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Ficus rubiginosa 'variegata', a chlorophyll-deficient chimera with mosaic patterns created by cell divisions from the outer meristematic layer.

BACKGROUND AND AIMS: Sections leaves of Ficus rubiginosa 'Variegata' show that it is a chimera with a chlorophyll deficiency in the second layer of the leaf meristem (GWG structure). Like other Ficus species, it has a multiseriate epidermis on the adaxial and abaxial sides of the leaf, formed by periclinal cell divisions as well as anticlinal divisions. The upper and lower laminae of the leaf often exhibit small dark and light green patches of tissue overlying internal leaf tissue. METHODS: The distribution of chlorophyll in transverse sections of typical leaves was determined by fluorescence microscopy. KEY RESULTS: Patches of dark and light green tissue which arise in the otherwise colourless palisade and spongy mesophyll tissue in the entire leaf are due to further cell divisions arising from the bundle sheath which is associated with major vascular bundles or from the green multiseriate epidermis. Leaves produced in winter exhibit more patches of green tissue than leaves which expand in mid-summer. Many leaves produced in summer have no spotting and appear like a typical GWG chimera. There is a strong relationship between the number of patches on the adaxial side of leaves and the number on the abaxial side, showing that the cell division in upper and lower layers of leaves is strongly coordinated. In both winter and summer, there are fewer patches on the abaxial side of leaves compared with the adaxial side, indicating that periclinal and anticlinal cell divisions from the outer meristematic layer are less frequent in the lower layers of leaf tissue. Most of the patches are small (<1 mm in longest dimension) and thus the cell divisions which form them occur late in leaf development. Leaves which exhibit large patches generally have them on both sides of the leaves. CONCLUSION: In this cultivar, the outer meristematic layer appears to form vascular bundle sheaths and associated internal leaf tissue in the entire leaf lamina.

Cell Division↗

High-susceptibility of photosynthesis to photoinhibition in the tropical plant Ficus microcarpa L. f. cv. Golden Leaves.

BACKGROUND: The tropical plant Ficus microcarpa L. f. cv. Golden Leaves (GL) is a high-light sensitive tropical fig tree in which sun-leaves are yellow and shade-leaves are green. We compared the response of photosynthetic activities to strong light between GL and its wild-type (WT, Ficus microcarpa L. f.). RESULTS: Field measurements of maximum photosystem II (PSII) efficiency (Fv/Fm) of intact sun-leaves in GL showed that photo synthetic activity was severely photoinhibited during the daytime (Fv/Fm = 0.46) and subsequently recovered in the evening (Fv/Fm = 0.76). In contrast, WT did not show any substantial changes of Fv/Fm values throughout the day (between 0.82 and 0.78). Light dependency of the CO2 assimilation rate in detached shade-leaves of GL showed a response similar to that in WT, suggesting no substantial difference in photosynthetic performance between them. Several indicators of photoinhibition, including declines in PSII reaction center protein (D1) content, Fv/Fm value, and O2 evolution and CO2 assimilation rates, all indicated that GL is much more susceptible to photoinhibition than WT. Kinetics of PAM chlorophyll a fluorescence revealed that nonphotochemical quenching (NPQ) capacity of GL was lower than that of WT. CONCLUSION: We conclude that the photosynthetic apparatus of GL is more highly susceptible to photoinhibition than that of WT.

Carbon Dioxide↗

Mechanism of action of antiatherogenic and related effects of Ficus bengalensis Linn. flavonoids in experimental animals.

One month treatment of alloxan diabetic dogs with a glycoside, viz. leucopelargonin derivative (100 mg/kg/day) isolated from the bark of F. bengalensis decreased fasting blood sugar and glycosylated haemoglobin by 34% and 28% respectively. Body weight was maintained in both the treated groups while the same was decreased significantly by 10% in the control group. In cholesterol diet fed rats, as the atherogenic index and the hepatic bile acid level and the faecal excretion of bile acids and neutral sterols increased, the HMGCoA reductase and lipogenic enzyme activities in liver and lipoprotien lipase activity in heart and adipose tissue and plasma LCAT activity and the incorporation of labelled acetate into free and ester cholesterol in liver decreased significantly. On treatment with the two ficus flavonoids, viz. leucopelargonin and leucocyanin derivatives and another flavonoid quercetin (100 mg/kg/day) the above said effects except on bile acids and sterols and lipogenic enzymes were significantly reversed in the cholesterol fed rats. However in the treated rats the hepatic level of bile acids and the faecal excretion of bile acids and neutral sterols still further increased and the action of lipogenic enzyme glucose 6 phosphate dehydrogenase was still further decreased. These effects of leucopelargonidin and quercetin were better than that of the second. Toxicity studies are required to be carried out to find out if the ficus flavonoids could be used as health promoters as they are hypocholesterolemic and antioxidant in action.

Animals↗

[Comparison of habitats and seasonally differentiated distribution patterns of fig wasp populations associated with Ficus racemosa in Xishuangbanna].

The population distribution patterns of fig wasps associated with Ficus racemosa in Xishuangbanna were studied by using several indexes. The results indicated that the distribution patterns of 6 fig wasp species were all clump. The aggregative intensity of pollinating wasp (Ceratosolen fusciceps) population at primeval rain forest was nearly equal to that at seriously disturbed site, whereas they were both much higher than that at moderately disturbed site. In the meanwhile, the population aggregative intensity for the same wasp species was higher in rainy season than in dry-hot season, and the lowest was occurred in foggy-cool season. Non-pollinating wasp (Platyneura testacea, Platyneura mayri, Platyneura agraensis, Apocrypta westwoodi, Apocrypta sp.) population and each of their sex group were varied significantly in aggregative intensity, responding to the habitat change and seasonal alteration. The protection of original habitat should be focused on the protection of the mutualism of Ficus racemosa and fig wasps.

Algorithms↗

[The return of the prodigal child or allergy to ficus].

Ficus benjamina (FB), the weeping fig, belonging to the Moracea family, is now widely used as an indoor ornamental plant in houses and offices. Its latex can be responsible of IgE allergies : rhinoconjunctivitis, asthma, angiooedema, pruritus, anaphylactic shock. In some occupations such as gardeners, caretakers of plants, it can induce a contact urticaria. Most of these patients are atopics. We describe a case of non-occupational, indoor related rhinoconjunctivitis in a non-atopic patient. Prick-test and RAST to FB latex were positive and removal of the ficus plant resolved their symptoms confirming the etiologic role of the plant. The patient did not demonstrate sensitization to other common allergens (except weeds) involved in respiratory (latex of Hevea brasiliensis, mites...) and food allergies (negativity of the prick-tests for fig, avocado, banana, kiwi). Now, FB is a new hidden allergen in the house. Questionning for its presence and testing it should be considered; as it should be introduced in the standard prick-test panel.

Conjunctivitis, Allergic↗

[Content determination of psoralen in root of Ficus hitra by HPLC method].

OBJECTIVE: To investigate the contents of psoralen in Ficus hitra. METHODS: High Performance Liquid Chromatography was performed on Diamonsil C18. The chromatographic conditions were as follows: methanol-water (60:40) as mobile phase, flow rate being 1 ml/min and detecting wavelength at 245nm. RESULTS: A good linearity of psoralen was shown in range of 0. 356 - 2. 848 mg/ml (r = 0.9999), the average recovery is 103.99%, RSD = 3.07% (n = 5). The method has good reproducibility, RSD = 1.59% CONCLUSION: This method can supply evidence for the quality evaluation of Ficus hitra.

Chromatography, High Pressure Liquid↗

Inhibition of nitric oxide synthase expression in activated microglia and peroxynitrite scavenging activity by Opuntia ficus indica var. saboten.

Activated microglia by neuronal injury or inflammatory stimulation overproduce nitric oxide (NO) by inducible nitric oxide synthase (iNOS) and reactive oxygen species (ROS) such as superoxide anion, resulting in neurodegenerative diseases. The toxic peroxynitrite (ONOO-), the reaction product of NO and superoxide anion further contributes to oxidative neurotoxicity. A butanol fraction obtained from 50% ethanol extracts of Opuntia ficus indica var. saboten (Cactaceae) stem (SK OFB901) and its hydrolysis product (SK OFB901H) inhibited the production of NO in LPS-activated microglia in a dose dependent manner (IC50 15.9, 4.2 microg/mL, respectively). They also suppressed the expression of protein and mRNA of iNOS in LPS-activated microglial cells at higher than 30 microg/mL as observed by western blot analysis and RT-PCR experiment. They also inhibited the degradation of I-kappaB-alpha in activated microglia. Moreover, they showed strong activity of peroxynitrite scavenging in a cell free bioassay system. These results imply that Opuntia ficus indica may have neuroprotective activity through the inhibition of NO production by activated microglial cells and peroxynitrite scavenging activity.

Animals↗

Constituents of the stems and fruits of Opuntia ficus-indica var. saboten.

From the stems and fruits of Opuntia ficus-indica var. saboten, eight flavonoids, kaempferol (1), quercetin (2), kaempferol 3-methyl ether (3), quercetin 3-methyl ether (4), narcissin (5), (+)-dihydrokaempferol (aromadendrin, 6), (+)-dihydroquercetin (taxifolin, 7), eriodictyol (8), and two terpenoids, (6S,9S)-3-oxo-alpha-ionol-beta-D-glucopyranoside (9) and corchoionoside C (10) were isolated and identified by means of chemical and spectroscopic. Among these isolates, compounds 3-5 and 8-10 were reported for the first time from the stems and fruits of O. ficus-indica var. saboten.

Fruit↗

Bioactivity of certain Egyptian Ficus species.

The fruit extracts of Ficus sycomorus L., F. benjamina L., F. bengalensis L. and F. religiosa L. were screened for bioactivity. F. bengalensis and F. religiosa demonstrated activity in the brine shrimp test (Artemia salina) which indicates toxicity, whereas F. sycomorus and F. benjamina showed no activity. All the fruit extracts exhibited antitumor activity in the potato disc bioassay. None of the tested extracts showed any marked inhibition on the uptake of calcium into rat pituitary cells GH4C1. The extracts of the four tested Ficus species had significant antibacterial activity, but no antifungal activity. The results of this preliminary investigation support the traditional use of these plants in folk medicine for respiratory disorders and certain skin diseases.

Animals↗

Neuroprotective effects of antioxidative flavonoids, quercetin, (+)-dihydroquercetin and quercetin 3-methyl ether, isolated from Opuntia ficus-indica var. saboten.

The flavonoids quercetin, (+)-dihydroquercetin, and quercetin 3-methyl ether were isolated from the ethyl acetate fractions of the fruits and stems of Opuntia ficus-indica var. saboten. In the present study, we evaluated their protective effects against oxidative neuronal injuries induced in primary cultured rat cortical cells and their antioxidant activities by using three different cell-free bioassays. Quercetin was found to inhibit H(2)O(2)- or xanthine (X)/xanthine oxidase (XO)-induced oxidative neuronal cell injury, with an estimated IC(50) of 4-5 micro g/ml. However, it was no more protective at concentrations of 30 micro g/ml and above. (+)-Dihydroquercetin concentration-dependently inhibited oxidative neuronal injuries, but it was less potent than quercetin. On the other hand, quercetin 3-methyl ether potently and dramatically inhibited H(2)O(2)- and X/XO-induced neuronal injuries, with IC(50) values of 0.6 and 0.7 micro g/ml, respectively. All three principles markedly inhibited lipid peroxidation and scavenged 1,1-diphenyl-2-picrylhydrazyl free radicals. In addition, quercetin and quercetin 3-methyl ether were shown to inhibit XO activity in vitro, with respective IC(50) values of 10.67 and 42.01 micro g/ml. These results indicate that quercetin, (+)-dihydroquercetin, and quercetin 3-methyl ether are the active antioxidant principles in the fruits and stems of Opuntia ficus-indica var. saboten exhibiting neuroprotective actions against the oxidative injuries induced in cortical cell cultures. Furthermore, quercetin 3-methyl ether appears to be the most potent neuroprotectant of the three flavonoids isolated from this plant.

Animals↗

Antiulcer activity of Opuntia ficus indica (L.) Mill. (Cactaceae): ultrastructural study.

In Sicily folk medicine, Opuntia ficus indica (L.) Mill. cladodes are used for the treatment of gastric ulcer. We studied the effect of administration of lyophilized cladodes on experimental ethanol-induced ulcer in rat. In this paper, we report the ultrastructural observations of gastric mucosa. The ultrastructural changes were observed by trasmission electronic microscopy (TEM) confirming the protective effect exercised by administration of lyophilized cladodes. Pre-treatment test in rats revealed a protective action against ethanol-induced ulcer. Probably, the mucilage of Opuntia ficus indica is involved.

Animals↗

Biological effect of Opuntia ficus indica (L.) Mill. (Cactaceae) waste matter. Note I: diuretic activity.

In this work we studied in rat the diuretic activity of Opuntia ficus indica (L.) Mill. (Cactaceae) waste matter. The cladodes, flowers and non commerciable fruits were collected in S. Cono (CT, Sicily) cultivation. Acute and chronic diuretic activity of 15% infusion of cladodes, flowers and fruits were assayed. Natriuresis, kaliuresis and the activity on fructose-induced hyperuricemia was also studied. The results show that O. ficus indica cladode, fruit and flower infusions significantly increase diuresis. This effect is more marked with the fruit infusion and it is particularly significant during the chronic treatment. The fruit infusion shows also antiuric effect. In all experiments cladode, flower and fruit infusions showed a modest but not significant increase in natriuresis and kaliuresis.

Administration, Oral↗

Composition, digestibility and feed intake of Opuntia ficus indica by Ogaden sheep.

First of all spineless Opuntia is an important source of water for livestock in tropical regions. The water content of one-year sprouts amounted to 92.5%. 70 to 75% of dry matter of Opuntia ficus indica were crude carbohydrates, approximately 20% were crude ash. The apparent digestibility of organic matter was considerably high (70.9%), the energy content amounts to 35 and 467 EFUc per kg of fresh and dry matter respectively. Opuntias are roughage, their energy content is similar to that of grass or legumes during flowering. The protein content is too low (4.5 to 5.5% crude protein of dry matter) in order to meet the protein requirements of animals. When they had the choice rams preferred chopped fresh Opuntia (61.6% of the whole DM intake) to chopped dried Opuntia (34.7%) and whole fresh Opuntia (3.7%) apart from a certain basal diet (200 g of meadow hay and 200 g of concentrate per animal and day). If only one of the three differently treated forms of Opuntia was fed (apart from the basal diet) the sheep consumed daily 359 g of dry matter of chopped fresh Opuntia (approximately the same amount as if they had the choice, 101%), 313 g of dry matter of chopped dried Opuntia (88%) and 121 g of dry matter of whole fresh sprouts of Opuntia (34% of the total intake when they had the choice.) According to the obtained results spineless Opuntia ficus indica can be used in chopped form as an additional feed to other roughages (like grass, hay, straw) especially during the dry season.

Animal Feed↗

CO2 Exchange and Growth of the Crassulacean Acid Metabolism Plant Opuntia ficus-indica under Elevated CO2 in Open-Top Chambers.

CO2 uptake, water vapor conductance, and biomass production of Opuntia ficus-indica, a Crassulacean acid metabolism species, were studied at CO2 concentrations of 370, 520, and 720 [mu]L L-1 in open-top chambers during a 23-week period. Nine weeks after planting, daily net CO2 uptake for basal cladodes at 520 and 720 [mu]L L-1 of CO2 was 76 and 98% higher, respectively, than at 370 [mu]L L-1. Eight weeks after daughter cladodes emerged, their daily net CO2 uptake was 35 and 49% higher at 520 and 720 [mu]L L-1 of C02, respectively, than at 370 [mu]L L-1. Daily water-use efficiency was 88% higher under elevated CO2 for basal cladodes and 57% higher for daughter cladodes. The daily net CO2 uptake capacity for basal cladodes increased for 4 weeks after planting and then remained fairly constant, whereas for daughter cladodes, it increased with cladode age, became maximal at 8 to 14 weeks, and then declined. The percentage enhancement in daily net CO2 uptake caused by elevated CO2 was greatest initially for basal cladodes and at 8 to 14 weeks for daughter cladodes. The chlorophyll content per unit fresh weight of chlorenchyma for daughter cladodes at 8 weeks was 19 and 62% lower in 520 and 720 [mu]L L-1 of CO2, respectively, compared with 370 [mu]L L-1. Despite the reduced chlorophyll content, plant biomass production during 23 weeks in 520 and 720 [mu]L L-1 of CO2 was 21 and 55% higher, respectively, than at 370 [mu]L L-1. The root dry weight nearly tripled as the C02 concentration was doubled, causing the root/shoot ratio to increase with CO2 concentration. During the 23-week period, elevated CO2 significantly increased CO2 uptake and biomass production of O. ficus-indica.

Journal Article↗

Doubling the CO2 Concentration Enhanced the Activity of Carbohydrate-Metabolism Enzymes, Source Carbohydrate Production, Photoassimilate Transport, and Sink Strength for Opuntia ficus-indica.

After exposure to a doubled CO2 concentration of 750 [mu]mol mol-1 air for about 3 months glucose and starch in the chlorenchyma of basal cladodes of Opuntia ficus-indica increased 175 and 57%, respectively, compared with the current CO2 concentration of 370 [mu]mol mol-1, but sucrose content was virtually unaffected. Doubling the CO2 concentration increased the nocturnal malate production in basal cladodes by 75%, inorganic phosphate (Pi) by 32%, soluble starch synthase activity by 30%, and sucrose-Pi synthase activity by 146%, but did not affect the activity of hexokinase. Doubling CO2 accelerated phloem transport of sucrose out of the basal cladodes, resulting in a 73% higher dry weight for the daughter cladodes. Doubling CO2 increased the glucose content in 14-d-old daughter cladodes by 167%, increased nocturnal malate production by 22%, decreased total amino acid content by 61%, and increased soluble starch synthase activity by 30% and sucrose synthase activity by 62%. No downward acclimation of photosynthesis during long-term exposure to elevated CO2 concentrations occurs for O. ficus-indica (M. Cui, P.M. Miller, P.S. Nobel [1993] Plant Physiol 103: 519-524; P.S. Nobel, A.A. Israel [1994] J Exp Bot 45: 295-303), consistent with its higher source capacity and sink strength than under current CO2. These changes apparently do not result in Pi limitation of photosynthesis or suppression of genes governing photosynthesis for this perennial Crassulacean acid metabolism species, as occur for some annual crops.

Journal Article↗

Proteolytic activity in the genus ficus.

The latices of only 13 of a total of 46 species of Ficus examined contained appreciable proteolytic activity. Therefore, high proteolytic activity in the latex is not a distinguishing feature of the genus. The latex of F. stenocarpa had the highest specific activity followed closely by the latices of F. carica and F. glabrata. Latices of 6 species of Ficus were examined by chromatography on CM-cellulose and compared with the results obtained for 9 varieties of F. carica. All of the latices were found to contain multiple proteolytic enzymes. Chromatographically, the multiple enzyme components of the several varieties of F. carica were more similar than those of the several species examined. The latices of 16 varieties of F. carica were all different as determined by free boundary electrophoresis although the specific proteolytic activity of the latices was reasonably constant.

Journal Article↗

Multiple Molecular Forms of Ficus glabrata Ficin. Their Separation and Relative Physical, Chemical, and Enzymatic Properties.

Six of the proteolytic enzyme components of Ficus glabrata ficin have been isolated and shown to be chromatographically homogeneous. The molecular weights, the amino acid compositions, the electrophoretic and chromatographic behavior of the tryptic peptides, and the relative specificities of these 6 components have been determined. Within the experimental precision of the methods all 6 components are identical. They also have identical solubilities in sodium chloride and ammonium sulfate solutions. However, they are markedly different in their chromatographic properties. These multiple molecular forms of Ficus glabrata ficin may differ only in their conformational forms (conformers) or they may have minor differences in amino acid sequences which are sufficient to give different conformations and yet not be detected by the usual peptide mapping techniques. At the moment, we favor the latter possibility.

Journal Article↗

Relationships between Photosynthetically Active Radiation, Nocturnal Acid Accumulation, and CO(2) Uptake for a Crassulacean Acid Metabolism Plant, Opuntia ficus-indica.

The influences of photosynthetically active radiation (PAR) and water status on nocturnal Crassulacean acid metabolism (CAM) were quantitatively examined for a widely cultivated cactus, Opuntia ficus-indica (L.) Miller. When the total daily PAR was maintained at 10 moles photons per square meter per day but the instantaneous PAR level varied, the rate of nocturnal H(+) accumulation (tissue acidification) became 90% saturated near 700 micromoles per square meter per second, a PAR level typical for similar light saturation of C(3) photosynthesis. The total nocturnal H(+) accumulation and CO(2) uptake reached 90% of maximum for a total daily PAR of about 22 moles per square meter per day. Light compensation occurred near 0 moles per square meter per day for nocturnal H(+) accumulation and 4 moles per square meter per day for CO(2) uptake. Above a total daily PAR of 36 moles per square meter per day or for an instantaneous PAR of 1150 micromoles per square meter per second for more than 6 hours, the nocturnal H(+) accumulation actually decreased. This inhibition, which occurred at PAR levels just above those occurring in the field, was accompanied by a substantial decrease in chlorophyll content over a 1-week period.A minimum ratio of H(+) accumulated to CO(2) taken up of 2.5 averaged over the night occurred for a total daily PAR of 31 moles per square meter per day under wet conditions. About 2 to 6 hours into the night under such conditions, a minimum H(+)-to-CO(2) ratio of 2.0 was observed. Under progressively drier conditions, both nocturnal H(+) accumulation and CO(2) uptake decreased, but the H(+)-to-CO(2) ratio increased. A ratio of two H(+) per CO(2) is consistent with the H(+) production accompanying the conversion of starch to malic acid, and it apparently occurs for O. ficus-indica when CAM CO(2) uptake is strongly favored over respiratory activity.

Journal Article↗