Showing posts with label phylogeny. Show all posts
Showing posts with label phylogeny. Show all posts

07 September, 2026

New location and DNA barcoding of Euscorpius vailatii from Trizonia Island in Greece)

 


 Konstantinos Kalaentzis and co-workers recently published a new, insular location of Euscorpius vailatii Tropea & Fet, 2015 (Euscorpiidae) from Trizonia Island in Greece. Molcular data was also collect from the species and a phylogenetic analysis is presented.

Abstract:
Euscorpius vailatii Tropea & Fet, 2015 (Scorpiones: Euscorpiidae), originally described from Aitoloakarnania and Fokida (Greece), is herein reported from Trizonia Island in the Gulf of Corinth, representing the first insular record for the species. The examined specimens are consistent with the diagnostic morphology of E. vailatii. The first molecular data for the species are provided, based on both mainland and insular populations. Comparative analyses further highlight the distinctiveness of E. vailatii from geographically close congeners, while phylogenetic results indicate a sister-taxon relationship with E. erymanthius, supporting a Quaternary biogeographic history shaped by the evolution of the Gulf of Corinth system.

Reference:
Kalaentzis K, Frigioni F, Panagiotopoulos A, Tzoras E, Minoudi S, Triantafyllidis A. First insular record and DNA barcoding of Euscorpius vailatii Tropea & Fet, 2015 from Trizonia Island (Fokida, Greece). Euscorpius. 2026;2026(439):1–6. [Open Access]

Family Euscorpiidae 

14 August, 2026

A new species of Janalychas from India

 


Sudheer Kumar Jena and Pratyush Mohapatra have recently published an article describing a new species of Janalychas Kovarik, 2019 (Buthidae) from the Deccan Peninsula in India.

Janalychas fulvus Jena & Mohapatra, 2026

Abstract:
A novel buthid scorpion of the genus Janalychas Kovařík, 2019 is described from the Amrabad Tiger Reserve, Telangana, based on an integrative approach combining morphological and molecular data for South Asian representatives. Morphologically, the new species is most similar to J. farkasi (Kovařík, 1997) from Nepal, but can be distinguished by the presence of a single carina on the mesosomal tergites (vs. three in J. farkasi) and the presence of denticles on sternite V. It can also be readily differentiated from its Indian congeners by a unique combination of morphological traits and its characteristic yellow, patterned coloration.

Reference:
Jena SK, Mohapatra PP. A new species of Janalychas Kovařík, 2019 (Scorpiones: Buthidae) from the Deccan Peninsula, India. Arthropoda Selecta. 2026;35(1):79–95. [Open Access]

Thanks to Victoria for informing me about the new species. 

Family Buthidae 

A new species of Liocheles from Western Himalays, India

 


Virender K. Bhardwaj and co-workers recently described a new species of Liocheles Sundevall, 1833 (Hormuridae) from Western Himalayas in India.

Liocheles gracilipalpus Bhardwaj, Katal, Lalremsanga & Mirza, 2026

Abstract:
Sampling in the Western Himalayas of India led to the discovery of a population of the genus Liocheles Sundevall, 1833, that differes from all Indian congeners. Molecular and morphological data confirmed the distinctiveness of the population, which is here described as a new species. The new species is morphologically similar to L. longimanus (Werner, 1939), from which it differs in the arrangement of trichobothria on external patella and structure of the hemispermatophore. A preliminary molecular phylogeny of the family Hormuridae based on the mitochondrial cytochrome oxidase I gene is presented.

Reference:
Bhardwaj VK, Katal S, Lalremsanga HT, Mirza ZA. A new species of Liocheles Sundevall, 1833 (Scorpiones: Hormuridae) from the Western Himalayas. Euscorpius. 2026(441):1–13. [Open Access]

Family Hormuridae 

31 July, 2026

Three new species of Scorpiops from India

 


Shubhankar Deshpande and co-workers have recently described three new species of Scorpiops Peters, 1861 (Scorpiopidae) from India based on morphological and molecular analysis.

 Scorpiops ketkari Deshpande, Ukale, Bapat, Bastawade, Tang, Gowande & Sulakhe, 2026

 Scorpiops shilavasi Deshpande, Ukale, Bapat, Bastawade, Tang, Gowande & Sulakhe, 2026

 Scorpiops skorupi Deshpande, Ukale, Bapat, Bastawade, Tang, Gowande & Sulakhe, 2026 

Abstract:
The scorpion genus Scorpiops Peters, 1861 exhibits significant diversity and high endemism. Our extensive arachnological surveys, species delimitation analyses and an integrative taxonomic approach revealed three new species of Scorpiops in peninsular India. Furthermore, we tested the phylogenetic placement of Scorpiops pachmarhicus Bastawade, 1992 and give the first description of a male specimen of the species. Additionally, we provide a detailed account of the hemispermatophore morphology in Scorpiops species from the maharashtraensis, satarensis, and tenuicauda clades for the first time.

Reference:
Deshpande S, Ukale S, Bapat S, Bastawade D, Tang V, Gowande G, et al. Beyond morphology alone: species delimitation, hemispermatophore comparisons and comments on the systematic status of Scorpiops Peters, 1861 (Scorpiones: Scorpiopidae) with a description of three new species from peninsular India. Zoologischer Anzeiger. 2026. [Subscription required for full text]

Thanks to Dr. Deshpande for sending me their article!

Family Scorpiopidae 

18 May, 2026

DNA barcoding and distribution of euscorpiid scorpions from Kosovo

 


Donard Geci and co-workers have recently published a study of the little known scorpion fauna of Kosovo. A DNA barcoding together with morphological characters confirmed for the first time the presence of Alpiscorpius dinaricus (Di Caporiacco, 1950) (Euscorpiidae) in Kosovo. Illustrations to facilitate the identification of this species is provided. The distribution of Euscorpius hadzii Caporiacco, 1950 in Kosovo is expanded.

Abstract:
This study presents DNA barcoding data for Alpiscorpius dinaricus (Di Caporiacco) and Euscorpius hadzii Caporiacco. Barcode sequences were compared with publicly available reference data to support species identification, together with the evaluation of diagnostic morphological characters. Alpiscorpius dinaricus is recorded from Kosovo for the first time, representing a new national record and contributing to the knowledge of euscorpiid diversity in the region. Diagnostic illustrations of A. dinaricus are provided to facilitate reliable identification and to support future faunistic, taxonomic, and biogeographic studies. Euscorpius hadzii, previously known only from Prizren district, is now reported also from Bjeshkët e Nemuna Mountains (Western Kosovo).

Reference:
Geci D, Ibrahimi H, Bilalli A, Musliu M, Strohmeier T, Koblmüller S, et al. DNA barcoding of scorpions from Kosovo, with the first record of Alpiscorpius dinaricus (Di Caporiacco) (Scorpiones: Euscorpiidae). Journal of Natural History. 2026;60(21-24):1243–58. [Subscription required for full text]

Family Euscorpiidae 

17 April, 2026

A new species of Euscorpius from Rhodes Island, Greece

 


It has been quiet about European Euscorpiidae for awhile after several decades of many new genera and species from what was originally less than 10 species. Several new species have been described from many of the Greek islands, showing the importance of insular isolation and diversity. 

Konstantinos Kalaentzis and co-workers have recently published an article describing a new species of Euscorpius Thorell, 1876 (Euscorpiidae) from the Greek island Rhodes based on morphological and molecular analysis. 

Euscorpius diagorasi Kalaentzis & Frigioni, 2026

Abstract:
The genus Euscorpius Thorell, 1876 comprises a diverse and taxonomically challenging group of scorpions in the Mediterranean, with Greece representing one of its principal centers of diversity. In this study, we provide an integrative description of Euscorpius diagorasi sp. n., a new species from Rhodes Island, Greece. The new species is described on the basis of adult male and female morphology and mitochondrial COI sequence data. It is a small oligotrichous species characterized by a total length of approximately 21–25 mm, pale yellow to light brown coloration with darker reddish-brown pedipalps, pectinal tooth count of 8 in the male and 7 in the females, Pv = 7–8, Pe-et = 5–6, and a distinct mitochondrial lineage. Phylogenetic analyses based on COI recovered the Rhodian specimens as a strongly supported monophyletic lineage, sister to E. vignai from Karpathos. Species delimitation analyses with BIN assignment, ABGD, and ASAP consistently supported the Rhodes population as a separate molecular unit. Morphologically, the new species differs from E. vignai and other geographically proximate Aegean and Anatolian congeners in a combination of body size, coloration, trichobothrial counts, pectinal tooth counts, carinal development and granulations. The species was found in pine forest habitat beneath the bark of Pinus brutia, suggesting an association with sheltered corticolous microhabitats. The description of E. diagorasi sp. n. adds to the growing evidence of insular diversification in Greek Euscorpius and highlights the still underestimated scorpion diversity of the Dodecanese.

Reference:
Kalaentzis K, Frigioni F, Kaitetzidou E, Iannucci A, riantafyllidis A. An integrative description of Euscorpius diagorasi sp. n. from Rhodes, Greece (Scorpiones: Euscorpiidae). Euscorpius. 2026(428):1–14.

Family Euscorpiidae 

13 April, 2026

On Leiurus nigellus in Saudi Arabia

 


Abdulaziz M. Al-Amri and co-workers recently publised an article with a molecular and morphological analysis of Leiurus nigellus Abu Afifeh, Aloufi & Al-Saraireh, 2023 (Buthidae) in Saudi Arabia. Distribution and habitat are also discussed.

Abstract:
This study documents the first confirmed record of the Buthid scorpion Leiurus nigellus from Jabal Arnan in the Ha’il region, located within the King Salman Bin Abdulaziz Royal Natural Reserve (KSRNR) in the northwestern Kingdom of Saudi Arabia (KSA). This species was originally described by Abu Afifeh, Aloufi & Al-Saraireh (2023). This locality extends the known distribution range of L. nigellus by over 200 km southeast of the type locality in Al-Ula, Al Madinah province. A total of six specimens of L. nigellus were collected during fieldwork conducted between June 2024 and April 2025, including two adult males, one adult female, and three juveniles. The objective of this study was to confirm the taxonomic identity of Leiurus nigellus from a newly discovered locality using morphological examination and mitochondrial DNA analysis and documentation of its known geographic distribution. Adult specimens (one male and one female) were examined using comparative morphometric analysis following standard scorpion taxonomic protocols, confirming diagnostic traits consistent with the original species description. Meanwhile, habitat assessments indicated adaptation to semi-arid rocky and gravel substrates. Molecular analysis was conducted on one adult male using targeted mitochondrial 16S rRNA gene sequencing (Sanger method). Phylogenetic relationships were inferred using neighbor-joining and maximum-parsimony analyses, placing L. nigellus within the Arabian Leiurus clade with bootstrap-supported affinity to Arabian congeners and limited intraspecific divergence. The generated 16S rRNA sequence represents the first molecular record for L. nigellus and has been deposited in GenBank. Sexual dimorphism was evident in morphometric traits, but these differences reflect normal biological variation rather than taxonomic differentiation. The discovery of L. nigellus in northern Saudi Arabia emphasizes the importance of continued faunistic and genetic surveys in underexplored regions, both to refine species distributions and to inform conservation management of specialized desert arachnofauna.

Reference:
Al-Amri AM, Abdulhakeem MA, Alqahtani AR, Al-Malki AM, Shohdi WM. First Record of Leiurus nigellus (Scorpiones: Buthidae) in Northern Saudi Arabia: Molecular and Morphological Insights from Ha’il Region, King Salman Bin Abdulaziz Royal Natural Reserve. Diversity. 2026;18(3). [Open Access]

Family Buthidae 

27 March, 2026

A phylogenetic analysis of the South American genus Urophonius with the description of a new species

 


Andrés Ojanguren-Affilastro and co-workers recently published a phylogenetic analysis of the genus Urophonius Pocock, 1893 (Bothriuridae) distributed in the southern parts of South America. A new high-altitude species from Chile is described. 

Urophonius andinus Ojanguren-Affilastro & Pizarro-Araya, 2026

 Urophonius is special in that most of the species are active during winter. The evolution of this and the physiological adaptions necessary for winter activities are discussed. 

Abstract:
This study presents the first total evidence dated phylogenetic analysis of the scorpion genus Urophonius, integrating 115 morphological characters and five molecular markers (28S, 18S, H3, 16S, COI). Our comprehensive phylogenetic framework provides novel insights into the genus’ diversification timeline and evolutionary processes. Additionally, we described Urophonius andinus n. sp. from the central Chilean Andes, a high-altitude species found at 2400 m.s.a.l., representing the highest elevational record for the genus. This new species is placed within the granulatus species group, characterized by a spring–summer activity period.

Reference:
Ojanguren‐Affilastro AA, Santibáñez‐López CE, Alfaro FM, Ramírez MJ, Iuri HA, Mattoni CI, et al. First total evidence dated phylogeny of the scorpion genus Urophonius (Bothriuridae), with new insights into the transition to winter activity, and the description of the first highland Andean species of the genus. Systematic Entomology. 2026;51(1):e70032. [Subscription required for full text]

Thanks to Victoria for sharing this article!

Family Bothriuridae 

04 March, 2026

A phylogenetic analysis of the ancient Asian scorpion family Pseudochactidae

 


As previously mentioned, the ancient, relictual Asian scorpion family Pseudochactidae Gromov, 1998 is probably one of the most interesting scorpion families in the world. It consist of both of extinct and extant taxa, and the latter is often labeled as "living fossils" due to their unique morphology. 

In a recent article, Lorenzo Prendini and co-workers present a new phylogenetic analysis of the genus with new information about the phylogeny and taxonomy of this fascinating family and its evolution. 

Abstract:
The ancient, relictual Asian scorpion family Pseudochactidae Gromov, 1998, has a disjunct distribution. Five genera and seven species of living pseudochactids are assigned to one epigean subfamily, Pseudochactinae Gromov, 1998, from Central Asia and southern China, and two hypogean subfamilies, Troglokhammouaninae Prendini et al., 2021, and Vietbocapinae Lourenço, 2012, from caves of the Khammouan-Phong Nha-Kẻ Bàng Karst in the northern Annamite (Trường Sơn) Mountains of Laos and Vietnam. The extinct subfamily Chaerilobuthinae Lourenço and Beigel, 2011, comprises one genus and 15 species, hypothesized to be endogean, from mid-Cretaceous Burmese amber. The discovery and uncertainty regarding the phylogenetic placement of Qianxie solegladi Tang, 2022, from South China, together with the discovery that the Cretaceous amber Chaerilobuthinae, from the Burma Terrane, is the sister group of the extant pseudochactid subfamily Vietbocapinae provided an opportunity to revisit the phylogeny and biogeography of Pseudochactidae, and their adaptation to subterranean habitats in Southeast Asia. In the present contribution, pseudochactid phylogeny is reanalyzed using three mitochondrial markers (12S rDNA, 16S rDNA, Cytochrome c Oxidase Subunit I), three nuclear markers (18S rDNA, 28S rDNA, Internal Transcribed Spacer) and 143 morphological characters, for all extant pseudochactid taxa and seven exemplar species of the extinct Chaerilobuthinae. Divergence time and ancestral range estimation are conducted and the evolution of troglomorphic characters investigated to reassess how this lineage of “living fossils” dispersed and diversified. Recent changes to the systematics of Pseudochactidae are confirmed. The four subfamilies, genera, and species were monophyletic with high support and the following scheme of relationships: (Pseudochactinae (Troglokhammouaninae (Chaerilobuthinae + Vietbocapinae))). Phylogenetic analyses, reinforced by a multivariate morphometric analysis and pairwise genetic distances, confirm the validity of the monotypic, epigean Chinese genus, Qianxie Tang, 2022, which formed a monophyletic group with the epigean Central Asian genus, Pseudochactas Gromov, 1998, rather than the hypogean Southeast Asian genus, Troglokhammouanus Lourenço, 2007. Qianxie solegladi is transferred to Pseudochactinae. A revised time tree of Pseudochactidae suggests that the Burmese Chaerilobuthinae diverged from the Indochinese subfamilies, Troglokhammouaninae and Vietbocapinae, in the Early Cretaceous (ca. 117 Ma), consistent with Early Devonian rifting of the Burma Terrane.

Reference:
Prendini L, Xuan Q, Du SE, Wang C-BE, Ehrenthal VL, Loria SF. Phylogeny and divergence time estimation of relictual Asian scorpion family suggests Early Cretaceous connections between Burma Terrane and Eurasia, and corrects placement of Chinese taxon. American Museum Novitates. 2026(4051):1–55. [Open Access]

Family Pseudochactidae 

13 February, 2026

First DNA barcode records for the buthid Parabuthus liosoma in Saudi Arabia.

 


Ahmed Badry and co-workers recently published a study of DNA barcoding and phylogeny of Parabuthus liosoma (Ehrenberg, 1828) (Buthidae) from Saudi Arabia. This is the first DNA barcode records for this species, and the study gives insight into identification, taxonomy and phylogeny of Parabuthus in Saudia Arabia.

Abstract:
1) Background. Parabuthus liosoma is one of the largest buthid scorpion species and is endemic to Saudi Arabia and Yemen. This study provides the first DNA barcoding and phylogenetic analysis of P. liosoma from Saudi Arabia, contributing to global efforts in arachnid molecular identification and biodiversity documentation. (2) Methods. The whole genome was extracted from nine adult individuals of P. liosoma, collected from Farasan Island, southwest of Saudi Arabia. A portion of the mitochondrial DNA, specifically, the cytochrome oxidase subunit I gene (COI) sequences, was amplified and sequenced and subjected to genetic and phylogenetic analyses. (3) Results. The DNA barcoding results revealed a high level of genetic variability within P. liosoma, aiding in species identification and supporting its utility as a molecular tool for scorpion taxonomy. In addition, our results reveal a monophyletic relationship among Parabuthus species, with a clear distinction between Arabian and African lineages. (4) Conclusions. This study highlights the effectiveness of DNA barcoding as a reliable tool for species identification and taxonomy and enhances our knowledge of the evolutionary history and geographic distribution of Parabuthus scorpions. However, further research is required to elucidate the complex phylogenetic relationships within this genus.

Reference:
Badry A, Al-Qahtni AH, Al-Salem AM, Al Balawi MS, Mesfer F, Allahyani WS, et al. DNA Barcoding and Phylogenetic Relationship of Parabuthus liosoma (Ehrenberg, 1828) (Scorpiones: Buthidae) in Saudi Arabia. Biology. 2026;15(4):321. [Open Access]

Thanks to  Luis Roque (Arácnido Taxonomy https://www.aracnidotaxonomy.com) for sending me this article!

Family Buthide 

02 January, 2026

New study on taxonomy, distribution and habitat of the medical important genus Hemiscorpius in Iran

 


The genus Hemiscorpius Peters, 1861 (Hemiscorpiidae) is the probably the main scorpion taxa outside the family Buthidae that can cause death and serious morbidity in humans. This genus is represented with eight species in Iran and information about taxonomy, distribution and habitat preferences is very information to prevent sting cases.

Hossein Dehghan and co-workers have recently published a study on morphology, genetics, and ecological niche modeling to clarify the taxonomy and distribution of Hemiscorpius in southern Iran. The study also resulted in a new species from the Kerman Province.  

Hemiscorpius aratta Barahoei & Prendini, 2025

Abstract:
Eight species of the medically important scorpion genus Hemiscorpius Peters, 1861 have been reported in Iran, three of which are responsible for most of the severe clinical cases of envenomation. However, morphological similarity complicates species delimitation in this genus, hindering the identification of species implicated in envenomations. The present study integrates morphology, DNA sequences, and ecological niche modeling to clarify the taxonomy and distribution of Hemiscorpius in southern Iran, providing taxonomic insights relevant to public health and biodiversity conservation. Morphometric analyses were performed to evaluate size and shape differences; molecular phylogenetic analyses were conducted on DNA sequences of the mitochondrial Cytochrome c Oxidase Subunit I gene; and species distribution models, based on occurrence records and bioclimatic variables, were developed. Morphometric analyses revealed significant interspecific differences and sexual dimorphism. A new species was identified and described as Hemiscorpius aratta sp. n. Molecular phylogenetic analysis confirmed the distinctiveness of the new species and revealed intraspecific variation in the type species, Hemiscorpius lepturus Peters, 1861, suggesting possible cryptic diversity. Southern Iran, particularly the coastline of the Persian Gulf and the Gulf of Oman, represents a diversity hotspot for Hemiscorpius. Topographical barriers such as the Jebal Barez, Makkoran, and Zagros Mountain ranges promoted isolation and speciation, leading to high levels of endemism in the genus. Ecological niche models revealed that the distributions of Hemiscorpius species are strongly influenced by temperature and precipitation. Coastal species are restricted to thermally stable maritime habitats, whereas semi-arid species occupy regions with higher temperature seasonality. Range-restricted species are habitat specialists, vulnerable to environmental change. This study reinforces the importance of integrating morphological, molecular, and ecological data for resolving taxonomic ambiguity.

Reference:
Dehghan H, Amiri Ghanat Saman E, Madjdzadeh SM, Amiri M, Moeinadini A, Prendini L, et al. Molecules, Morphometrics and Modeling of the Medically Important Genus Hemiscorpius Peters, 1861 (Scorpiones: Hemiscorpiidae) in Iran Reveal New Species from Kerman. Insects. 2025;17(1):18. [Open Access]

Thanks to Gerard for informing me about this article!

Family Hemiscorpiidae 

 

04 December, 2025

A new species of Androctonus from Saudi Arabia

 


Ersen Yagmur and co-workers recently described a new species of Androctonus Ehrenberg, 1828 (Buthidae) from Najd Plateau of Saudi Arabia.

Androctonus najdensis Yagmur, Alqahtani & Badry, 2025 

The article also provides an identification key for the genus Androctonus in the Middle East, Turkey, and Iran.

Abstract:
A new scorpion species, Androctonus najdensis sp. nov., is described and illustrated from Saudi Arabia. It is compared with existing species from the Middle East and Iran, notably A. crassicauda (Olivier, 1807) and the recently described A. tihamicus Alqahtani, Yağmur & Badry, 2023. Molecular analysis using the COI mitochondrial gene revealed a genetic divergence of 7.0 to 11% between A. najdensis sp. nov. and A. crassicauda sensu lato samples from Saudi Arabia, Iraq, and Iran. The combination of molecular and morphological data supports the recognition of the Najd populations as a distinct species. Additionally, an identification key for Androctonus species in Iran and the Middle East is provided.

Reference:
Yagmur EA, Alqahtani AR, Badry A. A new species of Androctonus from the Najd Plateau of Saudi Arabia (Scorpiones, Buthidae). ZooKeys. 2025(1262):33–59. [Open Access]

Thanks to Ersen Yagmur, Gerard Dupre and Matt Simon for all sending me a link to this new article! It is easy to stay updated with so much great help from all of you! :)

Family Buthidae 

03 December, 2025

New study on the Buthus species in Tunisia with the description of a new species

 


Sarra Hajri and co-workers have recently published an article looking into the genetics and morphology of the known species Buthus Leach, 1815 (Buthidae) in Tunisia. Most known species are confirmed and a new species is described from the country.

Buthus saidnouirai Hajri, Bahri & Harris, 2025 

Abstract:
The taxonomy of the scorpion genus Buthus is complex due to the considerable increase in newly reported species, their high degree of similarity, and consequently, the great difficulty in their morphological differentiation. Tunisian species are not exempt from this issue, with several references highlighting the need for taxonomic revisions. This study integrates DNA sequence data and morphological assessments to investigate the diversity present in Tunisia and to provide morphological details that facilitate species identification. The results show that most Tunisian specimens are distributed within two clades. One clade comprises four subclades corresponding to B. tunetanus Herbst, 1800, B. paris C. L. Koch, 1839, B. chambiensis Kovařík 2006 and a southern group corresponding probably to B. lourencoi Rossi, Tropea & Yağmur, 2013. The second clade represents a new species described in this study as B. saidnouirai Hajri, Bahri & Harris, sp. nov. No evidence of B. dunlopi Kovařík 2006 have been recorded in the studied samples. Distances between all five species exceed the minimum divergence thresholds for Buthus species. The greatest distance was observed between B. saidnouirai. sp. nov. and the southern group, while the smallest distance was between B. tunetanus and B. paris. Although the genetic differences revealed considerable divergence of the new group from the four remaining species, the morphological assessment did not identify the same pattern. These five species demonstrate a morphological shape gradient in which B. paris and the southern group represent the two extremes, with B. paris being the most ornamented and the latter the least. The new species presents an intermediate morphology. The geographic distributions of the five reported species are discussed in this work according to the topography and orography of the region. Additional lineages known from Algeria may also enter the western fringes of Tunisia.

Reference:
Hajri S, Bahri L, Harris DJ. New Insights on Genetic and Morphological Divergence Among a Buthus Species Complex From Tunisia With the Identification of a New Species. Ecology and evolution. 2025;15(12):e72556. [Open Access]

Thanks to Gerard for sending me this article!

Family Buthidae 

26 October, 2025

How many Buthus species are there in Europe and how did they evolve?

 


As mentioned in  previous post, the number of Buthus Leach, 1815 (Buthidae) species in Europe grew from one single species to more than 20. Earlier this year, this number was reduced to nine valid species. This decision was based on  rigorous phylogenetic analyses combining morphology, nuclear and mitochondrial DNA sequences, morphometric analyses, and ecological data.

In a new study, which was supposed to be published before the article mentioned above, Javier Blasco-Aróstegui and co-workers looks more deeply into the DNA og genetics of the Iberian Buthus species. This is complex stuff, way beyond my knowledge. I have therefor asked co-author Yuri simon to explain this article for us in more laymen terms:

 In this study, the authors re-examined the number of species within the European Buthus scorpions. Over the years, the group experienced a rapid increase in the number of described species, mostly because they show a great morphological diversity. 

However, this high morphological diversity is not always reflected in their DNA. The fast-changing mitochondrial DNA (inherited only from the mother) often suggests many species, while the more slowly evolving nuclear DNA (inherited from both parents) tells a different story. When these two genetic signals disagree, a situation known as mito-nuclear discordance, making difficult to define clear species boundaries. Moreover, since the past climate changes and the region’s complex landscape repeatedly separated and later reconnected populations, these scorpions sometimes met again after long periods apart and interbred creating in some cases hybrid populations showing some morphological intermediate characters which has contributed to the large number of taxa described. 

By combining genetic evidence with morphology and species distribution modelling, we found that the evolutionary history of Buthus in Iberia is far more complex than a simple “split and diverge” story. It involves repeated cycles of isolation, reconnection, and hybridization. Our results show that no single source of data—neither morphology nor mitochondrial or nuclear DNA alone—is sufficient to accurately define these species. Instead, an integrative approach is necessary. Using this approach, we concluded that the number of valid European Buthus species is likely much lower than previously thought, reducing it from around 20 to roughly half.

Abstract:
Mito-nuclear (or cytonuclear) discordance, evolutionary incongruence between the mitochondrial and nuclear genomes, is a widespread but underappreciated phenomenon that may obscure signals of introgression and hybridization important for understanding evolutionary trajectories and species boundaries. The present study explored the roles of secondary contact and introgressive hybridization in the diversification of Buthus Leach, 1815 scorpions in the Iberian Peninsula, a hotspot for mito-nuclear discordance, in which complex topography and glacial history facilitated repeated cycles of isolation and secondary contact. Patterns of mito-nuclear discordance were predicted to be consistent with overlapping distributions, similar ecological niches, and intermediate phenotypes. By integrating genomic, morphological, and ecological data, the intricate evolutionary history of Buthus, shaped by vicariance, reticulation and ecological opportunity, was revealed. The results underscore the role of introgressive hybridization in shaping patterns of biodiversity and the need to consider mito-nuclear discordance in species delimitation. 

Reference:
Blasco-Aróstegui J, Simone Y, Paulo OS, Prendini L. Mito-nuclear discordance reveals introgressive hybridization following vicariance and secondary contact in Iberian scorpions (Buthidae: Buthus). BMC Ecol Evol. 2025;25(1):112. [Open access]

Thanks to Yuri for sending me their article and for for writing a layman version of a summary for the article! 

20 May, 2025

A revision of the enigmatic genus Charmus from India and Sri Lanka with a couple of taxonomic updates

 

Charmus Karsch, 1879 (Buthidae) is a genus that is rarely encountered in the field and in collections. The few species in the genus are also very similar. Mihir Joshi and several co-workers have recently published a systematic review of this genus and have made a couple of taxonomic decisions.

Charmus dakshini Joshi, Deshpande, Ukale, Gowande, Bilat, Kovarik, Mottaz, Stahlavsky, Bastawade, Monod & Sulakhe, 2025 New species from southern India.

Charmus indicus Hirst, 1915 is synonymized with Charmus laneus Karsch, 1879.

Abstract:
India and Sri Lanka are known to exhibit high levels of biological diversity with many endemic taxa, such as the enigmatic scorpion genus Charmus Karsch, 1879. Members of this genus are rarely encountered in the field and are also known to be morphologically very similar, which impedes their systematic assessment. Our dedicated efforts towards sampling the members of the genus resulted in the collection of important material, which allowed us to carry out a thorough systematic revision of the genus using an integrated taxonomic approach. We propose several taxonomic changes based on the results of a detailed morphological study supported by molecular data. Charmus indicus Hirst, 1915 is synonymized with Charmus laneus Karsch, 1879, owing to the lack of morphological differences and low genetic divergence between the two taxa. We designate a neotype for Charmus sinhagadensis Tikader and Bastawade, 1983, and describe a new species from Sirumalai (Tamil Nadu, India). Moreover, we provide the first molecular phylogeny of Charmus based on Cytochrome c Oxidase subunit I (COI), 16S rRNA (16S) and 28S rRNA (28S) genes. The phylogenetic position of the genus within the family Buthidae C. L. Koch, 1837 is also tested using an independent genome-wide dataset (Ultraconserved Elements). Topological congruence and discrepancies between the phylogenies generated with Sanger sequences and the Ultraconserved Elements are commented on, and the reliability of these datasets when evaluating phylogenetic relationships at different hierarchical levels is further discussed.

Reference:
Joshi M, Deshpande S, Ukale S, Gowande G, Bilat J, Kovařík F, et al. Systematic Revision of the Genus Charmus Karsch, 1879 (Scorpiones: Buthidae), and Assessment of Its Phylogenetic Position Within Buthidae CL Koch, 1837 Using Ultraconserved Elements. Diversity. 2025;17:354. [Open Acces]

Thanks to Gerard and Frantisek for both sending me this article!

Family Buthidae