Wednesday, May 29, 2019

[Ichthyology • 2019] Marcusenius wamuinii • A New Elephantfish (Teleostei: Mormyridae) from the Mangroves National Park, Democratic Republic of the Congo


Marcusenius wamuinii Decru, Sullivan & Vreven, 2019


Abstract
Marcusenius wamuinii, a new large-scaled Marcusenius species, is described from the Mangroves National Park (MNP), a protected area situated at the mouth of the Lower Congo basin and its surroundings in the DR Congo. It can be distinguished from all its congeners based on the following unique combination of characteristics: 8 circumpeduncular scales, 27-31 anal-fin rays, 22-25 dorsal-fin rays, 19-22 scales between dorsal and anal fin, 46-53 lateral line scales, and a slender caudal peduncle (depth 4.4-5.9 % SL). Its status as a distinct species is additionally confirmed by genetic data from the mitochondrial cytochrome b gene. This is the first new fish species discovered in the MNP, highlighting the importance of freshwater conservation in this area in which the fish fauna is still poorly known. 



Eva Decru, John P. Sullivan and Emmanuel Vreven. 2019. Marcusenius wamuinii (Teleostei: Mormyridae), A New Elephantfish from the Mangroves National Park, Democratic Republic of the Congo. Ichthyological Exploration of Freshwaters. online first (1090); 1-15. DOI: 10.23788/IEF-1090
Marcusenius wamuinii, une nouvelle espèce de Marcusenius à grandes écailles est décrite du Parc Marin des Mangroves (PMM), une zone protégée située dans l'embouchure du Bas Congo et ses environs en RD Congo. Elle se distingue de tous ses congénères sur la base de la combinaison unique des caractères suivants : 8 écailles circumpédonculaires, 27-31 rayons à la nageoire anale, 22-25 rayons à la nageoire dorsale, 19-22 écailles entre les nageoires dorsale et anale, 46-53 écailles en ligne latérale et un pédoncule caudal mince (hauteur 4.4-5.9 % SL). Son statut d'espèce distincte est également confirmé à base de résultats génétiques sur le gène mitochondrial cytochrome b. Ceci est la première nouvelle espèce de poisson découverte dans le PMM, soulignant l'importance de la conservation des eaux douces dans cette Zone, dont la faune de poissons est encore largement méconnue.

[Herpetology • 2019] Diversity, Elevational Variation, and Phylogeographic Origin of Stump-toed Frogs (Microhylidae: Cophylinae: Stumpffia) on the Marojejy Massif, northern Madagascar



Rakotoarison, Scherz, Bletz, et al., 2019.  
SALAMANDRA55(2)

Abstract
 Stump-toed frogs (genus Stumpffia Boettger, 1881) are a diverse group of small-bodied frogs endemic to Madagascar. Seven species of this genus occur on Marojejy, a steep massif in northeastern Madagascar. Here we examine the elevational distribution, phylogenetic position, biogeographic origin, and genetic differentiation of this Stumpffia assemblage. We show that none of these species is another’s closest relative, but rather they are all independent lineages that probably colonised the Marojejy Massif through repeated immigration events. All of the lineages on Marojejy are most closely related to species south and southwest of the massif, except one lineage, formerly known as Stumpffia sp. Ca07, but here assigned to S. sorata as a deep conspecific lineage (and referred to as S. cf. sorata), which occurs also in Sorata, 90 km north of Marojejy. The species on Marojejy are typically restricted to narrow elevational ranges, but at least two species, S. cf. sorata and S. tridactyla, occur over elevations spanning 1000 metres. We assessed the genetic variability of these populations, and found considerable haplotype separation in fragments of the mitochondrial 16S rRNA and nuclear Rag-1 genes, suggesting some disruption of gene flow associated with elevation. We discuss the biogeographic implications of our findings and, based on previously published data, the evolution of non-overlapping bioacoustic parameters among the diverse assemblage of Stumpffia species on the Marojejy massif. 

Key words. Amphibia, Anura, Stumpffia sorata, Stumpffia sp. Ca07, Stumpffia tridactyla, candidate species, deep conspecific lineage.

Figure 3. Schematic graph showing known elevational distribution of species of Stumpffia on the Marojejy Massif, along with photos of the habitat at various elevations and the elevational profile of the track up the Marojejy summit, with the collection sites mentioned in the text and Supplementary materials.

Figure 2. Stumpffia species occurring in Marojejy National Park: (a) Stumpffia sp. Ca7 (here considered as S. cf. sorata: ZSM 555/2016 (ZCMV 15182); (b) Stumpffia roseifemoralis, ZSM 529/2016 (ZCMV 15172); (c) Stumpffia grandis (not assigned to voucher specimen); (d) Stumpffia diutissima, ZSM 547/2016 (ZCMV 15117); (e) Stumpffia sp. Ca11, ZSM 551/2016 (ZCMV 15214); (f) Stumpffia cf. sorata, ZSM 544/2016 (ZCMV 15181); (g) Stumpffia tridactyla (specimen collected, but specimen number uncertain); (h) Stumpffia achillei, ZSM 536/2016 (ZCMV 15149).

   



Andolalao Rakotoarison, Mark D. Scherz, Molly C. Bletz, Jary H. Razafindraibe, Frank Glaw and Miguel Vences. 2019.  Diversity, Elevational Variation, and Phylogeographic Origin of Stump-toed Frogs (Microhylidae: Cophylinae: Stumpffia) on the Marojejy Massif, northern Madagascar. SALAMANDRA55(2); 115-123. 

[Entomology • 2019] Nematopogon garganellus • Revision of the Nematopogon adansoniella species group (Lepidoptera: Adelidae) with Description of A New Species from the Mountainous Regions of southern Italy


 Nematopogon garganellus 
Bryner & Huemer, 2019


Abstract
The taxon Nematopogon adansoniella (de Villers, 1789), originally described from the south-western Alps, is re-evaluated. Based on DNA barcode examinations and morphological characters Nematopogon prolai Hartig, 1941 from the Apennines (central Italy) is recognized as a separate species and a lectotype is designated. Another cryptic species is Nematopogon garganellus sp. nov. from Monte Gargano (Puglia) and from Basilicata (southern Italy). Diagnostic morphological characters of the three species are outlined and, as far as known, information on distribution, habitat and bionomy is added.

Key Words: Lepidoptera, Nematopogoninae, DNA barcoding, Italy, Apennines, Monte Gargano, new species, lectotype designation




Nematopogon Zeller, 1839

Nematopogon adansoniella (de Villers, 1789)
Nematopogon prolai (Hartig, 1941)
Nematopogon garganellus sp. nov.




 Rudolf Bryner and Peter Huemer. 2019. [Revision of the Nematopogon adansoniella species group with Description of A New Species from the Mountainous Regions of southern Italy.] Revision der Nematopogon adansoniella-Artengruppe mit Beschreibung einer neuen Art aus den Bergregionen Süditaliens (Lepidoptera, Adelidae). Alpine Entomology. 3: 93-104. DOI: 10.3897/alpento.3.33651

Zusammenfassung: Das ursprünglich aus den Südwestalpen beschriebene Taxon Nematopogon adansoniella (de Villers, 1789) wird neu bewertet. Auf Grund von DNA-Barcodeuntersuchungen sowie morphologischen Merkmalen wird Nematopogon prolai Hartig, 1941 aus dem Apennin (Mittelitalien) als eigenständige Art anerkannt und ein Lectotypus wird festgelegt. Als weitere, kryptische Art wird Nematopogon garganellus sp. nov. vom Monte Gargano (Puglia) und aus der Basilicata (Süditalien) neu beschrieben. Die morphologischen und genitalmorphologischen Unterscheidungsmerkmale der drei Arten werden aufgezeigt und, soweit bekannt, Angaben zu Verbreitung, Lebensraum und Bionomie gemacht.

[Herpetology • 2019] Elaphe urartica • The Biogeography of Elaphe sauromates (Pallas, 1814), with A Description of A New Rat Snake Species


Elaphe urartica Jablonski, Kukushkin, Avcı, Bunyatova, Ilgaz, Tuniyev et Jandzik

Jablonski​, Kukushkin, Avcı, Bunyatova, Kumlutaş, et al., 2019. 

Abstract
Background: 
The rat snake genus Elaphe once comprised several dozens of species distributed in temperate through tropical zones of the New and Old World. Based on molecular-genetic analyses in early 2000s, the genus was split into several separate genera, leaving only 15 Palearctic and Oriental species as its members. One of the three species also occurring in Europe is Elaphe sauromates, a robust snake from the Balkans, Anatolia, Caucasus, Ponto-Caspian steppes, and Levant that has been suspected to be composed of two or more genetically diverse populations. Here, we studied the genetic structure and morphological variation of E. sauromates, aiming to better understand its inter-population relationships and biogeography, and subsequently revise its taxonomy.

Methods: 
We reconstructed the phylogeography and analyzed the genetic structure of E. sauromates populations originating from most of its geographic range using both mitochondrial (COI, ND4) and nuclear (C-MOS, MC1R, PRLR, RAG1) DNA gene fragments. We employed Maximum likelihood and Bayesian inference methods for the phylogenetic tree reconstructions, supplemented with species delimitation methods, analysis of haplotype networks, and calculation of uncorrected p-distances. Morphological variation in 15 metric and 18 meristic characters was studied using parametric univariate tests as well as multivariate general linearized models. In total, we analyzed sequences originating from 63 specimens and morphological data from 95 specimens of E. sauromates sensu lato.

Results: 
The molecular phylogeny identified two clearly divergent sister lineages within E. sauromates, with both forming a lineage sister to E. quatuorlineata. The genetic distance between them (5.80–8.24% in mtDNA) is similar to the distances among several other species of the genus Elaphe. Both lineages are also moderately morphologically differentiated and, while none of the characters are exclusively diagnostic, their combination can be used for confident lineage identification. Here, following the criteria of genetic and evolutionary species concepts, we describe the lineage from eastern Anatolia and parts of the Lesser and Great Caucasus as a new species Elaphe urartica sp. nov.

Discussion: 
Elaphe urartica sp. nov. represents a cryptic species whose ancestors presumably diverged from their common ancestor with E. sauromates around the Miocene-Pliocene boundary. The intraspecific genetic structure indicates that the recent diversity of both species has been predominantly shaped by Pleistocene climatic oscillations, with glacial refugia mainly located in the Balkans, Crimea, and/or Anatolia in E. sauromates and Anatolia and/or the Caucasus in E. urartica sp. nov.
....


Figure 4: Holotype (ZDEU 26/2012) of Elaphe urartica sp. nov. from eastern Turkey. (A) Dorsal view, (B) ventral view, (C) dorsal view of the head, (D) lateral view, (E) ventral view (photos by Aziz Avcı), (F) the holotype while alive (photo by Çetin Ilgaz), (G) Sako B. Tuniyev with freshly caught holotype of E. urartica sp. nov. (photo by Boris Tuniyev).

Figure 6: Paratypes of Elaphe urartica sp. nov. from Armenia ((A and B) photo by Ilya Korshunov and Konstantin Shiryaev) and Azerbaijan ((C) photo by Sabina Bunyatova) showing the habitus and details of the head.

Family Colubridae

GenusElaphe Fitzinger in Wagler, 1833

Elaphe urartica Jablonski, Kukushkin, Avcı, Bunyatova, Ilgaz, Tuniyev et Jandzik sp. nov.

Diagnosis. A new species of western Palearctic genus Elaphe, very similar to E. sauromates (Pallas, 1814), characterized by the combination of the following characters: total length usually does not exceed 1,200 mm (796–1,205 mm), snout-vent (SVL) length usually less than 1,000 mm (650–970 mm), tail length less than 250 mm (146–245 mm) (see Tables 4 and 6). Tail forms about 25% of the SVL in males and about 21% in females. Head relatively large, distinguished from the body. Snout in prefrontal and internasal area is conspicuously convex which usually forms a hook-nosed head profile. Pileus length on average 1.8–1.9 times larger than its width. Frontal plate 1.2–1.3 times longer than wide. Anterior inframaxillar scute relatively large and wide, 1.2–1.3 times longer than the narrow posterior inframaxillar scute. One or two preocular scales, one loreal, two postoculars, two temporals, three or four posttemporals, eight labials, 10–11 sublabials on each side of the head. Eye in contact with fourth and fifth labials (Table 5; Table S3). Variation in head scale counts is relatively low (see Table S3). Usually two gulars located the anterior inframaxillars. The total number of gulars between inframaxillars and first preventral scale exceeds 12. Number of ventrals is 154–211 (154–206 in males, 194–211 in females), 60–74 subcaudal pairs (65–74 in males, 60–72 in females). 23–25 longitudinal rows of scales are around the midbody, with well-developed keels on 18–21 rows of body scales. The background of dorsal surfaces of the body and lateral surfaces of the head are yellowish or whitish, or seldomly bright yellow. The pattern of the dorsal surface of the body is composed of 50–65 rounded brown or black large ellipsoid spots, which may have whitish edges. Spots can be extended transversely in the posterior part of the body. Pileus is dark, often almost black, slightly lighter on the tip of the snout. Upper preoculars and temporals are dark forming a postocular stripe extending toward the mouth corner. This stripe blends with the dark dorsolateral head coloration anterior to the eye. Pale spots on the labials, only barely visible or lacking on sublabials. Ventral side of the body is whitish to pale yellow, sometimes with pinkish tint. There are marbled patterns of numerous small irregular dark brown and light gray spots with reddish contours that are more pronounced on the lateral sides of ventral plates. Throat is light, with numerous reddish-orange or brownish speckles on the lower jaws and anterior ventral plates. Iris is dark brown or almost black with a thin light rim around the pupil.

      


Figure 5: Habitat at the type locality (Kısıklı, Süphan Mts., Turkey) of Elaphe urartica sp. nov. in south-eastern Turkey (photo by Boris Tuniyev).

Figure 8: Color and pattern variation in Elaphe urartica sp. nov. (A–D) Kaputan, Armenia; (E) Didi Shiraki, Georgia; (F) Ersi, Dagestan, Russian Federation (photos by Boris Tuniyev).

Distribution and habitat.
The geographic range of E. urartica sp. nov. is bordered by the Armenian Plateau, south-eastern foothills of the Great Caucasus, Alazan Valley, Kur-Aras, Lenkoran Lowlands, and the area of Qobustan. The species is distributed in Turkey, Georgia, Armenia, Azerbaijan, Nagorno-Karabakh, Iran, and Russia. In Turkey, it can be found east of the Anatolian Diagonal with reliable records from Kars, Bitlis, Diyarbakır, and Van Provinces, presumably also in Erzurum, Iğdır, and Ağrı Provinces (Baran et al., 2012). In eastern Transcaucasia E. urartica sp. nov. is distributed from south-eastern Georgia to the Zalka Plateau or to Suramskyi Ridge in Southern Ossetia in the West, throughout most of the Armenian territory, Nagorno-Karabakh, and Azerbaijan with the exception of the Abşeron Peninsula. The eastern part of the range lies in northern Iran to the Golestan Province to the East, and Kermanshah and Semnan Provinces to the South (Alekperov & Loginov, 1953; Muskhelishvili, 1970; Flärdh, 1983; Schulz, 1996; Sindaco et al., 2000; Arakelyan et al., 2011; Bunyatova, Akhmedov & Dzhafarov, 2012; Bunyatova, 2013; Najafov, Hashimov & Isgenderov, 2013; Safaei-Mahroo et al., 2015). In the Russian Federation, E. urartica sp. nov. occurs in Samur-Devichi Lowlands of southern Dagestan and probably in the Dagestan Intermontane Region as well (Ananjeva et al., 2006; Mazanaeva & Askenderov, 2014). The species could also occur in the extreme northern regions of Iraq (Sindaco, Venchi & Grieco, 2013).

The snake occurs in a wide range of altitudes—from ca. 25 m below sea level in the Lenkoran foredeep to about 2,600 m a.s.l. in the Shirak Province in Armenia (Arakelyan et al., 2011). It is an eurytopic species inhabiting a wide variety of landscapes: mountain and lowland semi deserts, different types of the steppe, semi subtropical savannah-like forest-steppes with oreoxerophytes, sparse juniper forests, montane broad-leaved forests, and alpine meadows (Fig. 5). The climate within the E. urartica sp. nov. range varies from the subtropical in Lenkoran and piedmont area of eastern Transcaucasia to cold mountain climate in Armenia and north-eastern Anatolia. Humidity varies from highly arid (with annual precipitation of less than 200 mm) to moderately humid (1,400–1,600 mm per year; Clark & Clark, 1973; Arakelyan et al., 2011; Bunyatova, Akhmedov & Dzhafarov, 2012; Şensoy et al., 2016).

Elaphe urartica sp. nov. is sympatric with E. dione in Dagestan, central-eastern Azerbaijan, eastern Georgia, and presumably in north-eastern Turkey, southern Armenia, and northern Iran. All other species of the genus Elaphe have allopatric distribution relative to E. urartica sp. nov. Since the species occurs in a region of southern Russia (Dagestan), north of the Caucasus, that is geographically and politically considered a part of Europe (Sillero et al., 2014), E. urartica sp. nov. is considered another member of the European herpetofauna.

Etymology. The specific epithet is a feminine adjective derived from the name of the ancient kingdom of Urartu that flourished in the Armenian Highlands and around lake Van, an area of recent distribution of E. urartica sp. nov., in the 9th–6th century BCE (Asher & Asher, 2009). We are choosing this name out of respect for Peter Simon Pallas, who proposed the name for E. sauromates, now the sister species of E. urartica, which most likely refers to Sarmatians (Sauromatae; Σαυρομαται in Greek), a confederation of nomadic peoples inhabiting vast portions of the recent range of E. sauromates between the 5th century BCE and 4th century CE.

Proposal of common names. We propose the English name “Urartian Rat Snake” for E. urartica sp. nov. Along with the name “Blotched rat snake”, we also suggest using the name “Sarmatian Rat Snake” for E. sauromates, instead of the older “Eastern Four-lined Rat Snake” derived as a subspecific name from the common name of E. quatuorlineata. The newly proposed name would decrease confusion and also better reflects the scientific name of E. sauromates.


Daniel Jablonski​, Oleg V. Kukushkin, Aziz Avcı, Sabina Bunyatova, Yusuf Kumlutaş, Çetin Ilgaz, Ekaterina Polyakova, Konstantin Shiryaev, Boris Tuniyev and David Jandzik. 2019. The Biogeography of Elaphe sauromates (Pallas, 1814), with A Description of A New Rat Snake Species.   PeerJ. 7:e6944.  DOI: 10.7717/peerj.6944


Tuesday, May 28, 2019

[Paleontology • 2019] Phuwiangvenator yaemniyomi & Vayuraptor nongbualamphuensis • Two New Basal Coelurosaurian Theropod Dinosaurs from the Lower Cretaceous Sao Khua Formation of Thailand


ภูเวียงเวเนเตอร์ แย้มนิยมมี   Phuwiangvenator yaemniyomi
ายุแรปเตอร์ หนองบัวลำภูเอนซิส  Vayuraptor nongbualamphuensis 

Samathi, Chanthasit & Sander, 2019

Megaraptora is a clade of mid to large-sized theropods that are long-snouted, large-clawed, highly pneumatized, and have long and gracile metatarsals. The basal member was reported from the Barremian of Japan. A more derived clade, the Megaraptoridae, is known from the Cenomanian to Santonian of Gondwana. Here two new basal coelurosaurs from the Lower Cretaceous Sao Khua Formation of Thailand are described and named as Phuwiangvenator yaemniyomi gen. et sp. nov. and Vayuraptor nongbualamphuensis gen. et sp. nov. Phuwiangvenator is a megaraptoran coelurosaur and diagnosed by the ventrally flat sacral vertebrae with sulci in the anterior and posterior region of the centra and the anterior rim of metatarsal IV sloping proximolaterally to distomedially and being much lower than that of metatarsal III anteriorly. Vayuraptor is a basal coelurosaur and diagnosed by its astragalus which has two horizontal grooves, two fossae at the base of the ascending process, the ascending process being straight laterally and straight and parallel medially with the medial rim sloping to the tip laterally, and a long and slender astragalar ascending process. Although the position of the basal coelurosaur Vayuraptor remains unclear and must await further discovery, megaraptoran affinities are likely. The Early Cretaceous megaraptoran fossil record has been recovered from the Barremian to Aptian of Asia. All Asian megaraptorans might be a monophyletic clade or a paraphyletic series relative to the Megaraptoridae. Several specimens have been reported from the Aptian to mid-Cretaceous of Australia, and one report from the Albian of South America. These fossils show a high diversity of the Early Cretaceous megaraptorans and a wide distribution during that time. The clade then became more provincial in the Late Cretaceous.

Key words: Dinosauria, Theropoda, Coelurosauria, Megaraptora, PhuwiangvenatorVayuraptor, Cretaceous, Thailand.

Map of Thailand (A) and close-up of northeastern Thailand (B) showing the location of
[Phuwiangvenator yaemniyomi] Phu Wiang locality, Khon Kaen Province (square)
 and [Vayuraptor nongbualamphuensis] Phu Wat locality, Nong Bua Lamphu Province (star).

Samathi et al. (2019). blogs.plos.org/paleocomm 

Systematic palaeontology 
Dinosauria Owen, 1842 
Theropoda Marsh, 1881 
Tetanurae Gauthier, 1986 
Coelurosauria von Huene, 1920 
Megaraptora Benson, Carrano, and Brusatte, 2010 




Genus Phuwiangvenator nov.

 Phuwiangvenator yaemniyomi gen. et sp. nov.
ภูเวียงเวเนเตอร์ แย้มนิยมมี

Etymology: Phu Wiang Mountain, Khon Kaen Province, Thailand, the place where the holotype was found, combined with Latin venator, hunter; thus “Hunter of Phu Wiang”.; and in honor of Sudham Yaemniyom, former geologist of the Department of Mineral Resources, Bangkok, who found the first dinosaur bone of Thailand in 1976 at Phu Wiang Mountain.

Diagnosis.— Phuwiangvenator is a megaraptoran diagnosed by the following autapomorphies: (i) short sulci on the sacral vertebrae ventrally along the anterior and posterior part of the centrum; (ii) the anterior rim of metatarsal IV slopes from proximolaterally to distomedially. This way, the distomedial corner of the proximal articular surface of metatarsal IV in anterior view is much lower than the articular surface of metatarsal III. In addition, the distomedial corner is lower than in any other known theropod.








Genus Vayuraptor nov.

 Vayuraptor nongbualamphuensis gen. et sp. nov.
ายุแรปเตอร์ หนองบัวลำภูเอนซิส

Etymology: From Sanskrit Vayu, God of Wind and Latin raptor, thief; “Raptor of Wind or Wind raptor” in reference to its long and slender tibia, which suggest a fast running animal.; From Nong Bua Lamphu Province where the specimen was recovered.  

Diagnosis.— Vayuraptor is a basal coelurosaur and is diagnosed by the following autapomorphies: (i) astragalus has two short horizontal grooves and two foramina on the astragalar body, and two fossae at the base of the ascending process; (ii) the ascending process of the astragalus is straight laterally and straight and parallel medially at the base. In the middle of the ascending process, the medial rim slopes to the tip laterally; (iii) there is a vertical ridge starting from the tip and disappearing just above the middle of the ascending process; and (iv) extremely high and narrow ascending process of the astragalus, with a ratio of the ascending process height/ascending process width of 1.66.




....

Phuwiangvenator vs. Siamotyrannus: why are they not the same taxon?—
 In Phuwiangvenator, the dorsal vertebrae are longer than high, contrary to the dorsal vertebrae of Siamotyrannus which higher than long. The sacral vertebrae of Phuwiangvenator are also longer than high. Their centra are ventrally flattened and not constricted in ventral view. There is no median transverse constriction on the sacrum, in contrast to Siamotyrannus, where the sacral vertebrae are higher than long. The centra of this taxon are ventrally convex and also have a median transverse constriction. The ventral rims of the sacral centra of Siamotyrannus are much more convex in lateral view than those of Phuwiangvenator. Phuwiangvenator also differs from Siamotyrannus in being a smaller animal. 

Vayuraptor vs. Phuwiangvenator: why are they not the same taxon?—
 These two new theropods belong to the basal Coelurosauria, based on their morphologies as described above. Because the fossils were recovered from the same rock formation within approximately 40 km of each other, careful comparison is needed to determine whether they belong to the same taxon or not. The overlapping materials of these two theropods are the tibia and astragalocalcaneum. Phuwiangvenator is larger than Vayuraptor (tibial length 615 vs. 515 mm, respectively). Although the cranioproximal process of the astragalus is present in Vayuraptor and Phuwiangvenator, it is more prominent in Vayuraptor than in Phuwiangvenator. Two short horizontal grooves on the astragalar body are present in Vayuraptor, whereas only one horizontal groove is present in Phuwiangvenator. There are two fossae at the base of the ascending process of the astragalus in Vayuraptor whereas there is only one fossa in Phuwiangvenator. The calcaneum of Vayuraptor is narrower mediolaterally proximally than that of Phuwiangvenator in anterior view. A shallow notch of the astragalus for the calcaneum process is present in Phuwiangvenator. This notch is not present in Vayuraptor. The character “tibia anterolateral process of the lateral condyle curves as a pointed process” is present in Phuwiangvenator, not in Vayuraptor. This character has been compared with various ontogenetic stages of Allosaurus (UMNH VP 7148, 7922, 7932, 7938, 7939, 7940), and this process was found in all observed specimens (AS personal observations), so we conclude that the differences between Phuwiangvenator and Vayuraptor are not due to ontogeny. The shape of the fibular crest is different as well (e.g., the fibular crest is expanded proximolaterally in Phuwiangvenator vs. being expanded distolaterally in Vayuraptor). The shape of the proximal end of the tibia is different, the proximal articular surface of the medial condyle being more convex in Phuwiangvenator than Vayuraptor

Vayuraptor vs. Siamotyrannus: why are they not the same taxon?—
Vayuraptor and Siamotyrannus are represented by skeletally mature animals based on the fusion of their bones (e.g., astragalocalcaneum in Vayuraptor, and pelvis, dorsal and caudal vertebrae in Siamotyrannus). There is no overlapping material, so anatomical comparison is impossible. Vayuraptor is found here to be a basal coelurosaur. Siamotyrannus is an avetheropod, possibly a basal coelurosaur (Samathi 2013; Samathi and Chanthasit 2017; present work) or basal allosauroid (e.g., Rauhut 2003; Carrano et al. 2012). Vayuraptor differs from Siamotyrannus in being a much smaller animal. Vayuraptor is approximately 4–4.5 m in length (similar to Fukuiraptor), whereas Siamotyrannus is approximately 6.5–7 m in length (Buffetaut et al. 1996). Based on the above information, it is reasonable to conclude that Vayuraptor represents a different taxon from Siamotyrannus.



Conclusions:
 The present study describes the anatomy of the two new basal coelurosaurs from Southeast Asia in detail. One of them, Phuwiangvenator, is here referred to the Megaraptora. These findings extend the diversity of basal megaraptorans and support the origin of Megaraptora in Asia. The Asian megaraptorans might be a monophyletic clade or a paraphyletic series relative to the Megaraptoridae. Recently, Early Cretaceous fossils of megaraptorans have been recovered from the Barremian to Aptian of Asia. Several materials have been reported from the Aptian to mid-Cretaceous of Australia, whereas there is only one report from the Albian of South America. These show a high diversity and wide distribution during the Early Cretaceous which became more provincial in the Late Cretaceous. However, the phylogenetic position of the basal coelurosaur Vayuraptor must await further discovery of additional material and remains open to future analyses.

    


Adun Samathi, Phornphen Chanthasit and P. Martin Sander. 2019. Two New Basal Coelurosaurian Theropod Dinosaurs from the Lower Cretaceous Sao Khua Formation of Thailand. Acta Palaeontologica Polonica. in press. DOI: 10.4202/app.00540.2018

Thai dinosaur is a cousin of T. rex phys.org/news/2019-05-thai-dinosaur-cousin-rex.html via @physorg_com
Mega-raptors were top predators in Thailand 100 million years ago | PLOS Paleo Community blogs.plos.org/paleocomm/2019/05/28/mega-raptors-were-top-predators-in-thailand-100-million-years-ago/


Monday, May 27, 2019

[Entomology • 2019] Ypsolopha rhinolophi • A New Species (Lepidoptera: Ypsolophidae) from Portugal and France unveiled by Bats


 Ypsolopha rhinolophi Corley

in Corley, Ferreira & Mata, 2019. 

Abstract
A new species Ypsolopha rhinolophi Corley is described from northern Portugal and south-east France. It resembles Y. alpella (Denis & Schiffermüller, 1775) and Y. lucella (Fabricius, 1775) but shows clear differences from both species in DNA barcode and in male and female genitalia. Male genitalia of Y. lucella are illustrated for the first time. The new species has been collected at light, reared from larvae on Quercus pyrenaica Willd. and recognised from DNA barcode fragments obtained from droppings of horseshoe bats.

Keywords:  Lepidoptera, Yponomeutoidea, DNA barcoding, horseshoe bats, Ypsolopha lucella male genitalia

Ypsolopha rhinolophi,
Portugal, Minho, Melgaço, Assureira, Ponte Nova, 8.viii.2015 (J. Nunes).

Ypsolopha rhinolophi Corley, sp. nov.

Diagnosis. Y. rhinolophi is immediately separable from Y. alpella by the black-ringed white antenna, and differs from the most closely related species Y. lucella (Fig. 1E) in the absence of white scales on head and thorax. Further differences externally and in genitalia from both of these species are presented in Table 2 and Figs 1–3. Both Y. lucella and Y. alpella have larvae feeding on Quercus. There are other European Ypsolopha species feeding on Quercus: Y. sylvella (Linnaeus, 1767) is a close relative of Y. alpella, but is easily distinguished from the new species by two dark lines obliquely crossing most of the forewing. Y. parenthesella (Linnaeus, 1761) and Y. ustella (Clerck, 1759) also feed on Quercus, but are not similar in appearance to Y. rhinolophi.
....

Distribution. In Portugal Ypsolopha rhinolophi is known from direct collection of larvae or adults from two localities in Trás-os-Montes in the north-east Portugal and from single localities in Beira Alta and Beira Litoral, and from a photographed moth in Minho in the north-west of the country which clearly shows the coloration, wing shape and black and white antennae of the new species (Fig. 1C). In addition, DNA metabarcode samples obtained from bat droppings indicate its presence in two additional localities in Trás-os-Montes (see Fig. 4).
 In France it is known from a single locality in Basses Alpes in the south-east of the country. Suitable habitat exists for Y. rhinolophi in Spain, so the species is likely to occur in the country. 

Etymology. The species name rhinolophi recognises the part played in the discovery of the new species by the horseshoe bats Rhinolophus ferrumequinum and Rhinolophus euryale. The name is a noun in genitive case



 Martin Corley, Sónia Ferreira and Vanessa Mata. 2019. Ypsolopha rhinolophi sp. nov. (Lepidoptera: Ypsolophidae), A New Species from Portugal and France unveiled by Bats. Zootaxa. 4609(3); 565–573. DOI: 10.11646/zootaxa.4609.3.10

Investigadores do CIBIO-InBIO descobrem nova espécie de borboleta em Portugal  noticias.up.pt/investigadores-da-uporto-descobrem-nova-especie-de-borboleta-em-portugal

Friday, May 24, 2019

[Herpetology • 2019] Subdoluseps malayana • A New Skink of the Genus Subdoluseps Freitas, Datta-Roy, Karanth, Grismer & Siler, 2019 from Peninsular Malaysia


 Subdoluseps malayana
Grismer, Dzukafly, Muin, Quah, Karin, Anuar & Freitas, 2019


Abstract
An integrative taxonomic analysis of Subdoluseps herberti from southern Thailand and Peninsular Malaysia and S. samajaya from Sarawak, East Malaysia (Borneo) recovers the former as paraphyletic with respect to the latter. The analyses recover the three southernmost populations of S. herberti in Peninsular Malaysia as conspecific and the sister lineage of S. samajaya, whereas S. herberti from Thailand and northern Peninsular Malaysia constitute the sister species to S. samajaya plus the southern three Peninsular Malaysian populations. As such, the southern populations are described herein as Subdoluseps malayana sp. nov. and all three species are referred to as the S. herberti group. Clade boundaries and breaks within this group on the Thai-Malay Peninsula occurring at the Isthmus of Kra, across the Kangar-Pattani line, and between the Thai-Malay Peninsula and Borneo are consistent with phylogeographic patterns of other Sundaic taxa. The discovery of S. malayana sp. nov. continues to underscore the fact that, despite the well-studied nature of the lizard fauna of Peninsular Malaysia, much of it still remains unrealized and for conservation efforts to move forward, field research followed by expeditiously revised taxonomies must continue.

 Keywords: Reptilia, Integrative taxonomy, Thai-Malay Peninsula, Borneo, Lygosoma. Scincidae

Juvenile Subdoluseps malayana sp. nov. from Bukit Panchor State Park, Penang, Peninsular Malaysia
(photo by M. A. Muin).

FIGURE 2. A. Subdoluseps malayana sp. nov. (holotype LSUHC 10995) from Teluk Rubiah, Perak, Peninsular Malaysia (photo by L. L. Grismer). B. Subdoluseps herberti (LSUDPC 4851) from Phuket Island, Phuket, Thailand (photo by W. Grossmann).
C. Subdoluseps malayana sp. nov. (LSUDPC 10945) from Kampung Pisang, Perak, Peninsular Malaysia (photo by Z. Dzukafly). D. Subdoluseps herberti (LSUHC 11803) from Perlis State Park, Perlis, Peninsular Malaysia (photo by E.S.H. Quah).
E. Subdoluseps samajaya from the Sama Jaya Forest Reserve, Kuching, Sarawak, East Malaysia (photo from Karin et al. 2018). F. Juvenile 
Subdoluseps malayana sp. nov. (paratype LSUHC 12098) from Bukit Panchor State Park, Penang, Peninsular Malaysia (photo by M. A. Muin).

Subdoluseps malayana sp. nov.
Suggested common name: Malaysian Supple Skink

Lygosoma herberti (part) Sworder, 1933:103; Grismer, 2011:619; Karin et al.., 2018:361.
Subdoluseps herberti (part) Freitas et al., 2019:22.

Etymology. The name malayana is in reference to this species being endemic to Peninsular Malaysia.

Distribution. Subdoluseps malayana sp. nov. is known only from Peninsular Malaysia from the states of Penang and Perak but is expected to occur farther to the south.


L. Lee Grismer, Zaharil Dzukafly, Mohd Abdul Muin, Evan S. H. Quah, Benjamin R. Karin, Shahrul Anuar and Elyse S. Freitas. 2019. A New Skink of the Genus Subdoluseps (Hardwicke & Gray, 1828) from Peninsular Malaysia. Zootaxa. 4609(2); 358–372.  DOI: 10.11646/zootaxa.4609.2.10  

Freitas, E.S., Datta-Roy, A., Karanth, P., Grismer, L.L. and Siler, C.D. 2019. Multilocus phylogeny and a new classification for African, Asian and Indian supple and writhing skinks (Scincidae: Lygosominae). Zoological Journal of the Linnean Society. zlz001.  DOI: 10.1093/zoolinnean/zlz001