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Figure 15 and 16. Two adults P. bicolor were observed near the location where P in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)

Figure 15 and 16. Two adults P. bicolor were observed near the location where P. bicolor was fed by a Domestic dog, 8 December 2021, Sekernan Subdistrict, Muaro Jambi District, Jambi Province (Photo: Muhammad Iqbal).

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Figure 13 in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)

Figure 13. An individual of P. bicolor becomes prey by the Domestic dog Canis familiaris, 8 December 2021, Sekernan Subdistrict, Muaro Jambi District, Jambi Province (Photo: Muhammad Iqbal).

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Figures 10 and 11. Another adult P in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)

Figures 10 and 11. Another adult P. bicolor fed leaf of Para rubber tree Hevea brasiliensis (Euphorbiaceae), 15 March 2022, Pemayung Subdistrict, Batanghari District, Jambi Province (Photo: Muhammad Iqbal).

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Figure 6 in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)

Figure 6. An individual P. bicolor sits on the branch and keeps watching the people who give disturbance, 25 January 2022, Camp Granit, Bukit Tiga Puluh National Park, Jambi Province (Photo: Ega Oktavianus Putra).

opencc-by-4.0Feb 2023View details →
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Figure 7. One individual P in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)

Figure 7. One individual P. bicolor watching in great care to the people who get closer, 5 June 2015, Talang Lakat, Bukit Tiga Puluh National Park, Jambi Province (Photo: Rhett Butler).

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Figure 2 in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)

Figure 2 (Left) Two adult females P. bicolor keep an infant while watching observers who get closure, 15 March 2022, Pemayung Subdistrict, Batanghari District, Jambi Province (Photo: Nur Rachman). Figure 3 (Right) An unusual position of adult female P. bicolor when holding infant, putting the young between lower belly and thighs, 15 March 2022, Pemayung Subdistrict, Batanghari District, Jambi Province (Photo: Muhammad Iqbal).

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Figure 1 in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)

Figure 1. Map of historical and recent distribution records of P. bicolor. Insert is a map of Sumatra and the distribution range P. bicolor (indicated by solid brown) based on Nijman (2021). Solid triangles indicate specimen records referred to in Aimi & Bakar (1992), and open triangles indicate distribution records after Aimi & Bakar (1992).

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Figure 5 in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)

Figure 5. Typical habitat of P. bicolor, 20 March 2022, Muaro Jambi District landscape, Jambi Province. A remaining secondary forest border with young palm oil vegetation (Photo: Muhammad Iqbal).

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Figures 8 and 9. One adult P in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)

Figures 8 and 9. One adult P. bicolor fed leaf of Mango Mangifera sp (Anacardiaceae), 15 March 2022, Pemayung Subdistrict, Batanghari District, Jambi Province (Photo: Muhammad Iqbal).

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Figure 4 in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)

Figure 4. Aerial view of the typical habitat of P. bicolor, 15 March 2022, Pemayung District landscape, Jambi Province. A combination of rubber, palm oil vegetation and remaining forest (Photo: Aji Sartono).

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Figure 12. One adult P in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)

Figure 12. One adult P. bicolor is on the ground, 9 December 2021, Lubuk Ruso Village, Pemayung Subdistrict, Jambi Province (Photo: Muhammad Iqbal).

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FIGURE 3 in Patterns of craniofacial variation and taxonomic diversity in the South African Cercopithecidae fossil record

FIGURE 3. Principle components analyses (PCA) of cranial variation in extant papionins and the fossil sample. 1 and 2, PCA including maximum cranial length, orbital width, interorbital breadth, and palate length raw measurements for 81 extant papionins (1) and 25 fossil cercopithecids (2). PC1 and PC2 of the extant sample comprise 82.2% and 8.1% of the variation, respectively, and PC1 and PC2 of the fossil sample comprise 67.8% and 21.6% of the variation, respectively. Note how well the measurements discriminate extant species, and how Papio h. ursinus (TM211) and one specimen of Theropithecus darti (TP9) are distinct from the other fossils. 3 and 4, PCA including orbital width, interorbital breadth, muzzle width (ectomolare), maximum width (canine), palate width (M3), palate width (canine), and palate length in 81 extant papionins (3) and 33 fossil cercopithecids (4). PC1 and PC2 of the extant sample comprise 86.6% and 4.8% of the variation, respectively, and PC1 and PC2 of the fossil sample comprise 66.1% and 12.7% of the variation, respectively. Note how well the measurements discriminate extant species, and that Cercopithecoides and Papio hamadryas are distinct from the other fossils.

opencc-by-4.0Mar 2017View details →
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FIGURE 2 in Patterns of craniofacial variation and taxonomic diversity in the South African Cercopithecidae fossil record

FIGURE 2. Bivariate plots of cranial measurements of extant papionins and the fossil sample. 1 and 2, Bivariate plot comparing cranial length and cranial breadth in extant papionins (1) and the fossil sample (2). 3 and 4, Bivariate plot comparing face length and muzzle width (ectomolare) in extant papionins (3) and the fossil sample (4). Note high correlations and the lack of a consistent taxonomic pattern across the distribution of fossil specimens. All bivariate correlations are significant at p <0.0004.

opencc-by-4.0Mar 2017View details →
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FIGURE 1 in Patterns of craniofacial variation and taxonomic diversity in the South African Cercopithecidae fossil record

FIGURE 1. Six of the fossil cercopithecid specimens used in this study. 1, UCMP 125854, Papio izodi. 2, UCMP 125856, Papio izodi. 3, MP221, Parapapio jonesi. 4, TP9, Procercocebus antiquus. 5, MP222, Theropithecus darti. 6, STS394A, Cercopithecoides williamsi.

opencc-by-4.0Mar 2017View details →
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Fig. 4. A in Reproduction And Infant Pelage Colouration Of The Banded Leaf Monkey (Mammalia: Primates: Cercopithecidae) In Singapore

Fig. 4. A, Infant banded leaf monkey from Singapore (red arrow) separated from carrying adult (pink arrow); B, Banded leaf monkey infant being carried by an adult.

opencc-by-4.0Aug 2010View details →
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Fig. 1 in Reproduction And Infant Pelage Colouration Of The Banded Leaf Monkey (Mammalia: Primates: Cercopithecidae) In Singapore

Fig. 1. Distribution of Presbytis femoralis. Presbytis f. robinsoni is found in north Malay Peninsula, P. f. percura in east-central Sumatra, and P. f. femoralis in Johor and Singapore.

opencc-by-4.0Aug 2010View details →
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Fig 1 in Evolutionary relationships of Macaca fascicularis fascicularis (Raffles 1821) (Primates: Cercopithecidae) from Singapore revealed by Bayesian analysis of mitochondrial DNA sequences

Fig 1. Map of Southeast Asia showing the approximate location of the new (Singapore and Bali) and GenBank sequences included in the study. Numbers correspond to the following locations (haplotype IDs in parentheses): ★, Singapore (Sing1–3); 1, Vietnam (Viet1 & 2); 2, Cambodia (Camb1 & 2); 3, Thailand (Thai1); 4, Thailand (Thai2); 5, Malaysia (Selangor1 & 2); 6, Malaysia (Johor); 7, south Sumatra, Indonesia (Sumatra1 & 2, Java1); 8, Java (Java1); 9, Kalimantan, Borneo (Borneo3); 10, Sarawak, Borneo (Borneo1); 11, Sepilok, Borneo (Borneo2); 12, Bali, Indonesia (Bali1 & 2); 13, Sibuyan, Philippines (Phil1); 14, Bangkok, Thailand (Thai3 & 4); 15, Malaysia (W. Malay); 16, Malaysia (E. Malay2); 17 Malaysia (E. Malay1);18, north Sumatra (Sumatra3–6, 9); 19, west Borneo, Indonesia (Borneo9); 20, west Borneo, Indonesia (Borneo4–7); 21, central Borneo, Indonesia (Borneo4 & 6); 22, Bangka, south Sumatra (Sumatra 7 & 8); 23, Java, Indonesia (Java2 & 3); 24, northeast Borneo, Indonesia (Borneo8); 25, Mindanao, Philippines (Phil2); 26, Timor (Timor). Several Borneo haplotypes appear in multiple locations.

opencc-by-4.0Feb 2017View details →
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Fig 4. Median-joining haplotype network for M in Evolutionary relationships of Macaca fascicularis fascicularis (Raffles 1821) (Primates: Cercopithecidae) from Singapore revealed by Bayesian analysis of mitochondrial DNA sequences

Fig 4. Median-joining haplotype network for M. fascicularis. The size of the circular nodes representing haplotypes is proportional to the number of sequences comprising the haplotype. Shading of circular nodes corresponds to general geographic groupings including Sundaic islands (white), mainland Indochina (gray), Malay Peninsula and northern Sumatra (dark gray), and Singapore (black). Haplotype identifications are presented in Table 1.

opencc-by-4.0Feb 2017View details →
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Fig 3 in Evolutionary relationships of Macaca fascicularis fascicularis (Raffles 1821) (Primates: Cercopithecidae) from Singapore revealed by Bayesian analysis of mitochondrial DNA sequences

Fig 3. Phylogenetic tree topology from Bayesian inference of 12S/tRNA-val/16S mtDNA sequences using a Birth-Death speciation tree prior, and HYK+G+I nucleotide substitution model in BEAST v2.1.3. Lettered identifications for clades are presented below the branches at major nodes. Posterior probabilities are displayed above the branches at nodes. Numbers in parentheses appearing with haplotype identifications are presented in Table 1, and correspond to numbered locations presented on the Figure 1 map. The Singapore haplotypes form two phylogenetic subgroupings, one from the Bukit Timah Nature Reserve (Sing1) and the other from the Central Catchment Nature Reserve (Sing2 & Sing3).

opencc-by-4.0Feb 2017View details →
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Fig 2 in Evolutionary relationships of Macaca fascicularis fascicularis (Raffles 1821) (Primates: Cercopithecidae) from Singapore revealed by Bayesian analysis of mitochondrial DNA sequences

Fig 2. Map of central Singapore showing the sampling locations in the Bukit Timah (BTNR) and Central Catchment (CCNR) Nature Reserves. Map created using ArcGIS® (ESRI® 2015).

opencc-by-4.0Feb 2017View details →

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