Beyond Tigers: How the Sundarbans' Tidal Mangrove Web Keeps Asia's Largest Forest Alive
Aishwarya Kapoor | Times Life Bureau | Aug 26, 2026, 07:45 IST
Beyond Tigers: How the Sundarbans' Tidal Mangrove Web Keeps Asia's Largest Forest Alive
Image credit : Times Life Bureau
The Sundarbans is famous for its Bengal tigers, but the tidal forest's survival depends on a far stranger cast of species. From mud-skippers that breathe through their skin to estuarine crocodiles that regulate fish populations, the ecology here is a chain where every link is load-bearing. Pull one out, and the whole mangrove system shifts.
The Mud Is the Engine
Sundarbans mangroves belong to species that have solved a genuinely difficult engineering problem. Heritiera fomes, locally called sundari and the tree the forest is named after, grows aerial roots called pneumatophores that spike upward from the waterlogged mud to pull in oxygen. Rhizophora mucronata sends arching prop roots into the silt to anchor itself against tidal surge. These root systems do more than hold the trees up: they trap sediment, slow water velocity, and create the dense mat of organic material that the entire food chain below the canopy depends on.
The biological fact that makes this root architecture critical: mangrove sediment in the Sundarbans holds up to four times the carbon per hectare of a tropical rainforest. That carbon is not stored in the trees, it is stored in the anaerobic mud the roots create and stabilise. Lose the roots, lose the mud structure, and the carbon releases.
The Species Nobody Photographs
Fiddler crabs (Uca species) do something even more structurally important: they aerate the mud. Their burrowing activity, millions of crabs across thousands of hectares, keeps the sediment oxygenated enough for the microbial communities that break down leaf litter. Sundarbans mangroves shed enormous quantities of leaves year-round. Without the fungal and bacterial decomposers working in oxygenated sediment, that litter would accumulate and acidify the soil. The crabs, in effect, are the forest's composting infrastructure.
Horseshoe crabs (Tachypleus gigas) use the Sundarbans shoreline as a breeding ground. Their blood, blue, copper-based, and extraordinarily sensitive to bacterial endotoxins, has been harvested by the biomedical industry for decades to test pharmaceutical sterility. Ecologically, their eggs are a critical food source for migratory shorebirds that stop along the Bengal coast.
The Estuarine Crocodile and What It Actually Does
Crocodile basking sites on mudbanks are consistently used by nesting birds, because the crocodiles' presence deters terrestrial egg predators. Their wallowing creates pools that retain water during dry periods, providing habitat for fish, invertebrates, and amphibians. Their consumption of large fish, catfish, mullet, barramundi, prevents any single species from dominating the estuarine fish community and crashing the prey base below it. This is the classic keystone predator function, and in the Sundarbans it operates alongside, not in competition with, the tiger's terrestrial version of the same role.
The Irrawaddy Dolphin and the Invisible Network
Irrawaddy dolphins engage in cooperative feeding with fishermen in parts of the Bengal delta, a behaviour documented in Myanmar and reportedly observed in the Sundarbans too, where dolphins herd fish toward nets in exchange for access to the catch. Whether this is true mutualism or opportunism is debated. What is not debated is that dolphin predation on fish schools in the river channels influences where those schools move, which in turn affects which areas of the forest receive nutrient input from fish waste and decomposing fish. The dolphins are, in a real sense, redistributing fertility across the waterway system.
Gangetic river dolphins (Platanista gangetica) also enter the Sundarbans through the northern river channels. They are functionally blind, their eyes have no lens, and navigate entirely by echolocation. They feed on bottom-dwelling fish and invertebrates, turning up sediment in the process and releasing nutrients that would otherwise remain locked in the riverbed.
Why the Tiger Is a Symptom, Not a Cause
The tiger's ecological function is real: it controls spotted deer (Axis axis) and wild boar populations that would otherwise overgraze the forest understorey. But the tiger is the visible tip of a system that was already extraordinarily complex before the first tiger walked into it. The tidal cycle built the mud. The mud fed the mangroves. The mangroves created the root architecture. The root architecture sheltered the fish nurseries. The fish nurseries fed the dolphins, the crocodiles, the fishing cats, the otters, and the birds. The tiger arrived into a system already running.
The Sundarbans does not function because it has tigers. The tigers function because the Sundarbans has everything else. That distinction matters enormously for conservation: protect only the charismatic apex predator and you are protecting the flag while the country dissolves beneath it.