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      Molecular phylogeny of Indonesian Zeuzera(Lepidoptera:Cossidae) wood borer moths based on CO I gene sequence

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      https://www.riss.kr/link?id=A101685513

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      다국어 초록 (Multilingual Abstract)

      Zeuzera is one of the most important wood borer pests in South East Asia. Like of most other genera of moths, the systematic of this genus is still in dispute, especially on the monophyly and the relationship within this genus due to the fact that genus is very varied. This genus was defined based on external characters only such as cross vein Sc-Rs present, humeral plate approximately triangular in shape and anal plate moderately long to moderately short. Therefore, the monophyly of this genus need to be evaluated based on more comprehensive data. To clarify the monophyly of the genus Zeuzera, to reveal the phylogenetic relationships among the Indonesian species, and to establish the genetic characters of Indonesian Zeuzera, we analyzed seven species of Indonesian Zeuzera including three other species distributed around the world based on nucleotide sequence variation across a 580-bp region in the CO I gene. The results showed that the monophyly of Zeuzera was supported by bootstrap tests at the MP and ML tree building methods (>95%). Genus Zeuzera was divided into two groups (A and B) with Z. borneana was excluded from the two groups and occupied at the basal node. Indonesian species was distributed into two different clades. CO I gene alone was able to fully resolve the relationships among species within clade B. However, further investigations were needed by including more species and other genes that the more conserved to test the validity of the phylogenetic hypothesis proposed here.
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      Zeuzera is one of the most important wood borer pests in South East Asia. Like of most other genera of moths, the systematic of this genus is still in dispute, especially on the monophyly and the relationship within this genus due to the fact that gen...

      Zeuzera is one of the most important wood borer pests in South East Asia. Like of most other genera of moths, the systematic of this genus is still in dispute, especially on the monophyly and the relationship within this genus due to the fact that genus is very varied. This genus was defined based on external characters only such as cross vein Sc-Rs present, humeral plate approximately triangular in shape and anal plate moderately long to moderately short. Therefore, the monophyly of this genus need to be evaluated based on more comprehensive data. To clarify the monophyly of the genus Zeuzera, to reveal the phylogenetic relationships among the Indonesian species, and to establish the genetic characters of Indonesian Zeuzera, we analyzed seven species of Indonesian Zeuzera including three other species distributed around the world based on nucleotide sequence variation across a 580-bp region in the CO I gene. The results showed that the monophyly of Zeuzera was supported by bootstrap tests at the MP and ML tree building methods (>95%). Genus Zeuzera was divided into two groups (A and B) with Z. borneana was excluded from the two groups and occupied at the basal node. Indonesian species was distributed into two different clades. CO I gene alone was able to fully resolve the relationships among species within clade B. However, further investigations were needed by including more species and other genes that the more conserved to test the validity of the phylogenetic hypothesis proposed here.

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      참고문헌 (Reference)

      1 Holloway, J. D, "The moths of Borneo part 1, key to families, Families Cossidae, Metarbelidae, Ratardidae, Dugeonidae, Epipyropidae and Limcodidae" 40 : 1-166, 1986

      2 Sutrisno, H, "The impact of storage time of museum insect specimen on PCR success: case study on moth collection in Indonesia" 19 (19): 99-104, 2012

      3 Roepke, W., "The Cossidae of the Malayan Region (Lepidoptera: Heterocera)" 52 (52): 1-60, 1957

      4 Sutrisno, H., "Species Status of yelow stem borer Scirpophaga incertulas (Lepidoptera: Pyralidae) based on CO I gene sequences" 36 : 37-47, 2008

      5 Herdiana, N, "Potensi serangan hama tanaman jati rakyat dan upaya pengendaliannya di Rumpin, Bogor" 7 (7): 201-209, 2010

      6 Cassildé, C., "Phylogeny of the genus Morpho Fabricius 1807: insights from two mitochondrial genes (Lepidoptera: Nymphalidae)" 48 (48): 173-188, 2012

      7 Yamamoto, S., "Phylogeny of the Geometridae and the evolution of winter moths inferred from a simultaneous analysis of mitochondrial and nuclear genes" 44 : 711-723, 2007

      8 Zhang M., "Phylogeny of Limenitidinae Butterflies (Lepidoptera: Nymphalidae) Inferred from Mitochondrial Cytochrome Oxidase I Gene Sequences" 10 (10): 566-575, 2011

      9 Caterino, M.S., "Phylogeny Papilio based on mitochondrial cytochrome oxidase I and II genes" 11 (11): 122-137, 1999

      10 Schoorl, J.W. (Pim) Jr, "Phylogenetic study on Cossidae (Lepidoptera: Ditrysia) based on external adult morphology" 263 : 1-295, 1990

      1 Holloway, J. D, "The moths of Borneo part 1, key to families, Families Cossidae, Metarbelidae, Ratardidae, Dugeonidae, Epipyropidae and Limcodidae" 40 : 1-166, 1986

      2 Sutrisno, H, "The impact of storage time of museum insect specimen on PCR success: case study on moth collection in Indonesia" 19 (19): 99-104, 2012

      3 Roepke, W., "The Cossidae of the Malayan Region (Lepidoptera: Heterocera)" 52 (52): 1-60, 1957

      4 Sutrisno, H., "Species Status of yelow stem borer Scirpophaga incertulas (Lepidoptera: Pyralidae) based on CO I gene sequences" 36 : 37-47, 2008

      5 Herdiana, N, "Potensi serangan hama tanaman jati rakyat dan upaya pengendaliannya di Rumpin, Bogor" 7 (7): 201-209, 2010

      6 Cassildé, C., "Phylogeny of the genus Morpho Fabricius 1807: insights from two mitochondrial genes (Lepidoptera: Nymphalidae)" 48 (48): 173-188, 2012

      7 Yamamoto, S., "Phylogeny of the Geometridae and the evolution of winter moths inferred from a simultaneous analysis of mitochondrial and nuclear genes" 44 : 711-723, 2007

      8 Zhang M., "Phylogeny of Limenitidinae Butterflies (Lepidoptera: Nymphalidae) Inferred from Mitochondrial Cytochrome Oxidase I Gene Sequences" 10 (10): 566-575, 2011

      9 Caterino, M.S., "Phylogeny Papilio based on mitochondrial cytochrome oxidase I and II genes" 11 (11): 122-137, 1999

      10 Schoorl, J.W. (Pim) Jr, "Phylogenetic study on Cossidae (Lepidoptera: Ditrysia) based on external adult morphology" 263 : 1-295, 1990

      11 Man Il Kim, "Phylogenetic Relationships of True Butterflies (Lepidoptera: Papilionoidea) Inferred from COI, 16S rRNA and EF-1α Sequences" 한국분자세포생물학회 30 (30): 409-425, 2010

      12 Roe, A.D., "Patterns of evolution of mitochondrial cytochrome c oxidase I and II DNA and implications for DNA barcoding" 44 : 325-345, 2007

      13 Swofford, D.L., "PAUP*. Phylogenetic analysis using parsimony (* and Other Methods). Version 4.0b10 for 32- bit Microsoft Windows" Sinauer Associates 2001

      14 Toxopeus, L.J., "On the borer moths Zeuzera coffea Nietn and Z. roricyanea Wlk (neuropunctata Gaede) Lep., Cossidae, Zeuzerinae)" 19 (19): 167-175, 1948

      15 Roepke, W., "Notes and description of Cossidae from New Guinea(Lepidoptera : Heterocera)" 107 : 281-288, 1955

      16 Dorp, K. van, "Molecular systematics of Lycaena F., 1807 (Lepidoptera: Lycaenidae)-Some preliminary results" 15 : 65-70, 2004

      17 Sutrisno, H, "Molecular phylogeny of the Indo-Australia Glyphodes and allied genera (Insecta: Lepidoptera: Crambidae) inferred from CO I, CO II and EF-1 alpha genes" 11 : 57-69, 2006

      18 Sutrisno, H., "Molecular phylogeny of Indonesian armyworm Mythimna (Lepidoptera: Noctuidae)" 19 (19): 60-65, 2012

      19 Nei, M., "Molecular evolution and phylogenetics" Oxford University Press 2000

      20 Sutrisno, H., "Molecular Phylogeny of Indonesian Lymantria Tussock Moths (Lepidoptera: Erebidae) based on CO I gene sequences" 3 (3): 7-16, 2014

      21 Sutrisno, H., "Molecular Phylogeny of Indonesian Aganaine Moths(Lepidoptera : Noctuidae)based on CO I gene" 38 : 71-186, 2011

      22 Tamura, K, "MEGA5: Molecular Evolutionary Genetics Analysis using Maximum Likelihood, Evolutionary Distance, and Maximum Parsimony Methods" 28 : 2731-2739, 2011

      23 Simon C, "Evolution, Weighting, and Phylogenetic utility of Mitochondrial Gene Sequences and a Compilation of conserved Polymerase Chain Reaction Primers" 87 (87): 651-701, 1994

      24 Irwin, D. M., "Evolution of the cytochrome b gene of mammals" 32 : 128-144, 1991

      25 Hasegawa, M., "Dating the human-ape split by a molecular clock of mitochondrial DNA" 22 : 160-174, 1985

      26 Tsao, W.C., "DNA-Based Discrimination of Subspecies of Swallowtail Butterflies(Lepidoptera : Papilioninae)from Taiwan" 47 (47): 633-643, 2008

      27 van Nieukerken, E.J., "DNA barcoding of the leafmining moth subgenus Ectoedemia s. str. (Lepidoptera : Nepticulidae)with COI and EF1-α : two are better than one in recognising cryptic species" 81 (81): 1-24, 2012

      28 Hebert, P. D., "DNA barcodes for 1/1000 of the animal kingdom" 6 (6): 359-362, 2010

      29 Kranthi S., "Cytochrome oxidase I sequence of Helicoverpa(Noctuidae : Lepidoptera)species in India-Its utility as a molecular tool" 5 : 195-199, 2006

      30 Yang, Z., "Computational Molecular Evolution" Oxford University Press 2008

      31 Hall, T. A., "BioEdit: a user-friendly biological sequence alignment editor and analysis program for window 95/98/ TNT" 41 : 95-98, 1999

      32 Arora, G. S. A, "A taxomic revision of the Indian species of the family Cossidae (Lepidoptera)" 69 : 1-160, 1976

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