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국회도서관 홈으로 정보검색 소장정보 검색

초록보기

꽃매미의 발육단계별 표피탄화수소를 비교하기 위하여 GC와 GC-MS를 이용하여 분석하였다. 분석된 꽃매미의 표피탄화수소의 종류는 알이32종, 약충은 령별로 각각 33, 28, 38, 37종이었고 2령 약충에서 가장 적게 나타났다. 반면 성충은 암· 수 모두 46종으로 동일하였으며, 꽃매미의충태 중 가장 많은 종류의 탄화수소를 함유하고 있었다. 발육단계별 물질 함량을 분석한 결과, 알은 메틸기를 갖고 있는 9-methylheptacosane을 가장많이 함유하고 있었으며(15.11%), 령기별 약충은 n-heptacosane을 가장 많이 함유하고 있었다(15.75, 22.42, 25.04, 23.11%). 반면 성충은 암·수모두 n-nonacosane을 가장 많이 함유하고 있었다(13.42, 16.55%). 표피탄화수소의 구성물질을 5개 그룹(n-alkanes, monomethylalkanes,dimethylalkanes, trimethylalkanes, olefins)으로 나누고 물질 함량을 꽃매미 발육단계별로 비교하였다. 꽃매미의 알 표피는 대부분이 monomethylalkanes 인 포화탄화수소로 이루어져 있고(45.39%), 약충은 포화탄화수소의 기본구조인 n-alkanes이 대부분이었다(37.63-46.12%). 또한 성충은 암·수에따라 차이가 있었지만, n-alkanes과 monomethylalkanes을 고루 함유하는 것으로 나타났다. 반면 모든 충태에서, 3개이상의 메틸기를 갖거나 이중결합을 포함하는 구조는 극히 적었다.

Aliphatic cuticular hydrocarbons (CHCs) of different developmental stages of the spot clothing wax cicada, Lycorma delicatula (Hemiptera: Fulgoridae) were analyzed using GC and GC-MS. The numbers of carbons in the major CHCs of each developmental stage 32, 33, 28, 38, 37 in the egg, 1st, 2nd, 3rd, and 4th instar nymphal stages, and adults, respectively. The cuticle of Lycorma delicatula contains mainly methyl-branched 9-methylheptacosane (15.11%) in the egg stage, and a high proportion of n-heptacosane in nymphal stages (15.75, 22.42, 25.04, and 23.11 % in the 1st, 2nd, 3rd and 4th instars, respectively). In contrast, male and female adults had high proportions of n-nonacosane (13.42 and 16.55%). The chemical constituents of CHCs were classified into five groups (n-alkanes, monomethylalkanes, dimethylalkanes, trimethylalkanes, olefins) and group profiles of each developmental stage were compared. Egg surface was composed mainly monomethylalkanes (45.39%), a saturated hydrocarbon. Nymph CHCs consisted primarily of n-alkanes (37.63 to 46.12%). There was a difference between adult male and female CHCs. However, both contained n-alkanes and monomethylalkanes. CHCs with trimethyl or double bonded structure were rare in all stages.

권호기사

권호기사 목록 테이블로 기사명, 저자명, 페이지, 원문, 기사목차 순으로 되어있습니다.
기사명 저자명 페이지 원문 목차
곤충병원세균(Xenorhabdus nematophila, Photorhabdus temperata ssp. temperata)의 대사물질을 이용한 "비티플러스" 생물농약 개발 서삼열, 김용균 pp.171-178

(A)new record of the family brachyceridae(coleoptera: curculionoidea) and a new species, desmidophorus hebes(fabricius), in Korea Ki-Jeong Hong, Sangwook Park, Taewoo Kim pp.179-184

꽃매미(Lycorma delicatula)의 발육단계별 표피탄화수소 비교 조선란, 이정은, 정진원, 양정오, 윤창만, 김길하 pp.185-194

Fungal hosts of fungivorous tenebrionid beetles(tenebrionidae) in Korea Boo Hee Jung, Jong Wook Lee pp.195-201

제주도 감귤원에서 네눈쑥가지나방을 중심으로 한 자나방류 해충 발생 및 피해 최경산, 박영미, 김동환, 김동순 pp.203-208

비행간섭트랩에 포획된 속리산국립공원내의 송장벌레류 종구성 및 풍부도의 계절적 변동 오광식, 김도성, 조영복 pp.209-214

배추에서 담배거세미나방(Spodoptera litura)의 요방제 수준 설정 최덕수, 김도익, 김선곤, 고숙주, 강범용, 김상수 pp.215-220

Redescription of synanthedon velox(Fixsen) and a new record of bembecia pavicevici toševski(lepidoptera: sesiidae) from Korea Cheol-Min Lee, Yutaka Arita, Yang-Seop Bae pp.221-225

비단벌레(Crysochroa fulgidissima) 에탄올추출물의 NO 증강 및 염증인자억제활성 안미영, 김순자, 정혜경, 서윤정, 박해철, 이영보, 김미애 pp.227-233

귤응애 온도발육 매개변수 추정 및 개체군 추정 행렬모형 양진영, 최경산, 김동순 pp.235-245

목재문화재를 가해하는 막대바구미류(딱정벌레목, 바구미과)에 대한 보고 홍기정, 오준석, 이양수, 박상욱 pp.247-251

호두나무잎벌레(Gastrolina depressa)의 형태적 및 생태학적 특성 장석준, 박일권 pp.253-256

참고문헌 (44건) : 자료제공( 네이버학술정보 )

참고문헌 목록에 대한 테이블로 번호, 참고문헌, 국회도서관 소장유무로 구성되어 있습니다.
번호 참고문헌 국회도서관 소장유무
1 Cuticular hydrocarbons of Formica truncorum (Hymenoptera : Formicidae) : Description of new very long chained hydrocarbon components 네이버 미소장
2 Mass spectrometry and the age of the proteome 네이버 미소장
3 Cuticular Hydrocarbons Mediate Mate Recognition in a Species of Longhorned Beetle (Coleoptera: Cerambycidae) of the Primitive Subfamily Prioninae 네이버 미소장
4 Biochemistry of terminal deoxynucleotidyltransferase (TdT): characterization and mechanism of inhibition of TdT by P1, P5-bis(5'-adenosyl) pentaphosphate. 네이버 미소장
5 Boo, K.S. 2001. Insect physiology. Seongmunsa Co. Publishing. 미소장
6 Differences in cuticular lipid composition of the antennae of Helicoverpa zea, Heliothis virescens, and Manduca sexta 네이버 미소장
7 Cuvillier-Hot, V., M. Cobb, C. Malosse and C. Peeters. 2001. Sex, age and ovarian activity affect cuticular hydrocarbons in Diacamma ceylonense, a queenless ant. J. Chem. Ecol. 47: 485-493. 미소장
8 Parasitoids modify their oviposition behavior according to the sexual origin of conspecific cuticular hydrocarbon traces. 네이버 미소장
9 Drosophila cuticular hydrocarbons revisited: mating status alters cuticular profiles. 네이버 미소장
10 Cuticular hydrocarbons as maternal provisions in embryos and nymphs of the cockroach Blattella germanica. 네이버 미소장
11 Gamboa, G.J. 2004. Kin recognition in eusocial wasps. Ann. Zool. Fennici 41: 789-808. 미소장
12 Evolution of water conservation mechanisms in Drosophila. 네이버 미소장
13 Han, J.M., H. Kim, E.J. Lim, S. Lee, Y.J. Kwon and S. Cho. 2008. Lycorma delicatula (Hemiptera: Auchenorrhyncha: Fulgoridae: Aphaeninae), finally, but suddenly arrived in Korea. Entomol. Res. 38: 281-286. 미소장
14 Hefetz, A., J. Tengö, G. Lübke and W. Francke. 1993. Inter-colonial and intra-colonial variation in Dufour’ gland secretion in the bumblebee species Bombus hypnorum (Hymenoptera: Apidae). pp. 469-480. In Advances in life sciences. Sensory Systems of Arthropods, eds. by K. Weise, F.G. Gribakin, and G. Renninger. pp. 469-480. Birkhäuse Verlag, Basel, Switzerland. 미소장
15 Howard, R.W., C.A. McDaniel, D.R. Nelson, G.J. Blomquist, L.T. Gelbaum and L.H. Zalkow. 1982. Cuticular hydrocarbons of Reticulitermes virginicus (Banks) and their role as potential speciesand caste-recognition cues. J. Chem. Ecol. 8: 1227-1239. 미소장
16 Howard, R.W. 1993. Cuticular hydrocarbons and chemical communication. pp.179-226. In Insectlipids:chemistry, biochemistry and biology eds. D.W. Stanley-Samuelson and D.R. Nelson, University of Nebraska Press, Lincoln, Nebraska. 미소장
17 Cuticular hydrocarbons of four populations ofCoptotermes formosanus Shiraki in the united states : Similarities and origins of introductions. 네이버 미소장
18 Jurenka, R.A. and M. Subchev. 2000. Identification of cuticular hydrocarbons and the alkene precursor to the pheromone in hemolymph of the female gypsy moth, Lymantria dispar. Arch. insect Biochem. Physiol. 43: 108-115. 미소장
19 Kaib, M., P. Jmhasly, L. Wilfert, W. Durka, S. Franke, W. Francke, R.H. Leuthold and R. Brandl. 2004. Cuticular hydrocarbons and aggression in the termite Macrotermes subhyalinus. J. Chem. Ecol. 30: 365-385. 미소장
20 Kather, R., F.P. Drijfhout and S.J. Martin. 2011. Task group differences in cuticular lipids in the honey bee Apis mellifera. J. Chem. Ecol. DOI 10.1007/s10886-011-9909-4. 미소장
21 Possible Presence of Pheromone in Mating Behavior of the Pine Sawyer Monochamus saltuarius Gebler (Coleoptera: Cerambycidae) 소장
22 Kim, Y.K., D.R. Philips, T. Chao and L. Ehrman. 2004. Developmental isolation and subsequent adult behavior of Drosophila paulistorum. VI. Quantitative variation in cuticular hydrocarbon. Behavior Genetics 34: 385-394. 미소장
23 Lee, C.J., J.Y. Shen, S.C. Park and J.H. Shim. 2003. Chemical analysis of cuticular hydrocarbons in Apis mellifera L. and Apis ceranea F. Korean J. Appl. Entomol. 42: 9-13. 미소장
24 Lee, J.E., S.R. Moon, H.G. Ahn, S.R. Cho, J.O. Yang, C.M. Yoon and G.H. Kim. 2009. Feeding behavior of Lycorma delicatula (Hemiptera: Fulgoridae) and response on feeding stimulants of some plants. Korean J. Appl. Entomol. 48: 467-477. 미소장
25 Comparison of Cuticular Hydrocarbons of the Pine Sawyer (Monochamus saltuarius), Japanese Pine Sawyer (Monochamus alternatus) and Oak Longicorn Beetle (Moechotypa diphysis) 소장
26 Martin, S. and F. Drijfhout. 2009. A review of ant cuticular hydrocarbons. J. Chem. Ecol. 35: 1151-1161. 미소장
27 Nelson, D.R. 1993. Methyl-branched lipids in insects. pp. 271-315. In Insect lipids: Chemistry, biochemistry and biology, eds. by D.W. Stanley-samuelson and D.R. Nelson. University of Nebraska Press, Lincoln, Nebraska. 미소장
28 Nelson, D.R. and L.D. Charlet. 2003. Cuticular hydrocarbons of the sunflower beetle, Zygogramma exclamationis. Comp. Biochem. Physiol. B 135: 273-284. 미소장
29 Lommelen, E., Johnson, C.A., Drijfhout, F.P., Billen, J., Wenseleers, T. and B. Gobin. 2006. Cuticular hydrocarbons provide reliable cues of fertility in the ant Gnamptogenys striatula. J. Chem. Ecol. 32: 2023-2034. 미소장
30 Lucas, C., D.B., Pho, J.M. Jallon and D. Fresneau. 2005. Role of cuticular hydrocarbons in the chemical recognition between ant species in the Pachycondyla villosa species complex. J. Insect Physiol. 51: 1148-1157. 미소장
31 Cuticular hydrocarbons in the stingless bee Schwarziana quadripunctata (Hymenoptera, Apidae, Meliponini): differences between colonies, castes and age. 네이버 미소장
32 Page, M., L.J. Nelson, G.J. Blomquist and S.J. Seybold. 1997. Cuticular hydrocarbons as chemotaxonomic characters of pine engraver beetles (Ips spp.) in the grandicollis subgeneric group. J. Chem. Ecol. 23: 1053-1099. 미소장
33 Park, J.D., M.Y. Kim, S.G. Lee, S.C. Shin, J.H. Kim and I.K. Park. 2009. Biological characteristics of Lycorma delicatula and the control effects of some insecticides. Korean J. Appl. Entomol. 48: 53-57. 미소장
34 Saї¤d, I., G. Costagliola, I. Leoncini and C. Rivault. 2005a. Cuticular hydrocarbon profiles and aggregation in four Periplaneta species (Insecta: Dictyoptera). J. Insect Physiol. 51: 995-1003. 미소장
35 Perception of cuticular hydrocarbons by the olfactory organs in Periplaneta americana (L.) (Insecta: Dictyoptera) 네이버 미소장
36 Shin, Y.H., S.R. Moon, C.M. Yoon, K.S. Ahn and G.H. Kim. 2010. Insecticidal Activity of 26 insecticides against eggs and nymphs of Lycorma delicatula (Hemiptera: Fulgoridae). Korean J. Appl. Entomol. 14: 157-163. 미소장
37 Cuticular Hydrocarbons Reliably Identify Cheaters and Allow Enforcement of Altruism in a Social Insect 네이버 미소장
38 Torres, C.W., M. Brandt and N.D. Tsutsui. 2007. The role of cuticular hydrocarbons as chemical cues for nestmate recognition in the invasive Argentine ant (Linepithema humile). Insect. Soc. 54: 363-373. 미소장
39 Urech, R., G.W. Brown, C.J. Moore and P.E. Green. 2005. Cuticular hydrocarbons of buffalo fly, Haematobia exigua, and chemotaxonomic differentiation from horn fly, H. irritans. J. Chem. Ecol. 31: 2451-2461. 미소장
40 Colonial and geographic variations in agonistic behaviour, cuticular hydrocarbons and mtDNA of Italian populations of Reticulitermes lucifugus (Isoptera, Rhinotermitidae) 네이버 미소장
41 Wagner, D., M. Tissot, W. Cuevas and D.M. Gordon. 2000. Harvester ants utilize culticular hydrocarbons in nestmate recognition. J. Chem. Ecol. 26: 2245-2257. 미소장
42 Cuticular Hydrocarbon Analysis of an Awake Behaving Fly Using Direct Analysis in Real-Time Time-of-Flight Mass Spectrometry 네이버 미소장
43 Nestmate recognition and the role of cuticular hydrocarbons in the African termite raiding ant Pachycondyla analis. 네이버 미소장
44 Xiao, G. 1991. Forest insect of China, forest research institute. 1361pp. Chinese Academy of Forestry, Beijing. 미소장