.org/10.1111/j.1469-7998.2007.00374.x

Kendall, M.G. (1975). Rank Correlation Methods. Griffin, London, 280 pp.

Kundu, S. et al. (2024). Wetland degradation and its impacts on livelihoods and sustainable development goals: An overview. Sustainable Production and Consumption 48(6): 419–434. https://doi.org/10.1016/j.spc.2024.05.024

Li, C. et al. (2019). Waterbird communities in subsidence wetlands created by underground coal mining in China: effects of multi-scale environmental and anthropogenic variables. Environmental Conservation 46(1): 67–75. https://doi.org/10.1017/S0376892918000292

Magurran, A.E. (2004). Measuring Biological Diversity. Blackwell Publishing, 272 pp.

Magurran, A.E. & P.A. Henderson (2010). Temporal turnover and the maintenance of diversity in ecological assemblages. Philosophical Transactions of the Royal Society of Britain: Biological Sciences 365(1558): 3611–3620. https://doi.org/10.1098/rstb.2010.0285

Mahesh, M. et al. (2018). Interactive phenomenon of plants and avian diversity in Vettangudi Bird Sanctuary, Southern India. Science International 6(2): 65–70.

Mann, H.B. (1945). Nonparametric tests against trend. Econometrica 13: 245–259.

Mathibalan, T. et al. (2026). Diversity and composition of avian populations in Sivagalai Wetland, Thoothukudi, India. Journal of Experimental Zoology India 29: 965–974. https://doi.org/10.51470/jez.2026.29.1.965

Mott, R. et al. (2023). Measuring habitat quality for waterbirds: a review. Ecology and Evolution 13(4): e9905. https://doi.org/10.1002/ece3.9905

Mundkur, T. et al. (2023). Central Asian Flyway—situation analysis: the status of migratory birds and their habitats and recommendations for their conservation. Report by BirdLife International, Cambridge.

Narwade, R. & S.K. Ukarande (2021). Impact assessment of climate change on hydrological parameters: evaluation of water balance components of a river basin, pp. 123–140. In: Proceedings of the International Conference on Hydraulics, Water Resources and Coastal Engineering.

Pontieri, F. et al. (2025). Remote sensing applied to dynamic landscape: seventy years of change along the southern Adriatic coast. Remote Sensing 17: 3961. https://doi.org/10.3390/rs17243961

R Core Team (2026). R: A language and environment for statistical computing. R Foundation for Statistical Computing. https://www.R-project.org/

Ramamohan, H. & K.K. Rao (2024). Breeding success and mortality rates in Painted Stork (Mycteria leucocephala) at Telineelapuram Bird Protected Area, India. Journal of Asia-Pacific Biodiversity 17(4): 624–630. https://doi.org/10.1016/j.japb.2024.02.004

Rashiba, A.P. et al. (2022). The paradox of shorebird diversity and abundance in the West Coast and East Coast of India: a comparative analysis. Diversity 14: 885. https://doi.org/10.3390/d14100885

Sen, P.K. (1968). Estimates of the regression coefficient based on Kendall’s tau. Journal of the American Statistical Association 63: 1379–1389.

Shannon, C.E. (1948). A mathematical theory of communication. Bell System Technical Journal 27: 379–423.

Sokal, R.R. & C.D. Michener (1958). A statistical method for evaluating systematic relationships. University of Kansas Science Bulletin 38: 1409–1438.

Subramanya, S. (2005). Heronries of Tamil Nadu. Indian Birds 1(6): 126–140.

Venkataraman, C. et al. (2012). Resource partitioning in nesting among waterbirds at Vedanthangal Bird Sanctuary, pp. 403–408. In: Recent Advances in Biodiversity of India. Zoological Survey of India.

Wani, I.N. et al. (2021). Waterbird density and habitat utilisation pattern in Wular Lake, Kashmir, India. Indian Journal of Science and Technology 14: 1545–1553. https://doi.org/10.17485/IJST/v14i19.1781

Wang, G. et al. (2023). Responses of breeding waterbird communities to environmental changes in subsidence wetlands in the North China Plain. Avian Research 14: 100110. https://doi.org/10.1016/j.avrs.2023.100110

Weseloh, D.C. & M.C. Green (2018). Herons of the world symposium: their biology and conservation—an introduction. Waterbirds 41(4): 341–344. https://doi.org/10.1675/063.041.0410

Xie, H. et al. (2019). Industrial rice farming supports fewer waterbirds than traditional farming on Chongming Island, China. Ecological Research 34(2): 286–295. https://doi.org/10.1111/1440-1703.1056

Zar, J.H. (2010). Biostatistical Analysis, 5th Edition. Prentice-Hall/Pearson, Upper Saddle River, 944 pp.

Zhang, P. et al. (2023). Integrating suitable habitat dynamics under typical hydrological regimes as guides for the conservation and restoration of different waterbird groups. Journal of Environmental Management 345: 118451. https://doi.org/10.1016/j.jenvman.2023.118451

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26-09-2026

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