Oreochromis ndalalani

(Seegers & Tichy, 1999)

Formerly known as Alcolapia ndalalani.

IUCNVULNERABLE · 2006
CARESVULNERABLE
Scientific size2 in5 cm standard length
Temperature73–108 °F23–42 °C
pH9–10.5alkaline
Depth0–3 ft0–1 m
DietAlgae-grazing omnivore (cyanobacterial mats + surface insects)
BreedingMaternal mouthbroodersmall (congener A. alcalica: ~6-8 fry early, 20+ when mature)
Sexual dimorphismYesBreeding males develop bright iridescent nuptial coloration; females and non-territorial males stay plain and sandy. Male colour, with head/mouth shape, distinguishes the three Natron species.
PhotographsSee photosGoogle Images →
For the aquarist

Replicate this biotopei

Target water

Temperature73.4–107.6 °F
pH9–10.5alkaline

Recommended tank

Standard aquarium20-gallon “long”30 × 12 × 13 in · 20 gal (76 L)

Aquascape & setup

Match the temperature, pH and hardness figures above and keep them steady — for most cichlids stability beats hitting an exact target.

Recreate the structure of its home water: shelter and broken sight-lines for a territorial fish, open water for a roaming one. Choose substrate and décor to mirror the habitat rather than to decorate the tank.

Oreochromis ndalalani, the narrow-mouthed Natron tilapia, is a tiny soda-lake cichlid found only in Lake Natron in northern Tanzania — one of the harshest waters on Earth that still holds fish. It is the smallest of the three Alcolapia that share the lake's spring-fed fringe, living alongside Alcolapia alcalica and Alcolapia latilabris in a young flock that split into separate species in well under ten thousand years. Its relatively narrow, downturned mouth gives it both its name and its living: it grazes blue-green algae and snaps insects from the surface in the upstream, rockier reaches of caustic hot springs where the water can run to pH 10 and beyond. Lothar Seegers and Herbert Tichy described it in 1999. It stands as a case study in fast cichlid evolution — these little fish are the only vertebrates that manage to live there at all.

What's in the name

Oreochromis ndalalanial-koh-LAY-pee-ah n-dah-lah-LAH-nee

Named after a placeThe epithet is a place name (usually the type locality), used as the species name.
Alcolapia
  • alco-otherfrom 'alkali' (ultimately Arabic al-qalī, the calcined ashes of saltwort), for the highly alkaline soda-lake habitat of these fish
  • -lapiaotherfrom tilapia, the tilapiine cichlids; the genus was proposed as a subgenus of Tilapia by Thys van den Audenaerde in 1969
ndalalani
  • ndalalaniothera toponym for the Ndalalani area at Lake Natron; from the Maasai language, meaning 'area with two streams' — for the two streams that enter the Southern Lagoon of Lake Natron, where the species is endemic

Name history

  1. 1999Described by Seegers & Tichy as Alcolapia ndalalani.
  2. Later moved to Oreochromis — the parentheses around the author signal that reassignment.
  3. Valid today as Oreochromis ndalalani (Seegers & Tichy, 1999).

Taxonomy & naming

Lothar Seegers and Herbert Tichy described Oreochromis ndalalani in 1999, in their monograph on the 'Oreochromis alcalicus flock' of Lakes Natron and Magadi (Ichthyological Exploration of Freshwaters 10: 97–146) — the same paper that named its lake-mate Alcolapia latilabris. The type locality is Olomotony, a spring-fed creek feeding the southern affluent of the Southern Lagoon of Lake Natron, north of the Ol Doinyo Lengai volcano; the holotype (ZMB 32883) is held at the Museum für Naturkunde in Berlin. Thys van den Audenaerde erected the genus Alcolapia in 1969 for the alkaline-lake tilapias, first as a subgenus of Tilapia and later treated under Oreochromis; Seegers and Tichy's revision raised Alcolapia to full genus rank and split the Natron fish into distinct species rather than variants of one. Much of the molecular and behavioural literature follows that elevation, but the name is genuinely unsettled: Eschmeyer's Catalog of Fishes and FishBase still list the species as Oreochromis ndalalani, sinking Alcolapia back into Oreochromis. The four Alcolapia form a tight, very recently diverged clade — Alcolapia alcalica, Alcolapia latilabris and Oreochromis ndalalani in Lake Natron (Tanzania), and Alcolapia grahami in Lake Magadi (Kenya). All descend from a single ancestor stranded when a larger Rift-Valley palaeolake, Orolonga, contracted and split into the present soda lakes; the Magadi–Natron split is dated to roughly 8,000 years ago, and the radiation within Natron may be barely younger, making these among the most recently evolved fishes known.

Morphology

This is the smallest member of its genus. FishBase and the original description give a maximum of about 2 in standard length for a torpedo-shaped, slender little fish. The fins run to 13–14 dorsal spines with 9–12 soft rays, and 3–4 anal spines with 9–11 soft rays. The one character that names the fish and sets it apart at a glance is its mouth: Oreochromis ndalalani has a relatively narrow, downturned mouth, unlike the broad, thick-lipped mouth of Alcolapia latilabris or the more terminal mouth of Alcolapia alcalica. These differences in head and mouth shape are thought to track a fine-scale carve-up of the algal-grazing niche among the three species. Sexual dimorphism is pronounced in breeding condition: territorial males take on bright nuptial dress with iridescent markings, while females and non-territorial males stay plainer and sandy-coloured. That nuptial colour, together with head and mouth shape, is one of the main characters used to separate the three Natron species — and, as it turns out, one the females themselves use when choosing a mate.

Habitat

Oreochromis ndalalani is endemic to the catchment of Lake Natron, a shallow endorheic soda lake in the Gregory Rift of northern Tanzania, fed by hot springs and the Ewaso Ng'iro drainage and ringed by trona (sodium-carbonate) salt flats. It does not live in the open lake — the central brine is lethal — but is restricted to springs and some spring-fed creeks near the southern and south-eastern shores. Within that narrow band it favours the upstream sections and rockier ground, where Alcolapia latilabris and especially Alcolapia alcalica (which prefers downstream, fine-grained substrates) are less dominant; this micro-distributional sorting is part of how the three species coexist. The water chemistry here is among the most extreme any fish tolerates. Lakes Natron and Magadi run at a pH around 10, and locally higher, with salinity approaching ten percent and water saturated in sodium carbonate and bicarbonate; the marginal streams and hot springs are typically very shallow, often less than a metre deep. Volcanic fissures vent gas and heat that can drive spring water past 104 °F, and conditions swing violently through the day — hot, hypersaline, strongly alkaline, and subject to extremes of dissolved oxygen and ultraviolet exposure. Alcolapia are the only fishes in these lakes, carrying physiological adaptations to pH, temperature, salinity, oxygen and UV that no other cichlids possess; the Magadi relative Alcolapia grahami, for one, is among the very few teleosts to excrete its nitrogenous waste as urea rather than ammonia — an answer to water too alkaline to dump ammonia into.

Feeding

Oreochromis ndalalani is an omnivore that lives largely on the dense mats of blue-green algae (cyanobacteria) coating the substrate of its spring habitats, nibbling stones and gravel to scrape them clean. It also takes insects from the water surface — a slightly more animal-leaning diet than its strictly mat-grazing congeners, reflected in a FishBase trophic level around 3.2. In the soda lakes this cyanobacterial mat is the base of an unusually short and productive food web: extreme conditions exclude competitors and predators, so the algae flourishing in the warm, alkaline, nutrient-rich water feed both the cichlids and the vast flocks of lesser flamingos that breed at Natron. The best feeding can demand a dangerous strategy. Around heat-releasing fissures the algal mats grow thickest, and the fish dart into near-scalding water to tear off a mouthful before retreating to cooler shallows. The narrow, downturned mouth of Oreochromis ndalalani is a grazing-and-snatching tool suited to its rockier upstream haunts, and the split in mouth and head shape across the three Natron species reads as evidence that each works a slightly different version of the herbivorous niche.

Mating

Sexual selection appears strong in Alcolapia: populations reach high density, breeding males are conspicuously coloured, and males gather to display on leks — all classic predictors of intense competition for mates. Territorial males defend small spawning sites among rocks in the shallow spring water and court passing females from them. Because the three Natron species spawn side by side, female mate choice is the main barrier keeping them distinct. Experimental work on the flock (Lawson and colleagues, 2023) found courtship and paternity to be broadly assortative — fish tend to mate within their own species — but the barrier is leaky and uneven. In three-way Natron choice trials, Oreochromis ndalalani produced about 59 percent conspecific offspring, a preference that fell just short of statistical significance and placed its reproductive isolation between the stronger Alcolapia latilabris and the weaker Alcolapia alcalica. Across the three-way experiment as a whole, roughly 29 percent of offspring were hybrids — a striking figure given how recently these species split, and how leaky the barriers between them remain. Differences in male nuptial colour are thought to be a principal cue females use to mate within their own kind.

Breeding

Oreochromis ndalalani is a maternal (ovophilic) mouthbrooder, like its tilapiine relatives. A territorial male defends a spawning site among rocks in shallow water and courts a ripe female there; she lays her eggs, takes them into her mouth, and broods the developing clutch herself while the male returns to his territory, after which maternal care is brief. Species-specific breeding data for Oreochromis ndalalani are thin, but its congeners fill in the picture. In the closely related, similarly small Alcolapia alcalica, early clutches are very small — six to eight fry — and grow to roughly twenty or more as females mature, with the eggs incubated in the mouth for up to about eighteen days before the fry are released; Magadi's Alcolapia grahami spawns on lekking grounds, the male building a stepped central bower ringed by satellite pits. A very small body size, high reproductive turnover — FishBase rates the species as highly resilient, with a minimum population doubling time under fifteen months — and a stable, year-round warm environment together let the flock sustain dense populations despite the brutal habitat.

In the aquarium

Oreochromis ndalalani is not an aquarium fish in any practical sense, and the honest framing is that it should not be one. It is a narrow-range extremophile endemic to a handful of hot springs on the fringe of a Tanzanian soda lake, and the chemistry that sustains it cannot be built by stacking aquarium buffers.

Water: pH 9–10.5, sodium-carbonate-saturated, ambient temperatures from around 90 °F up to 108–109 °F in the shallowest spring channels, and salinities approaching those of dilute seawater — conditions no home tank reproduces.

Supply: there is none. Tanzania restricts collection from Lake Natron, the IUCN lists the species as Vulnerable on the strength of its pinpoint range, and the population size is unknown. To the describing authors' knowledge Oreochromis ndalalani has never been established in any private or public collection, and no husbandry literature for it exists.

The genus as a whole is a slightly more hopeful story. The closely related Alcolapia alcalica has been bred in captivity by a few specialist hobbyists — most fully documented by Greg Steeves in Cichlid News (January 2014) — using hard, strongly alkaline tap water dosed with extra sodium bicarbonate and carbonate to approximate soda-lake chemistry. Steeves kept his fish at around 82–86 °F, well below the springs' daytime maxima but within a range the fish tolerated. That a congener has proven manageable matters for conservation, since ex-situ colonies could in principle be a safety net — but that account concerns Alcolapia alcalica, not Oreochromis ndalalani, and extrapolating between the two calls for caution. Anyone drawn to this group for the right reasons — genuine interest in East African extremophile biology, or ex-situ conservation — should seek out experienced keepers of Alcolapia alcalica first, and approach the relevant institutions before pursuing any Natron material.

Conservation

The IUCN Red List assesses Oreochromis ndalalani (as Oreochromis ndalalani) as Vulnerable under criterion D2, assessed on 31 January 2006 by Hanssens and Snoeks; the population trend is listed as unknown and the assessment is flagged as needing updating. The listing rests entirely on the species' extreme range restriction: it is known only from springs and a few spring-fed creeks near the southern and south-eastern shores of Lake Natron, and such a pinpoint distribution makes it acutely vulnerable to local habitat degradation and to chance events. The wider threat to Natron's endemic life is well documented — recurring proposals for a soda-ash extraction plant on the lake, along with upstream water abstraction and hydropower on the feeder rivers, have drawn international concern because they could alter the lake's delicate hydrology and chemistry, the very conditions that both the cichlids and the world's most important lesser-flamingo breeding site depend on. As a microendemic confined to a handful of springs, Oreochromis ndalalani has essentially nowhere to retreat if those springs are degraded. There is no CITES listing. More encouragingly, captive husbandry of the genus has proven feasible — hobbyists maintain and breed the related Alcolapia alcalica in ordinary alkaline tap water — which suggests an ex-situ safeguard is at least conceivable for these otherwise irreplaceable fish.

Sources

  1. Eschmeyer's Catalog of Fishes — Oreochromis (Alcolapia) ndalalani Seegers & Tichy 1999 (species record, type data)
  2. FishBase — Oreochromis ndalalani (Narrow-mouthed Natron tilapia)
  3. IUCN Red List — Oreochromis ndalalani (Hanssens & Snoeks 2006; VU D2)
  4. GBIF — Alcolapia ndalalani (Seegers & Tichy, 1999)
  5. The ETYFish Project — Cichlidae (Pseudocrenilabrinae): Alcolapia / ndalalani etymology
  6. Seegers, L. & Tichy, H. (1999) — 'The Oreochromis alcalicus flock (Teleostei: Cichlidae) from Lakes Natron and Magadi', Ichthyol. Explor. Freshwaters 10(2): 97–146 (original description)
  7. Lawson et al. (2023) — 'Sympatric and allopatric Alcolapia soda lake cichlid species show similar levels of assortative mating', Frontiers in Ecology and Evolution 11: 1150083
  8. Ford et al. (2016) — 'Niche divergence facilitated by fine-scale ecological partitioning in a recent cichlid fish adaptive radiation' (Alcolapia, Lake Natron)
  9. Wilson et al. (2004) — 'Discordance between genetic structure and morphological, ecological, and physiological adaptation in Lake Magadi/Natron tilapia', Physiological and Biochemical Zoology 77
  10. Wood et al. (1989) — 'Ammonia and urea dynamics in the Lake Magadi tilapia, a ureotelic teleost adapted to an extremely alkaline environment', Respiration Physiology 77: 1–20
  11. Walsh et al. (2001) — 'Physiological and molecular characterization of urea transport by the gills of the Lake Magadi tilapia (Alcolapia grahami)', J. Exp. Biol. 204: 509–520
  12. Lawson, A. (2021) — 'The generation of novel phenotypes in a young radiation' (PhD thesis, University of Sheffield; Alcolapia of Natron/Magadi)
  13. Steeves, G. (2014) — 'Spawning the Soda Cichlid Alcolapia alcalicus', Cichlid News (Jan 2014)
  14. Genner, M.J., Turner, G.F. & Ngatunga, B.P. (2018) — A Guide to the Tilapia Fishes of Tanzania
  15. iNaturalist — Ndalalani Tilapia (Alcolapia / Oreochromis ndalalani)

Last reviewed 2026-06-07.

How to cite

Aquarist Atlas (2026). Oreochromis ndalalani. Aquarist Atlas. https://www.aquaristatlas.com/species/oreochromis-ndalalani/

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