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21.
Plants emit volatile organic compounds (VOCs) as a means to warn other plants of impending danger. Nearby plants exposed to the induced VOCs prepare their own defense weapons in response. Accumulated data supports this assertion, yet much of the evidence has been obtained in laboratories under artificial conditions where, for example, a single VOC might be applied at a concentration that plants do not actually experience in nature. Experiments conducted outdoors suggest that communication occurs only within a limited distance from the damaged plants. Thus, the question remains as to whether VOCs work as a single component or a specific blend, and at which concentrations VOCs elicit insect and pathogen defenses in undamaged plants. We discuss these issues based on available literature and our recent work, and propose future directions in this field. 相似文献
22.
D. V. Ignatov Yu. I. Prokof'ev O. M. Ipatova V. P. Timofeev N. V. Medvedeva A. Yu. Misharin 《Russian Journal of Bioorganic Chemistry》2003,29(4):390-394
Treatment of 18-glycyrrhizic acid with a methanolic solution of HCl resulted in 1 : 1 mixture of methyl esters of 18- and 18-glycyrrhetinic acids. Benzoylation of the mixture led to methyl esters of 3-benzoyl-18-glycyrrhetinic acid and 3-benzoyl-18-glycyrrhetinic acid, which were separated by chromatography on silica gel. 18-Glycyrrhetinic acid was prepared by alkaline hydrolysis of methyl 3-benzoyl-18-glycyrrhetinate and was further used for the syntheses of 3-keto-18-glycyrrhetinic acid and methyl esters of 18-glycyrrhetinic acid and 3-keto-18-glycyrrhetinic acid. 相似文献
23.
Xiong Zhang Ming-You Peng En-Ming Feng Qing-Dan Li Lu Chen Hu-Cheng Yang Bing Guo Hong Liang Ying-Tong Di Lei Tang Ying Yan 《化学与生物多样性》2023,20(10):e202301061
Three previously undescribed diterpenoids, helioscopnoids A–C, and eight known compounds were isolated from the whole plants of Euphorbia helioscopia. Their structures were established by extensive analysis of spectra and data comparison with previous literatures. Among them, compound 4 was identified as 24,24-dimethoxy-25,26,27-trinoreuphan-3β-ol with revised configurations of C-13, C-14, and C-17 (13R*, 14R*, 17R*). Cytotoxicity assays revealed that all compounds exhibited varying levels of cytotoxicity against H1975 cells, with compound 9 displaying the most potent activity, as indicated by cell viability rates of 18.13 % and 20.76 % at concentrations of 20 μM and 5 μM, respectively. This study expands the understanding of E. helioscopia terpenoids’ structural diversity and biological activities, contributing to the exploration of potential therapeutic applications. 相似文献
24.
S. R. Gradstein R. Klein L. Kraut R. Mues J. Spörle H. Becker 《Plant Systematics and Evolution》1992,180(1-2):115-135
Recognition of two different species in the liverwort genusMonoclea
Hook. (monotypic orderMonocleales), viz.M. forsteri
Hook. in New Zealand andM. gottschei
Lindb. in the New World, is supported by characteristics of the sporophyte, antheridial receptacle and secondary metabolites.M. gottschei produces the greatest variety of flavonoids and the largest amount of bisbibenzyls ever encountered in a liverwort. In contrast,M. forsteri is poor in secondary metabolites. Two allopatric subspecies are recognized inM. gottschei, based on characteristics of the antheridial receptacle: subsp.gottschei in Chile (Valdivian region, Juan Fernandez Is.) and subsp.elongata
Gradst. & Mues, subsp. nova, in tropical America. The exclusive occurrence inMonoclea of glucuronide and galacturonide flavone glycosides and the fact that capsule dehiscence may take place before full elongation of the seta are new arguments in support of the placement ofMonocleales in theMarchantiidae.
Publication Nr. 43 of the Arbeitskreis Chemie und Biologie der Moose, Universität des Saarlandes, Saarbrücken. This paper is dedicated to DrElla O. Campbell, Massey University, Department of Botany and Zoology, New Zealand on the occasion of her 80th birthday. 相似文献
25.
Hans-Peter Hanssen 《Phytochemistry》1982,21(5):1159-1160
Several sesquiterpene hydrocarbons, mainly of the cadinane skeleton, have been identified in cultures of the brown rot fungus Lentinus lepideus. The main compounds are δ-cadinene, α- and γ-muurolene. 相似文献
26.
K. H. Grumbach 《Plant biology (Stuttgart, Germany)》1981,94(1):121-126
Isolierte Spinatchloroplasten mit einer photosynthetischen Aktivität von 280 μmol Sauerstoff je mg Chlorophyll und h und einer Intaktheit von 85 % wurden mit14C-markiertem CO2, Phosphoglycerat, Phosphoenolpyruvat, Pyruvat, Acetat und Mevalonat für 60 min inkubiert und die Inkorporation von Radioaktivität in die Chlorophylle und Carotinoide untersucht. Alle verwendeten Substrate wurden vom Chloroplasten aufgenommen und Radioaktivität in die Chlorophylle inkorporiert. Auch die Carotinoide nehmen mit Ausnahme von Phosphoenolpyruvat Radioaktivität von den einzelnen Substraten auf. Aus den Inkorporationsexperimenten wird geschlossen, daß Chloroplasten in bezug auf ihre Terpenoidbiosynthese autonom sind. Chloroplasten sind somit in der Lage, aus im Calvin-Zyklus fixiertem CO2 über Phosphoglycerinsäure und Pyruvat Acetyl-Coenzym-A zu synthetisieren. Acetyl-Coenzym-A kann dann einerseits direkt zur Biosynthese von Fettsäuren verwendet werden, andererseits aber auch zur Biosynthese von Carotinoiden und den isoprenoiden Seitenketten der Chinone und Chlorophylle. Die Untersuchungen wurden durch eine Sachbeihilfe der Deutschen Forschungsgemeinschaft unterstützt. 相似文献
27.
BACKGROUND AND AIMS: Although it was generally assumed that Maxillaria spp. do not produce nectar, in recent years, nectar has been reported for a number of these orchids. Nevertheless, our current understanding of nectary structure and nectar secretion in Maxillaria is based solely on M. coccinea (Jacq.) L.O. Williams ex Hodge, which, since it shows many features characteristic of ornithophilous flowers, is atypical of this largely entomophilous genus. The aim of the present paper is to describe, for the first time, nectar secretion in a presumed entomophilous species of Maxillaria. METHODS: The structure of the nectary of M. anceps Ames & C. Schweinf., nectar composition and the process of nectar secretion were investigated using light microscopy, scanning electron microscopy, transmission electron microscopy, histochemistry, refractometry and high performance liquid chromatography. KEY RESULTS AND CONCLUSIONS: Nectar appears as droplets that are exuded by modified stomata borne upon the labellar callus and collects upon the labellum and at the base of the column-foot. Although such stomata are known to occur in a number of angiosperm families, this is the first time for them to be observed in orchids. The callus consists largely of parenchyma with raphides and is supplied by eight to ten collateral bundles. This tissue, together with the single-layered epidermis, seemingly contains terpenoids. During the bud stage, the callus cells contain an organelle complement consistent with secretory cells whereas by day 4 of anthesis, much of the cell is occupied by a vacuole. The nectar is sucrose-dominant but also contains low concentrations of glucose, fructose, free amino acids and possibly terpenoids. The high sugar concentration (approx. 66 %) is consistent with melittophily and may indicate that, like the majority of Maxillaria spp., M. anceps is visited by stingless bees (Meliponini). 相似文献
28.
Pseudotsuga menziesii cortical oleoresin was found to contain 1·7% of oxygenated terpenoids and compounds of similar volatility composed of linalool, methylsalicylate, bornyl acetate, citronellol, geranyl acetate, methylthymol, citronellyl acetate, terpinen-4-ol, borneol, isopulegol, anethole, terpinen-4-ol acetate, camphor, geraniol, neryl acetate, and nerol. Sesquiterpenoid hydrocarbons were low (only 0·07%) and contained sibirene and longifolene as main constituents, with β-caryophyllene, γ-muurolene, γ-cadinene (identified by IR), and 20 additional compounds in small amounts. p-Cymen-8-ene was identified in monoterpene hydrocarbon fraction. 相似文献
29.
广藿香香叶醇合酶基因克隆及表达分析 总被引:1,自引:0,他引:1
香叶醇合酶(geraniol synthase,GES)是香叶醇形成过程中非常重要的酶,是萜类代谢途径的限速酶。根据课题组广藿香转录组数据中的GES 转录本序列设计基因全长扩增引物,采用RT PCR方法克隆了广藿香GES基因的全长cDNA序列。对该基因进行了相关的生物信息学分析,并利用荧光实时定量PCR法检测了PcGES1基因在4个广藿香栽培种中不同时期茎、叶中的表达情况。结果显示:广藿香GES基因包含一个完整的ORF框,长1 734 bp,编码577个氨基酸,命名为PcGES1,GenBank登录号为KF926075 ;PcGES1基因编码的氨基酸序列与罗勒GES基因编码的氨基酸序列最为相近。广藿香GES蛋白定位在叶绿体中,无跨膜区域。PcGES1主要在叶中表达,老叶中表达量最高;从不同栽培种来看,PcGES1在石牌广藿香和高要广藿香中表达模式相似,在海南广藿香与印尼广藿香中表达相似,在海南广藿香老叶中表达最高。该研究结果为进一步阐明广藿香萜类代谢途径奠定了基础。 相似文献
30.
Exploring natural variation of Pinus pinaster Aiton using metabolomics: Is it possible to identify the region of origin of a pine from its metabolites? 下载免费PDF全文
Mónica Meijón Isabel Feito Michal Oravec Carolina Delatorre Wolfram Weckwerth Juan Majada Luis Valledor 《Molecular ecology》2016,25(4):959-976
Natural variation of the metabolome of Pinus pinaster was studied to improve understanding of its role in the adaptation process and phenotypic diversity. The metabolomes of needles and the apical and basal section of buds were analysed in ten provenances of P. pinaster, selected from France, Spain and Morocco, grown in a common garden for 5 years. The employment of complementary mass spectrometry techniques (GC‐MS and LC‐Orbitrap‐MS) together with bioinformatics tools allowed the reliable quantification of 2403 molecular masses. The analysis of the metabolome showed that differences were maintained across provenances and that the metabolites characteristic of each organ are mainly related to amino acid metabolism, while provenances were distinguishable essentially through secondary metabolism when organs were analysed independently. Integrative analyses of metabolome, environmental and growth data provided a comprehensive picture of adaptation plasticity in conifers. These analyses defined two major groups of plants, distinguished by secondary metabolism: that is, either Atlantic or Mediterranean provenance. Needles were the most sensitive organ, where strong correlations were found between flavonoids and the water regime of the geographic origin of the provenance. The data obtained point to genome specialization aimed at maximizing the drought stress resistance of trees depending on their origin. 相似文献