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Benzoquinone derivatives of Myrsine africana and Maesa lanceolata.

The fruits of Myrsine africana afforded two new benzoquinone derivatives, methylvilangin and methylanhydrovilangin. On the other hand, from the fruits of Maesa lanceolata two more novel compounds; 2,5-dihydroxy-3-(nonadec-14-enyl)-benzoquinone and lanciaquinone were isolated. Their structural elucidation was achieved by spectroscopic measurements including 2D NMR experiments.

Acetylation↗

Leaf extract from Ardisia compressa protects against 1-nitropyrene-induced cytotoxicity and its antioxidant defense disruption in cultured rat hepatocytes.

Herbal tea preparations of Ardisia compressa (AC) have been used in folk medicine against liver disorders. The objective of this study was to evaluate the in vitro protective effect of an aqueous extract of dry leaves of AC on 1-nitropyrene (1-NP) induced cytotoxicity on rat hepatocytes. Lipid peroxidation (malondialdehyde), antioxidant enzyme activities (glutathione reductase, glutathione peroxidase, superoxide dismutase) and glutathione levels were studied. After 2 h of incubation, 0.25 microg/ml of 1-NP had an approximately 50% cytotoxic effect on hepatocytes. This environmental toxicant also increased malondialdehyde (77%), and glutathione peroxidase (46%), producing a significant consumption of endogenous antioxidant glutathione. (-)Epigallocatechin 3-gallato (EGCG) and AC decreased the viability of hepatocytes after 2 h of incubation at concentrations above 3 microg/ml and 2.52 microg, equivalents of (+)catechin/ml, respectively. A 100% hepatocyte protection was observed when cells were first exposed to AC (2.52 microg, equivalents of (+)catechin/ml), and then followed by 1-NP (0.25 microg/ml). Cells incubated with AC, either simultaneously or before treatment with 1-NP, were protected 75 and 84%, respectively. Cell protection of AC was superior to EGCG. Addition of AC to 1-NP (1:10) modulated superoxide dismutase and glutathione reductase activities (P<0.005), as well as the cellular level of GSH. The results indicate that AC has an antioxidant protective effect on rat hepatocytes when exposed to 1-NP.

Animals↗

In vitro activities of Maesa lanceolata extracts against fungal plant pathogens.

In vitro tests were carried out using extracts of Maesa lanceolata var. goulungensis weir against a broad range of fungal plant pathogens such as Phytophthora cryptogea, Trichoderma virens, Aspergillus niger, Phoma sp., Fusarium oxysporium, Pythium ultimum, Cochliobolus heterostrophus, Rhizoctonia solani, Sclerotium rolfsii and Pyrenophora teres. M. lanceolata extracts were very active against all the pathogens tested except P. ultimum and R. solani.

Antifungal Agents↗

Anthelmintic activity of preparations derived from Myrsine africana and Rapanea melanophloeos against the nematode parasite, Haemonchus contortus, of sheep.

Myrsine africana L. and Rapanea melanophloeos L. belong to the plant family Myrsinaceae. Various rural communities in Kenya, such as smallholder farmers and pastoralists, use them to treat their livestock. The anthelmintic effects/activities of leaves and fruits of M. africana and fruits of R. melanophloeos were tested in sheep experimentally infected with the nematode parasite Haemonchus contortus. Male lambs were infected with 3000-5000 third stage larvae of H. contortus and treated 28 days after inoculation with concoctions made from leaves or fruits of the plants. No significant reduction in faecal nematode egg counts was observed with any of the concoctions at any of the doses tested. Packed red cell volume decreased and live weight increased at similar rates in treated and control groups, thus there was no significant effect of treatment. The results showed that the tested extracts of the M. africana and R. melanophloeos were not efficacious against H. contortus in sheep.

Animals↗

Molecular phylogeny of Lysimachia (Myrsinaceae) based on chloroplast trnL-F and nuclear ribosomal ITS sequences.

Both nuclear ribosomal ITS and chloroplast trnL-F sequences were acquired for 57 species (accessions) of Lysimachia and its close relatives, and were analyzed together with sequences retrieved from databases. The results of phylogenetic analyses based on these data (separately or combined) show that Lysimachia is paraphyletic, with the monotypic genus Glaux nested deeply inside. Previous suggestions that Anagallis and Trientalis could be ingroups of Lysimachia were not corroborated by our results. The molecular phylogenies do not support the current infrageneric divisions of Lysimachia. Subgenus Lysimachia contains at least five independent lineages. The Hawaii endemic subgenus Lysimachiopsis was shown to group with subgenera Palladia and Heterostylandra, instead of subgenus Idiophyton as previously suggested. The two North American representatives of Lysimachia, subgenus Seleucia and section Verticillatae of subgenus Lysimachia are group together as the most basal clade of the genus. Parallel and independent evolutions were inferred for morphological characters that were previously used as diagnostic criteria. Molecular phylogenies do not offer clear inferences on the overall historical biogeography of Lysimachia, but Southeast Asia origins of several clades, including the Hawaiian endemic clade and the Iberian Lysimachia ephemerum are strongly supported.

Cell Nucleus↗

New cytotoxic bis 5-alkylresorcinol derivatives from the leaves of Oncostemon bojerianum from the Madagascar rainforest.

Bioassay-directed fractionation of a CH(2)Cl(2)-MeOH extract of the leaves of Oncostemon bojerianum resulted in the isolation of eight new 5-alkylresorcinols, named oncostemonols A-H (1-8), and two known derivatives, (8'Z)-1,3-dihydroxy-5-[16'-(3' ',5' '-dihydroxyphenyl)-8'-hexadecen-1'-yl]benzene (9) and (8'Z)-1,3-dihydroxy-5-[14'-(3' ',5' '-dihydroxyphenyl)-8'-tetradecen-1'-yl]benzene (10). The structures of the new compounds 1-8 were elucidated on the basis of extensive 1D and 2D NMR spectroscopic interpretation and chemical derivatization. All the compounds exhibited cytotoxic activity against the A2780 ovarian cancer cell line.

Acetylation↗

Chemical constituents from the mangrove plant, Aegiceras corniculatum.

From the stems and twigs of the mangrove plant, Aegiceras corniculatum, seven new compounds, namely, 2-methoxy-3-nonylresorcinol (1), 5-O-ethylembelin (2), 2-O-acetyl-5-O-methylembelin (3), 3,7-dihydroxy-2,5-diundecylnaphthoquinone (4), 2,7-dihydroxy-8-methoxy-3,6-diundecyldibenzofuran-1,4-dione (5), 2,8-dihydroxy-7-methoxy-3,9-diundecyldibenzofuran-1,4-dione (6), and 10-hydroxy-4-O-methyl-2,11-diundecylgomphilactone (7), were isolated together with three known compounds, 5-O-methylembelin (8), 3-undecylresorcinol, and 2-dehydroxy-5-O-methylembelin. The structures of 1-7 were determined by spectroscopic methods. Compound 2 and 5-O-methylembelin showed in vitro cytotoxicity against the HL-60, Bel(7402), U937, and Hela cell lines.

Antineoplastic Agents, Phytogenic↗

New cyclopentenone derivatives from an endophytic Streptomyces sp. isolated from the mangrove plant Aegiceras comiculatum.

From the mangrove plant Aegiceras comiculatum collected in South China an endophytic Streptomyces sp. was isolated. Following cultivation in a seawater-based medium, four new cyclopentenone derivatives, namely (5R) 3-amino-5-hydroxy-5-vinyl-2-cyclopenten-1-one (1), (5R) 5-hydroxy-3-[(methoxycarbonyl)amino]-5-vinyl-2-cyclopenten-1-one (2), (5R) 5-hydroxy-3-[[2-(4-hydroxyphenyl)ethyl]amino]-5-vinyl-2-cyclopenten-l-one (3), and 3-isobutylpropanamide-2-cyclopenten-l-one (4), were obtained from the fermentation broth. Their structures were elucidated by extensive spectroscopic (UV, IR, ESIMS, and 2D NMR) data analyses.

Cyclopentanes↗

Inhibition of acute and chronic inflammatory responses by the hydroxybenzoquinonic derivative rapanone.

Rapanone (2,5-dihydroxy-3-tridecyl-1,4-benzoquinone), a natural compound isolated from Myrsine guianensis growing in the Andean highlands of Colombia, was studied in different in vitro and in vivo models as a potential antioxidant and anti-inflammatory drug. Rapanone showed a mild anti-lipoperoxidative profile in rat liver microsomes and inhibited potently degranulation (IC(50) of 9.8 microM) and superoxide chemiluminescence (IC(50) of 3.0 microM) in human neutrophils. In addition, rapanone is a selective and potent human synovial PLA(2) inhibitor (IC(50) of 2.6 microM). In vivo experiments using the carrageenan paw oedema and the zymosan air pouch model in mice as well as the adjuvant arthritis model in rats have proved that rapanone is very efficient in controlling the inflammatory process by different administration routes.

Animals↗

Bacterial leaf nodule symbiosis in Ardisia (Myrsinaceae): does it contribute to seedling growth capacity?

Numerous species of Ardisia (shrubs in the Myrsinaceae) possess conspicuous bacterial nodules in their leaf margins. This is an obligate, life-cycle symbiosis: the bacteria are maintained in the bud, and re-infect each new leaf primordium, as well as flowers and seeds, and are transmitted vertically to the next generation. Previous studies have shown that treatments which kill the bacteria in the buds lead to death of the plant. This study is the first to test for a net cost or benefit of the nodules in seedling growth capacity. A net benefit of the symbiosis would be expected from the elaborate nodule structure, and also from evolutionary theory. Seedlings of two symbiotic species (A. crenata and A. virens) and two non-symbiotic species (A. elliptica and A. sieboldii) were grown comparatively. For the symbiotic species, performance was assessed for intact plants, for plants with nodules clipped off, and for control plants in which the lamina was clipped between the nodules. The nodules did not contribute to, or detract from, seedling performance in high resource supply. Although plants increased ca. 4- to 6-fold in dry mass, nodule removal had no significant impact on plant growth, gas exchange, biomass allocation, or on foliar concentrations of chlorophyll or of 11 nutrients. No significant advantage was observed for the two symbiotic species over the two non-symbiotic species. The nodules might contribute to growth capacity during other life stages, during resource shortage, or during exposure to specific herbivores or pathogens.

Plant Leaves↗

Embelin derivatives and their anticancer activity through microtubule disassembly.

Biological activities of the 1,4-benzoquinone derivatives 5- O-ethylembelin ( 1) and 5- O-methylembelin ( 2) were investigated. Both of them showed antiproliferative activity against a panel of human tumor cell lines upon comparison to normal marsupial kidney cells (PtK2). They arrested HL-60 cells in the G(0)/G(1) phase of the cell cycle in a dose- and time-dependent manner. In HeLa cells, exposure to 100 microM of 1 or 2 for 6 h induced a complete disassembly of the microtubule network and an increased number of cells blocked in mitotic stages. Treatment with 10 microM of 1 and 2 for 24 h induced apoptosis in HL-60 cells. This evidence suggests that both 1 and 2 are promising novel antimitotic and anticancer molecules targeting microtubular proteins.

Animals↗

Five new triterpene glycosides from Lysimachia foenum-graecum and evaluation of their effect on the arachidonic acid metabolizing enzyme.

Five new oleanane-type triterpene saponins, named foenumosides A ( 1), B ( 2), C ( 3), D ( 4) and E ( 5), were isolated from the aerial parts of Lysimachia foenum-graecum Hance. Their structures were identified on the basis of 1D and 2D NMR techniques, including H-H COSY, HMQC, HMBC, HMQC-TOCSY, ROESY experiments as well as chemical methods. We have evaluated the cytotoxity of 1 - 5 against rat and human polymorphonuclear leukocytes and the effect of 5 on the arachidonic acid metabolizing enzyme. All compounds showed a high degree of toxicity except for compound 5, while 5 notably reduced the production of leukotriene B (4) (LTB (4)) from rat peritoneal leukocytes with an IC (50) value of 74 microM without inhibiting human elastase. Compound 5 also reduced the production of 12-HHTrE and 12-HETE by 14 % and 50 % as a measurement for cyclooxygenase-1 and 12-lipoxygenase inhibition at 100 microM.

Animals↗

Chemical and mechanical changes during leaf expansion of four woody species of dry Restinga woodland.

Young leaves are preferential targets for herbivores, and plants have developed different strategies to protect them. This study aimed to evaluate different leaf attributes of presumed relevance in protection against herbivory in four woody species (Erythroxylum argentinum, Lithrea brasiliensis, Myrciaria cuspidata, and Myrsine umbellata), growing in a dry restinga woodland in southern Brazil. Evaluation of leaf parameters was made through single-point sampling of leaves (leaf mass per area and leaf contents of nitrogen, carbon, and pigments) at three developmental stages and through time-course sampling of expanding leaves (area and strength). Leaves of M. umbellata showed the highest leaf mass per area (LMA), the largest area, and the longest expansion period. On the other extreme, Myrc. cuspidata had the smallest LMA and leaf size, and the shortest expansion period. Similarly to L. brasiliensis, it displayed red young leaves. None of the species showed delayed-greening, which might be related to the high-irradiance growth conditions. Nitrogen contents reduced with leaf maturity and reached the highest values in the young leaves of E. argentinum and Myrc. cuspidata and the lowest in M. umbellata. Each species seems to present a different set of protective attributes during leaf expansion. Myrciaria cuspidata appears to rely mostly on chemical defences to protect its soft leaves, and anthocyanins might play this role at leaf youth, while M. umbellata seems to invest more on mechanical defences, even at early stages of leaf growth, as well as on a low allocation of nitrogen to the leaves. The other species display intermediate characteristics.

Anacardiaceae↗

Triterpenoid saponin from Primula elatior subsp. meyeri.

A new triterpenoid saponin, protoprimuloside B (2), has been isolated from the roots of Primula elatior subsp. meyeri and its structure deduced as 3beta-O-[[alpha-L-rhamnopyranosyl-(1-2)-beta-D-galactopyranosyl-(1-3)]-[beta-D-glucopyranosyl-(1-2)]-beta-D-glucopyranosyl]-protoprimuloside B by means of spectral data, especially NMR (400 MHz), including 1H, 13C, DEPT, COSY, HMBC, HMQC, NOESY techniques and (+)FAB-MS spectrum.

Chromatography, Gel↗

Two new triterpene saponins from Lysimachia davurica.

Two new saponins, named davuricoside L (1) and davuricoside O (2), have been isolated from the whole plants of Lysimachia davurica. Their structures were determined by 1D and 2D NMR, FAB-MS techniques, and chemical methods.

Magnetic Resonance Spectroscopy↗

Two new triterpene saponins from Lysimachia capillipes.

Two new saponins, capilliposide G (1) and capilliposide H (2), were isolated from the whole plants of Lysimachia capillipes. Their structures were determined by 1D and 2D NMR, MS technique and chemical methods.

Humans↗

Photosynthetic oxygen evolution at low water potential in leaf discs lacking an epidermis.

Land plants encountering low water potentials (low psiw) close their stomata, restricting CO2 entry and potentially photosynthesis. To determine the impact of stomatal closure, photosynthetic O2 evolution was investigated in leaf discs from sunflower (Helianthus annuus L.) plants after removing the lower epidermis at low psiw. Wounding was minimal as evidenced by O2 evolution nearly as rapid as that in intact discs. O2 evolution was maximal in 1% CO2 in the peeled discs and was markedly inhibited when psiw was below -1.1 MPa. CO2 entered readily at all psiw, as demonstrated by varying the CO2 concentration. Results were the same whether the epidermis was removed before or after low psiw was imposed. Due to the lack of an epidermis and ready movement or CO2 through the mesophyll, the loss in O2 evolving activity was attributed entirely to photosynthetic metabolism. Intact leaf discs showed a similar loss in activity when measured at a CO2 concentration of 5%, which supported maximum O2 evolution at low psiw. In 1% CO2, however, O2 evolution at low psiw was below the maximum, presumably because stomatal closure restricted CO2 uptake. The inhibition was larger than in peeled discs at psiw between -1 and -1.5 MPa but became the same as in peeled discs at lower psiw. Therefore. as photosynthesis began to be inhibited by metabolism at low psiw, stomatal closure added to the inhibition. As psiw became more negative, the inhibition became entirely metabolic.

Carbon Dioxide↗

Species-specific variation in the importance of the spectral quality gradient in canopies as a signal for photosynthetic resource partitioning.

BACKGROUND AND AIMS: Plants adjust the distribution of photosynthetic capacity and chlorophyll to canopy density. The importance of the gradient in the red : far-red ratio (R : FR) relative to the irradiance gradient was studied for its perception with respect to this partitioning of photosynthetic resources. Whether the relative importance of these two signals varied between six species of different growth habit (Phaseolus vulgaris, Lysimachia vulgaris, Hedera helix, Ficus benjamina, Carex acutiformis and Brachypodium pinnatum) was investigated further. METHODS: Single leaves of plants were shaded in daylight by a spectrally neutral filter or a leaf. In another experiment, leaves were treated with supplemental FR. In most cases, treatment effects were evaluated after 2 weeks. KEY RESULTS: Nitrogen and photosynthetic capacity (Amax) per leaf area, parameters pertaining to between-leaf resource partitioning, were strongly reduced in neutral shade but not additionally by spectral leaf shade. Supplemental FR reduced these parameters also, except in Carex. Acceleration of induction of senescence was observed in spectral leaf shade in primary bean leaves. Amax per unit chlorophyll, a parameter pertaining to within-leaf resource partitioning, was reduced in neutral shade, but not in spectral leaf shade or supplemental FR. CONCLUSIONS: Signalling mechanisms associated with perception of the R : FR gradient in canopies were less important than those associated with the irradiance gradient for between-leaf and within-leaf partitioning of photosynthetic resources. The relative importance of the signals differed between species because Carex was the only species for which no indications were found for an involvement of the spectral gradient in perception of canopy density.

Carex Plant↗