Saturday, October 26, 2019

[Mammalogy • 2019] The Evolutionary Radiation of Hominids: A Phylogenetic Comparative Study


Geographical distribution of the sampled extant (circles) and fossil (triangles) Hominoid species.
Distinct colors were used for Hominidae (orange) and Hylobatidae (dark cyan) families.

in Rocatti & Perez, 2019. 

Abstract
Over the last 150 years the diversity and phylogenetic relationships of the hominoids have been one of the main focuses in biological and anthropological research. Despite this, the study of factors involved in their evolutionary radiation and the origin of the hominin clade, a key subject for the further understanding of human evolution, remained mostly unexplored. Here we quantitatively approach these events using phylogenetic comparative methods and craniofacial morphometric data from extant and fossil hominoid species. Specifically, we explore alternative evolutionary models that allow us to gain new insights into this clade diversification process. Our results show a complex and variable scenario involving different evolutionary regimes through the hominid evolutionary radiation –modeled by Ornstein-Uhlenbeck multi-selective regime and Brownian motion multi-rate scenarios–. These different evolutionary regimes might relate to distinct ecological and cultural factors previously suggested to explain hominid evolution at different evolutionary scales along the last 10 million years.

Figure 4: Geographical distribution of the sampled extant (circles) and fossil (triangles) Hominoid species. Distinct colors were used for Hominidae (orange) and Hylobatidae (dark cyan) families. Extant species distribution was obtained from IUCN redlist (www.iucnredlist.org) database, while fossil locations were extracted from bibliographical sources.




Guido Rocatti and S. Ivan Perez. 2019. The Evolutionary Radiation of Hominids: A Phylogenetic Comparative Study. Scientific Reports. 9: 15267. nature.com/articles/s41598-019-51685-w

        

[Herpetology • 2020] Phylogenetic Relationships and Systematics of the Amazonian Poison Frog Genus Ameerega using Ultraconserved Genomic Elements



in Guillory, French, Twomey, et al., 2020. 

Highlights: 
• We present the first comprehensive phylogeny for the poison frog Ameerega from genome-scale data.
• There is evidence for at least six undescribed species of Ameerega.
• Our phylogenetic reconstruction of Ameerega differs strongly from previously published ones.
Ameerega almost certainly has its origins in the Andes Mountains.
Ameerega most likely diverged from its sister taxon ~20 million years ago.

Abstract
The Amazonian poison frog genus Ameerega is one of the largest yet most understudied of the brightly colored genera in the anuran family Dendrobatidae, with 30 described species ranging throughout tropical South America. Phylogenetic analyses of Ameerega are highly discordant, lacking consistency due to variation in data types and methods, and often with limited coverage of species diversity in the genus. Here, we present a comprehensive phylogenomic reconstruction of Ameerega, utilizing state-of-the-art sequence capture techniques and phylogenetic methods. We sequenced thousands of ultraconserved elements from over 100 tissue samples, representing almost every described Ameerega species, as well as undescribed cryptic diversity. We generated topologies using maximum likelihood and coalescent methods and compared the use of maximum likelihood and Bayesian methods for estimating divergence times. Our phylogenetic inference diverged strongly from those of previous studies, and we recommend steps to bring Ameerega taxonomy in line with the new phylogeny. We place several species in a phylogeny for the first time, as well as provide evidence for six potential candidate species. We estimate that Ameerega experienced a rapid radiation approximately 7–11 million years ago and that the ancestor of all Ameerega was likely an aposematic, montane species. This study underscores the utility of phylogenomic data in improving our understanding of the phylogeny of understudied clades and making novel inferences about their evolution.

 Keywords: Phylogenomics, UCEs, Ameerega, Systematics, Dendrobatidae, Amphibians




 Wilson X. Guillory, Connor M. French, Evan M. Twomey, Germán Chávez, Ivan Prates, Rudolf von May, Ignacio De la Riva, Stefan Lötters, Steffen Reichle, Shirley J .Serrano-Rojas, Andrew Whitworth and Jason L. Brown. 2020. Phylogenetic Relationships and Systematics of the Amazonian Poison Frog Genus Ameerega using Ultraconserved Genomic Elements. Molecular Phylogenetics and Evolution. 142; 106638. DOI: 10.1016/j.ympev.2019.106638 

[Entomology • 2019] Gynacantha vargasi • A New Species of Dragonfly (Odonata: Anisoptera: Aeshnidae) from Costa Rica


Gynacantha vargasi Haber, 2019


Abstract 
The male and female of Gynacantha vargasi sp. nov. are described from three sites on the Caribbean slope of Costa Rica. The species is distinguished from its congeners by lime-green lateral thoracic stripes, orange-brown hind femur tipped with black, dorsal side of the hind tibia yellow, unique cercus shape, diurnal behavior, and barcode analysis. A key to all species of Gynacantha recorded from Mexico and Central America is provided.

Keywords: Odonata, barcode, dragonflies, endangered species, endemic, darners, Gynacantha caudataGynacantha tenuis, key to species, Monteverde

Gynacantha vargasi sp. nov., holotype male.

Gynacantha vargasi sp. nov.

Etymology. This species is named in honor of Ronald Vargas Castro, one of Costa Rica’s great naturalists, a trusted companion who has accompanied me on many Odonata expeditions in Costa Rica and Ecuador and who has collected numerous rare and undescribed species of Odonata, including two of the four known specimens of this new Gynacantha.


William A. Haber. 2019. Gynacantha vargasi (Odonata: Anisoptera: Aeshnidae) sp. nov. from Costa Rica. Zootaxa. 4612(1); 58–70. DOI: 10.11646/zootaxa.4612.1.3

Abstract: El macho y la hembra de Gynacantha vargasi sp. nov. se describen de tres sitios en la vertiente caribeña de Costa Rica. La especie se distingue de sus congéneres por sus franjas torácicas laterales de color verde limón, el fémur posterior de color marrón anaranjado con el ápice negro, lado dorsal de la tibia trasera amarillo, la forma única del cerco, su comportamiento diurno, y el análisis de código de barras. Se proporciona una clave para todas las especies de Gynacantha registradas de México y América Central.

[Herpetology • 2019] Gehyra electrum • A New Species of Rock-dwelling Gecko (Gekkonidae: Gehyra) from the Mt Surprise Region of northern Queensland, Australia


Gehyra electrum 
Zozaya, Fenker & Macdonald, 2019

Abstract
We describe a new species of rock-dwelling Gehyra Gray, 1834 (Gekkonidae) from the Einasleigh Uplands of inland north Queensland, Australia. Morphological, ecological, and molecular data clearly support the new species as distinct and place it within the ‘australis group’. Gehyra electrum sp. nov. is distinguished from congeners by a combination of medium adult size (SVL 46–50 mm), an orange-brown to pinkish-orange background colouration with a pattern of distinct whitish spots and irregular black to purple-brown blotches or bars, possessing 7–8 undivided subdigital lamellae on the expanded portion of the fourth toe, and a wedge-shaped mental scale that separates the inner-postmental scales along 40% or more of their length. Gehyra electrum sp. nov. is a rock specialist currently known only from granite outcrops of the Mt Surprise region, Queensland. This is the second recently described Gehyra from the Einasleigh Uplands and adds to the growing number of endemic reptiles recognised in the region.

Keywords: Reptilia, Einasleigh Uplands, endemism, Gehyra catenata, Gehyra dubia, Gehyra einasleighensis, Gehyra electrum sp. nov., sympatry





Gehyra electrum sp. nov. 


Stephen M. Zozaya, Jessica Fenker and Stewart L. Macdonald. 2019. A New Species of Rock-dwelling Gecko (Gekkonidae: Gehyra) from the Mt Surprise region of northern Queensland, Australia. Zootaxa. 4688(4); 503–518. DOI: 10.11646/zootaxa.4688.4.3

  

Friday, October 25, 2019

[PaleoOrnithology • 2019] Gretcheniao sinensis • A New Bohaiornis-like Bird from the Early Cretaceous of China: Enantiornithine Interrelationships and Flight Performance


Gretcheniao sinensis 
Chiappe, Qingjin, Serrano, Sigurdsen, Min, Bell & Di, 2019


Abstract 
During the last decade, several Bohaiornis-like enantiornithine species—and numerous specimens—have been recognized from the celebrated Jehol Biota of northwestern China. In this paper, we describe the anatomy of another “bohaiornithid” species from the 125 million-year-old Yixian Formation of Liaoning Province, China. The new taxon differs from previously recognized “bohaiornithids” on a number of characters from the forelimb and shoulder girdle. We also provide a new phylogenetic framework for enantiornithine birds, which questions the monophyly of the previously recognized bohaiornithid clade and highlights ongoing challenges for resolving enantiornithine interrelationships. Additionally, we offer the first assessment of the flight properties of Bohaiornis-like enantiornithines. Our results indicate that while “bohaiornithids” were morphologically suited for flying through continuous flapping, they would have been unable to sustain prolonged flights. Such findings expand the flight strategies previously known for enantiornithines and other early birds.

Figure 1: Photo of the holotype of Gretcheniao sinensis (BMNHC Ph 829).


Systematic Paleontology
Aves Linnaeus, 1758
Pygostylia Chiappe, 2002

Ornithothoraces Chiappe, 1995
Enantiornithes Walker, 1981

Gretcheniao sinensis gen. et sp. nov.

Holotype. BMNH Ph 829 (Beijing Museum of Natural History, Beijing, China) (Fig. 1; Table 1). Nearly complete skeleton, largely exposed in ventral view, and contained in a single slab. Faint remnants of plumage are preserved as carbonized material, primarily around the neck and projecting from the distal portion of the left forelimb. A resin cast of the specimen is deposited in the collection of the Dinosaur Institute of the Natural History Museum of Los Angeles County under the number LACM 7917/156630.

Etymology. Gretcheniao in recognition of Mrs. Gretchen Augustyn and her support to the Dinosaur Institute of the Natural History Museum of Los Angeles County, and the Chinese character (niăo), meaning “bird”; sinensis from “sino,” a term generally used in reference to China.

Geographic and Stratigraphic Provenance. BMNH Ph 829 (Fig. 1) was recovered from strata belonging to the Early Cretaceous Yixian Formation in Jianchang County, near Huludao City in Western Liaoning, China. The fossiliferous beds of the Yixian Formation have been dated at approximately 125 million-year-old (Swisher et al., 2002; He et al., 2004, 2006), corresponding to the Barremian Epoch of the Cretaceous.

Differential Diagnosis. A medium-sized enantiornithine bird sharing the following traits with other “bohaiornithids”: robust rostrum with large subconical teeth that are gently recurved, caudolaterally directed lateral trabeculae of the sternum, and strongly curved and elongated pedal claws. The new species is distinguishable from other Bohaiornis-like enantiornithines in having a unique combination of characters including: humeral bicipital area scared by a large cranioventrally facing fossa; slightly tapered omal ends of the furcular rami; ventral tubercle at the convergence of the furcular rami; slender coracoid with a sternal margin that is slightly more than 1/3 the length of the bone and a straight lateral margin; significantly elongated carpometacarpus; and metacarpal II carrying a protuberance on its dorsal surface.

Conclusion: 
BMNH Ph 829 adds diversity to the overall anatomy of Bohaiornis-like enantiornithines (“bohaiornithids”) by providing morphological details previously unknown for these birds. The unique combination of skeletal traits of BMNH Ph 829 supports the recognition of a new species, Gretcheniao sinensis, which appears to represent an early divergence among these birds. Nonetheless, our extensive cladistic analyses show that despite the discovery of many well-preserved enantiornithines from the Jehol Biota (Chiappe & Meng, 2016), the interrelationships of these birds remain contentious. Our analyses do not recover a monophyletic clade of the six species that have been previously considered as “bohaiornithids”—only a subset of these are clustered in a monophyletic group. Further studies are needed to test whether these previously identified “bohaiornithids” constitute an evolutionary grade, sharing an overall morphology (largely symplesiomorphic characters) but lacking a single common ancestry. The degree to which these “bohaiornithids” may have shared a similar ecology needs to be further explored considering that some of them (e.g., Fortunguavis xiaotaizicus) have been interpreted as highly specialized (i.e., scansorial) (Wang, O’Connor & Zhou, 2014).

Our study also provides the first assessment of the flight properties of “bohaiornithid” enantiornithines. Key flight parameters inferred for these birds suggest ineffectiveness for performing intermittent flight (either flap-gliding or bounding) that was inferred for other enantiornithines (Liu et al., 2017, 2019; Serrano et al., 2017, 2018). Instead, these parameters indicate that Gretcheniao sinensis and other “bohaiornithids” were morphologically suited for flying through continuous flapping, although not able to perform prolonged flights. Our aerodynamic results thus expand the previously known aerial repertoire of the Cretaceous enantiornithines.


Luis M. Chiappe, Meng Qingjin, Francisco Serrano, Trond Sigurdsen, Wang Min, Alyssa Bell and Liu Di. 2019. New Bohaiornis-like Bird from the Early Cretaceous of China: Enantiornithine Interrelationships and Flight Performance. PeerJ. 7:e7846. DOI: 10.7717/peerj.7846


[Botany • 2019] Isotrema cangshanense (Aristolochiaceae) • A New Species from Yunnan [Taxonomic Studies on the Genus Isotrema from China: I]


Isotrema cangshanense X.X.Zhu, H.L.Zheng & J.S.Ma

in Zhu, Zheng, Wang, et al., 2019. 
苍山关木通  ||  DOI: 10.3897/phytokeys.134.37243 

Abstract
Isotrema cangshanense X.X.Zhu, H.L.Zheng & J.S.Ma, a new species from western Yunnan, China, is described and illustrated here. It is similar to I. utriforme, I. forrestianum, I. cucurbitoides and I. obliquum The major differences between them are outlined and discussed. A detailed description, along with line drawings, photographs, habitat and distribution, as well as a comparison to morphologically similar species, is also provided. Meanwhile, the new taxon is assessed as Vulnerable (VU D2), according to the IUCN Red List criteria.

Keywords: Aristolochia, Isotrema, morphology, subgenus Siphisia, taxonomy


 Figure 2. Isotrema cangshanense X.X.Zhu, H.L.Zheng & J.S.Ma, sp. nov. 
A habit B leaves C flower bud D inflorescence E flower (front view) F flowers (lateral view) G anthers and gynostemium H the dehiscent capsule I seeds. Photographed by Xinxin Zhu.

Figure 1. Isotrema cangshanense X.X.Zhu, H.L.Zheng & J.S.Ma, sp. nov. 
A habit B flower (lateral view) C flower (front view) D opened flower (showing the inner structure) E anthers and gynostemium F the dehiscent capsule G seed. Illustration by Shizhen Qiao.

Isotrema cangshanense X.X.Zhu, H.L.Zheng & J.S.Ma, sp. nov.
  
Diagnosis: Isotrema cangshanense is morphologically similar to Isotrema utriforme (S. M. Hwang) X. X. Zhu, S. Liao & J. S. Ma, I. forrestianum (J. S. Ma) X. X. Zhu, S. Liao & J. S. Ma, I. cucurbitoides (C. F. Liang) X. X. Zhu, S. Liao & J. S. Ma and I. obliquum (S. M. Hwang) X. X. Zhu, S. Liao & J. S. Ma (Zhu et al. 2019a), but is distinguishable from these species by the following diagnostic characters: laminas oblong-lanceolate; calyx outside light yellow; limb narrow-ovoid, 2.4–3 × 0.9–1 cm, asymmetric, forming an acute angle with the upper part of the tube, 3-lobed, upper part separated to the middle, lower part shallowly lobed, inside black purple, net-shaped protruding stripes; throat ca. 5 mm in diam. ....

Figure 4.
A–C Isotrema cangshanense 
X.X.Zhu, H.L.Zheng & J.S.Ma, sp. nov. A leaves B flower (lateral view) C longitudinal section of flower (showing the inside structure)
D–F Isotrema utriforme (S. M. Hwang) X. X. Zhu, S. Liao & J. S. Ma D leaves E flower (lateral view) F longitudinal section of flower (showing the inside structure)
G–I I. forrestianum (J. S. Ma) X. X. Zhu, S. Liao & J. S. Ma G leaves H flower (lateral view) I longitudinal section of flower (showing the inside structure)
J–L I. obliquum (S. M. Hwang) X. X. Zhu, S. Liao & J. S. Ma J leaves K flower (lateral view) L longitudinal section of flower (showing the inside structure).

 A–C, G–I Photographed by Xinxin Zhu D–F photographed by Lei Cai; J–L photographed by Yuan Wang.


    

Etymology: The specific epithet derives from the type locality, The Cangshan Mountain, Yangbi County, western Yunnan, south-western China. The Chinese name is given as “苍山关木通”.

Distribution and habitat: The new species is currently known only from the Cangshan Mountain, Yangbi County, Yunnan, China. It grows in forests at an elevation between 2239 m and 2379 m, together with Castanopsis sp. (Fagaceae), Disporum sp. (Colchicaceae), Notochaete hamosa Benth. (Lamiaceae), Photinia Lindl. (Rosaceae), Rubus sp. (Rosaceae) etc.


 Xin Xin Zhu, Hai Lei Zheng, Jun Wang, Yong Qian Gao and Jin Shuang Ma. 2019. Taxonomic Studies on the Genus Isotrema (Aristolochiaceae) from China: I. I. cangshanense, A New Species from Yunnan.  PhytoKeys. 134: 115-124. DOI: 10.3897/phytokeys.134.37243

   

Thursday, October 24, 2019

[Arachnida • 2019] Aphonopelma bacadehuachi • A New Species of Aphonopelma (Araneae: Mygalomorphae: Theraphosidae) from the Madrean Pine-oak Woodlands of northeastern Sonora, Mexico


 Aphonopelma bacadehuachi 
 Hendrixson, 2019


Abstract
The tarantula spider genus Aphonopelma Pocock, 1901 has received considerable attention in recent years but the group’s diversity remains poorly understood in Mexico, particularly in the pine-oak woodlands of the Sierra Madre Occidental and associated Madrean “Sky Islands”. A pair of tarantulas discovered from an unsampled region in the Sierra de Bacadéhuachi (the westernmost range of the Sierra Madre Occidental) in northeastern Sonora was found to be closely related to four species from the Madrean “Sky Islands” in Arizona and New Mexico. An integrative approach for delimiting species (incorporating data from molecular phylogenetics, morphology, distributions, and breeding periods) suggests that the specimens from Sierra de Bacadéhuachi belong to an undescribed species that is herein named Aphonopelma bacadehuachi sp. nov. This new species adds to our knowledge of an increasingly diverse assemblage of Aphonopelma from the Madrean Pine-Oak Woodlands Hotspot. Collaborations between Mexican and American researchers are needed to accelerate discovery and description of the group’s remaining diversity, particularly in light of the many threats facing the ecoregion including habitat degradation and climate change.

Keywords: Araneae, biodiversity hotspot, DNA barcoding, integrative taxonomy, Madrean Sky Islands, Sierra de Bacadéhuachi, Sierra Madre Occidental, tarantula




Brent E. Hendrixson. 2019. A New Species of Aphonopelma (Araneae: Mygalomorphae: Theraphosidae) from the Madrean Pine-oak Woodlands of northeastern Sonora, Mexico. Zootaxa. 4688(4); 519–534. DOI: 10.11646/zootaxa.4688.4.4

Tuesday, October 22, 2019

[Herpetology • 2019] Montivipera xanthina varoli • A New Subspecies of Ottoman Viper, Montivipera xanthina (Gray, 1849), (Squamata: Viperidae) from Geyik Mountains, Mediterranean Turkey


Montivipera xanthina varoli 
 Afsar, Yakin, Çiçek & Ayaz, 2019


Abstract
A new Ottoman viper subspecies, Montivipera xanthina varoli n. subsp., is described from the higher altitudes of Gündoğmuş (Antalya). The new subspecies differs from the other M. xanthina populations by pholidosis; higher number of intercanthals and lower number of subcaudalia. Also, the whiteness between windings or spots on dorsum pattern were observed in new subspecies, similar to the southern populations. Furthermore, the spots on the ventrals became denser in the mid-body and forms darker colorization at the end of body of the males and the tail tips are yellowish-orange or light orange on both sexes.

Key words: Viperidae, new subspecies, Montivipera xanthina varoli, n. subsp., systematics, Antalya, Turkey.

Figure 2. The holotype of Montivipera xanthina varoli (male) from Geyik Mountains, Antalya, Turkey.

 
Montivipera xanthina varoli n. subsp.

Diagnosis: This subspecies has similar characteristics with those of the southern populations according to Nilson & Andren (1986). The whiteness between spots and zig-zag windings in the dorsum is more prominent in the new subspecies than in the southern population, and females have darker greyish-brown skin color than males. Whiteness between blackish spots can be also more prominent in male specimens compared to only adult female specimen. In three male specimens, there was almost no spotting and colorization under the head. The spots on ventrals became denser in the mid-body and forms darker colorization at the end of body. Also, just as stated in Nilson & Andren (1986), in three of the four evaluated specimens, they have neck spots united with the dorsal band. The tail tips of all four specimens are yellowish-orange or light orange while tail tip is yellow for other M. xanthina populations according to Nilson & Andren (1986). In addition to color-pattern properties, new subspecies are differ from M. x. nilsoni by having two series of circumocular scales which is similar to nominate subspecies; M. x. dianae by having lower number of rows of dorsal scales (anterior 23-24; mid-body 23; posterior 17-18); M. x. occidentalis a higher number of intercanthals and dorsal scales rows. Also new subspecies can be distinguished from other M. xanthina populations in Turkey by both having more intercanthals (12, 13) and less subcaudalia (≤30).
...

Derivatio nominis: The newly described subspecies were named in honor of Prof. Dr. Cemal Varol TOK who made valuable contributions to Turkish Herpetofauna and also the word “var’ol” is a verb that means “to exist, to stay alive, to be in existence”.


Habitat and Distribution: The specimens were collected in rocky areas with subalpine herbaceous plant vegetation on mountain slope on Mühür Mt. on western of Geyik Mountains, Gündoğmuş/Antalya, Turkey (Figure 5). Euphorbia nicaeensis is common, and Verbascum sp. is also observed in the area. In addition, Astragalus sp. and Juniperus oxycedrus are also seen. There are steppe areas in the higher parts, and moist areas in the regions close to the valley floor. Other sympatrically living reptiles are; Testudo graeca, Anatololacerta pelasgiana, Stellagama stellio, Eirenis modestus, Platyceps najadum and newly described critically endangered viper subspecies Vipera anatolica senliki. Also, Pelophylax bedriagae and Ablepharus budaki were given as sympatric species in Göçmen et al. (2017)




Murat Afsar, Batuhan Y. Yakin, Kerim Çiçek and Dinçer Ayaz. 2019. A New Subspecies of Ottoman Viper, Montivipera xanthina (Gray, 1849), (Squamata: Viperidae) from Geyik Mountains, Mediterranean Turkey. Ecologica Montenegrina. 22: 214-225. biotaxa.org/em/article/view/57523

Bayram Göçmen, Konrad Mebert, Mert Karış, Mehmet Anıl Oğuz and Sylvain Ursenbacher. 2017. A New Population and Subspecies of the Critically Endangered Anatolian Meadow Viper Vipera anatolica Eiselt and Baran, 1970 in eastern Antalya province. Amphibia-Reptilia. 38: 289-305.

[Herpetology • 2019] Tylototriton kachinorum • A New Species of Crocodile Newt, Genus Tylototriton (Caudata, Salamandridae) from the Mountains of Kachin State, northern Myanmar


Tylototriton kachinorum  
Zaw, Lay, Pawangkhanant, Gorin & Poyarkov, 2019


Abstract
 We describe a new species of the genus Tylototriton from Ingyin Taung Mt., Mohnyin Township, Kachin State, Myanmar, based on morphological and molecular evidence. The new species is assigned to the subgenus Tylototriton s. str. and is clearly distinct from all known congeners by the following characters: medium body size; thin, long tail, lacking lateral grooves; rough skin; truncate snout; wide, protruding supratemporal bony ridges on head, beginning at anterior corner of orbit; weak, almost indistinct sagittal ridge; long, thin limbs, broadly overlapping when adpressed along body; distinct, wide, non-segmented vertebral ridge; 13 or 14 rib nodules; brown to dark-brown background coloration with dull orange-brown to yellowish-brown markings on labial regions, parotoids, rib nodules, whole limbs, vent, and ventral tail ridge. We also briefly discuss biogeography and species diversity of the genus Tylototriton in Myanmar.


Key words: Tylototriton kachinorum sp. nov., mtDNA genealogy, ND2, 16S rRNA, Shan, Biogeography, Endemism, Taxonomy




Figure 4: Holotype of Tylototriton kachinorum sp. nov. (ZMMU A5953, male) in situ 
(Photo by Nikolay A. Poyarkov and Than Zaw)



Tylototriton kachinorum sp. nov.



Diagnosis: The new species is assigned to the genus Tylototriton based on molecular data and by the following combination of morphological attributes: (1) presence of dorsal granules, (2) dorsolateral bony ridges on head, (3) presence of dorsolateral series of knob-like warts (rib nodules); and (4) absence of quadrate spine (Figure 2). Tylototriton kachinorum sp. nov. is distinguished from all other congeners by a combination of the following morphological attributes: (1) medium body size, adult SVL 62.3–74.1 mm in males, 72.5– 84.8 mm in females; (2) tail thin and long, longer than body in both sexes, lacking lateral grooves; (3) skin rough with fine granules; (4) snout truncate in dorsal view; (5) supratemporal bony ridges on head wide, protruding, beginning at anterior corner of orbit; (6) sagittal ridge on head very weak, almost indistinct; (7) limbs long and thin, tips of forelimb and hindlimb broadly overlapping when adpressed along body; (8) vertebral ridge distinct, wide, non-segmented; (9) rib nodules weakly distinct, 13 – 14 along each side of body; (10) background coloration brown to dark-brown; (11) labial regions, parotoids, rib nodules, whole limbs, vent, ventral tail ridge with dull orange-brown to yellowish-brown markings.

The new species is also markedly distinct from all congeners for which comparable sequences are available of ND2 (P≥ 5.3%) and 16S rRNA (P≥2.4%) mitochondrial DNA genes.


Etymology: The specific name “kachinorum is a Latin adjective in the genitive plural (masculine gender), derived from the name of the Kachin people who inhabit the montane areas of northern Myanmar and adjacent territories (Kachin Hills), including the type locality of the new species.




Recommended vernacular name: We recommend the following name in English: Kachin Crocodile Newt. Recommended vernacular name in Burmese (Myanmar) language: Kachin Yae Poke Thin.


Figure 6: Lateral (A), dorsal (B), and ventral (C) views of larval specimen (ZMMU A5957; Grosse (2013) stage 40) of Tylototriton kachinorum sp. nov. in life Scale bar: 3 mm. 
Photos by Nikolay A. Poyarkov


   


Than Zaw, Paw Lay, Parinya Pawangkhanant, Vladislav A. Gorin and Nikolay A. Poyarkov, Jr. 2019.  A New Species of Crocodile Newt, Genus Tylototriton (Amphibia, Caudata, Salamandridae) from the Mountains of Kachin State, northern Myanmar. Zoological Research. 40(3); 151-174. DOI: 10.24272/j.issn.2095-8137.2019.043

       

[Botany • 2019] A Taxonomic Revision of Liparis (Orchidaceae: Epidendroideae: Malaxideae) in Thailand


Liparis vestita Rchb.f.

in Tetsana, Sridith, Watthana & Pedersen. 2019. 

Abstract
Following a historical outline, the methods and results of a taxonomic revision of Liparis in Thailand are presented. Applying the traditional methods and techniques of morphology-based botanical revision work, the revision mainly relied on examination of dried and liquid-preserved specimens from 13 herbaria. However, the herbarium studies were supplemented with observations of live plants made during 24 field trips to five of the seven floristic regions of Thailand. The taxonomic value of selected morphological characters is assessed, and ecological aspects are surveyed together with occurrence patterns in Thailand and the overall geographic affinities of the Liparis species represented in the Thai flora. Thirty-seven species are accepted, whereas reports of L. distans and L. kwangtungensis from Thailand are treated as dubious. One new species, Liparis buddhawongii, is described as new, based on material from Doi Ang Khang in Chiang Mai province. Full taxonomic accounts are provided for the genus and species, including a dichotomous key to the species. Whereas the synonymies are intended to be complete, all morphological descriptions have been prepared exclusively from Thai material. The accepted names L. balansae and L. resupinata are lectotypified, whereas a neotype is designated for L. ferruginea; L. downii and L. melanoglossa are proposed as new taxonomic (heterotypic) synonyms. All accepted species are illustrated by line drawings, and references are provided to additional good illustrations in the literature.

Keywords: taxonomy, typification, Monocots, Asparagales


Liparis buddhawongii Tetsana, Watthana & H. A. Pedersen

เอื้องโกเมนพุทธวงศ์ Liparis buddhawongii Tetsana, Watthana & H. A. Pedersen เป็นกล้วยไม้ดินขึ้นบนเขาหินปูน ใบ 2 ใบ แผ่ติดดิน ขนาดไม่เท่ากัน ดอกออกเป็นช่อตั้งขึ้น ดอก 5-15 ดอก ดอกสีม่วงแดง กลีบปากขนาดใหญ่ มีสันตรงกลางตามยาว คำระบุชนิด “buddhawongii” ตั้งให้เป็นเกียรติแก่นายวินศ์ พุทธวงค์ ผู้ค้นพบ ตัวอย่างต้นแบบ Buddhawong 021 เก็บรักษาไว้ที่หอพรรณไม้ กรมอุทยานแห่งชาติ สัตว์ป่า และพันธุ์พืช (BKF)


 Naiyana Tetsana, Kitichate Sridith, Santi Watthana and Henrik Æ. Pedersen. 2019. A Taxonomic Revision of Liparis (Orchidaceae: Epidendroideae: Malaxideae) in Thailand. Phytotaxa.  421(1); 1–65. DOI:  10.11646/phytotaxa.421.1.1