| References |
Abdullah-Fauzi N.A.F., Karuppannan K.V., Mohd-Radzi N.H.S., Gani M., Mohd-Ridwan A.R., Othman N., Haris H., Sariyati N.H., Aifat N.R., Abdul-Latiff M.A.B., Abdul-Razak M.F.A., Md-Zain B.M. 2022. Determining the dietary preferences of wild Asian elephants (Elephas maximus) in Taman Negara National Park, Malaysia based on sex and age using trnL DNA metabarcoding analysis. Zoological Study 61: e60. DOI: 10.6620/ZS.2022.61-60 Ahmad R., Hashim H., Noor Z., Ismail N., Salim F., Lajis N., Shaari K. 2011. Antioxidant and antidiabetic potential of Malaysian Uncaria. Research Journal of Medicinal Plant 5(5): 587–595. Ajay A., Gaur S.S., Shams R., Dash K.K., Mukarram S.A., Kovács B. 2024. Chickpeas and gut microbiome: Functional food implications for health. Heliyon 10(20): e39314. DOI: 10.1016/j.heliyon.2024.e39314 Anh N.H., Park S., Trang D.T., Yen D.T.H., Tai B.H., Yen P.H., Kiem P.V., Chinh P.T., Nhiem N.X. 2022. Genus Mallotus (Euphorbiaceae): A review on traditional medicinal use, phytochemistry and biological activities. Vietnam Journal of Science and Technology 60(2): 141–174. DOI: 10.15625/2525-2518/16634 Anwar M.B., Jackson R., Nadeem M.S., Janečka J.E., Hussain S., Beg M.A., Muhammad G., Qayyum M. 2011. Food habits of the snow leopard Panthera uncia (Schreber, 1775) in Baltistan, Northern Pakistan. European Journal of Wildlife Research 57(5): 1077–1083. DOI: 10.1007/s10344-011-0521-2 Callahan B.J., McMurdie P.J., Rosen M.J., Han A.W., Johnson A.J., Holmes S.P. 2016. DADA2: High-resolution sample inference from Illumina amplicon data. Nature Methods 13(7): 581–583. DOI: 10.1038/nmeth.3869 Cao H., Yu R., Choi Y., Ma Z.Z., Zhang H., Xiang W., Lee D.Y., Berman B.M., Moudgil K.D., Fong H.H., Van Breemen R.B. 2010. Discovery of cyclooxygenase inhibitors from medicinal plants used to treat inflammation. Pharmacological Research 61(6): 519–524. DOI: 10.1016/j.phrs.2010.02.007 Cipollini M.L., Levey D.J. 1997. Why are some fruits toxic? Glycoalkaloids in Solanum and fruit choice by vertebrates. Ecology 78(3): 782–798. DOI: 10.2307/2266058 Deagle B.E., Thomas A.C., McInnes J.C., Clarke L.J., Vesterinen E.J., Clare E.L., Kartzinel T.R., Eveson J.P. 2019. Counting with DNA in metabarcoding studies: How should we convert sequence reads to dietary data?. Molecular Ecology 28(2): 391–406. DOI: 10.1111/mec.14734 Devkota B.P., Silwal T., Kolejka J. 2013. Prey Density and Diet of Snow Leopard (Uncia Uncia) In Shey Phoksundo National Park, Nepal. Applied Ecology and Environmental Sciences 1(4): 55–60. DOI: 10.12691/aees-1-4-4 Fàbregas M.C., Garcés-Narro C., Bertschinger H., Koehler G. 2016. Carcass utilization by tigers: implications for calculating prey requirements. Journal of Zoology 301(2): 141–149. DOI: 10.1111/jzo.12403 Fahimee J., Badrulisham A.S., Zulidzham M.S., Reward N.F., Muzammil N., Jajuli R., Md-Zain B.M., Yaakop S. 2021. Metabarcoding in Diet Assessment of Heterotrigona itama Based on trnL Marker towards Domestication Program. Insects 12(3): 205. DOI: 10.3390/insects12030205 Franck A.R., Farid A. 2020. Many species of the Carnivora consume grass and other fibrous plant tissues. Belgian Journal of Zoology 150. DOI: 10.26496/bjz.2020.73 Gani M., Sitam F.T., Kamarudin Z., Selamat S.S., Awang N.M.Z., Muhd-Sahimi H.N., Wong M., Selat B., Abdullah-Halim N.F.K., Yong L.S., Yoke L.F., Yaakop S., Mohd-Ridwan A.R., Md-Zain B.M. 2024. Unveiling prey preferences of endangered wild Malayan tiger, Panthera tigris jacksoni, in Peninsular Malaysia through scat analysis via COI DNA metabarcoding. Nature Conservation 55: 249–268. DOI: 10.3897/natureconservation.55.114211 Halim H.R.A., Mustapha N., Ibrahim N.L. 2019. The Story of Malayan Tiger. Malaysia: Department of Wildlife and National Parks. 98 p. Hart B.L. 2008. Why do dogs and cats eat grass?. Veterinary Medicine 2008: 648–649. Hart B.L., Hart L.A. 2018. How mammals stay healthy in nature: the evolution of behaviours to avoid parasites and pathogens. Philosophical Transactions of the Royal Society B, Biological Sciences 373: 20170205. DOI: 10.1098/rstb.2017.0205 Hart B.L., Hart L.A., Thigpen A.P. 2019. Characterization of plant eating in cats. In: R.C. Newberry, B.O. Braastad (Eds.): Proceedings of the 53rd Congress of the ISAE: Netherlands: Wageningen Academic Publishers. P. 106. Hasni J.M., Hassim I.N., Rosnah I., Zaleha M.I., Azmi M.T., Mazapuspavina M.Y., Nafiza M.N., Hafiza A.R.N., Najihah Z.A., Dehghan M., Hazdi Y.K. 2023. New insights of minimum requirement on legumes (Fabaceae sp.) daily intake in Malaysia. BMC Nutrition 9(1): 6. DOI: 10.1186/s40795-022-00649-x Hoppe-Dominik B. 1988. Grass-eating leopards: wolves turned into sheep?. Naturwissenschaften 75(1): 49–50. DOI: 10.1007/BF00367444 Islam M.S., Ara H., Ahmad K.I., Uddin M.M. 2019. A review on medicinal uses of different plants of Euphorbiaceae family. Universal Journal of Pharmaceutical Research 4(1): 45–49. DOI: 10.22270/ujpr.v4i1.236 Jobin A., Molinari P., Breitenmoser U. 2000. Prey spectrum, prey preference and consumption rates of Eurasian lynx in the Swiss Jura Mountains. Acta Theriologica 45(2): 243–252. DOI: 10.4098/AT.arch.00-26 Kawanishi K., Gumal M., Shepherd L.A., Goldthorpe G., Shepherd C.R., Krishnasamy K., Hashim A.K.A. 2010. The Malayan Tiger. In: R. Tilson, P. Nyhus (Eds.): Tiger of the World (2nd ed.). Oxford: Elsevier Inc. P. 376–376. Kim J., Park S. 2024. Molecular dietary analysis of two sympatric carnivoran species, the leopard cat (Prionailurus bengalensis) and the yellow-throated marten (Martes flavigula), in Mt. Jeombongsan, Korea. Mammal Study 50(1): 53–62. DOI: 10.3106/ms2023-0047 Lewis L.A., McCourt R.M. 2004. Green algae and the origin of land plants. American Journal of Botany 91(10): 1535–1556. DOI: 10.3732/ajb.91.10.1535 Loureiro B.A., Sembenelli G., Maria A.P.J., Vasconcellos R.S., Sá F.C., Sakomura N.K., Carciofi A.C. 2014. Sugarcane fibre may prevents hairball formation in cats. Journal of Nutritional Science 3: e20. DOI: 10.1017/jns.2014.27 Magadula J.J. 2014. Phytochemistry and pharmacology of the genus Macaranga: A review. Journal of Medicinal Plants Research 8(12): 489–503. DOI: 10.5897/JMPR2014.5396 Mallott E.K., Garber P.A., Malhi R.S. 2018. trnL outperforms rbcL as a DNA metabarcoding marker when compared with the observed plant component of the diet of wild white-faced capuchins (Cebus capucinus, Primates). PLoS ONE 13(6): e0199556. DOI: 10.1371/journal.pone.0199556 Martin M. 2011. Cutadapt removes adapter sequences from high-throughput sequencing reads. EMBnet.journal 17: 10–12. DOI: 10.14806/ej.17.1.200 McMurdie P.J., Holmes S. 2013. Phyloseq: An R package for reproducible interactive analysis and graphics of microbiome census data. PLoS ONE 8(4): 61217. DOI: 10.1371/journal.pone.0061217 Montalvo V., Sáenz-Bolaños C., Cruz J.C., Hagnauer I., Carrillo E. 2020. Consumption of wild rice (Oryza latifolia) by free-ranging jaguars, pumas, and ocelots (Carnivora-Felidae) in northwestern Costa Rica. Food Webs 22: e00138. DOI: 10.1016/j.fooweb.2019.e00138 Mukherjee S., Sarkar N.S. 2013. The range of prey size of the Royal Bengal Tiger of Sundarbans. Journal of Ecosystems 2013(1): 351756. DOI: 10.1155/2013/351756 Murie A. 1944. The Wolves of Mount McKinley. Fauna of the National Parks of the United States, Fauna Series No. 5. Washington, D.C.: Government Printing Office. P. 59 Oksanen F.J., Blanchet F.G., Kindt R., Legendre P., Minchin P.R., O'Hara R.B., Simpson G.L., Solymos P., Stevens M.H., Wagner H.H. 2016. Vegan: Community Ecology Package. R package Version 2.4-3. Available from https://CRAN.R-project.org/package=vegan Oli M.K., Taylor I.R., Rogers D.M.E. 1993. Diet of the snow leopard (Panthera uncia) in the Annapurna Conservation Area, Nepal. Journal of Zoology 231(3): 365–370. DOI: 10.1111/j.1469-7998.1993.tb01924.x Osman N.A., Abdul-Latiff M.A.B., Mohd-Ridwan A.R., Yaakop S., Nor S.M., Md-Zain B.M. 2020. Diet Composition of the Wild Stump-Tailed Macaque (Macaca arctoides) in Perlis State Park, Peninsular Malaysia, Using a Chloroplast tRNL DNA Metabarcoding Approach: A Preliminary Study. Animals 10(12): 2215. DOI: 10.3390/ani10122215 Osman N.A., Abdul-Latiff M.A.B., Mohd-Ridwan A.R., Yaakop S., Karuppannan K.V., Md-Zain B.M. 2022. Metabarcoding data analysis revealed the plant dietary variation of long-tailed macaque Macaca fascicularis (Cercopithecidae, Cercopithecinae) living in disturbed habitats in Peninsular Malaysia. Biodiversity Data Journal 10: e89617. DOI: 10.3897/BDJ.10.e89617 Rebello C.J., Greenway F.L., Finley J.W. 2014. A review of the nutritional value of legumes and their effects on obesity and its related co-morbidities. Obesity Reviews 15(5): 392–407. DOI: 10.1111/obr.12144 Rofida S. 2015. Antioxidant activity of Jatropha curcas and Jatropha gossypifolia by DPPH method. Farmasains 2(6): 281–284. Rushdan N.A.A.A., Ghani N.A., Rasol N.E. 2023. Review on Anthraquinones Isolated from Rubiaceae Family. Journal of Science and Mathematics Letters 11(Special Issue): 163–174. Sato J.J. 2024. Diets of Rodents Revealed through DNA Metabarcoding. Mammal Study 50(1): 3–25. DOI: 10.3106/ms2024-0018 Sato J.J., Shimada T., Kyogoku D., Komura T., Uemura S., Saitoh T., Isagi Y. 2018. Dietary niche partitioning between sympatric wood mouse species (Muridae: Apodemus) revealed by DNA meta-barcoding analysis. Journal of Mammalogy 99(4): 952–964. DOI: 10.1093/jmammal/gyy063 Sato J.J., Kyogoku D., Komura T., Inamori C., Maeda K., Yamaguchi Y., Isagi Y. 2019. Potential and pitfalls of the DNA metabarcoding analyses for the dietary study of the large Japanese wood mouse Apodemus speciosus on Seto Inland Sea islands. Mammal Study 44(4): 221–231. DOI: 10.3106/ms2018-0067 Sato J.J., Ohtsuki Y., Nishiura N., Mouri K. 2022. DNA metabarcoding dietary analyses of the wood mouse Apodemus speciosus on Innoshima Island, Japan, and implications for primer choice. Mammal Research 67: 109–122. DOI: 10.1007/s13364-021-00601-7. Schaller G.B. 1967. The deer and the tigers: A study of wildlife in India. Chicago, USA: University of Chicago Press. P. 280. Shehzad W., McCarthy T.M., Pompanon F., Purevjav L., Coissac E., Riaz T., Taberlet P. 2012. Prey preference of snow leopard (Panthera uncia) in South Gobi, Mongolia. PLoS ONE 7(2): e32104. DOI: 10.1371/journal.pone.0032104 Siew E.L., Pearanpan L., Zamkhuri Z., Nordin F.J., Ooi T.C., Chan K.M., Kamarozaman A.S., Ahmat N., Rajab N.F. 2023. Genoprotective potential of Macaranga species phytochemical compounds on HT-29 human colorectal adenocarcinoma cell line. Genes and Environment 45(1): 28. DOI: 10.1186/s41021-023-00282-5 Sousa L.L., Silva S.M., Xavier R. 2019. DNA metabarcoding in diet studies: Unveiling ecological aspects in aquatic and terrestrial ecosystems. Environmental DNA 1(3): 199–124. DOI: 10.1002/edn3.27 Taberlet P., Coissac E., Pompanon F., Gielly L., Miquel C., Valentini A., Vermat T., Corthier G., Brochmann C., Willerslev E. 2007. Power and limitations of the chloroplast trnL (UAA) intron for plant DNA barcoding. Nucleic Acids Research 35(3): e14. DOI: 10.1093/nar/gkl938 Tingga R.C.T., Gani M., Osman N.A., Aifat N.R., Chan E., Khamis S., Rohani E.R., Mohd-Daut N., Mohd-Ridwan A.R., Md-Zain B.M. 2024. Interspecific variation in the diet of Symphalangus syndactylus and Macaca nemestrina at Genting Highlands, Pahang, Peninsular Malaysia. Biodiversity Data Journal 12: e122453. DOI: 10.3897/BDJ.12.e122453 Upadhyaya S.K., Musters C.J.M., Lamichhane B.R., de Snoo G.R., Thapa P., Dhakal M., Karmacharya D., Shrestha P.M., de longh H.H. 2018. An insight into the diet and prey preference of tigers in Bardia National Park, Nepal. Tropical Conservation Science 11(3): 194008291879947. DOI: 10.1177/1940082918799476 Usman W.A., Jada M.S., Ahmed Z.H. 2013. Antimicrobial Activity of Stem Bark of Faidherbia albida. British Journal of Pharmaceutical Research 3(4): 786–794. DOI: 10.9734/BJPR/2013/3209 Usman M., Khan W.R., Yousaf N., Akram S., Murtaza G., Kudus K.A., Ditta A., Rosli Z., Rajpar M.N., Nazre M. 2022. Exploring the Phytochemicals and Anti-Cancer Potential of the Members of Fabaceae Family: A Comprehensive Review. Molecules 27(12): 3863. DOI: 10.3390/molecules27123863 Wickham H. 2016. ggplot2: Elegant Graphics for Data Analysis. New York: Springer Cham. 260 p. DOI: 10.1007/978-3-319-24277-4 Wong K.Y., Vikram P., Chiruvella K.K., Mohammed A. 2015. Phytochemical screening and antimicrobial potentials of Borreria sps (Rubiaceae). Journal of King Saud University – Science 27(4): 302–311. DOI: 10.1016/j.jksus.2014.12.001 Xiong M., Shao X., Long Y., Bu H., Zhang D., Wang D., Li S., Wang R., Yao M. 2016. Molecular analysis of vertebrates and plants in scats of leopard cats (Prionailurus bengalensis) in southwest China. Journal of Mammalogy 97(4): 1054–1064. DOI: 10.1093/jmammal/gyw061 Yoshimura H., Qi H., Kikuchi D.M., Matsui Y., Fukushima K., Kudo S., Ban K., Kusani K., Nagano D., Hara M., Sato Y., Takatsu K., Hirata S., Kinoshita K. 2020. The relationship between plant-eating and hair evacuation in snow leopards (Panthera uncia). PLoS ONE 15(7): e0236635. DOI: 10.1371/journal.pone.0236635 Yoshimura H., Hirata S., Kinoshita K. 2021. Plant-eating carnivores: Multispecies analysis on factors influencing the frequency of plant occurrence in obligate carnivores. Ecology and Evolution 11(16): 10968–10983. DOI: 10.1002/ece3.7885 Yoshimura H., Hayakawa T., Kikuchi D.M., Uulu K.Z., Qi H., Sugimoto T., Sharma K., Kinoshita K. 2024. Metabarcoding analysis provides insight into the link between prey and plant intake in a large alpine cat carnivore, the snow leopard. Royal Society Open Science 11: 240132. DOI: 10.1098/rsos.240132 Zengin G., Mahomoodally M.F., Sinan K.I., Ak G., Etienne O.K., Sharmeen J.B., Brunetti L., Leone S., Di Simone S.C., Recinella L., Chiavaroli A., Menghini L., Orlando G., Jekő J., Cziáky Z., Ferrante C. 2021. Chemical Composition and Biological Properties of Two Jatropha Species: Different Parts and Different Extraction Methods. Antioxidants 10(5): 792. DOI: 10.3390/antiox10050792 Zhao H., Sun L., Kong C., Mei W., Dai H., Xu F., Huang S. 2022. Phytochemical and pharmacological review of diterpenoids from the genus Euphorbia Linn (2012-2021). Journal of Ethnopharmacology 298: 115574. DOI: 10.1016/j.jep.2022.115574 |