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      KCI등재 SCOPUS SCIE

      Identification of differentially expressed immunity‐related genes in Monochamus alternatus Hope (Coleoptera: Cerambycidae) larvae parasitized by Dastarcus helophoroides (Fairmaire) (Coleoptera: Bothrideridae)

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      https://www.riss.kr/link?id=A106147185

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      다국어 초록 (Multilingual Abstract)

      The pine sawyer Monochamus alternatus Hope (Coleoptera: Cerambycidae) is a serious pest of several Pinus species, and the ectoparasitoid larvae of Dastarcus helophoroides (Fairmaire) (Coleoptera: Bothrideridae) is an important natural enemy of this pe...

      The pine sawyer Monochamus alternatus Hope (Coleoptera: Cerambycidae) is a serious pest of several Pinus species, and the ectoparasitoid larvae of Dastarcus helophoroides (Fairmaire) (Coleoptera: Bothrideridae) is an important natural enemy of this pest. The transcriptome of M. alternatus larvae was sequenced using the Illumina platform and immunity‐related genes were specifically analyzed. De novo assembly resulted in the identification of 24 241 unigenes, with a mean length of 1122 bp, in unparasitized M. alternatus larvae and 23 807 unigenes, with a mean length of 1140 bp, for parasitized larvae. Removal of redundant unigenes resulted in 26 095 all‐unigenes, of which 16 959 (64.99%) showed clear homology with some of the known genes in the National Center for Biotechnology Information nr database. Parasitization had notable effects on the transcriptome profile of M. alternatus larvae. In all, 2702 genes were differentially expressed in M. alternatus larvae after parasitization, with 1491 (55.18%) upregulated and 1211 (44.82%) downregulated. Moreover, expression levels of immunity‐related genes in M. alternatus larvae were markedly altered in response to parasitization by D. helophoroides. In conclusion, the transcriptome profiling data, especially the discovered of immunity‐related genes, help illustrate the molecular mechanisms of parasitism between D. helophoroides and M. alternatus and provide new insights into developing immunity regulation‐mediated control methods of M. alternatus.

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      참고문헌 (Reference)

      1 Asgari S, "Venom proteins from endoparasitoid wasps and their role in host–parasite interactions" 56 : 313-335, 2011

      2 Mamiya Y, "Transmission of Bursaphelenchus lignicolus (Nematoda: Aphelenchoidae) by Monochamus alternatus (Coleoptera: Cerambycidae)" 18 : 159-162, 1972

      3 Zhu JY, "Transcriptomic immune response of Tenebrio molitor pupae to parasitization by Scleroderma guani" 8 : e54411-, 2013

      4 Tang B, "Transcriptome immune analysis of the invasive beetle Octodonta nipae (Maulik) (Coleoptera: Chrysomelidae) parasitized by Tetrastichus brontispae Ferrière (Hymenoptera: Eulophidae)" 9 : e91482-, 2014

      5 Keeling CI, "Transcriptome and full-length cDNA resources for the mountain pine beetle, Dendroctonus ponderosae Hopkins, a major insect pest of pine forests" 42 : 525-536, 2012

      6 ZhangW, "Transcriptome analysis of Dastarcus helophoroides (Coleoptera: Bothrideridae) using Illumina HiSeq sequencing" 6 : e100673-, 2014

      7 Audic S, "The significance of digital gene expression profiles" 7 : 986-995, 1997

      8 Zhang ZQ, "The mitochondrial genome of Dastarcus helophoroides(Coleoptera: Bothrideridae) and related phylogenetic analyses" 1 : 15-24, 2015

      9 Strand MR, "The insect cellular immune response" 15 : 1-14, 2008

      10 Lemaitre B, "The host defense of Drosophila melanogaster" 25 : 697-743, 2007

      1 Asgari S, "Venom proteins from endoparasitoid wasps and their role in host–parasite interactions" 56 : 313-335, 2011

      2 Mamiya Y, "Transmission of Bursaphelenchus lignicolus (Nematoda: Aphelenchoidae) by Monochamus alternatus (Coleoptera: Cerambycidae)" 18 : 159-162, 1972

      3 Zhu JY, "Transcriptomic immune response of Tenebrio molitor pupae to parasitization by Scleroderma guani" 8 : e54411-, 2013

      4 Tang B, "Transcriptome immune analysis of the invasive beetle Octodonta nipae (Maulik) (Coleoptera: Chrysomelidae) parasitized by Tetrastichus brontispae Ferrière (Hymenoptera: Eulophidae)" 9 : e91482-, 2014

      5 Keeling CI, "Transcriptome and full-length cDNA resources for the mountain pine beetle, Dendroctonus ponderosae Hopkins, a major insect pest of pine forests" 42 : 525-536, 2012

      6 ZhangW, "Transcriptome analysis of Dastarcus helophoroides (Coleoptera: Bothrideridae) using Illumina HiSeq sequencing" 6 : e100673-, 2014

      7 Audic S, "The significance of digital gene expression profiles" 7 : 986-995, 1997

      8 Zhang ZQ, "The mitochondrial genome of Dastarcus helophoroides(Coleoptera: Bothrideridae) and related phylogenetic analyses" 1 : 15-24, 2015

      9 Strand MR, "The insect cellular immune response" 15 : 1-14, 2008

      10 Lemaitre B, "The host defense of Drosophila melanogaster" 25 : 697-743, 2007

      11 Richards S, "The genome of the model beetle and pest Tribolium castaneum" 452 : 949-955, 2008

      12 Eleftherianos I, "Role and importance of phenoloxidase in insect hemostasis" 3 : 28-33, 2011

      13 Burridge K, "Rho and Rac take center stage" 116 : 167-179, 2004

      14 Moon SY, "Rho GTPase-activating proteins in cell regulation" 13 : 13-22, 2003

      15 Marmaras VJ, "Regulators and signalling in insect haemocyte immunity" 21 : 186-195, 2009

      16 Nobes C, "Regulation and function of the Rho subfamily of small GTPases" 4 : 77-81, 1994

      17 Ribou AC, "Reduced metabolic rate and oxygen radicals production in stored insect sperm" 279 : 2196-2203, 2012

      18 Yang ZQ, "Recent advances in biological control of important native and invasive forest pests in China" 68 : 117-128, 2014

      19 Ogura N, "Rearing of the colydiid beetle predator, Dastarcus helophoroides, on artificial diet" 44 : 291-299, 1999

      20 Williams MJ, "Rac1 signalling in the Drosophila larval cellular immune response" 119 : 2015-2024, 2006

      21 Liu JD, "Primary study on methods to determine instars of Monochamus alternatus larva" 28 : 84-86, 2008

      22 Dziarski R, "Peptidoglycan recognition proteins (PGRPs)" 40 : 877-886, 2004

      23 Yu XQ, "Pattern recognition proteins in Manduca sexta plasma" 32 : 1287-1293, 2002

      24 Wei JR, "Parasitism and olfactory responses of Dastarcus helophoroides (Coleoptera: Bothrideridae) to different Cerambycid hosts" 54 : 733-742, 2009

      25 Xu QY, "Ostrinia furnacalis integrin beta1 may be involved in polymerization of actin to modulate spreading and encapsulation of plasmatocytes" 37 : 438-445, 2012

      26 Zhuang S, "Multiple alpha subunits of integrin are involved in cell-mediated responses of the Manduca immune system" 32 : 365-379, 2008

      27 Cho MY, "Molecular cloning and functional properties of two early-stage encapsulation-relating proteins from the coleopteran insect, Tenebrio molitor larvae" 262 : 737-744, 1999

      28 Nappi AJ, "Melanogenesis and the generation of cytotoxic molecules during insect cellular immune reactions" 6 : 117-126, 1993

      29 Nappi AJ, "Melanogenesis and associated cytotoxic reactions: applications to insect innate immunity" 35 : 443-459, 2005

      30 Christensen BM, "Melanization immune responses in mosquito vectors" 21 : 192-199, 2005

      31 Mortazavi A, "Mapping and quantifying mammalian transcriptomes by RNASeq" 5 : 621-628, 2008

      32 Ourth DD, "Isolation of mannosebinding C-type lectin from Heliothis virescens pupae" 335 : 1085-1089, 2005

      33 Hu J, "Integrin beta1 subunit from Ostrinia furnacalis hemocytes: molecular characterization, expression, and effects on the spreading of plasmatocytes" 56 : 1846-1856, 2010

      34 Carton Y, "Insect immune resistance to parasitoids" 15 : 67-87, 2008

      35 Li XJ, "Impact of immune response of a parasitic beetle Dastarcus helophoroides on its host beetle Monochamus alternatus" 90 : 28-42, 2015

      36 Christophides GK, "Immunity-related genes and gene families in Anopheles gambiae" 298 : 159-165, 2002

      37 Evans JD, "Immune pathways and defence mechanisms in honey bees Apis mellifera" 15 : 645-656, 2006

      38 Yu XQ, "Immulectin-2, a pattern recognition receptor that stimulates hemocyte encapsulation and melanization in the tobacco hornworm, Manduca sexta" 28 : 891-900, 2004

      39 Lin T, "Identification of differentially expressed genes in Monochamus alternatus digested with azadirachtin" 6 : 33484-, 2016

      40 Lavine MD, "Haemocytes from Pseudoplusia includens express multiple alpha and beta integrin subunits" 12 : 441-452, 2003

      41 Schmidt A, "Guanine nucleotide exchange factors for Rho GTPases: turning on the switch" 16 : 1587-1609, 2002

      42 Zhu JY, "Global transcriptome profiling of the pine shoot beetle, Tomicus yunnanensis (Coleoptera: Scolytinae)" 7 : e32291-, 2012

      43 Corona M, "Genes of the antioxidant system of the honey bee: annotation and phylogeny" 15 : 687-701, 2006

      44 Lin T, "Gene expression profiles in Japanese pine sawyer, Monochamus alternatus exposed to a sublethal dose of imidacloprid" 47 : 49-58, 2015

      45 Grabherr MG, "Full length transcriptome assembly from RNA-Seq data without a reference genome" 29 : 644-652, 2011

      46 Williams MJ, "Drosophila melanogaster Rac2 is necessary for a proper cellular immune response" 10 : 813-823, 2005

      47 Zheng Y, "Dbl family guanine nucleotide exchange factors" 26 : 724-732, 2001

      48 Inoue E, "Dastarcus longulus, a natural enemy of the Japanese pine sawyer" 42 : 171-175, 1993

      49 Taketsune A, "Dastarcus helophoroides, a natural enemy against Monochamus alternatus" 31 : 228-230, 1982

      50 Wang WD, "Dastarcus helophorides growth in the laboratory" 21 : 43-47, 1999

      51 Zhang Z, "Comparative genomics analysis of five families of antimicrobial peptide-like genes in seven ant species" 38 : 262-274, 2012

      52 Raftopoulou M, "Cell migration: Rho GTPases lead the way" 265 : 23-32, 2004

      53 Conesa A, "Blast2GO: a universal tool for annotation, visualization and analysis in functional genomics research" 21 : 3674-3676, 2005

      54 Qin XX, "Biological characteristics and application of Dastarcus longulus" 25 : 102-109, 1988

      55 Lei Q, "Artificial fodder ingredience for Dastarcus longulus adults" 21 : 259-261, 2005

      56 Bulet P, "Antimicrobial peptides in insects; structure and function" 23 : 329-344, 1999

      57 Conesa A, "A survey of best practices for RNA-seq data analysis" 17 : 13-, 2016

      58 Levin DM, "A hemocyte-specific integrin required for hemocytic encapsulation in the tobacco hornworm, Manduca sexta" 35 : 369-380, 2005

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