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      KCI등재 SCOPUS SCIE

      Lipoxygenase ‐ trypsin inhibitor activity axis induction in the host plants of muga silkworm, Antheraea assamensis Helfer by feeding

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      https://www.riss.kr/link?id=A108166853

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      다국어 초록 (Multilingual Abstract)

      The muga silkworm, Antheraea assamensis Helfer bears great economic importance, producing golden yellow muga silk which is in global demand for both the textile and biomedical industries. The insect’s larval stages are maintained in the field by farmers on its primary host plant Persea bombycina Kost in Assam located in the North-East part (25.57 ° N, 93.25 ° E) of India. If continuous feeding by A. assamensis is inducing any direct defense in P. bombycina, the aspect is not yet questioned. We used the activity of lipoxygenases (LOX) and trypsin inhibitors as markers for determining defense responses in P. bombycina and Litsea monopetala Roxb, the two primary host plants of the silkworm due to insect feeding. The induction of anti-herbivore trypsin inhibitor by insect feeding was examined by studying their effect on the midgut trypsin activity of A. assamensis larvae. This is the first report showing that the LOX- trypsin inhibitor axis is differentially activated in the two host plants and greater induction of the defense response is exhibited in P. bombycina, the most commercially used host plant in muga silkworm rearing.
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      The muga silkworm, Antheraea assamensis Helfer bears great economic importance, producing golden yellow muga silk which is in global demand for both the textile and biomedical industries. The insect’s larval stages are maintained in the field by far...

      The muga silkworm, Antheraea assamensis Helfer bears great economic importance, producing golden yellow muga silk which is in global demand for both the textile and biomedical industries. The insect’s larval stages are maintained in the field by farmers on its primary host plant Persea bombycina Kost in Assam located in the North-East part (25.57 ° N, 93.25 ° E) of India. If continuous feeding by A. assamensis is inducing any direct defense in P. bombycina, the aspect is not yet questioned. We used the activity of lipoxygenases (LOX) and trypsin inhibitors as markers for determining defense responses in P. bombycina and Litsea monopetala Roxb, the two primary host plants of the silkworm due to insect feeding. The induction of anti-herbivore trypsin inhibitor by insect feeding was examined by studying their effect on the midgut trypsin activity of A. assamensis larvae. This is the first report showing that the LOX- trypsin inhibitor axis is differentially activated in the two host plants and greater induction of the defense response is exhibited in P. bombycina, the most commercially used host plant in muga silkworm rearing.

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      참고문헌 (Reference)

      1 Schwachtje J, "Why Does Herbivore Attack Reconfigure Primary Metabolism?" 146 : 845-851, 2008

      2 Lin YH, "Trypsin inhibitor of Solanum tuberosum : extraction, stability, and change of activity during storage" 18 : 109-115, 1977

      3 Jongsma MA, "The adaptation of insects to plant protease inhibitors" 43 : 885-895, 1997

      4 Bhabesh Deka, "The Terpenoids Released by Persea bombycina Due to Feeding by Antheraea assama Westwood" Springer Science and Business Media LLC 37 (37): 191-197, 2014

      5 Neog K, "Studies on the influence of host plants and effect of chemical stimulants on the feeding behavior in the muga silkworm, Antheraea assamensis" 11 : 1-16, 2011

      6 Ajay Srinivasan, "Structural and functional diversities in lepidopteran serine proteases" Walter de Gruyter GmbH 11 (11): 2006

      7 Louis J, "Salivary signals of European corn borer induce indirect defenses in tomato" 8 : e2731-, 2013

      8 Dipsikha Bora, "Restricted diet breadth of the larvae of Antheraea assamensis and the role of the labrum‐epipharynx and galeal sensilla" 한국곤충학회 46 (46): 128-138, 2016

      9 D. S. Bora, "Response of Exorista sorbillans to Volatiles of Host Plants of Antheraea assama, Westwood" Springer Science and Business Media LLC 35 (35): 467-473, 2012

      10 Steppuhn A, "Resistance management in a native plant : nicotine prevents herbivores from compensating for plant protease inhibitors" 10 : 499-511, 2007

      1 Schwachtje J, "Why Does Herbivore Attack Reconfigure Primary Metabolism?" 146 : 845-851, 2008

      2 Lin YH, "Trypsin inhibitor of Solanum tuberosum : extraction, stability, and change of activity during storage" 18 : 109-115, 1977

      3 Jongsma MA, "The adaptation of insects to plant protease inhibitors" 43 : 885-895, 1997

      4 Bhabesh Deka, "The Terpenoids Released by Persea bombycina Due to Feeding by Antheraea assama Westwood" Springer Science and Business Media LLC 37 (37): 191-197, 2014

      5 Neog K, "Studies on the influence of host plants and effect of chemical stimulants on the feeding behavior in the muga silkworm, Antheraea assamensis" 11 : 1-16, 2011

      6 Ajay Srinivasan, "Structural and functional diversities in lepidopteran serine proteases" Walter de Gruyter GmbH 11 (11): 2006

      7 Louis J, "Salivary signals of European corn borer induce indirect defenses in tomato" 8 : e2731-, 2013

      8 Dipsikha Bora, "Restricted diet breadth of the larvae of Antheraea assamensis and the role of the labrum‐epipharynx and galeal sensilla" 한국곤충학회 46 (46): 128-138, 2016

      9 D. S. Bora, "Response of Exorista sorbillans to Volatiles of Host Plants of Antheraea assama, Westwood" Springer Science and Business Media LLC 35 (35): 467-473, 2012

      10 Steppuhn A, "Resistance management in a native plant : nicotine prevents herbivores from compensating for plant protease inhibitors" 10 : 499-511, 2007

      11 Lowry OH, "Protein measurement with the Folin phenol reagent" 193 : 265-275, 1951

      12 Felton GW, "Potential role of lipoxygenases in defense against insect herbivory" 20 : 651-666, 1994

      13 Mello MO, "Plant-insect interactions : an evolutionary arms race between two distinct defense mechanisms" 14 : 71-81, 2002

      14 Farmer EE, "Octadecanoid precursors of jasmonic acid activate the synthesis of wound-inducible proteinase inhibitors" 4 : 129-134, 1992

      15 Christellar JT, "Midgut protease activities in 12 phytophagous lepidopteran larvae : dietary and protease inhibitor interactions" 22 : 735-746, 1992

      16 Heidel A, "Microarray analysis of salicylic acidand jasmonic acid-signaling in responses of Nicotiana attenuata to attack by insects from multiple feeding guilds" 27 : 1362-1373, 2004

      17 Brash AR, "Lipoxygenases : occurrence, functions, catalysis, and acquisition of substrate" 274 : 23679-23682, 1999

      18 Bora DS, "Lipid profile of plants influence host selection by gustatory sensilla in the larvae of Antheraea assama Westwood(Lepidoptera : Saturniidae)" 6 : 4681-4687, 2015

      19 Chen H, "Jasmonateinducible plant enzymes degrade essential amino acids in the herbivore midgut" 102 : 19237-19242, 2005

      20 Bi JL, "Induced resistance in soybean to Helicoverpa zea : Role of plant protein quality" 20 : 183-198, 1994

      21 Karban R, "Induced Responses to Herbivory" University of Chicago Press 1997

      22 Duy N, "How plants handle multiple stresses : hormonal interactions underlying responses to abiotic stress and insect herbivory" 91 : 727-740, 2016

      23 Musser RO, "Herbivory : caterpillar saliva beats plant defenses" 416 : 599-600, 2002

      24 Xia X, "Gene expression profiles responses to aphid feeding in chrysanthemum (Chrysanthemum morifolium)" 15 : 1050-, 2014

      25 Hu T, "Expression, molecular characterization and detection of lipoxygenase activity of tomloxD from tomato" 10 : 491-498, 2011

      26 JongsmaMA, "Co-evolution of insect proteases and plant protease inhibitors" 12 : 437-447, 2011

      27 Zhu-Salzman K, "Arthropod-inducible proteins : broad-spectrum defenses against multiple herbivores" 146 : 852-858, 2008

      28 Kakade ML, "An evaluation of natural vs synthetic substrates for measuring antitrypsin activity of soybean samples" 43 : 518-, 1969

      29 Alborn HT, "An elicitor of plant volatiles from beet armyworm oral secretion" 276 : 945-949, 1997

      30 Turlings TCJ, "An elicitor in caterpillar oral secretions that induce corn seedlings to emit chemical signals attractive to parasitic wasps" 19 : 411-425, 1993

      31 Basu S, "Altering plant defenses : Herbivore-associated molecular patterns and effector Arsenal of chewing herbivores" 31 : 13-21, 2017

      32 Lomate PR, "Alterations in the Helicoverpa armigera midgut digestive physiology after ingestion of pigeon pea inducible leucine aminopeptidase" 8 : e74889-, 2013

      33 Mech A, "A study on host plant defense induced by feeding of Antheraea assamensis Helfer(Lepidoptera : Saturniidae)with special reference to lipoxygenase enzyme, trypsin inhibitor, and insect regurgitant" Dibrugarh University 2019

      34 Koch E, "A lipoxygenase from leaves of tomato (Lycopersicon esculentum Mill.) is induced in response to plant pathogenic Pseudomonads" 99 : 571-576, 1992

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      2005-09-30 학술지등록 한글명 : Entomological Research
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      2003-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
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