New 🐟 Mercury Safety Guide & Omega-3 Rankings Updated for 2026. View Omega-3 Rankings →

🔴

Endangered Fish Species

Full IUCN Red List data for threatened fish species — from Vulnerable to Extinct in the Wild, with population trends and conservation actions.

927
Total Species
322
Critically Endangered
566
Endangered
1
Vulnerable
Filtered 💧 Freshwater ✕ Clear all
Mary River cod
Maccullochella mariensis
EN 💧 Freshwater Endangered
Mastacembelus Oatesii
Mastacembelus oatesii
EN 💧 Freshwater Endangered
Mbeka
Tropheus annectens
EN 💧 Freshwater Endangered
Melanorivulus Pinima
Melanorivulus pinima
EN 💧 Freshwater Endangered
Micralestes Eburneensis
Micralestes eburneensis
EN 💧 Freshwater Endangered
Micropanchax Bracheti
Micropanchax bracheti
EN 💧 Freshwater Endangered
Minnow-nase
Chondrostoma phoxinus
EN 💧 Freshwater Endangered
Mogurnda Kaifayama
Mogurnda kaifayama
EN 💧 Freshwater Endangered
Mormyrops Oudoti
Mormyrops oudoti
EN 💧 Freshwater Endangered
Moroco
Pseudorasbora pumila
EN 💧 Freshwater Endangered
Mountain molly
Poecilia teresae
EN 💧 Freshwater Endangered
Mugilogobius Cagayanensis
Mugilogobius cagayanensis
EN 💧 Freshwater Endangered
Nannocharax Altus
Nannocharax altus
EN 💧 Freshwater Endangered
Nanochromis Transvestitus
Nanochromis transvestitus
EN 💧 Freshwater Endangered
Neil's grunter
Scortum neili
EN 💧 Freshwater Endangered
Neolamprologus Devosi
Neolamprologus devosi
EN 💧 Freshwater Endangered
Neolamprologus Schreyeni
Neolamprologus schreyeni
EN 💧 Freshwater Endangered
Neolebias Axelrodi
Neolebias axelrodi
EN 💧 Freshwater Endangered
Neolebias Kerguennae
Neolebias kerguennae
EN 💧 Freshwater Endangered
Neolebias Powelli
Neolebias powelli
EN 💧 Freshwater Endangered
Niger tetra
Arnoldichthys spilopterus
EN 💧 Freshwater Endangered
Nilgiri Danio
Devario neilgherriensis
EN 💧 Freshwater Endangered
Northern platyfish
Xiphophorus gordoni
EN 💧 Freshwater Endangered
Nothobranchius Albimarginatus
Nothobranchius albimarginatus
EN 💧 Freshwater Endangered
Nothobranchius Korthausae
Nothobranchius korthausae
EN 💧 Freshwater Endangered
Nothobranchius Polli
Nothobranchius polli
EN 💧 Freshwater Endangered
Nothobranchius Rubripinnis
Nothobranchius rubripinnis
EN 💧 Freshwater Endangered
Nothobranchius Symoensi
Nothobranchius symoensi
EN 💧 Freshwater Endangered
Notoglanidium Akiri
Notoglanidium akiri
EN 💧 Freshwater Endangered
Odontesthes Bicudo
Odontesthes bicudo
EN 💧 Freshwater Endangered
Ohrid gudgeon
Gobio ohridanus
EN 💧 Freshwater Endangered
Ohrid trout
Salmo letnica
EN 💧 Freshwater Endangered
Ompok Binotatus
Ompok binotatus
EN 💧 Freshwater Endangered
Ompok Pluriradiatus
Ompok pluriradiatus
EN 💧 Freshwater Endangered
Opal allotoca
Allotoca dugesii
EN 💧 Freshwater Endangered
Orange-fringed largemouth
Chetia brevis
EN 💧 Freshwater Endangered
Orangefin madtom
Noturus gilberti
EN 💧 Freshwater Endangered
Oreochromis Lepidurus
Oreochromis lepidurus
EN 💧 Freshwater Endangered
Orestias Elegans
Orestias elegans
EN 💧 Freshwater Endangered
Orestias Incae
Orestias incae
EN 💧 Freshwater Endangered
Orestias Robustus
Orestias robustus
EN 💧 Freshwater Endangered
Orestias Taquiri
Orestias taquiri
EN 💧 Freshwater Endangered
Orontes nase
Chondrostoma kinzelbachi
EN 💧 Freshwater Endangered
Orontes spined loach
Cobitis levantina
EN 💧 Freshwater Endangered
Orthochromis Kasuluensis
Orthochromis kasuluensis
EN 💧 Freshwater Endangered
Orthochromis Mazimeroensis
Orthochromis mazimeroensis
EN 💧 Freshwater Endangered
Orthochromis Mosoensis
Orthochromis mosoensis
EN 💧 Freshwater Endangered
Orthochromis Rubrolabialis
Orthochromis rubrolabialis
EN 💧 Freshwater Endangered

Endangered Fish: Understanding the Crisis and the Path to Recovery

Fish were the first vertebrates to evolve on Earth, appearing more than 500 million years ago, long before dinosaurs, birds, or mammals. Today, they comprise more than half of all vertebrate species - over 35,000 known species, with new ones described every year. Yet this ancient, extraordinarily diverse group now faces an extinction crisis unprecedented in the history of life on land or in water. The IUCN Red List currently assesses more fish species as threatened with extinction than any other vertebrate group. Understanding why fish are endangered and what can be done about it is no longer an academic concern - it is one of the defining environmental challenges of the 21st century.

The Scale of the Problem

Current IUCN assessments identify over 3,000 fish species as threatened (Vulnerable, Endangered, or Critically Endangered), with hundreds more listed as Data Deficient - a category that often conceals threatened status in poorly studied species. Freshwater fish are disproportionately at risk: despite covering less than one percent of the Earth's surface, freshwater habitats are home to approximately half of all fish species, and freshwater fish extinction rates far exceed those of marine species. A 2020 global freshwater biodiversity report found that freshwater fish populations had declined by 76% since 1970 - a rate of loss far exceeding declines in terrestrial wildlife over the same period.

Marine fish are not immune. Populations of large commercially targeted species - bluefin tuna, sharks, billfish, groupers - have declined by 90% or more in many regions since pre-industrial fishing began. The Gulf of Mexico red snapper, the North Atlantic cod, and the Mediterranean swordfish all tell similar stories of populations driven to fractions of their former abundance before conservation measures were eventually implemented, often too late to prevent severe economic and ecological consequences.

Why Fish Become Endangered: The Primary Drivers

Overfishing is the dominant direct cause of decline for marine and anadromous species. Industrial fishing fleets using sonar, satellite data, and enormous nets can locate and harvest fish with an efficiency that natural populations cannot sustain. Bycatch - the incidental capture and death of non-target species - kills hundreds of millions of fish annually, affecting sharks, rays, juvenile commercial species, and rare species alike. The United Nations estimates that over one-third of global fish stocks are overexploited, with another 60% fished at maximum sustainable levels leaving almost no buffer for environmental variability.

Habitat destruction is the primary driver for freshwater fish. Rivers dammed for hydropower or irrigation fragment populations and block migration routes critical for species like salmon, shad, and sturgeon. Agricultural runoff carries fertilisers that cause eutrophication - explosive algal growth followed by oxygen depletion that creates dead zones uninhabitable by fish. Deforestation increases erosion, smothering spawning gravel beds with sediment. Urban development paves over riparian areas, raises water temperatures, and increases flash flooding that destroys fish eggs and juveniles.

Invasive species have driven dozens of fish extinctions, particularly in island freshwaters and ecologically isolated lake systems. The introduction of Nile perch to Lake Victoria in the 1950s caused the extinction of more than 200 endemic cichlid species within decades - one of the largest documented extinction events in vertebrate history. Brown trout introduced to streams in New Zealand, Tasmania, and South America eliminated native galaxiid fish from huge portions of their former range. Invasive species interactions - predation, competition, and hybridisation - are now ranked among the top drivers of biodiversity loss globally.

Climate change is an accelerating and increasingly dominant threat. Water temperature rises are shifting species distributions poleward and to greater depths, in some cases faster than populations can adapt or migrate. For cold-water specialists like brook trout, Atlantic salmon, and European grayling, warming rivers are eliminating suitable habitat from the lower portions of their range while the upper portions may offer insufficient food and spawning habitat to maintain viable populations. Ocean acidification - driven by CO₂ absorption by seawater - threatens coral reef ecosystems on which thousands of fish species depend for their habitat structure.

Conservation Successes: Species That Came Back

The news is not uniformly grim. Conservation interventions, when applied adequately and in time, have demonstrated an ability to reverse fish population declines. Atlantic bluefin tuna in the eastern stock showed signs of recovery after international quota reductions agreed through the International Commission for the Conservation of Atlantic Tunas (ICCAT). North Sea herring, once catastrophically overfished, returned to healthy levels after a fishing moratorium allowed population recovery. The coelacanth - a prehistoric fish discovered alive in 1938 and long feared extinct - persists in small populations that are the subject of careful monitoring and protective measures.

Dam removal has produced dramatic results for migratory fish. The removal of the Elwha dams in Washington state restored salmon migration to 100 kilometres of previously blocked river, with salmon observed in headwaters within months of dam removal. European sturgeon restoration programmes are gradually reintroducing hatchery-raised fish to rivers from which they had been absent for decades. These examples demonstrate that fish populations can recover with sufficient commitment and time.

What Individuals Can Do

Consumer choices have real effects on fish populations at scale. Choosing certified sustainable seafood, avoiding species listed as overfished or from destructive fisheries, and reducing overall seafood consumption each contribute to reducing fishing pressure on vulnerable populations. Supporting organisations working on habitat restoration, dam removal, and fisheries management policy creates broader systemic change. Anglers can practice catch-and-release for vulnerable wild populations, report illegal fishing, and participate in citizen science monitoring programmes. The collective impact of millions of small decisions - which fish to order, which candidates to vote for, which companies to support - shapes the regulatory and market environment that fish populations ultimately depend on for their survival.