New species of egg-eating snake described from Harenna Forest in Ethiopia

A new species of snake that feeds exclusively on birds’ eggs has been described from the Harenna Forest in Ethiopia, one of the last substantial tracts of natural forest left in the Horn of Africa.

A new species of snake that feeds exclusively on birds’ eggs has been described from the Harenna Forest in Ethiopia, one of the last substantial tracts of natural forest left in the Horn of Africa.

Named Dasypeltis albigularis, or the ‘White-throated Egg-eater’, the species belongs to a remarkable group of harmless African snakes that survive entirely on a diet of eggs, using specially adapted vertebrae in the throat to crack the shell before swallowing.

Male Dasypeltis albigularis sp. nov. from Manyate village, Harenna Forest, Ethiopia. Image credit: Arthur Tiutenko et al., 2026.

It joins around 20 other known species in the genus Dasypeltis, most of which are notoriously difficult to tell apart, since many are uniformly black, brown or grey with few obvious external differences.

The research, published in the open-access journal Herpetozoa, was led by Arthur Tiutenko of Friedrich-Alexander-Universität Erlangen-Nürnberg, together with colleagues at Ludwig-Maximilians-Universität Munich and South Africa’s National Museum in Bloemfontein.

The new species is superficially similar to the so-called Montane Egg-eater, Dasypeltis atra, a black-coloured snake found in forests across East Africa, but genetic analysis of both mitochondrial and nuclear DNA showed the two are as distinct from one another.

The investigation began when Dr Tiutenko acquired a juvenile female snake from a local collaborator in the Harenna Forest:

“I received a juvenile female of an egg-eater that appeared to me to be an already known species, and I started looking for a male to breed it. As she grew to adult size, I noticed morphological differences.”

To test whether those differences reflected a genuine biological distinction, Dr Tiutenko paired the female with a male of the closely related species she resembled:

“I crossed them nevertheless, to see how the offspring would turn out and how her characteristics would be inherited.”

The resulting hybrid offspring displayed a mix of traits from both parents, providing early evidence that the Harenna Forest snake was something new. Confirming the discovery with a formal description ultimately took seven years, drawing on morphological comparisons, DNA sequencing and captive breeding observations.

Dasypeltis albigularis can be distinguished from its relatives by the pale, sometimes bluish-tinged skin visible between its scales and a distinctive white throat and belly – a feature reflected in its scientific name, which means “white-throated” in Latin.

Unlike some of its relatives, it also appears to lack the ability to produce the rasping, hissing sound that many egg-eating snakes use to fend off predators by rubbing their scales together. Females of the new species reach up to 92 cm in length, somewhat smaller than D. atra and its other closest relatives.

A brown morph of Dasypeltis albigularis sp. nov. photographed in Manyate village, Harenna Forest, Ethiopia. Credit: Abdulkadir M. Hussein.

The snake lives in dense forest between 1,500 and 1,700 metres above sea level, in an area whose undergrowth includes wild coffee plants, and feeds on the eggs of tree-nesting birds.

The description of Dasypeltis albigularis adds to a long list of species Dr Tiutenko has helped bring to scientific attention:

“This is my twentieth taxon that I have named and described. I now have five or six species, and one subgenus, in the queue.”

Original study:

Tiutenko A, Heller TL, Bates MF (2026) A new species of ‘black’ egg-eating snake of the genus Dasypeltis Wagler (Squamata, Colubridae, Colubrinae, Boigini). Herpetozoa 39: 343-366. https://doi.org/10.3897/herpetozoa.39.e205043

Understanding Tokay Gecko Development: How Environment and Family Shape Captive Welfare

A recent study published in Herpetozoa offers valuable insights that could transform how we care for these lizards.

Tokay geckos are among the most recognisable and popular reptiles in the pet trade, celebrated for their vibrant colours and vocal nature. Despite their popularity and frequent breeding in captivity, many questions about how their early environment influences their development have remained unanswered. 

A recent study published in the open-access journal Herpetozoa by Dr. Birgit Szabo of the University of Ghent has shed light on these critical factors, offering valuable insights that could transform how we care for these lizards.

When asked about what inspired this investigation, they explained:

“As a very popular pet, Tokay geckos are frequently bred in captivity. It was surprising to me how little we know about very basic environmental factors that can influence development. I am very passionate about improving captive conditions for reptiles and my study provides very important basic data.”

The research focused on both pre-natal factors, such as incubation temperature and humidity, and post-natal factors, specifically whether juveniles are raised in isolation or within a family group. Dr. Szabo monitored sixteen breeding pairs, tracking where females chose to lay their eggs and how the resulting thirty hatchlings grew over their first six months of life.

Captive-bred tokay gecko (Gekko gecko). Image credit: Birgit Szabo.

One of the most remarkable findings involved how temperature influences the sex of the geckos. Traditionally, Tokay geckos are understood to have a genetic sex-determination system with distinct sex chromosomes. However, the study revealed that higher incubation temperatures actually led to a higher proportion of male hatchlings.

Reflecting on this discovery, Dr. Szabo shared:

“I was most surprised about the effect of temperature on sex development. Tokay geckos are reported to possess sex chromosomes. Therefore, I did not expect that temperature would have an effect on sex development.

However, after consulting the literature I found that sex determination is quite labile in lizards, but this is a severely understudied area of research. So, I am quite excited to have found this effect and plan further research on this topic.”

Beyond sex ratios, incubation temperature also significantly affected developmental timing and physical size. Eggs kept at warmer temperatures had a shorter incubation period, yet they produced larger hatchlings with a greater snout-vent length. Interestingly, incubation humidity did not appear to have a noticeable impact on these physical outcomes. 

Female tokay gecko curling around eggs attached to the cork back wall of the enclosure; Male next to one of his offspring; Tank set-up showing shelters on the back wall, branches, life plants and a water bowl. Image credit: Birgit Szabo.

The study also revealed that mother geckos actively chose nesting sites that offered warmer and less humid microclimates compared to other areas in the enclosure, demonstrating a preference for specific nesting conditions.

Managing such a detailed study was no small feat. Dr. Szabo noted,:

“The most challenging aspect was to set up the breeding and treatments after hatching. Tokay geckos are quite large lizards and need lots of space. Coordinating the different treatments under space limitations was quite the challenge.”

After hatching, the geckos were raised either alone or in family groups of varying sizes alongside their parents and siblings. Surprisingly, the post-natal social environment did not affect the young geckos’ growth, size, or body condition. Whether raised in isolation or in a busy family group, the juveniles grew at similar rates, suggesting that captive-bred Tokay geckos are highly adaptable in their early life stages.

Captive-bred tokay gecko (Gekko gecko). Image credit: Birgit Szabo.

These findings have direct implications for reptile husbandry, emphasising the need to provide captive reptiles with choices that replicate natural gradients. Dr Szabo remarked:

“A better understanding of the thermal and humidity requirements and preferences of reptiles is one of the most important aspects of the environment that is often suboptimal in active conditions.

I hope my research will highlight their importance and lead to improved enclosure design in the future.”

Ultimately, this study challenges long-held assumptions about reptile behaviour and social structures, proving that there is much more to these creatures than meets the eye. Dr. Szabo concluded: 

“Reptiles are still viewed as asocial creatures but sociality exists in this animal group. Tokay geckos perform biparental care and protect both eggs and their offspring after hatching. Despite this knowledge, there is still much to learn about their social organisation especially in respect to welfare.”

Captive-bred tokay gecko (Gekko gecko). Videos taken by Dr. Birgit Szabo.

Original source:

Szabo B (2026) The influence of the pre- and post-natal environment on Tokay gecko (Gekko gecko, Squamata, Gekkonidae) development in captivity. Herpetozoa 39: 217-228. https://doi.org/10.3897/herpetozoa.39.e165454