Showing posts with label Ornithology - Bird. Show all posts
Showing posts with label Ornithology - Bird. Show all posts

Saturday, June 6, 2026

[Ornithology • 2026] Rhipidura laguceria • A New and Cryptic Fantail Species (Passeriformes: Rhipiduridae) from the Babar Islands, Maluku Province, Indonesia

 
Cheerful Fantail Rhipidura laguceria Eaton & Berryman, 2026  from Babar (left) and 
Cinnamon-tailed Fantail R. fuscorufa P. L. Sclater, 1883  from the Tanimbars (right),  

Photographs: James A. Eaton (both taken in November 2022)

 Abstract  
The Babar Islands, in the Banda Sea, Indonesia, have long been known to host several endemic avian taxa, but only recently have some of these been elevated to species rank. Here we investigate the internal taxonomy of Cinnamon-tailed Fantail Rhipidura fuscorufa P. L. Sclater, 1883, a monotypic passerine found on the Tanimbar Islands (from which it was described) and, 135 km to the west, on the Babar Islands. We compare differences between these populations using 19 specimens and 18 sound recordings, finding that while morphologically they differ subtly (Babar birds are slightly darker above, less extensively cinnamon below), the two have consistently different songs. Moreover, across 132 playback experiments, we find that both populations always ignore allopatric song but typically respond to sympatric song. On the basis that these lines of evidence likely represent barriers to reproduction, we consider the population on the Babar Islands to be taxonomically distinct from that on the Tanimbar Islands. In the absence of an available name, we describe it as a new species.

Photographs of Cinnamon-tailed Fantail Rhipidura fuscorufa from Babar (left) and the Tanimbars (right), both taken in November 2022 (James A. Eaton)

Rhipidura laguceria sp. nov.
  
Diagnosis.—Differs from Tanimbar R. fuscorufa in its consistently darker forehead, crown, nape, mantle and back that are often discernible in the field (pers. obs.); it also has, on average, less extensive buffish on the underparts, being largely confined to the belly (not extending to the lower breast). The most pronounced difference, however, is in the two species' song: R. fuscorufa delivers strophes of 8–18 staccato whistles which randomly change in pitch, while R. laguceria emits a series of 6–8 notes that steadily ascend in pitch (Fig. 4). Birds on each island are unresponsive to allopatric song.

Northern Fantail Rhipidura [rufiventris] hoedti (of Romang, Damar, Leti, Moa and Sermata) and R. [r.] assimilis (Kai Islands)—sometimes recognised specifically as Banda Sea Fantail and Kai Fantail respectively (Eaton et al. 2016, 2021, del Hoyo & Collar 2016)—has an obvious white-streaked grey breast-band, greyer head and upperparts (with a much broader supercilium in assimilis), plain wings lacking extensive cinnamon, much less richly coloured belly (appearing almost whitish in hoedti and pale buff in assimilis) and white (not cinnamon) outertail feathers. They also have very different vocalisations (Eaton et al. 2021).

Etymology.—Because the pleasing song of this taxon is its most distinctive attribute, we name the species for its vocalisations (lagu ceria = Indonesian for ‘cheerful song’). We employ the name as a noun in apposition.

Vernacular names.—While the English names ‘Tanimbar Fantail’ and ‘Babar Fantail’ are ostensibly appropriate for R. fuscorufa s. s. and R. laguceria respectively, the Tanimbar islands host two other sympatric fantail species—Supertramp Fantail R. semicollaris and Long-tailed Fantail R. opistherythra—the second of which is also endemic to the islands. Accordingly, we prefer the English names ‘Trembling Fantail’ for R. fuscorufa and ‘Cheerful Fantail’ for R. laguceria, given that their distinctive vocalisations have led us to propose separating them taxonomically.

Geographic distribution.—Endemic to Babar, Indonesia, and perhaps occurs too on the island's five small satellites, although these have not been explored ornithologically.


James A. Eaton and Alex J. Berryman. 2026. A New and Cryptic Fantail Species from the Babar Islands, Maluku Province, Indonesia. Bulletin of the British Ornithologists’ Club. 146(2); 203-215. DOI: doi.org/10.25226/bboc.v146i2.2026.a6 (3 June 2026) 
https://www.researchgate.net/profile/James-Eaton

[Ornithology • 2022] Zosterops paruhbesar • A distinct New Species of Zosterops White-eye (Passeriformes: Zosteropidae) from the Sulawesi Region, Indonesia


Zosterops paruhbesar 
 Irham, Prawiradilaga, Menner, O'Connell, Kelly, Analuddin, Karya, Meads, Marples & Rheindt, 2022
   
Wangi-wangi White-eye || DOI: doi.org/10.1111/ibi.13148 
photo: James Eaton
  
Abstract
We describe a new species of Zosterops white-eye, which is restricted to Wangi-wangi, a single island of roughly 155 km2 in the Wakatobi Archipelago, Indonesia. Informally known as the Wangi-wangi White-eye, the new species is highly distinct both morphologically and genetically. It is considerably larger in body and bill size compared with other regional Zosterops species. The Wangi-wangi White-eye remains locally common but its habitat is dwindling. Given its minute area of occupancy and the threat from the bird trade, we recommend the IUCN status Endangered.

Keywords: bill size, body size, IUCN status Endangered, Wangi-wangi Island


 Wangi-wangi white-eye and  Wakatobi white-eye 
photo: Nicola Marples and David Kelly



Zosterops paruhbesar sp. nov.
Wangi-wangi White-eye
Kacamata Wangi-wangi

Etymology: Zosterops paruhbesar exhibits a prominent massive bill unique among white-eyes in the region. The species epithet is based on the word ‘massive bill’ in Bahasa Indonesia (paruh besar) and is used as an inalienable noun in apposition. 

  
Mohammad Irham, Dewi M. Prawiradilaga, Jochen K. Menner, Darren P. O'Connell, David J. Kelly, Kangkuso Analuddin, Adi Karya, Martin Meads, Nicola M. Marples and Frank E. Rheindt. 2022. A distinct New Species of Zosterops white-eye from the Sulawesi Region, Indonesia. Ibis. DOI: doi.org/10.1111/ibi.13148 
  twitter.com/Dar_OConnell/status/1064858735754035200

Saturday, April 11, 2026

[Ornithology • 2026] Phylloscopus tokaraensisDiscovering and Protecting Cryptic Biodiversity: A Case Study of A previously undescribed, Vulnerable Bird Species in Japan


Phylloscopus tokaraensis 
Saitoh, Shipilina, Xia, Zhang, Seki, Olsson & Alström, 2026
 
Tokara Leaf Warbler  ||  DOI: doi.org/10.1093/pnasnexus/pgag037 

Abstract
Despite the escalating biodiversity crisis, many species remain unknown to science and may even disappear unnoticed. This is particularly true for many island populations. We illustrate the problem of detecting overlooked species and its consequences by exploring a rare and geographically restricted migratory songbird. We find that this consists of two—hence even rarer—species: the Japanese endemic Ijima's Leaf Warbler Phylloscopus ijimae from the Izu Islands and the Tokara Leaf Warbler from the Tokara Islands. We describe the latter as a new cryptic species, ie one that is morphologically highly similar to, but genetically distinct from, a known species. The genetic divergence is revealed by analyses of nuclear genome-wide and mitochondrial DNA and supported by differences in vocalizations, while the morphological differences are minimal. We evaluate key conservation genomic indicators, showing that both species show low levels of genetic diversity and signs of a decrease of effective population size. Our genome-wide analysis revealed short runs of homozygosity and a low estimated deleterious load, suggesting limited recent inbreeding and possible purging of harmful alleles—indicators of genetic recovery after past demographic fluctuations. Ijima's Leaf Warbler is already classified as Vulnerable as well as a “Natural Monument” in Japan, and we propose that the Tokara Leaf Warbler should retain this status, with continued focused monitoring. Our study not only highlights the importance of integrating genomics with taxonomy for uncovering cryptic avian diversity but also provides a critical foundation for future conservation efforts.

Tokara Leaf Warbler Nakanoshima Phylloscopus tokaraensis (the same individual as in photo labeled A singing male Tokara Leaf Warbler).
photo: Per Alström, Uppsala University

Tokara Leaf Warbler Nakanoshima 11June2017-1 Per Alstrom. A singing male Tokara Leaf Warbler Phylloscopus tokaraensis on Nakanoshima, Tokara Islands, in June 2017. P.
photo: Per Alström, Uppsala University

One of the Tokara Leaf Warblers Phylloscopus tokaraensis caught on Nakanoshima, Tokara Islands, in June 2017.  


Cryptic populations of P. ijimae are geographically separated by more than 1,000 km and have distinct songs.
A) Global distribution of P. ijimae. Insets provide detailed maps of the Tokara Islands and northern Izu Islands (map source: Japan Aerospace Exploration Agency (2021). ALOS World 3D-30m DEM, V3.2, January 2021. Distributed by OpenTopography, doi.org/10.5069/G94M92HB. Accessed 2025 March 12). Island names in gray indicate locations where P. ijimae was not observed, while those in black indicate presence.
B, C) Adult male, holotype of Phylloscopus tokaraensis new species, Tokara Leaf Warbler (Yamashina Institute for Ornithology number YIO-76774), Nakanoshima, Tokara Islands, 2017 June 10 (photo: Per Alström; for additional photographs, see Table S18).

 Phylloscopus tokaraensis, sp. nov. 
Tokara Leaf Warbler

Diagnosis: Phylloscopus tokaraensis and P. ijimae are characterized by the uniformly greyish crown, lacking darker or paler stripes; mainly whitish underparts with contrastingly pale yellow undertail-coverts; narrow pale tips to the greater coverts, forming a thin, sometimes very indistinct, pale wing-bar; and pale orange lower mandible. Easily distinguishable from P. coronatus by the uniformly coloured crown; from P. borealis, P. examinandus and P. xanthodryas by the less distinct pale supercilium and narrower and less contrasting dark stripe on the ear-coverts behind the eye, whiter underparts with contrastingly pale yellow undertailcoverts, and pale orange lower mandible (usually prominent dark tip in P. borealis, P. examinandus and P. xanthodryas but rarely entirely orange); and from P. borealoides and P. tenellipes by the greener upperparts, paler crown which does not ...

Cryptic populations of P. ijimae are geographically separated by more than 1,000 km and have distinct songs. A) Global distribution of P. ijimae. Insets provide detailed maps of the Tokara Islands and northern Izu Islands (map source: Japan Aerospace Exploration Agency (2021). ALOS World 3D-30m DEM, V3.2, January 2021. Distributed by OpenTopography, doi.org/10.5069/G94M92HB. Accessed 2025 March 12). Island names in gray indicate locations where P. ijimae was not observed, while those in black indicate presence. B, C) Adult male, holotype of new species, Tokara Leaf Warbler (Yamashina Institute for Ornithology number YIO-76774), Nakanoshima, Tokara Islands, 2017 June 10 (photo: Per Alström; for additional photographs, see Table S18).
Examples of single song strophes of type I songs from Tokara (D–G) and Izu (I–L), with a plot of the two PCs from a PCA based on 12 variables (H). Examples of single strophes of type II songs from Tokara (M and N) and Izu (O and P) (recordings: D: ML647192043; E: ML647191975; F: ML647192039; G: ML 647191951; M: 647192011; N: 647191965; all by P.A.; I: by T. Kabaya; J: ML647192103, by T.S.; K: XC749104; L: XC749102; O: XC749102), K, L, O by Geoff Carey; P: ML647356514, by Haruo Kuroda.

 
Takema Saitoh, Daria Shipilina, Canwei Xia, Lijun Zhang, Shin-Ichi Seki, Urban Olsson and Per Alström. 2026. Discovering and Protecting Cryptic Biodiversity: A Case Study of A previously Undescribed, Vulnerable Bird Species in Japan. PNAS Nexus. 5(3); pgag037. DOI: doi.org/10.1093/pnasnexus/pgag037 [17 March 2026]

Wednesday, March 4, 2026

[PaleoOrnithology • 2026] Meterchen luti • A Review of Fossil Goose (Anseriformes: Anserinae) Records from the Miocene St Bathans deposits, New Zealand, with the Description of A New Species

 
 Meterchen luti 
Tennyson, Steell, Lubbe, Adams, Greer, Brown, Wilson, Campbell, Dale & Rawlence, 2026
 
Artwork by Sasha Votyakova

ABSTRACT
The early-middle Miocene deposits of St Bathans, New Zealand, are renowned for their diverse and internationally important avian fossil biota that includes an abundance of fragmentary yet recognisable fossils from the crown bird clade Anseriformes (ducks and geese). We reviewed the taxonomic status of 11 isolated fossil bones previously referred to geese (Anserinae, Anseriformes) from St Bathans. Rigorous reassessment of these specimens using an expanded comparative morphological dataset demonstrated that four specimens can be assigned to the tadornine Miotadorna sanctibathansi and five are probably from a large anatid, potentially the purported anserine Notochen bannockburnensis. A second, slightly smaller, probable anserine is represented by one or possibly two bones, which we name as a new species, Meterchen luti gen. et sp. nov. We did not find any bones that showed a clear affinity with cereopsine anserines, thereby contradicting a previous hypothesis that cereopsines have a long history in Zealandia dating back to at least the early-middle Miocene. Our findings are consistent with current molecular divergence time estimates suggesting that the ancestors of the recently extinct cereopsine Cnemiornis arrived in Zealandia in the late Miocene.
 
KEYWORDS: Altonian, Anseriformes, Bannockburn Formation, Burdigalian, Otago

An artist’s impression of the St Bathans goose Meterchen luti that once lived in New Zealand.
Artwork by Sasha Votyakova/Te Papa Tongarewa, CC BY-NC-SA  

 Meterchen luti gen. et sp. nov. 


Alan J. D. Tennyson, Elizabeth M. Steell, Pascale Lubbe, Amy L. Adams, Liam Greer, Alex H. Brown, Laura J. E. Wilson, Timothy C. Campbell, Tobia C. Dale and  Nicolas J. Rawlence. 2026. A Review of Fossil Goose (Aves: Anserinae) Records from the Miocene St Bathans deposits, New Zealand, with the Description of A New Species. Historical Biology: An International Journal of Paleobiology. DOI: doi.org/10.1080/08912963.2025.2601236 [17 Feb 2026]

Monday, February 9, 2026

[PaleoOrnithology • 2025] Aenigmatorhynchus rarus • A remarkable Beak Morphology in a Bird Skull from the Eocene of Messel (Germany) signifies unusual feeding specializations


 Aenigmatorhynchus rarus 
 Mayr & Smith, 2026

 
Abstract
We report the skull of a new avian species from the latest early or earliest middle Eocene fossil site Messel in Germany. Aenigmatorhynchus rarus, gen. et sp. nov. is characterized by a long, straight, and pointed beak, as well as a mandible with prominent processus coronoidei, a very long symphysis, closely adjacent cristae tomiales, and a narrow dorsal sulcus along the tip. This unusual character mosaic impedes a straightforward phylogenetic assignment. In its proportions, the mandible is superficially similar to that of extant stilts (Himantopus, Recurvirostridae) and oystercatchers (Haematopus, Haematopodidae), but some features preclude an assignment of Ae. rarus to these and other charadriiform taxa. The ventral ossification of the rostrum suggests comparisons with long-beaked taxa of the Aequornithes and Telluraves, but again several features conflict with a position of Ae. rarus within either of these clades. Even though an unambiguous phylogenetic placement is not possible, the new fossil expands the avifauna of the Messel site and exhibits a distinctive beak morphology, which is not found in extant birds and indicates a specialized foraging behaviour as yet unknown in birds.

Keywords: Aenigmatorhynchus rarus, gen. et sp. nov., Aves, beak morphology, fossil birds, evolution

Skulls of Aenigmatorhynchus rarus from the latest early or earliest middle Eocene of Messel in Germany. (a) The holotype specimen (SMF-ME 11857A) coated with ammonium chloride. (b), (c) µCT scans of the holotype. (d) The holotype before it was transferred to artificial resin (photograph by Bruno Behr). (e), (f) a referred skull of Ae. rarus in the Pohl collection (PBP-MES−590A+B); coated with ammonium chloride.
 Abbreviations: car, cartilago arytenoidea; cdo, condylus occipitalis; hyo, hyoid apparatus; ios, ventral margin of interorbital septum; jug, jugal bar; lmd, articular (caudal) end of left mandibular ramus; lqd, left quadrate; pal, palatine (os palatinum); ppo, processus postorbitalis; rmd, articular (caudal) end of right mandibular ramus; rps, rostrum parasphenoidale; rpt, right pterygoid; rqd, right quadrate; sym, symphysis mandibulae; tra, tracheal rings. The scale bars equal 10 mm.

Skull and cervical vertebrae of the new avian species Aenigmatorhynchus rarus from the Messel fossil site in Germany. This fossil consists of slab and counter slab and is a referred specimen in a private collection. It was coated with ammonium chloride to enhance the contrast; the scale bar equals 10 mm. 
 
 Aves Linnaeus, 1758
  Order and family incertae sedis

Aenigmatorhynchus, gen. nov. 

 Diagnosis: The new taxon is characterized by a long, straight, mediolaterally narrow and pointed beak, which reaches about 75% of the entire skull length; the mandibular symphysis is very long and measures about half the length of the mandible; the rami mandibularum run in parallel in the rostral half of the mandible; the mandible exhibits prominent processus coronoidei and its tip forms a trough-like dorsal sulcus. The latter two features probably represent autapomorphies of the new taxon.

Etymology: The genus name is derived from aenigma (Lat.), riddle—which in turn is derived from αἴνιγμα (Gr.), speaking in riddles—and ῥύγχος (Gr.), beak; the taxon name refers to the unusual character distribution shown by the mandible of the new species.

  Aenigmatorhynchus rarus, sp. nov.

Etymology: The species epithet is derived from rarus (Lat.), rare, in reference to the fact that the holotype skull currently is the only record of the species in a public collection.

 
Gerald Mayr and Krister Smith . 2026. A remarkable Beak Morphology in a Bird Skull from the Eocene of Messel (Germany) signifies unusual feeding specializations. R Soc Open Sci. 12(6): 250620. DOI: doi.org/10.1098/rsos.250620 [25 Jun 2025] 

Wednesday, January 7, 2026

[Ornithology • 2026] Hylophilus moxensis • A New Species of Greenlet (Vireonidae, Hylophilus poicilotis/amaurocephalus group) from Bolivia

 

 Hylophilus moxensis
van Els, Montenegro-Avila, Avalos, T. Wijpkema & J.T. Wijpkema, 2026


ABSTRACT
 We assess the relationships of an undescribed taxon of Hylophilus (Aves, Passeriformes, Vireonidae) greenlet to the group containing Rufous-crowned Hylophilus poicilotis Temminck, 1822 and Grey-eyed Greenlet H. amaurocephalus Nordmann, 1835, two morphologically very similar species with a turbulent taxonomic past, using a mitochondrial (NADH2) and three nuclear genes (MUSK, ACO1, SPIN1). We recovered the two named species as sister taxa, having diverged ca. 3.5 mya, and both are distinct at each locus and with the combined multilocus dataset, confirming their previous recognition as species. By comparison, we found the isolated population from Beni, Bolivia, is sister to the branch containing both H. poicilotis and H. amaurocephalus. The Beni population is diagnostically distinct from similar H. amaurocephalus by the lack of black streaks or brown patch on the auriculars, and from H. poicilotis by the lack of black patch on the auriculars. Based on this combination of phylogenetic and morphological evidence, we describe this population of greenlet as a species separate from the other two. We compare vocalizations in the three species: the species from Beni has calls with harmonics as in female calls of H. amaurocephalus, but appears to have a distinct song with V-shaped notes. The newly-described Hylophilus is a resident endemic to marshland scrub in the semi-open landscape of the seasonally inundated savannas of Beni in central Bolivia, separated geographically by about 2000 km from its sister species.

KEYWORDS: Beni savannas, Llanos de Moxos, avifauna, Hylophilus, greenlet, phylogenetics. 

Beni Greenlet Hylophilus moxensis sp. nov. in habitat near San Ramón, Beni, Bolivia, 10 January 2024 (Tini Wijpkema). Notice the pale brownish grey auriculars, combined with dark lores, dark base of commissure, rufous on the entire crown and frons, and dark irides.

Hylophilus moxensis sp. nov.

 
P. van Els, M. Montenegro-Avila, N.A. Avalos, T. Wijpkema & J.T. Wijpkema. 2026. A New Species of Greenlet from Bolivia in the Hylophilus poicilotis/amaurocephalus group (Vireonidae). Avian Systematics. 3; 17-37. (1 January 2026) 

Sunday, December 7, 2025

[Ornithology • 2025] Ptilorrhoa urrissia • A New Species of Jewel-babbler (Passeriformes: Cinclosomatidae: Ptilorrhoa) from the Southern Fold Mountains of Papua New Guinea


Ptilorrhoa urrissia
Woxvold, Gamui, Legra, Yama, Koane & Tulai, 2025

Hooded Jewel-babbler  ||  DOI: doi.org/10.1111/ibi.70016

Abstract
Based on distinctive morphological and vocal characters we describe a new species of jewel-babbler (genus Ptilorrhoa) from the forested karst of the Southern Fold Mountains in Papua New Guinea. The description is based on camera trap data and is presented in accordance with ICZN Declaration 45. The new species is currently known only from the type locality at the top of Iagifu Ridge (1335–1400 m above sea level), a limestone anticline isolated from the main body of New Guinea's central cordillera, where it is uncommon. Given the importance of competitive exclusion in determining Ptilorrhoa distributions, and the near ubiquitous occurrence of congeners, we speculate that Iagifu Ridge may support part of a highly fragmented population that occupies isolated low mountains that do not support Ptilorrhoa leucosticta of higher elevations. Potentially suitable sites may be restricted to the area between Mt Bosavi and Mt Karimui in southern Papua New Guinea.

Keywords: camera trap, ICZN Declaration 45, New Guinea, taxonomy

Camera trap images of the holotype and two paratype Ptilorrhoa urrissia, taken during a 3-month sampling period in a high-density array covering 0.5 ha (see Methods). The holotype (a–c, marked ‘h’ in (a)) and one paratype (a and d, marked ‘p’ in (a)), putative adult female and juvenile with female-type plumage, respectively, were photographed together on 1 January 2020; the images shown are part of a sequence of 20 photographs taken over a period of 87 s. The putative adult male paratype (e) was photographed less than 40 m away on 8 March 2020.

Other Ptilorrhoa urrissia images (a–e), at least some of which may represent the holotype and paratypes. (a, b) Putative adult male and female, respectively, photographed in a single sequence (27 s apart) on 8 February 2020. (c) Male photographed on 15 January 2020. (d) Video still of male delivering the call shown in Figure 6a,b.
(e) Male (background) and probable juvenile with female-type plumage photographed on 1 January 2020, less than 40 m distance from and 2 h before the holotype sequence shown in Figure 3a–d.
(f) Female Ptilorrhoa castanonota shown for size comparison; images (e) and (f) were taken on the same camera 56 min apart.

Ptilorrhoa urrissia, sp. nov.
Hooded Jewel-babbler

Diagnosis: Table 1 compares in detail the morphological features of adult P. urrissia with those of its congeners – P. geislerorum and the locally occurring subspecies of P. caerulescens, P. castanonota and P. leucosticta. Figure 5 shows examples of the compared taxa.

Etymology: The name ‘urrissia’ is a noun in apposition. ‘Uri urrissia’ (= ‘mount urrissia’) is the Namo Me (also known as Fasu) language name applied to Iagifu Ridge by the local Fasol clan landowners.
 
Ptilorrhoa urrissia habitat on Iagifu Ridge. (Iain Woxvold.)


Iain A. Woxvold, Banak G. Gamui, Leo Legra, Samson Yama, Bonny Koane and Salape Tulai. 2025. A New Species of Jewel-babbler (Cinclosomatidae: Ptilorrhoa) from the Southern Fold Mountains of Papua New Guinea. Ibis. DOI: doi.org/10.1111/ibi.70016 [26 November 2025] 


Tuesday, December 2, 2025

[Ornithology • 2025] Tinamus resonans • A New Species of Tinamus (Aves: Tinamiformes) from the western Amazon, Brazil

 
Tinamus resonans
 Morais, Crozariol, Godoy, Plácido & Raposo, 2025 
  
 Slaty-masked Tinamou | Sururina-da-serra  ||  DOI: doi.org/10.11646/zootaxa.5725.2.6

Abstract
We describe Tinamus resonans sp. nov., a new species of tinamou from the montane forests of the Serra do Divisor, western Amazonia, Brazil. The species is distinguished by a unique combination of plumage pattern, vocal repertoire, and ecological characteristics, including a conspicuous dark slate facial mask, vivid rufous-cinnamon underparts, and a uniform brownish-gray back. Its vocalizations are remarkable, consisting of long and powerful songs that echo strikingly across the steep montane slopes, producing a characteristic resonant effect. The species was documented exclusively at higher elevations within a transitional zone between submontane and stunted forests, where the understory is densely structured by root mats. A preliminary population estimate, based on field detections and spatial extrapolation, suggests approximately 2,106 individuals restricted to the Serra do Divisor massif. Although no immediate anthropogenic pressures were observed within its range, the species may be highly vulnerable to climate change and to proposed infrastructure projects that threaten the integrity of this federally protected region. The discovery of T. resonans highlights the biological uniqueness of the Serra do Divisor, reinforces its status as a center of montane endemism, and underscores the critical importance of maintaining its long-term conservation.

Aves, Amazon rainforest, endemic species, extinction, Tinamidae, Serra do Divisor National Park, Acre


Tinamus resonans sp. nov. 
at Morro Queimado, Serra do Divisor National Park, Mâncio Lima, Acre, Brazil,
photos by Luis A. Morais.

Tinamus resonans sp. nov.
Proposed Portuguese name: Sururina-da-serra
Proposed English name: Slaty-masked Tinamou

Diagnosis: This species differs from all other Tinamidae by presenting, at least in females (the three individuals whose sex could be determined were female), a distinctive dark slate-colored crown, which extends into a prominent stripe down the hindneck and into the post-ocular region, forming a conspicuous facial mask (Fig. 1 and 2). The ferruginous  coloration  of  the  breast  places  it  near  the T.  variegatus/brevirostris  group,  from  which  it  is  readily distinguished by its uniform brownish-gray dorsum lacking any barring, a condition otherwise shared only with T. soui. It can be further separated from T. soui by its ferruginous breast, neck, and cheeks and the presence of white on the lower belly. Its vocalization is unique and therefore diagnostic among the vocalizations attributed to other Tinamidae. As described below, it is distinguished by its overall structure and note modulation.

Holotype of Tinamus resonans sp. nov. (MN 53848).
Ventral view (A), lateral view (B), dorsal view (C), flanks (D), dorsal surface of the wing (E), ventral surface of the wing (F).

Etymology: From Latin, resonans is the present participle of the verb resonare (“to resound,” “to echo”), used here in its adjectival sense meaning “resounding” or “echoing.” The verb is composed of the prefix re- (“again” or “back”) and the root sonare (“to sound”), which derives from the noun sonus (“sound”). The name refers to the striking echoing effect of the species’ song, which reverberates across the steep montane slopes of its habitat as a result of strong acoustic diffusion. 
The common name “sururina” is an onomatopoeic term used by local riverine people to refer to ground-dwelling tinamous with modulated songs and is commonly applied to several species in the region, including Tinamus soui and T. variegatus. The addition of “-da-serra” (“from the mountains”) highlights the distinct identity and montane habitat of this species, setting it apart from other sympatric taxa.


Luis A. MORAIS, Marco A. CROZARIOL, Fernando I. GODOY, Ricardo A. A. PLÁCIDO and Marcos A. RAPOSO. 2025. A New Species of Tinamus (Aves: Tinamiformes) from the western Amazon, Brazil.  Zootaxa. 5725(2); 279-291. DOI: doi.org/10.11646/zootaxa.5725.2.6 [2025-12-02]

Monday, November 17, 2025

[Ornithology • 2026] Pulsatrix perspicillata & Pulsatrix pulsatrix • Museomics resolves 200 years of Taxonomic Uncertainty: Strix pulsatrix Wied, 1820 (Strigiformes: Strigidae) is A Valid Species



in Bolívar-Leguizamón, Corrêa, Bencke et Silveira. 2026.
Artwork by Eduardo Brettas
 instagram.com/EduardoBrettas
 
Highlights
Pulsatrix perspicillata is an owl found from Mexico to Argentina and Brazil.
• The taxonomic position of the P. p. pulsatrix subspecies is a matter of controversy.
• Historical DNA shows great divergence between the pulsatrix and perspicillata taxa.
• The pulsatrix-perspicillata clade is sister to a melanota-koeniswaldiana clade.
• Pleistocene climatic oscillations influenced the diversification of the genus.
• We proposed elevating the subspecies pulsatrix of P. perspicillata to species status.

Abstract
The identification of valid species is central to biology, and genetic data have been essential in uncovering new taxonomic units across groups. For polytypic taxa, genetics helps distinguish valid units from natural variation. Pulsatrix perspicillata (Spectacled Owl) is a widespread polytypic species with six recognized subspecies. We used genetic data and museomics techniques to: (i) test the validity of Strix pulsatrix Wied, 1820 (=Pulsatrix perspicillata pulsatrix) as a species distinct from Pulsatrix perspicillata; and (ii) estimate the phylogenetic relationships and divergence times within the genus Pulsatrix Kaup, 1848. We conducted population structure and phylogenetic analyses using SNPs matrices and alignments of Ultraconserved Elements (UCEs) from 16 individuals of Pulsatrix spp., including four historical samples of P. p. pulsatrix. Additionally, we sequenced the mtDNA-ND2 gene from 38 samples representing all known Pulsatrix species to further elucidate phylogenetic relationships and estimate divergence times. Our results indicate that Pulsatrix perspicillata pulsatrix represents an independent lineage from P. perspicillata, as supported by its reciprocal monophyly and distinct population structure. UCE analyses also grouped P. koeniswaldiana (Tawny-browed Owl) and P. melanota (Band-bellied Owl) into a distinct cluster. Phylogenetic analyses based on both UCEs and mtDNA-ND2 sequences support the monophyly of the genus Pulsatrix. Pulsatrix koeniswaldiana and P. melanota form a monophyletic group that is sister to P. perspicillata. Pulsatrix diverged in the Late Miocene and diversified in the Pliocene-Quaternary. The evolutionary history of Pulsatrix appears to have been influenced by (a) the final phase of the Andean uplift and (b) climatic oscillations during the Pleistocene. Pulsatrix p. pulsatrix shows genetic divergence consistent with a species-level split from P. perspicillata, and we henceforth recognize it as Pulsatrix pulsatrix (Wied 1820). We recommend future studies to assess its current distribution and inform the development of conservation strategies.
 
Keywords: Museomics, UCEsmt-ND2, Pulsatrix, Spectacled Owl, Neotropics, Systematics, Phylogeography 


 
Pulsatrix perspicillata 


Sergio D. Bolívar-Leguizamón, Aline Henrique Corrêa, Glayson Ariel Bencke and Luís F. Silveira. 2026. Museomics resolves 200 years of Taxonomic Uncertainty: Strix pulsatrix Wied, 1820 (Strigiformes, Strigidae) is A Valid Species. Molecular Phylogenetics and Evolution. 108488. DOI: doi.org/10.1016/j.ympev.2025.108488 [27 October 2025]

Thursday, October 9, 2025

[Ornithology • 2025] Birds of a feather: Comprehensive Plumage Colour Analysis for A Revised Subspecies Classification of the Chestnut-winged Babbler Cyanoderma erythropterum species complex


Map of Southeast Asia showing type localities (large flag markers) and collection localities of museum specimens (small circles) for the various taxa described under Cyanoderma erythropterum and C. bicolor.
 
in Teo, Sin, Nieves et Rheindt, 2025. 
Images of Babblers modified from Eaton et al. (2016).
 
ABSTRACT
Quantitative analysis of colouration is an essential tool for subspecies delimitation but has always posed a challenge in avian taxonomy. In this study on the Chestnut-winged Babbler (Cyanoderma erythropterum) species complex from tropical Southeast Asia, we made use of colour measurements taken with digital cameras and applied two methodologies—(1) the 75% subspecies rule on quantitative colourimetric variables, and (2) the CIEDE2000 colour distance method to generate phylograms, which has probably never been applied in taxonomy before. Given its large number of described subspecies, many of which have been synonymised in modern taxonomies, the species complex serves as an appropriate model to test subspecies validity. Our data indicate that one synonymised subspecies (C. e. apega), from the islands of Bangka and Belitung, requires re-instalment and recognition, whereas one widely recognised subspecies (C. e. fulviventre), from the Banyak Islands, should be synonymised. Our approach also allowed us to redraw geographic subspecies boundaries. Our work indicates that current subspecies taxonomies of many poorly known tropical species may remain error-ridden and highlights the importance and viability of large-scale taxonomic revisions targeting avian subspecies globally while incorporating quantitative colourimetric approaches.

Keywords: Chestnut-winged Babbler, Colour distance, Subspecies boundaries, Subspecies rule, Taxonomy

Map of Southeast Asia showing type localities (large flag markers) and collection localities of museum specimens (small circles) for the various taxa described under Cyanoderma erythropterum and C. bicolor.
Flag markers are positioned precisely at type localities except in the case of C. e. pyrrhophaeum, whose type locality is ill-defined as ‘Sumatra’. Subspecies that are widely synonymised are shown with the same colour (both in font and type locality flag) as the taxon under which they are usually subsumed. Underlined names refer to subspecies that have widely been accepted prior to this study. Red dots indicate the localities of specimens from the Lee Kong Chian Natural History Museum (Singapore), while light-blue dots indicate the localities of specimens from other museums. Black stippled lines represent subspecies boundaries widely followed prior to this study, while yellow stippled lines represent revised subspecies boundaries proposed in this study. The dark-grey shaded area in Borneo reflects remaining uncertainty around the boundary between C. b. bicolor and C. b. rufum.
Images of babblers modified from Eaton et al. (2016).

Conclusions: 
Our results validate the current synonymisation of neocarum and sordidum with erythropterum, and of pellum with pyrrhophaeum. Our data also show that a widely recognised subspecies, fulviventre from the Banyak Islands, is indistinct in plumage and should be synonymised with pyrrhophaeum. Subspecies apega from the Bangka and Belitung islands is widely synonymised in modern taxonomies, but emerged as distinct in its crown colouration, exhibiting a pattern that would render it intermediate between C. erythropterum and C. bicolor. We advocate a resurrection of this subspecies, and confirm its placement within C. erythropterum on the basis of vocal data. Our examination of specimens indicates that the subspecies boundary between rufum and bicolor is much further south than widely assumed, although we do not rule out the possibility that rufum may form part of a cline of crown colour across Borneo.

The following is our proposed subspecies taxonomy for the Chestnut-winged Babbler (Cyanoderma erythropterum) complex:
● Cyanoderma erythropterum (Blyth, 1842): 
Chestnut-winged Babbler

○ C. e. erythropterum (Blyth, 1842) – Type locality: Singapore
■ Range: Thai-Malay Peninsula, Singapore, Riau Islands, Natuna Islands
■ Synonyms: sordidum Baker, 1917; neocarum Oberholser, 1932

○ C. e. pyrrhophaeum (Hartlaub, 1844) – Type locality: “Malacca and Sumatra” (here restricted to Sumatra, as Malacca was a trading hub)
■ Range: Sumatra, Batu and Banyak Islands
■ Synonyms: pellum Oberholser, 1912; eripellum Oberholser, 1922; fulviventre Richmond, 1903
■ Main diagnosis: Grey breast darker than erythropterum

○ C. e. apega Oberholser, 1922 – Type locality: Tanjong Tedong, Bangka Island
■ Range: Bangka Island and Belitung Island
■ Main diagnosis: Incomplete chestnut crown with front half being slate grey unlike complete chestnut crown in erythropterum and pyrrhophaeum


● Cyanoderma bicolor (Blyth, 1865): 
Bicoloured Babbler

 C. b. bicolor (Blyth, 1865) – Type locality: Labuan (Malaysian Borneo)
■ Range: Northern and central Borneo, Banggi Island

 C. b. rufum (Chasen & Kloss, 1927) – Type locality: Sampit, south coast of Kalimantan
■ Range: Southern Borneo, likely found only across the Central Kalimantan Depression
■ Main diagnosis: Rufous colouration extending to the nape, and even to some extent to the crown, unlike the grey colouration observed in bicolor


Shen Han Teo, Yong Chee Keita Sin, Mayjean Marie Ines Nieves and Frank E. Rheindt. 2025. Birds of a feather: Comprehensive Plumage Colour Analysis for A Revised Subspecies Classification of the Chestnut-winged Babbler (Cyanoderma erythropterum) species complex. Avian Research. In Press, 100307. DOI: doi.org/10.1016/j.avrs.2025.100307  [4 October 2025]

[Ornithology • 2024] Integrative Revision of Species Limits in the Genus Schiffornis (Passeriformes: Tityridae) reveals Cryptic Diversity in the Neotropics


Plumage colour differences between taxa of the Schiffornis turdina complex and S. virescens.
Individuals (A), (B), and (C) illustrate the range of plumage colour variation in turdina, olivaceawallaciicracraftiintercedens, and amazonum. These taxa do not differ diagnostically from each other in plumage colour and together they encompass a wide range of variation, the extremes of which are illustrated herein...
(D) represents steinbachi; (E) represents stenorhyncha; (F) represents veraepacis
(G) represents rosenbergi; (H) represents aenea; (I) represents virescens 
in Lima, Bocalini et Silveira, 2024. 
 Illustrations by Eduardo Brettas.

Abstract
Accurate species delimitation is essential for many biological subdisciplines. Nonetheless, current species diversity remains incompletely documented even in well-studied groups such as birds. Here, we take an integrative approach to examine species limits in the genus Schiffornis, a widespread group of dull-plumaged, whistle-voiced suboscine passerines of Neotropical humid-forest understory, currently considered to comprise seven species. We measured geographic variation in song, morphology, and mitochondrial and genome-wide nuclear markers to resolve the taxonomy of the genus. We show that Schiffornis comprises 13 separately evolving population lineages, of which most qualify as species taxa under all species definitions. These include a cryptic new species, several species splits, and the resurrection of a morphologically undifferentiated, but vocally and genetically distinct, taxon that was synonymized nearly a century ago in the Schiffornis turdina complex. We also found several hitherto unnoticed contact zones between diverging lineages and a leapfrog pattern of geographic song variation in the S. turdina complex, and we highlight potential avenues of further research of this genus.

Amazonia, Atlantic Forest, birds, leapfrog pattern of geographic variation, new species, sibling species, suboscine song, taxonomy


 Plumage colour differences between taxa of the Schiffornis turdina complex and S. virescens.
Individuals (A), (B), and (C) illustrate the range of plumage colour variation in turdina, olivaceawallaciicracraftiintercedens, and amazonum. These taxa do not differ diagnostically from each other in plumage colour and together they encompass a wide range of variation, the extremes of which are illustrated herein (see Morphological variation and Supporting Information, Fig. S6 for more details).
Individual (D) represents steinbachi. It differs from the previous taxa in having a more extensive rufous area on the breast, and a usually darker belly and undertail coverts. Individual (E) represents stenorhyncha, which differs from all other taxa of the S. turdina complex in having a rufous back and a strongly contrasted chest and belly. Individual (F) represents veraepacis. Its green is the most vibrant in the S. turdina complex.
Individual (G) represents rosenbergi, which is more olivaceous, less yellowish, than veraepacis. Individual (H) represents aenea, the darkest species. Individual (I) represents virescens, which differs from all other congeners by its vibrant green plumage and more delicate bill.
Illustrations by Eduardo Brettas.


Rafael Dantas Lima, Fernanda Bocalini and Luís Fábio Silveira. 2024. Integrative Revision of Species Limits in the Genus Schiffornis (Aves: Tityridae) reveals Cryptic Diversity in the Neotropics. Zoological Journal of the Linnean Society. 200(4); 1048–1079. DOI: doi.org/10.1093/zoolinnean/zlad108 [28 September 2023]