Rohu: India's Most Beloved Freshwater Fish Has a Surprisingly Complex Role in River Ecosystems
Aishwarya Kapoor | Times Life Bureau | Aug 09, 2026, 07:45 IST
Rohu: India's Most Beloved Freshwater Fish Has a Surprisingly Complex Role in River Ecosystems
Image credit : Times Life Bureau
Rohu is on more Indian plates than almost any other fish, steamed, curried, fried in mustard oil across Bengal, Bihar, and Odisha. But in the river, this species does something most people never consider: it actively shapes aquatic biodiversity. Understanding what rohu does upstream changes how you see what arrives on your plate.
The fish everyone eats, almost nobody studies
What gets lost in that framing is the biology. Rohu is a column feeder, it occupies the middle water layer of a river and feeds primarily on phytoplankton, zooplankton, decaying organic matter, and submerged vegetation. In a healthy river system, this feeding behaviour performs a function closer to maintenance than mere survival. By grazing on algal blooms and processing decomposing plant material, rohu participates in nutrient cycling in ways that keep the water column from tipping into eutrophication, the oxygen-depleting algal excess that suffocates other aquatic life.
What rohu actually does in a river
Rohu also migrates. Unlike pond-farmed populations, wild rohu in rivers like the Ganga, Ken, and Chambal undertake seasonal upstream migrations to spawn in fast-flowing, well-oxygenated reaches. These migrations are triggered by the monsoon rise in water level and temperature. Spawning aggregations of rohu historically drew massive seasonal fisheries, the hilsa gets the poetry, but rohu fed the interior. The eggs and larvae that drift downstream after spawning become food for smaller fish and invertebrates, adding a pulse of nutrition to the river at a time when monsoon turbidity has already disrupted other food sources.
The pressure on wild populations
Pollution compounds this. Rohu is sensitive to dissolved oxygen levels. A 2019 study published in the journal Aquaculture Reports examined rohu physiology under hypoxic conditions and found significant stress responses at dissolved oxygen levels below 3 mg/L, a threshold regularly breached in stretches of the Yamuna and lower Ganga during summer. The fish that survives in a pond at high stocking density is not the same organism as the one navigating a degraded river reach. Aquaculture has kept rohu abundant on the plate while masking how much pressure wild stocks are actually under.
Why the pond version isn't a substitute
The IMC polyculture model, where rohu, catla, and mrigal are stocked together to exploit different feeding layers of the same pond, is itself a replication of the niche partitioning those species perform in wild river systems. Farmers arrived at this combination through observation long before the ecology was formally described. The system works in ponds precisely because it mimics something the river was already doing.
What this means for the fish on your plate
Rohu's presence in a river is not incidental to the river's health. It is part of how the river processes itself. The fish on every Indian plate arrived through a supply chain that has quietly substituted farmed abundance for wild function, and the river has not been compensated for the trade.