Animalia Squamata Gekkonidae TermprayoonKorkhwanRujirawanAttapolGrismerL. LeeWood JrPerry L.AowpholAnchaleeTwo new karst-adapted species in the Cyrtodactyluspulchellus group (Reptilia, Gekkonidae) from southern ThailandZookeys14092023117931335210.3897/zookeys.1179.109712 016FBB3D-0A29-5AEB-A616-145EF7A305E8 Cyrtodactylus sungaiupe https://zoobank.org/ABB055B2-3790-4DF5-8811-E7CC317AC937 sp. nov.Figs 5, 6, 7 Thung Wa Bent-toed GeckoType material.

Holotype. Adult male (ZMKU R 01009, Figs 5, 6) collected from Thailand, Satun Province, Thung Wa District, Thung Wa Subdistrict (7°05.865'N, 99°58.506'E; 58 m a.s.l.), on 29 April 2022 by Korkhwan Termprayoon, Akrachai Aksornneam, Attapol Rujirawan, and Siriporn Yodthong.

10.3897/zookeys.1179.109712.figure55BD341F9-5189-5E57-A5B6-1FD8DE133A7F

Adult male holotype of Cyrtodactylussungaiupe sp. nov. (ZMKU R 01009) from the type locality in Thung Wa Subdistrict, Thung Wa District, Satun Province, Thailand A dorsolateral view of specimen in life B dorsal and ventral views immediately after euthanasia.

https://binary.pensoft.net/fig/905278
10.3897/zookeys.1179.109712.figure66CA36418-F6AA-56EB-A5DA-83E8CE8ABF79

Adult male holotype of Cyrtodactylussungaiupe sp. nov. (ZMKU R 01009) in preservation A dorsal and ventral views of body B head dimensions showing lateral, dorsal and ventral views C ventrolateral fold on the left side D precloacal depression and pore-bearing femoroprecloacal scales E dorsal view of tail showing last row of tubercles.

https://binary.pensoft.net/fig/905279

Paratypes. Two adult males (ZMKU R 01004–01005) and two adult females (ZMKU R 01007–01008), same data as holotype, except collected on 12 May 2019, by Korkhwan Termprayoon, Attapol Rujirawan, Natee Ampai, Piyawan Puanprapai and Siriporn Yodthong. One adult male (ZMKU R 01010) and two adult females (ZMKU R 01011–01012), same data as holotype.

Referred specimens.

ZMKU R 01006 (immature male), same data as holotype, except collected on 12 May 2019, by Korkhwan Termprayoon, Attapol Rujirawan, Natee Ampai, Piyawan Puanprapai and Siriporn Yodthong. ZMKU R 01013–01014 (two juveniles), same data as holotype.

Diagnosis.

Cyrtodactylussungaiupe sp. nov. can be distinguished from all other species of the C.pulchellus group by a combination of the following characters: (1) SVL 89.7–102.7 mm in adult males (n = 4), 87.3–104.6 mm in adult females (n = 4); (2) 12–16 supralabial and 10–13 infralabial scales; (3) weak tuberculation on body; (4) no tubercles on ventral surfaces of forelimbs, gular region or in ventrolateral body folds; (5) 30–38 paravertebral tubercles; (6) 19–22 longitudinal rows of dorsal tubercles; (7) 32–40 rows of ventral scales; (8) 20–24 subdigital lamellae on the fourth toe; (9) 29–34 femoroprecloacal pores in adult males; (10) absence of precloacal pores in adult females; (11) deep precloacal groove in males; (12) absence of scattered pattern of white tubercles on dorsum; (13) four dark dorsal body bands; (14) nine or twelve dark caudal bands on original tail; (15) light caudal bands in adults infused with dark pigmentation; (16) caudal tubercles extended 1/8–1/10 of anterior portion of tail and (17) posterior portion of tail in hatchlings and juveniles white.

Description of holotype.

Adult male SVL; 89.7 mm; head moderate in length (HL/SVL 0.29) and wide (HW/HL 0.65), flattened (HD/HL 0.37), distinct from neck and triangular in dorsal profile; lores concave anteriorly, inflated posteriorly; frontal and prefrontal regions concave; canthus rostralis rounded anteriorly; snout elongated (ES/HL 0.40), rounded in dorsal profile, laterally constricted; eye large (ED/HL 0.22); ear opening elliptical, moderate in size (EL/HL 0.07), obliquely orientated; eye to ear distance slightly greater than diameter of eye; rostral rectangular, divided dorsally by an inverted Y-shaped furrow, bordered posteriorly by left and right supranasals and internasal, bordered laterally by first supralabials; external nares bordered anteriorly by rostral, dorsally by a large anterior supranasal, posteriorly by two postnasals, ventrally by first supralabial; 9/10 (left/right) rectangular supralabials extending to below mid-point of eye, 13/15 to below the posterior margin of the eye-ball, decreasing abruptly just posterior to mid-point of eye; 8/7 infralabials extending to below mid-point of eye, 13/11 to upturn the labial margin, decreasing gradually in size posteriorly; scales of rostrum and lores slightly raised, larger than granular scales on top of head and occiput, those on posterior portion of canthus rostralis slightly larger; scales on top of head and occiput intermixed with rounded, small tubercles; dorsal superciliaries elongate, smooth, largest anteriorly; mental triangular, 2.5 mm in width, 3.3 mm in length, bordered laterally by first infralabials and posteriorly by left and right, trapezoidal postmentals which contact medially for approximately 50% of their length; one row of slightly enlarged, elongate sublabials extending posteriorly to the sixth (left) and seventh (right) infralabials; small, granular, gular scales grading posteriorly into larger, flat, smooth, imbricate, pectoral and ventral scales.

Body relatively short (AG/SVL 0.47) with well-defined, non-tuberculate, ventrolateral folds; dorsal scales small, granular, interspersed with low, regularly arranged, weakly-keeled tubercles, smaller intervening tubercles occasionally present; tubercles extend from occiput to base of tail, but not further than 1/10 of tail; tubercles on occiput and nape relatively small, those on body largest; approximately 19 longitudinal rows of tubercles at mid-body; 36 paravertebral tubercles; 37 flat imbricate ventral scales between ventrolateral body folds; ventral scales larger than dorsal scales; precloacal scales large, smooth; deep precloacal groove.

Forelimbs moderately slender, relatively short (FL/SVL 0.17); dorsal scales on forelimbs raised, granular, larger than those on body; dorsal scales on forearm intermixed with enlarged, subconical and weakly-keeled tubercles, brachium without tubercles; scales of ventral surface of forearm flat, subimbricate, tubercles absent; palmar scales small, weakly rounded; digits well-developed, inflected at basal, interphalangeal joints; 19/19 (left/right) subdigital lamellae on the fourth finger, 6/6 proximal subdigital lamellae rectangular, broadly expanded proximal to joint inflection, 13/13 distal subdigital lamellae slightly expanded distal to inflection becoming gradually more expanded near the claw; claws well-developed, sheathed by a dorsal and ventral scale; hind limbs more robust than forelimbs, moderate in length (TBL/SVL 0.20), enlarged, subconical, weakly-keeled tubercles on dorsal surface of legs separated by smaller juxtaposed scales; ventral scales of thigh flat, smooth, imbricate, larger than dorsal granular scales; ventral, tibial scales flat, smooth, imbricate; a single row of 35 enlarged femoroprecloacal scales extending nearly from knee to knee through precloacal region where they are continuous with enlarged, pore-bearing precloacal scales; 33 contiguous pore-bearing femoroprecloacal scales, forming an inverted T bearing a deep, precloacal groove (Fig. 6D); six pore-bearing scales bordering groove (three on each side); postfemoral scales immediately posterior to enlarged scale row small, nearly granular, forming an abrupt union with postfemoral scales on posteroventral margin of thigh; plantar scales weakly rounded to flat; 20/20 (left/right) subdigital lamellae on fourth toe, 7/7 proximal subdigital lamellae rectangular, broadly expanded proximal to joint inflection, 13/13 distal subdigital lamellae slightly expanded distal to inflection becoming gradually more expanded near the claw; claws well-developed, sheathed by a dorsal and ventral scale.

Original tail 122.5 mm in length, slightly longer than SVL (TL/SVL = 1.37), 6.4 mm in width at base, tapering to a point; dorsal scales of tail flat, squarish; original portion segmented, approximately 7–8 transverse scales rows per segment; one transverse row of four dorsal tubercles on posterior margin of 1st segment and one tubercle on 2nd segment; caudal tubercles extended 1/10 of anterior portion of original tail (Fig. 6E); subcaudal region bearing large median row of transverse scales; shallow dorsal and lateral caudal furrow; base of tail bearing hemipenial swellings; two rows of (1+4)L/(2+3)R medium-sized postcloacal tubercles on each hemipenial swelling; postcloacal scales smooth, flat, large, imbricate.

Colouration in life

(Fig. 5). Ground colour of head, body, and limbs light-brown; superciliaries yellow anteriorly and posteriorly; supralabial and infralabial scales light-brown with off-white markings posteriorly; wide, dark-brown nuchal band edged anteriorly and posteriorly by thin, yellowish lines bearing tubercles extending from posterior margin of one eye to posterior margin of another eye; four similar dark-brown body bands between nuchal loop and hind limb insertions edged anteriorly and posteriorly by broken, thin, creamy-white to yellow lines bearing tubercles, first band terminating at shoulders, second and third bands terminating just dorsal to ventrolateral folds, the fourth band terminating at femurs; dark body bands slightly larger than light-coloured interspaces; one additional dark-brown band posterior to hind limbs (postsacral band); ventral surfaces of head, abdomen and limbs greyish-white; creamy pale yellow postcloacal tubercles; tail bearing nine dark bands separated by ten light-brown (anteriorly) to white (posteriorly) bands, white caudal band infused with dark pigmentation; subcaudal region off-white anteriorly, becoming darker posteriorly.

Colouration in preservative

(Fig. 6). The overall colour pattern of head, body, limbs and tail similar to that in life with some fading. Ground colour of head, body, limbs and dorsum tan; dark bands on dorsum and tail brown; yellow-coloured tuberculation on dorsum fading to off-white or white; light-beige coloured on the ventral surface.

Variation.

Meristic and morphometric data for the type series and referred specimens of Cyrtodactylussungaiupe sp. nov. are given in Tables 6, 7 and Suppl. material 3. All paratypes and referred specimens resemble the holotype in general aspects of morphology with variations in colouration and banding pattern. All specimens have continuous dark body bands, except one specimen (ZMKU R 01010) where the second to fourth dorsal bands do not connect on the mid-line and are offset (Fig. 7A). Dorsal scale on brachium of two specimens (ZMKU R 01010 and ZMKU R 01012) intermixed with tubercles, whereas absent in the holotype and other specimens. ZMKU R 01005 has dark marking on left femur. Three male paratypes have discontinuous pore-bearing femoroprecloacal scales; ZMKU R 01004 has three poreless scales (one on the left and two on the right), ZMKU R 01005 has one enlarged and one small poreless scales on the left and ZMKU R 01010 has two poreless scales (one on each side). Last row of caudal tubercles of paratypes (ZMKU R 01006 and ZMKU R 01008) extending to 4th–5th segment of original portion (to 2nd light caudal band), approximately 1/8 of anterior portion of original tail. Juveniles (ZMKU R 01013–01014) have body pattern similar to adults, but less prominent tuberculation, light-yellow ground colour of body, edged anteriorly and posteriorly by yellowish lines bearing tubercles, the original tail has approximately six or ten dark caudal bands, the posterior portion of tail is white (Fig. 7B).

Descriptive measurements (millimetres), meristic (left/right) and non-meristic characters of the type series of Cyrtodactylussungaiupe sp. nov. Key: H = holotype, P = paratype, M = male, F = female; Or = original tail, Br = broken, Re = regenerated; / = data unavailable or inapplicable; L = left, R = right. Abbreviations are defined in Materials and methods.

ZMKU R 01009ZMKU R 01004ZMKU R 01005ZMKU R 01010ZMKU R 01007ZMKU R 01008ZMKU R 01011ZMKU R 01012
Type seriesHPPPPPPP
SexMMMMFFFF
SVL 89.7102.797.598.2104.1100.687.3104.6
Tail conditionOrReReReBrOrReRe
TL 122.598.6134.5103.1112.8125.169.1130.5
TW 6.47.67.16.06.96.74.96.4
FL 15.416.416.115.317.015.814.316.4
TBL 17.620.118.018.920.618.616.820.1
AG 41.953.948.645.751.951.341.652.9
HL 26.329.427.628.730.427.824.930.4
HW 17.019.218.418.719.517.615.819.5
HD 9.711.710.910.811.110.99.410.9
ED 5.96.46.87.07.07.05.97.1
EE 6.88.38.17.37.77.46.87.9
ES 10.511.511.311.312.211.410.111.6
EN 8.09.08.58.89.68.87.89.0
IO 6.06.37.06.26.76.15.66.5
EL 1.92.42.32.52.62.52.22.4
IN 3.43.23.23.63.63.33.03.5
SL 13/1513/1214/1315/1514/1512/1216/1414/15
SL-mid-eye 9/1010/99/811/109/119/1011/109/10
IL 13/1111/1110/1112/1313/1312/1111/1111/13
IL-mid-eye 8/78/87/88/98/87/88/87/8
PVT 3634363333383130
LRT 1921202020221919
VS 3737373440373335
4FLU 13/1313/1512/1112/1214/1413/1314/1415/15
4FLE 6/67/66/55/56/66/66/66/6
4FL 19/1920/2118/1717/1720/2019/1920/2021/21
4TLU 13/1315/1513/1313/1314/1415/1515/1516/16
4TLE 7/78/77/77/77/78/78/78/8
4TL 20/2023/2220/2020/2021/2123/2223/2224/24
FPP in males33342931////
No of pore-bearing scales on precloacal groove6 (3L/3R)5 (2L/3R)6 (3L/3R)6 (3L/3R)////
PCT rows2L/2R2L/2R1L/2R2L/2R////
No of PCT per row(1+4)L/(2+3)R(2+4)L/(3+4)R(3)L/(2+3)R(2+3)L/(2+4)R////
BB 44444444
LCB 10////8//
DCB 9////9//
Body band/ interspace ratio1.501.300.66/1.431.401.011.17
Deep precloacal groove in maleYesYesYesYes////
Femoroprecloacal pores continuousYesNoNoNo////
TuberculationWeakWeakWeakWeakWeakWeakWeakWeak
Tubercles on ventral surface of forelimbNoNoNoNoNoNoNoNo
Tubercles in gular regionNoNoNoNoNoNoNoNo
Ventrolateral fold tuberculateNoNoNoNoNoNoNoNo
Dorsum bearing scattered pattern of white tuberclesNoNoNoNoNoNoNoNo
Adult posterior caudal region whiteNo////No//
White caudal bands in adults immaculateNo////No//
Portion of caudal tubercles on original tail1/10////1/8//

Descriptive meristic (left/right) and non-meristic characters of referred specimens of Cyrtodactylussungaiupe sp. nov. Key: RF = referred specimens, IM-M = immature male, J = juvenile; / = data unavailable or inapplicable. Abbreviations are defined in Materials and methods.

ZMKU R 01006ZMKU R 01013ZMKU R 01014
RFRFRF
AgeIM-MJJ
SVL 81.259.867.3
SL 13/1315/1415/14
SL-mid-eye 9/910/1111/10
IL 11/1010/1111/12
IL-mid-eye 7/76/88/9
PVT 343433
LRT 201920
VS 383632
4FLU 13/1215/1513/13
4FLE 6/76/66/5
4FL 19/1921/2119/18
4TLU 13/1316/1614/14
4TLE 8/87/78/8
4TL 21/2123/2322/22
BB 444
LCB 13//
DCB 12//
Body band/ interspace ratio1.111.641.17
TuberculationWeakWeakWeak
Tubercles on ventral surface of forelimbNoNoNo
Tubercles in gular regionNoNoNo
Ventrolateral fold tuberculateNoNoNo
Dorsum bearing scattered pattern of white tuberclesNoNoNo
Hatchlings/ juveniles with white tail tip/YesYes
Portion of caudal tubercles on original tail1/8//
10.3897/zookeys.1179.109712.figure74EDFA602-75AC-58D8-A225-57AE3BA801D3

Variation in colouration and banding pattern of Cyrtodactylussungaiupe sp. nov. immediately after euthanasia A male paratype (ZMKU R 01010) showing disconnected bands on dorsal B juvenile (ZMKU R 01013) having light-yellow on the body and bearing white tail tip.

https://binary.pensoft.net/fig/905280
Distribution.

Cyrtodactylussungaiupe sp. nov. is currently known from an unnamed karst formation in Thung Wa Subdistrict, Thung Wa District, Satun Province, Thailand (Figs 1, 8).

10.3897/zookeys.1179.109712.figure81EB65F40-5CF1-52B9-A8E4-D64D25946E3B

Habitat of Cyrtodactylussungaiupe sp. nov. at the type locality in Thung Wa Subdistrict, Thung Wa District, Satun Province, Thailand A landscape view of karst tower B vegetation structure and C karst boulders surrounding karst body D immature female (not collected) on karst boulder.

https://binary.pensoft.net/fig/905281
Natural history.

All individuals of Cyrtodactylussungaiupe sp. nov. were collected from karst forest (Fig. 8) at the type locality which was surrounded by rubber plantations. Specimens were collected on October 2016 between 1900 and 2000 h with temperature 26.3 °C and relative humidity 90.3%, and on April 2022 between 1900 and 2030 h with temperature 28.3 °C and relative humidity 86.0%. The specimens were found on small rocks, karst boulders, adjacent vegetation and on the forest floor. The holotype (ZMKU R 01009) was collected from the branch of a shrub approximately 1.3 m above the ground. Four specimens (ZMKU R 01004, ZMKU R 01006, ZMKU R 01010, ZMKU R 01013) were found on karst boulders. Three female specimens (ZMKU R 01008, ZMKU R 01011–01012) were collected from tree trunks. One adult male (ZMKU R 01005) was collected off a fallen dry stick and one adult female (ZMKU R 01007) was found on the forest floor covered with leaf litter. A juvenile (ZMKU R 01014) was taken from a perch on a small rock near the ground.

A gravid female (ZMKU R 01008) carrying two eggs (externally visible) was found on a tree trunk in October 2016. Two juveniles (ZMKU R 01013–01014) were collected during April 2022. Other lizard species found in this area, include Gehyramutilata (Wiegmann, 1834) and Gekkogecko (Linnaeus, 1758).

Etymology.

The specific epithet sungaiupe is derived from the old name of Thung Wa District (Sungai Upe District), the type locality of the new species.

Comparison.

Cyrtodactylussungaiupe sp. nov. can be distinguished from other species in the C.pulchellus group by having a combination of weak tuberculation on the body; no tubercles on ventral surface of forelimbs, gular region or in ventrolateral body folds; 12–16 supralabial scales; 30–38 paravertebral tubercles; 19–22 longitudinal tubercle rows; 32–40 ventral scales; 29–34 femorprecloacal pores in males; deep precloacal groove in males; nine or twelve dark caudal bands on original tail; light caudal bands on original tail, infused with dark pigmentation in adults; caudal tubercles extended 1/8–1/10 of anterior portion of tail; and juveniles with white tail tip. Additional comparisons between Cyrtodactylussungaiupe sp. nov. and other species in the C.pulchellus group are in Suppl. material 4.

Cyrtodactylussungaiupe sp. nov. is a member of Clade A which comprises C.astrum, C.dayangbuntingensis, C.langkawiensis, C.lekaguli and C.stellatus. Cyrtodactylussungaiupe sp. nov. differs from those five species by uncorrected pairwise distances of ND2 of 8.02–10.69% (Table 2). It differs from C.astrum by having smaller maximum SVL of 104.6 mm (vs. 108.3 mm); absence of scattered pattern of white tubercles on dorsum (vs. present); nine or twelve dark caudal bands on the original tail (vs. 13 or 14); caudal tubercles extending between 1/8 and 1/10 of anterior portion of tail (vs. ≥ 1/3 of the tail); and having statistically significant different mean values of mensural characters of FLadj, TBLadj, AGadj, HWadj, HDadj, EEadj, ESadj, ENadj and INadj (p < 0.001–0.043; Table 5). It can be further separated from C.astrum in having statistically significant different mean values of meristic characters of SL, IL, PVT and LRT (p < 0.001–0.011; Table 5).

Cyrtodactylussungaiupe sp. nov. differs from C.dayangbuntingensis by having larger maximum SVL of 104.6 mm (vs. 99.0 mm); absence of scattered pattern of white tubercles on dorsum (vs. present); caudal tubercles extending between 1/8 and 1/10 of anterior portion of tail (vs. 1/5 of the tail); and one to two rows of postcloacal tubercles (vs. up to three rows). Additionally, PCA showed that Cyrtodactylussungaiupe sp. nov. is clearly separated in morphospace from C.dayangbuntingensis (Fig. 3).

Cyrtodactylussungaiupe sp. nov. morphologically differ from C.langkawiensis by having larger maximum SVL of 104.6 mm (vs. 99.8 mm); and caudal tubercles extending between 1/8 and 1/10 of anterior portion of tail (vs. ≥ 1/3 of the tail); and having statistically significant different mean values of mensural characters of AGadj, HLadj, HWadj and INadj (p < 0.001–0.033; Table 5). It can be further separated from C.langkawiensis in having statistically significant different mean values of meristic characters of SL, IL, PVT, LRT and VS (p < 0.001–0.046; Table 5).

Cyrtodactylussungaiupe sp. nov. differ from C.lekaguli by having smaller maximum SVL of 104.6 mm (vs. 108.5 mm); and caudal tubercles extending between 1/8 and 1/10 of anterior portion of tail (vs. ≥ 1/3 of the tail); and having statistically significant different mean values of mensural characters of HWadj, HDadj, EEadj, IOadj and ELadj (p < 0.001–0.008; Table 5). It can be further separated from C.lekaguli in having statistically significant different mean values of meristic characters of SL, IL and LRT (p < 0.001–0.006; Table 5).

Cyrtodactylussungaiupe sp. nov. differ from C.stellatus by having larger maximum SVL of 104.6 mm (vs. 96.1 mm); absence of scattered pattern of white tubercles on dorsum (vs. present); absence of precloacal in female (vs. present); and having statistically significant different mean values of mensural characters of SVL, FLadj, TBLadj, AGadj, HLadj, HWadj, HDadj, EEadj, ESadj and ENadj (p < 0.001–0.035; Table 5). It can be further separated from C.stellatus in having statistically significant different mean values of meristic characters of PVT (p = 0.003; Table 5).

10.3897/zookeys.1179.109712.suppl3835125632FEB89A-6584-50B5-92FC-E48F7FEAE134

Descriptive morphometric (in millimetres) and meristic characters (min–max) of the type series

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Descriptive morphometric (in millimetres) and meristic characters (min–max) of the type series of Cyrtodactylussungaiupe sp. nov., Cyrtodactyluswangkhramensis sp. nov. and members of Clade A in the Cyrtodactyluspulchellus group. Abbreviations are defined in Materials and Methods. Key: Re = regenerated; L = left; R = right; / = data unavailable or inapplicable.

https://binary.pensoft.net/file/905288This dataset is made available under the Open Database License (http://opendatacommons.org/licenses/odbl/1.0/). The Open Database License (ODbL) is a license agreement intended to allow users to freely share, modify, and use this Dataset while maintaining this same freedom for others, provided that the original source and author(s) are credited.Korkhwan Termprayoon, Attapol Rujirawan, L. Lee Grismer, Perry L. Wood Jr, Anchalee Aowphol
10.3897/zookeys.1179.109712.figure1BFA5B106-31CA-5C05-9CDD-A46268274732

Map showing the type localities of Cyrtodactylussungaiupe sp. nov. (red star) in Thung Wa District and Cyrtodactyluswangkhramensis sp. nov. (blue star) in La-ngu District, Satun Province, Thailand and the type localities of closely-related species, C.astrum, C.dayangbuntingensis, C.langkawiensis, C.lekaguli and C.stellatus. Circles represent additional localities of specimens used in molecular analyses.

https://binary.pensoft.net/fig/905274
10.3897/zookeys.1179.109712.suppl48351258184338BB-A788-5C86-A080-33C2269300D8

Diagnostic characters of the C.pulchellus group including two new species

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Diagnostic characters of the C.pulchellus group including two new species, Cyrtodactylussungaiupe sp. nov. and Cyrtodactyluswangkhramensis sp. nov. Red shaded cells indicate the differences with Cyrtodactylussungaiupe sp. nov. Blue shaded cells indicate the differences with Cyrtodactyluswangkhramensis sp. nov. Yellow shaded cells indicate the differences with both Cyrtodactylussungaiupe sp. nov. and Cyrtodactyluswangkhramensis sp. nov. Keys: W = weak; P = prominent; / = data unavailable. Additional morphological data were obtained from the following literature (Grismer and Ahmad 2008; Grismer et al. 2012, 2014, 2016; Quah et al. 2019; Wood et al. 2020; Termprayoon et al. 2021a, 2021b).

https://binary.pensoft.net/file/905289This dataset is made available under the Open Database License (http://opendatacommons.org/licenses/odbl/1.0/). The Open Database License (ODbL) is a license agreement intended to allow users to freely share, modify, and use this Dataset while maintaining this same freedom for others, provided that the original source and author(s) are credited.Korkhwan Termprayoon, Attapol Rujirawan, L. Lee Grismer, Perry L. Wood Jr, Anchalee Aowphol

Percentage uncorrected pairwise sequence divergences (p-distances) of Cyrtodactylussungaiupe sp. nov., Cyrtodactyluswangkhramensis sp. nov. and closely-related species (Clade A), based on 1,444 base pairs of mitochondrial ND2 gene and flanking tRNAs. The p-distance values are given as mean and ranges in parentheses. Intraspecific distances are in bold font.

Species n Cyrtodactylussungaiupe sp. nov.Cyrtodactyluswangkhramensis sp. nov. C.astrum C.dayangbuntingensis C.langkawiensis C.lekaguli C.stellatus
Cyrtodactylussungaiupe sp. nov.7 0.02 (0.00–0.07)
Cyrtodactyluswangkhramensis sp. nov.76.76 (6.59–6.89) 0.28 (0.00–0.52)
C.astrum 129.75 (9.18–10.69)9.63 (8.97–11.01) 1.44 (0.00–3.12)
C.dayangbuntingensis 38.10 (8.02–8.16)7.84 (7.57–8.16)9.56 (9.18–10.90) 0.14 (0.07–0.21)
C.langkawiensis 108.86 (8.67–9.03)8.46 (8.11–8.74)10.06 (9.53–11.54)7.38 (7.17–7.66) 0.28 (0.00–0.52)
C.lekaguli 98.57 (8.11–9.23)8.93 (8.16–9.52)9.74 (8.99–11.59)8.56 (8.00–9.20)9.30 (8.42–10.08) 2.20 (0.00–4.27)
C.stellatus 59.90 (9.59–10.47)10.16 (9.62–11.30)10.54 (9.85–12.34)9.48 (9.21–10.29)10.39 (9.98–11.37)9.22 (8.35–10.60) 0.42 (0.00–0.95)

Summary pairwise differences of statistically significant characters (Tukey’s test; p < 0.05) from morphometric and meristic characters of Cyrtodactylussungaiupe sp. nov., Cyrtodactyluswangkhramensis sp. nov. and closely-related species (Clade A). Abbreviations are listed in Materials and Methods. Key: * tested by Games-Howell test; ** tested by Dunn’s test. No significantly different characters of 4TL and BB were excluded.

Characters SVL**FLadj* TBL adj AGadj* HL adj HW adj HDadj* EE adj ED adj ESadj**
Cyrtodactylussungaiupe sp. nov. vs. C.astrum< 0.001< 0.0010.006< 0.0010.0160.0040.008
Cyrtodactylussungaiupe sp. nov. vs. C.langkawiensis0.001< 0.0010.033
Cyrtodactylussungaiupe sp. nov. vs. C.lekaguli< 0.0010.0010.008
Cyrtodactylussungaiupe sp. nov. vs. C.stellatus0.0350.0090.002< 0.001< 0.001< 0.001< 0.001< 0.0010.005
Cyrtodactyluswangkhramensis sp. nov. vs. Cyrtodactylussungaiupe sp. nov.0.0030.008< 0.001
Cyrtodactyluswangkhramensis sp. nov. vs. C.astrum0.004< 0.001< 0.001< 0.001< 0.001< 0.001< 0.001< 0.001
Cyrtodactyluswangkhramensis sp. nov. vs. C.langkawiensis0.0280.0370.001
Cyrtodactyluswangkhramensis sp. nov. vs. C.lekaguli< 0.0010.007< 0.001< 0.001< 0.001< 0.001< 0.001
Cyrtodactyluswangkhramensis sp. nov. vs. C.stellatus0.0480.015< 0.0010.014
C.astrum vs. C.langkawiensis0.031< 0.001< 0.001< 0.0010.004< 0.001
C.astrum vs. C.lekaguli< 0.001< 0.0010.0320.030
C.astrum vs. C.stellatus0.002< 0.001< 0.001< 0.001< 0.001< 0.001< 0.001< 0.001
C.langkawiensis vs. C.lekaguli0.0120.005< 0.001< 0.0010.020< 0.001
C.langkawiensis vs. C.stellatus< 0.001< 0.001
C.lekaguli vs. C.stellatus< 0.001< 0.0010.004< 0.001< 0.001< 0.001< 0.001< 0.001< 0.001
Characters ENadj**IOadj* EL adj INadj**SL**IL**PVT**LRT**VS*
Cyrtodactylussungaiupe sp. nov. vs. C.astrum0.0430.0090.0040.011< 0.001< 0.001
Cyrtodactylussungaiupe sp. nov. vs. C.langkawiensis< 0.001< 0.001< 0.0010.046< 0.0010.001
Cyrtodactylussungaiupe sp. nov. vs. C.lekaguli< 0.0010.001< 0.0010.0060.001
Cyrtodactylussungaiupe sp. nov. vs. C.stellatus< 0.0010.003
Cyrtodactyluswangkhramensis sp. nov. vs. Cyrtodactylussungaiupe sp. nov.0.0090.045
Cyrtodactyluswangkhramensis sp. nov. vs. C.astrum< 0.0010.003< 0.001< 0.001
Cyrtodactyluswangkhramensis sp. nov. vs. C.langkawiensis0.0120.0100.0100.0020.005< 0.001< 0.001
Cyrtodactyluswangkhramensis sp. nov. vs. C.lekaguli0.002< 0.0010.0360.0020.001
Cyrtodactyluswangkhramensis sp. nov. vs. C.stellatus< 0.001
C.astrum vs. C.langkawiensis
C.astrum vs. C.lekaguli0.007< 0.001< 0.0010.0180.002
C.astrum vs. C.stellatus< 0.0010.0160.0490.009
C.langkawiensis vs. C.lekaguli0.014< 0.0010.042< 0.001
C.langkawiensis vs. C.stellatus0.0010.003< 0.0010.0010.002< 0.001
C.lekaguli vs. C.stellatus< 0.001< 0.0010.002< 0.0010.0420.030
10.3897/zookeys.1179.109712.figure347363DA1-3889-5C8A-A0C4-5EC672FB79CF

Principal Component Analysis (PCA) of Cyrtodactylussungaiupe sp. nov., Cyrtodactyluswangkhramensis sp. nov. and the closely-related species in Clade A of the C.pulchellus group. The letters in the scatter plots refer to holotype (= H), paratype (= P) and topotype (= T).

https://binary.pensoft.net/fig/905276
GrismerLLWoodJr PLQuahESAnuarSMuinMASumonthaMAhmadNBauerAMWangkulangkulSGrismerJLPauwelsOS (2012) A phylogeny and taxonomy of the Thai-Malay Peninsula Bent-toed Geckos of the Cyrtodactyluspulchellus complex (Squamata: Gekkonidae): combined morphological and molecular analyses with descriptions of seven new species.Zootaxa3520(1): 155. https://doi.org/10.11646/zootaxa.3520.1.1GrismerLLWoodJr PLAnuarSGrismerMSQuahESMurdochMLMuinMADavisHRAguilarCKlabackaRCobosAJAowpholASitesJr JW (2016) Two new Bent-toed Geckos of the Cyrtodactyluspulchellus complex from Peninsular Malaysia and multiple instances of convergent adaptation to limestone forest ecosystems.Zootaxa4105(5): 401429. https://doi.org/10.11646/zootaxa.4105.5.1QuahESGrismerLLWoodJr PLSahSAM (2019) The discovery and description of a new species of Bent-toed Gecko of the Cyrtodactyluspulchellus complex (Squamata: Gekkonidae) from the Langkawi Archipelago, Kedah, Peninsular Malaysia.Zootaxa4668(1): 5175. https://doi.org/10.11646/zootaxa.4668.1.3WoodJr PLGrismerLLMuinMAAnuarSOaksJRSitesJr JW (2020) A new potentially endangered limestone-associated Bent-toed Gecko of the Cyrtodactyluspulchellus (Squamata: Gekkonidae) complex from northern Peninsular Malaysia.Zootaxa4751(3): 437460. https://doi.org/10.11646/zootaxa.4751.3.2TermprayoonKRujirawanAAmpaiNWoodJr PLAowpholA (2021a) A new insular species of the Cyrtodactyluspulchellus group (Reptilia, Gekkonidae) from Tarutao Island, southern Thailand revealed by morphological and genetic evidence.ZooKeys1070: 101134. https://doi.org/10.3897/zookeys.1070.73659TermprayoonKRujirawanAGrismerLLWoodJr PLAowpholA (2021b) Taxonomic reassessment and phylogenetic placement of Cyrtodactylusphuketensis (Reptilia, Gekkonidae) based on morphological and molecular evidence.ZooKeys1040: 91121. https://doi.org/10.3897/zookeys.1040.65750