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1.
2.
Trichome-borne and artificially applied acylsugars of wild tomato deter feeding and oviposition of the leafminer Liriomyza trifolii 总被引:1,自引:0,他引:1
D. J. Hawthorne J. A. Shapiro W. M. Tingey M. A. Mutschler 《Entomologia Experimentalis et Applicata》1992,65(1):65-73
Oviposition and adult feeding of the leafminer Liriomyza trifollii (Burgess) (Diptera, Agromyzidae) on Lycopersicon pennellii (Corr.) D'Arcy and its F1 hybrid with Lycopersicon esculentum (Mill.) was significantly less than that on the cultivated tomato, L. esculentum. The resistance of L. pennellii and the F1 was reduced following rinsing of foliage with ethanol. Resistant attributes of L. pennellii were transferred to L. esculentum through appression of L. pennellii foliage to L. esculentum leaflets. Application of purified 2,3,4-tri-O-acylglucoses (the principal component of type IV glandular trichome exudate of L. pennellii) to L. esculentum significantly decreased feeding and oviposition on L. esculentum leaflets by 61–99%. Therefore the principal mechanism of resistance to this leafminer by L. pennellii is the secretion of these acylglucoses. Dose response analysis of acylglucoses applied to L. esculentum shows that dosages as low as 10% those found on L. pennellii provide large reductions (91%) in leaf punctures and mines. 相似文献
3.
B. E. Slack M. Liscovitch J. K. Blusztajn R. J. Wurtman 《Journal of neurochemistry》1989,53(2):472-481
The phosphatidylserine (PtdSer) content of human cholinergic neuroblastoma (LA-N-2) cells was manipulated by exposing the cells to exogenous PtdSer, and the effects on phospholipid content, membrane composition, and incorporation of choline into phosphatidylcholine (PtdCho) were investigated. The presence of liposomes containing PtdSer (10-130 microM) in the medium caused time- and concentration-dependent increases in the PtdSer content of the cells, and smaller and slower increases in the contents of other membrane phospholipids. The PtdSer levels in plasma membrane and mitochondrial fractions prepared by discontinuous sucrose density gradient centrifugation increased by 50 and 100%, respectively, above those in control cells after 24 h of exposure to PtdSer (130 microM). PtdSer caused a concomitant, concentration-dependent increase of up to twofold in the incorporation of [methyl-14C]choline chloride into PtdCho at a choline concentration (8.5 microM) compatible with activation of the CDP-choline pathway, suggesting that the levels of PtdSer in membranes may serve as a stimulus to regulate overall membrane composition. PtdSer caused a mean increase of 41% in PtdCho labeling, but the phorbol ester, phorbol 12-myristate 13-acetate (PMA), which stimulates PtdCho synthesis in a number of cell lines, increased [14C]PtdCho levels by only 14% in LA-N-2 cells, at a concentration (100 nM) which caused complete translocation of the calcium- and phospholipid-dependent enzyme protein kinase C to the membrane. The translocation was inhibited by prior exposure of the cells to PtdSer. Treatment with PMA for 24 h diminished protein kinase C activity by 80%, but increased the labeling of PtdCho in both untreated and PtdSer-treated cells. These data suggest that uptake of PtdSer by LA-N-2 cells alters both the phospholipid composition of the membrane and synthesis of the major membrane phospholipid PtdCho; the latter effect does not involve activation of protein kinase C. 相似文献
4.
Kaoru Nakamura Takehiko Miyai Kiyoko Inoue Seiji Kawasaki Shinzaburo Oka Atsuyoshi Ohno 《Biocatalysis and Biotransformation》1990,3(1):17-24
Esters of 3-methyl-2-oxobutanoic acid are reduced with bakers' yeast by three methods: free bakers' yeast in water, immobilized bakers' yeast in water, and immobilized bakers' yeast in hexane. Although (R)-hydroxy esters are obtained in all cases, the enantiomeric excess varies from 3% (reduction of the methyl ester with free bakers' yeast in water) to 93% (reduction of the butyl ester with immobilized bakers' yeast in hexane) depending on the structure of substrate and on the reaction conditions. The mechanism of the present stereochemical control is discussed. 相似文献
5.
J.C. Hervé F. Pluciennik F. Verrecchia B. Bastide B. Delage M. Joffre J. Délèze 《The Journal of membrane biology》1996,149(3):179-187
17β-estradiol propionate was found to reduce the gap junctional communication in a concentration range similar to that of
testosterone propionate, in primary cultures of rat Sertoli cells and cardiac myocytes. Uncoupling was reversible on washing
out and occurred without concomitant rise in the intracellular calcium concentration.
Esterification was a prerequisite for the activity of extracellularly applied steroid compounds (for example, testosterone
was ineffective even at external concentrations up to 100 μm, whereas its intracellular application at 1 μm totally interrupted intercellular communication), but their uncoupling efficiency did not depend on the nature of the ester
chain nor on its position on the steroid nucleus. The derivatives of two other androgen hormones (derivatives of the androstane
nucleus) were also efficient as junctional uncouplers. Among five steroid molecules belonging to the pregnane family, only
one (pregnanediol diacetate) interrupted the junctional communication. Neither cholic acid nor cholesteryl acetate or ouabain
showed this effect. Altogether, no correlation with the presence or position of double bonds nor with the trans- or cis-fusion of the A and B rings could be recognized.
These results suggest that this reversible, nondeleterious uncoupling effect of steroids is independent of the shape of the
molecules and is more probably related to their size and liposolubility, that condition their insertion into the lipid bilayer.
Their incorporation into the membrane could disturb the activity of the membrane proteins by a physical mechanism.
Received: 10 April 1995/Revised: 27 October 1995 相似文献
6.
Maike Petersen Elisabeth Häusler Juliane Meinhard Barbara Karwatzki Claudia Gertlowski 《Plant Cell, Tissue and Organ Culture》1994,38(2-3):171-179
Suspension cultures of Coleus blumei accumulate very high amounts of rosmarinic acid, an ester of caffeic acid and 3,4-dihydroxyphenyllactate, in medium with elevated sucrose concentrations. Since the synthesis of this high level of rosmarinic acid occurs in only five days of the culture period, the activities of the enzymes involved in the biosynthesis are very high. Therefore all the enzymes necessary for the formation of rosmarinic acid from the precursors phenylalanine and tyrosine could be isolated from cell cultures of Coleus blumei: phenylalanine ammonia-lyase, cinnamic acid 4-hydroxylase, hydroxycinnamoyl:CoA ligase, tyrosine aminotransferase, hydroxyphenylpyruvate reductase, rosmarinic acid synthase and two microsomal 3- and 3-hydroxylases. The main characteristics of these enzymes of the proposed biosynthetic pathway of rosmarinic acid will be described.Abbreviations DHPL
3,4-dihydroxyphenyllactate
- DHPP
3,4-dihydroxyphenylpyruvate
- pHPL
4-hydroxyphenyllactate
- pHPP
4-hydroxyphenylpyruvate
- RA
rosmarinic acid 相似文献
7.
Grażyna Kowalewska 《Aquatic Ecology》1994,28(2):149-156
Sediments of the southern Baltic Sea were analysed for content of steryl chlorin esters, the chlorin compounds discovered
recently in the marine environment. The chlorin esters occur in the Baltic sediments in substantial amounts and form a considerable
fraction of the total chlorin content. Among the physicochemical parameters studied the highest correlation with the steryl
chlorins showed organic carbon content in sediments and the content of fraction of sediments smaller than 10 μm. A significant
correlation was observed between the steryl chlorins content and other chlorins as chlorophylla, phaeophytina, pyrophaeophytina as well as with β-carotene, the distinctly less significant correlation was with phaeophorbidea. This indicates an other way of formation of the steryl chlorins from algae than zooplankton grazing. 相似文献
8.
Summary Methods for the synthesis of racemic and optically active title compounds are presented. Key step of these four-step procedures is the alkylation with 1-bromo-2-fluoroalkanes of glycine-ester-derived imines in anhydrous medium using lithium diisopropylamide as a base at low temperature or phase transfer catalyzed alkylation with 50% NaOH and triethylbenzylammoniumchloride as the phase transfer catalyst, respectively. Subsequent three-step deprotection gave the free acids in 13–33% overall yield. Deracemization of-fluoro--aminobutyric acid methyl and ethyl esters with-chymotrypsin was shown to give the (–)-enantiomers of the esters and (+)--fluoro--aminobutyric acid in >98% ee, while from thetert-butylester the opposite stereochemical result was observed giving the (–)-acid with 88% ee. Optically active-fluoro--amino acids were synthesized alternatively by phase transfer catalysis with N-benzyl-cinchonium chloride or using an auxiliary-directed asymmetric alkylation of the imine derived from (R)-(+)-camphor or (R)-(+)-2-hydroxypinan-3-one. These processes gave different enantiomers of-fluoro--aminobutyric acid via a monomeric lithium enolate in the first or a dimeric lithium enolate in the second case, respectively. The enantiomeric excess can be improved by lithium/magnesium exchange. 相似文献
9.
From the unripe fruits of Sapium indicum, three aliphatic esters of the tigliane nucleus were isolated. These compounds were derivatives of 4-deoxyphorbol. Sapatoxin A was identified as 12-O-[n-deca-2,4,6-trienoyl]-4-deoxyphorbol-13-acetate, B as 12-O-[n-deca-2,4,6-trienoyl]-4-deoxy-5-hydroxyphorbol-13-acetate and C as 12-O-[n-deca-2,4,6-trienoyl]-4,20-dideoxy-5-hydroxyphorbol-13-acetate, by spectroscopic analysis and hydrolysis reactions. 相似文献
10.
Structures of verbascoside and orobanchoside,caffeic acid sugar esters from Orobanche rapum-genistae
The complete structural elucidation of the two caffeic acid sugar esters verbascoside and orobanchoside, has been realized by 1H and 13C NMR studies. It has been demonstrated that verbascoside is β-(3′,4′-dihydroxyphenyl)ethyl-O-α-L-rhamnopyranosyl(1→3)-β-D-(4-O-caffeoyl)-glucopyranoside, and orobanchoside is β-hydroxy-β-(3′,4′-dihydroxyphenyl)-ethyl-O-α-L-rhamnopyranosyl(1→2)-β-D-(4-O-caffeoyl)-glucopyranoside. 相似文献