PRODUCTION OF CARDIAC-GLYCOSIDES BY CHRYSOMELID BEETLES AND LARVAE

被引:53
作者
DALOZE, D
PASTEELS, JM
机构
[1] Collectif de Bio-écologie and Biologie Animale et Cellulaire, Université Libre de Bruxelles, Brussels
关键词
cardenolides; Chemical defense; Chrysochloa; Chrysolina; Chrysomelidae; Coleoptera; exocrine secretion;
D O I
10.1007/BF00987688
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cardenolides were looked for in 17 chrysomelid beetles belonging to 11 genera from three subfamilies, and they were found only in Chrysolina and Chrysochloa species (Chrysomelinae, Chrysolinini). The food plants of these insects are not known to produce cardenolides. The Chrysochloa and most Chrysolina species secrete a complex mixture of cardenolides, but Chrysolina didymata secretes a single compound, and Chrysolina carnifex, none. Several quantitative and perhaps qualitative differences were observed in the patterns of cardenolides produced by far distant populations of both Chrysolina polita and C. herbacea, collected in either France and Belgium, or Greece. These differences remain constant from one generation to the other, whatever the food plant is, and appear to be genetic. In C. polita from Greece, the pattern is unchanged after four generations bred in the laboratory on Mentha ×villosa, which is known to be without cardenolides. In adults, the cardenolides are released with the secretion of the pronotal and elytral defensive glands, but in the larvae which lack the defensive glands, cardenolides are also produced. The total amount of cardenolides and the complexity of their mixture increases through the life cycle of the insects. The six main cardenolides secreted by C. coerulans were identified as: sarmentogenin, periplogenin, bipindogenin, and their corresponding xylosides. C. didymata secretes only sarmentogenin. © 1979 Plenum Publishing Corporation.
引用
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页码:63 / 77
页数:15
相关论文
共 32 条
[21]   CARDIAC-GLYCOSIDES IN DEFENSIVE SECRETION OF CHRYSOMELID BEETLES - EVIDENCE FOR THEIR PRODUCTION BY INSECTS [J].
PASTEELS, JM ;
DALOZE, D .
SCIENCE, 1977, 197 (4298) :70-72
[22]  
PASTEELS JM, 1976, 15TH P INT C ENT WAS, P281
[23]  
REES CJC, 1969, INSECT HOST PLANT, P565
[24]   BIOLOGICAL-ACTIVITIES OF SESQUITERPENE LACTONES [J].
RODRIGUEZ, E ;
TOWERS, GHN ;
MITCHELL, JC .
PHYTOCHEMISTRY, 1976, 15 (11) :1573-1580
[25]   CARDIAC GLYCOSIDES IN OLEANDER APHID, APHIS-NERII [J].
ROTHSCHILD, M ;
EUW, JV ;
REICHSTEIN, T .
JOURNAL OF INSECT PHYSIOLOGY, 1970, 16 (06) :1141-+
[26]   CARDIAC-GLYCOSIDES (HEART POISONS) IN POLKA-DOT MOTH SYNTOMEIDA-EPILAIS WALK - (CTENUCHIDAE-LEP) WITH SOME OBSERVATIONS ON TOXIC QUALITIES OF AMATA (=SYNTOMIS) PHEGEA (L) [J].
ROTHSCHILD, M ;
VONEUW, J ;
REICHSTEIN, T .
PROCEEDINGS OF THE ROYAL SOCIETY SERIES B-BIOLOGICAL SCIENCES, 1973, 183 (1072) :227-+
[27]  
SINGH R, 1970, PHYTOCHEMISTRY, V9, P1535, DOI 10.1016/S0031-9422(00)85141-9
[28]   *GLYKOSIDE AND AGLYKONE .28. KONFIGURATION DES PERIPLOGENINS UND DES ALLO-PERIPLOGENINS [J].
SPEISER, P ;
REICHSTEIN, T .
HELVETICA CHIMICA ACTA, 1947, 30 (07) :2143-2158
[29]  
Tamm C., 1956, FORTSCHR CHEM ORG NA, V13, P137
[30]  
TORI K, 1965, ANNU REP SHIONOGI RE, V15, P130