VARIASI INTERSPESIFIK JULANG (AVES: BUCEROTIDAE) INDONESIA BERDASARKAN GEN CYTOCHROME-B DNA MITOKONDRIA

Jarulis Jarulis, Dedy Duryadi Solihin, Ani Mardiastuti, Lilik Budi Prasetyo
| Abstract views: 1621 | PDF views: 2404

Abstract

Genetic information of Indonesian hornbills (Julang) is still limited. We sequenced the cytochrome b gene of three hornbill species (Rhyticeros undulatus, R. plicatus, and Aceros cassidix) to explore their genetic variation, distance, and phylogenetic. Nine blood samples for Cyt b from three hornbill species were isolated with Dneasy® Blood and Tissue Kit base on Spin-Column Protocol, Qiagen. SNP, genetic distance, and phylogeny were calculated by MEGA 6.0 software. This study was found variations in the Cyt b gene sequence (849 bp) between three species Indonesian Julang. Rhyticeros undulatus had the most SNP compared to R. plicatus and Aceros cassidix. Substitution of synonyms is more common than substitution of synonyms and transition substitution frequency tends to be much higher than transversion substitution. The three species of Indonesian Julang were markedly separate with an average genetic distance of 5.25%. and separated with the outgroup species at a genetic distance of 9.43%. Cytochrome b sequence genes from these three hornbill species are novel for identifying and classifying hornbills, and could be applied to prevent illegal poaching and conservation management in Indonesia.

 

 

 

 

Keywords

Cytochrome b, genetic distance, hornbills, interspecific variation, phylogenetic

Full Text:

PDF

References

Astuti, D., Azuma, N., Suzuki and Higashi, S., 2006. Phylogenetic relationships within parrots (Psittacidae) inferred from mitochondrial cytochrome b gene sequences. Zoological Sciences, 23, pp. 191-198.

Balasubramanian, P., Aruna, R., Anbarasu, C. and Kumar, E.S., 2011. Avian frugivory and seed dispersal of Indian Sandalwood Santalum album in Tamil Nadu, India. Journal of Threatened Taxa, 3, pp. 1775-1777.

Birt, T.P., Friesen, v.L., Green, J.M., Montevecchi, W.A. and Davidson, W.S., 1992. Cytochrome-b sequence variation among parrots. Hereditas, 117, pp. 67-72.

Bennett, E.L., Nyaoi, A.J. and Sompud, J., 1997. Hornbills Buceros spp. and culture in northern Borneo: Can they continue to co-exist?. Biological Conservation, 82, pp.41-46.

Bofkin, L. and Goldman, N., 2007. Variation in evolutionary processes at different codon positions. Molecular Biology and Evolution, 24, pp. 513-521.

Broders, O., Osborne, T. and Wink, M., 2003. A mtDNA phylogeny of bustards (family Otididae) based on nucleotide sequences of the cytochrome b-gene. J. Ornithol, 144, pp. 176-185.

Chaisuriyanun, S., Gale, G.A., Madsri, S. and Poonswad P., 2011. Food consumed by Great Hornbill and Rhinoceros Hornbill in tropical rainforest, Budo-Sungai Padi National Park, Thailand. The Raffles Bulletin of Zoology, S24, pp. 123-135.

Coates, B.J., Bishop, K.D. dan Gardner, D., 2000. Panduan lapangan burung-burung di Kawasan Wallacea: Sulawesi, Maluku, dan Nusa Tenggara. Birdlife International-Indonesia Programme & Dove Publications. Indonesia.

Delport, W., Ferguson, J.W.H. and Bloomer, P., 2002. Characterization and Evolution of the Mitochondrial DNA Control Region in Hornbills (Bucerotiformes). Journal of Molecular Evolution, 54, pp. 794–806.

Eaton, J.A., Balen, V., Brickle, N.W. and Rheindt, F.E., 2016. Birds of the Indonesian archipelago: Greater Sundas and Wallacea. Lynx edicions. Barcelona.

Farias, I.P., Orti, G., Sampaio, I., Schneider, H. and Meyer, A., 2001. The Cytochrome b gene as a phylogenetic marker: the limits of resolution for analyzing relationships among Cichlid fishes. J. Mol. Evol, 53, pp. 89-103.

Gonzales, J.C.T., Sheldon, B.C., Collar, N.J. and Tobias, J.A., 2013. A comprehensive molecular phylogeny for the hornbills (Aves:Bucerotidae). Molecular Phylogenetics and Evolution, 67, pp. 468-483.

Graur, D. and Li, W.H., 2000. Fundamental of molecular evolution. Second edition. Sinauer Associates Inc. Sunderland (US). 481p.

Haig, S.M. and Nordstrom, L.H., 1991. Genetic Management of Small Population. in: Dekker DJ, Krasny GR, Goff GR, Smith 116 CH, Gross DW, editor. Challenges in Conservation of Biological Resources. A Practitioner’s Guides. San Fransisco: Westives Press.

Hall, T.A., 1999. BioEdit: a user-friendly biological sequence alignment editor and analysis program for Windows 95/98/NT. Nucl. Acids. Symp. Ser, 41, pp. 95-98.

Hebert, P.D.N., Stoeckle, M.Y., Zemlak, T.S. and Francis, C.M., 2004. Identification of birds through DNA barcodes. PLoS Biol, 2, pp. e312.

Irwin, D.M., Kocher, T.D. and Wilson, A.C., 1991. Evolution of the cytochrome b gene of mammals. Mol. Evol, 32, pp. 128-144.

Jarulis, Solihin, D.D., Mardiastuti, A. and Prasetyo, L.B., 2018. DNA barcode of seven Indonesian hornbills species (Aves: Bucerotidae) based on mitochondrial DNA cytochrome oxidase subunit I. Unpublished. Indonesia.

Kemp, A.C., 1988. The systematics and zoogeography of Oriental and Australasian hornbills (Aves: Bucerotidae). Bonn. Zool. Beitr, 39, pp. 315-345.

Kementerian Lingkungan Hidup dan Kehutanan (KLHK), 2018. Peraturan Menteri Negara Lingkungan Lingkungan Hidup dan Kehutanan Nomor P.20 tentang Jenis Tumbuhan dan Satwa Dilindungi. Peraturan Menteri Negara Lingkungan Lingkungan Hidup dan Kehutanan. Jakarta.

Kimura, M., 1980. A simple method for estimating evolutionary rates of base substitutions through comparative studies of nucleotide sequences. J Mol Evol, 16, pp. 111-120.

Kinnaird, M.F. and O’Brien, T.G., 2007. The Ecology and Conservation of Asian Hornbills: Farmers of the Forest. University of Chicago press, Chicago, IL.

Kinnaird, M.F., 1998. Evidence for effective seed dispersal by the Sulawesi Red-Knobbed Hornbill Aceros cassidix. Biotropica, 30, pp. 50-55.

Kitamura, S., Yumoto, T., Noma, N., Chuailua, P., Maruhashi, T., Wohandee, P. and Poonswad, P., 2008. Aggregated seed dispersal by wreathed hornbills at a roost site in a moist evergreen forest of Thailand. Ecological Research, 23, pp. 943-952.

Kocher, T.D., Thomas, W.K., Meyer, A., Edwards, S.V., Paabo, S., Villablanca, F.X. and Wilson, A.C., 1989. Dinamics of mitochondrial DNA evolution in animals: Amplification and sequencing with conserved primers. J. Proc. Nat., 86, pp. 6196-6200.

Krajewski, C. and Fetzner, J.W., 1994. Phylogeny of cranes (Gruiformes: Gruidae) based on cytochrome b DNA sequences. The Auk, 111, pp. 351-365.

MacKinnon, J., Philipps, K. dan Balen, B.V., 2010. Burung-burung di Sumatera, Jawa, Bali dan Kalimantan (termasuk Sabah, Sarawak dan Brunei Darussalam). Puslitbang Biologi LIPI. Bogor.

Morin, P.A., Messier, J. and Woodruff, D.S., 1994. DNA extraction, amplification, and direct sequencing from hornbill feathers. J. Sci. Soc., 20, pp. 31-42.

Nunn, G.B., Cooper, J., Jouventin, P., Robertson, C.J.R. and Robertson, G.G., 1996. Evolutionary relationships among extant Albatrosses (Procellariiformes: Diomedeidae) established from complete cytochrome-b gene sequences. The Auk, 113, pp. 784-801.

Poonswad, P., Kemp, A. and Strange M., 2013. Hornbills of the world. Draco publishing and distribution. Thailand.

Ralls, K., Ballou, J.D. and Templeton, A., 1988. Estimates of lethal equivalents and the cost of inbreeding in mammals. Conservation Biology, 2, pp. 185-193.

Randi, E., 1996. A Mitochondrial cytochrome b phylogeny of the Alectoris partridges. J.Mol. Phyl. Evol., 6, pp. 214-227.

Randi, E., Lucchini, V., Hennache, A., Rebecca, T., Kimball, R.T., Braun, E.L. and Ligon, J.D., 2001. Evolution of the mitochondrial DNA control region and cytochrome b genes and the inference of phylogenetic relationships in the avian genus Lophura (Galliformes). Molecular Phylogenetics and Evolution, 19, pp. 187-201.

Rocha, T.C., Sequeira, F., Aleixo, A., Rêgo, P.S., Sampaio, I., Schneider, H. and Vallinoto, M., Molecular phylogeny and diversification of a widespread neotropical rainforest bird group: The Buff-throated Woodcreeper complex, Xiphorhynchus guttatus/susurrans (Aves: Dendrocolaptidae). Molecular Phylogenetics and Evolution, 85, pp. 131-140.

Sambrook, J., Fritsch, E.F. and Maniatis T., 1989. Molecular Cloning: A Laboratory Manual. New York. Cold Spring Harbour Laboratory Press.

Schmitz, J., Ohme, M. and Zischler, H., 2002. The complete mitochondrial sequence of Tarsius bancanus: Evidence for an extensive nucleotide compositional plasticity of primate mitochondrial DNA. Mol. Bio. Evol., 19, pp. 544-553.

Shen, X.J., Ito, S., Mizutani, M. and Yamamoto, Y., 2002. Phylogenetic analysis in chicken breeds inferred from complete cytochrome b gene information. Biochemical Genetics, 40, pp. 129-141.

Sibley, C.G. and Ahlquist, J., 1990. Phylogeny and Classification of Birds: A Study in Molecular Evolution. Yale University Press, New Haven.

Srikwan, S. dan Woodruff, D.S., 1998. DNA sequence variation and hornbill conservation. In: The Asian hornbills: Ecology and conservation (P. Poonswad, ed), pp. 69–82. Thai Studies in Biodiversity No. 2. Biotec & NSTDA, Bangkok.

Sukmantoro, W., Irham, M., Novarino, W., Hasudungan, F., Kemp, N. and Muchtar, M., 2007. Daftar Burung Indonesia no. 2. IdOU. Bogor.

Tamura, K., Stecher, G., Peterson, D., Filipski, A. and Kumar, S., 2013. Mega6: molecular evolutionary genetics analysis version 6.0. Mol. Biol. Evol., 30, pp. 2725-2729.

Tavares, E.S., Alves, P.G., Miyaki, C.Y. and Baker, A.J., 2011. DNA barcode detects high genetic structure within neotropical bird species. PLoS ONE, 6, pp. e28543.

Viseshakul, N., Charoennitikul, W., Kitamura, S., Kemp, A., Thong-Aree, S., Surapunpitak, Y., Poonswad, P. and Ponglikitmongkol, M., 2011. A phylogeny of frugivorous hornbills linked to the evolution of Indian plants within Asian rainforests. Journal of Evolutionary Biology, 24, pp. 1533-1545.

Waugh, J., 2007. DNA barcoding in animal species: progress, potential and pitfalls. BioEssays, 29, pp. 188-197.

Zein, M.S.A., 2018. Barkoding DNA burung Elang (Famili Accipitridae) di Indonesia. Berita Biologi, 17, pp. 165-173.

Zink, R.M., Rohwer, S., Drovetski, S., Rachelle, C., Rago, R.C.B. and Farrell, S.L., 2002. Holarctic phylogeography and species limits of three-toed woodpeckers. The condor, 104, pp. 167–170.


Refbacks

  • There are currently no refbacks.