385 resultados para Dactylis-glomerata


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This work deals with present and discuss mainly the chemical composition and pharmacological activities of each species of the National List of Medicinal plants of interest to SUS (RENISUS) contained in scientific articles that are found in the Bauru-SP region. Such information compiled in this study may help in the advancement of scientific research, promoting the speed in bibliographic queries these species. In the present work was carried out consultation papers and described in the form of literature review, published information of the species listed in Renisus specific to the Bauru-SP region are: Aloe spp* (A. vera or A. barbadensis), Schinus terebinthifolius = mastic Schinus, trimera Baccharis, Mikania spp* (M. glomerata and M. laevigata), Vernonia condensata, Tabebuia avellanedeae, Chenopodium ambrosioides, Momordica charantia, Phyllanthus spp* (P. amarus, P. niruri, P. tenellus and P. urinaria), Stryphnodendron adstringens = Stryphnodendron barbatimam, pulegium Mentha, Mentha spp* (M. crispa, M. piperita or M. villosa), Plectranthus barbatus = Coleus barbatus, Persea spp* (gratissima or P. americana P.), Bauhinia spp* (B. affinis, B. forficata or B. variegata), Copaifera spp*, Morus sp*, Eugenia uniflora or brasiliana Myrtus*, Psidium guajava, Syzygium spp* (S. jambolanum or S. cumini), Passiflora spp* (P. alata, P. edulis or P. incarnata), Punica granatum and Casearia sylvestris. Studies have shown that the use of plants as alternatives treatment and sustainable use of Brazilian biodiversity has a breakthrough in research regarding the chemical composition of each species of RENISUS relationship. Many phytochemical studies are reported compiled with possible pharmacological indications of each species. Thus enabling the use and production of herbal medicines in SUS

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This investigation attempts to determine which environmental parameters of the bottom water and sediment control recent foraminifera fauna at Ezcurra Inlet (King George Island, Antarctica), using data collected during four summers (2002/03, 2003/04, 2004/05 and 2006/07). The study revealed that Ezcurra Inlet contain typical Antarctic foraminifera fauna with three distinct assemblages and few differences in environmental parameters. The species Bolivina pseudopunctata, Fursenkoina fusiformis, Portatrochammina antarctica, and Adercotryma glomerata were abundant in the samples. An elevated abundance, richness and diversity were common at the entrance of the inlet at depths greater than 55 m, where the inlet was characterized by low temperatures and muddy sand. In the inner part of the inlet (depth 30-55 m), richness and diversity were low and the most significant species were Cassidulinoides parkerianus, C. porrectus, and Psammosphaera fusca. Shallow waters showed low values of richness and abundance and high temperatures coupled with coarser sediment. In areas with high suspended matter concentrations and pH values associated with low salinity the most representative species were Hippocrepinella hirudinea and Hemisphaerammina bradyi.

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Lo studio condotto si propone l’approfondimento delle conoscenze sui processi di evoluzione spontanea di comunità vegetali erbacee di origine secondaria in cinque siti all’interno di un’area protetta del Parco di Monte Sole (Bologna, Italia), dove, come molte aree rurali marginali in Italia e in Europa, la cessazione o riduzione delle tradizionali pratiche gestionali negli ultimi cinquant’anni, ha determinato lo sviluppo di fitocenosi di ridotto valore floristico e produttivo. Tali siti si trovano in due aree distinte all’interno del parco, denominate Zannini e Stanzano, selezionate in quanto rappresentative di situazioni di comunità del Mesobrometo. Due siti appartenenti alla prima area e uno appartenente alla seconda, sono gestiti con sfalcio annuale, i rimanenti non hanno nessun tipo di gestione. Lo stato delle comunità erbacee di tali siti è stato valutato secondo più punti di vista. E’ stata fatta una caratterizzazione vegetazionale dei siti, mediante rilievo lineare secondo la metodologia Daget-Poissonet, permettendo una prima valutazione relativa al numero di specie presenti e alla loro abbondanza all’interno della comunità vegetale, determinando i Contributi Specifici delle famiglie principali e delle specie dominanti (B. pinnatum, B. erectus e D. glomerata). La produttività è stata calcolata utilizzando un indice di qualità foraggera, il Valore Pastorale, e con la determinazione della produzione di Fitomassa totale, Fitomassa fotosintetizzante e Necromassa. A questo proposito sono state trovate correlazioni negative tra la presenza di Graminacee, in particolare di B. pinnatum, e i Contributi Specifici delle altre specie, soprattutto a causa dello spesso strato di fitomassa e necromassa prodotto dallo stesso B. pinnatum che impedisce meccanicamente l’insediamento e la crescita di altre piante. E’ stata inoltre approfonditamente sviluppata un terza caratterizzazione, che si propone di quantificare la diversità funzionale dei siti medesimi, interpretando le risposte della vegetazione a fattori globali di cambiamento, sia abiotici che biotici, per cogliere gli effetti delle variazioni ambientali in atto sulla comunità, e più in generale, sull’intero ecosistema. In particolare, nello studio condotto, sono stati proposti alcuni caratteri funzionali, cosiddetti functional traits, scelti perché correlati all’acquisizione e alla conservazione delle risorse, e quindi al trade-off dei nutrienti all’interno della pianta, ossia: Superficie Fogliare Specifica, SLA, Tenore di Sostanza Secca, LDMC, Concentrazione di Azoto Fogliare, LNC, Contenuto in Fibra, LFC, separato nelle componenti di Emicellulosa, Cellulosa, Lignina e Ceneri. Questi caratteri sono stati misurati in relazione a tre specie dominanti: B. pinnatum, B. erectus e D. glomerata. Si tratta di specie comunemente presenti nelle praterie semi-mesofile dell’Appennino Settentrionale, ma caratterizzate da differenti proprietà ecologiche e adattative: B. pinnatum e B. erectus sono considerati competitori stress-toleranti, tipicamente di ambienti poveri di risorse, mentre D. glomerata, è una specie più mesofila, caratteristica di ambienti produttivi. Attraverso l’analisi dei traits in riferimento alle diverse strategie di queste specie, sono stati descritti specifici adattamenti alle variazioni delle condizioni ambientali, ed in particolare in risposta al periodo di stress durante l’estate dovuto a deficit idrico e in risposta alla diversa modalità di gestione dei siti, ossia alla pratica o meno dello sfalcio annuale. Tra i caratteri funzionali esaminati, è stato identificato LDMC come il migliore per descrivere le specie, in quanto più facilmente misurabile, meno variabile, e direttamente correlato con altri traits come SLA e le componenti della fibra. E’ stato quindi proposto il calcolo di un indice globale per caratterizzare i siti in esame, che tenesse conto di tutti questi aspetti, riunendo insieme sia i parametri di tipo vegetativo e produttivo, che i parametri funzionali. Tale indice ha permesso di disporre i siti lungo un gradiente e di cogliere differenti risposte in relazione a variazioni stagionali tra primavera o autunno e in relazione al tipo di gestione, valutando le posizioni occupate dai siti stessi e la modalità dei loro eventuali spostamenti lungo questo gradiente. Al fine di chiarire se le variazioni dei traits rilevate fossero dovute ad adattamento fenotipico dei singoli individui alle condizioni ambientali, o piuttosto fossero dovute a differenziazione genotipica tra popolazioni cresciute in siti diversi, è stato proposto un esperimento in condizioni controllate. All’interno di un’area naturale in UK, le Chiltern Hills, sono stati selezionati cinque siti, caratterizzati da diverse età di abbandono: Bradenham Road MaiColtivato e Small Dean MaiColtivato, di cui non si conosce storia di coltivazione, caratterizzati rispettivamente da vegetazione arborea e arbustiva prevalente, Butterfly Bank 1970, non più coltivato dal 1970, oggi prateria seminaturale occasionalmente pascolata, Park Wood 2001, non più coltivato dal 2001, oggi prateria seminaturale mantenuta con sfalcio annuale, e infine Manor Farm Coltivato, attualmente arato e coltivato. L’esperimento è stato condotto facendo crescere i semi delle tre specie più comuni, B. sylvaticum, D. glomerata e H. lanatus provenienti dai primi quattro siti, e semi delle stesse specie acquistati commercialmente, nei cinque differenti tipi di suolo dei medesimi siti. Sono stati misurati quattro caratteri funzionali: Massa Radicale Secca (DRM), Massa Epigea Secca (DBM), Superficie Fogliare Secca (SLA) e Tenore di Sostanza Secca (LDMC). I risultati ottenuti hanno evidenziato che ci sono significative differenze tra le popolazioni di una stessa specie ma con diversa provenienza, e tra individui appartenenti alla stessa popolazione se fatti crescere in suoli diversi. Tuttavia, queste differenze, sembrano essere dovute ad adattamenti locali legati alla presenza di nutrienti, in particolare N e P, nel suolo piuttosto che a sostanziali variazioni genotipiche tra popolazioni. Anche per questi siti è stato costruito un gradiente sulla base dei quattro caratteri funzionali analizzati. La disposizione dei siti lungo il gradiente ha evidenziato tre gruppi distinti: i siti più giovani, Park Wood 2001 e Manor Farm Coltivato, nettamente separati da Butterfly Bank 1970, e seguiti infine da Small Dean MaiColtivato e Bradenham Road MaiColtivato. L’applicazione di un indice così proposto potrebbe rivelarsi un utile strumento per descrivere ed indagare lo stato della prateria e dei processi evolutivi in atto, al fine di meglio comprendere e dominare tali dinamiche per proporre sistemi di gestione che ne consentano la conservazione anche in assenza delle tradizionali cure colturali.

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Foraminifera were examined in recent (<100 years) fine-grained glaciomarine muds from surface sediments and cores from Nordensheld Bay, Novaja Zemlja, and Hornsund and Bellsund, Spitsbergen. This study presents the first data on modern foraminifera distribution for fjord environments in Novaja Zemlja, Russia. The data are interpreted with reference to the distribution of foraminiferal near Svalbard and the Barents Sea. In Nordensheld Bay, live and dead Nonionellina labradorica and Islandiella norcrossi are most abundant in the outer fjord. Cassidulina reniforme and Allogromiina spp. dominate in the middle and inner fjord. The dominant species are dissimilar to species occurring in other areas of the Barents Sea region, with the exception of Svalbard fjords. The number of live foraminifera (24 to 122 tests/10 cm1) in outer and middle Nordensheld Bay corresponds with values known from the open Barents Sea. However, the biomass (0.03 mg/10 cm**3) is two orders of magnitude less due to smaller foraminiferal test size, which in glaciomarine sediments reflects the absence of larger species, paucity of large specimens, and high occurrence of juvenile foraminifera. The smaller size indicates an opportunistic response to environmental stress due to glacier proximity. The presence of Quinqueloculina stalkeri is diagnostic of glaciomarine environments in fjords of Novaja Zemlja and Svalbard.

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Sediments from the western and southern part of the Arabian Sea were collected periodically in the spring intermonsoon between March and May 1997 and additionally at the end of the Northeast Monsoon in February 1998. Assemblages of Rose Bengal stained, living deep-sea benthic foraminifera, their densities, vertical distribution pattern, and diversity were analysed after the Northeast Monsoon and short-time changes were recorded. In the western Arabian Sea, foraminiferal numbers increased steadily between March and the beginning of May, especially in the smaller size classes (30-63 µm, 63-125 µm). At the same time, the deepening of the foraminiferal living horizon, variable diversity and rapid variations between dominant foraminiferal communities were observed. We interpret these observations as the time-dependent response of benthic foraminifera to enhanced organic carbon fluxes during and after the Northeast Monsoon. In the southern Arabian Sea, constant low foraminiferal abundances during time, no distinctive change in the vertical distribution, reduced diversity, and more stable foraminiferal communities were noticed, which indicates no or little influence of the Northeast Monsoon to benthic foraminifera in this region.

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Live (Rose Bengal stained) and dead benthic foraminiferal communities (hard-shelled species only) from the Pakistan continental margin oxygen minimum zone (OMZ) have been studied in order to determine the relation between faunal composition and the oxygenation of bottom waters. During R.R.S. Charles Darwin Cruises 145 and 146 (12 March to May 28 2003), 11 multicores were taken on the continental margin off Karachi, Pakistan. Two transects were sampled, constituting a composite bathymetric profile from 136 m (above the OMZ in spring 2003) down to 1870 m water depth. Cores (surface area 25.5 cm2) were processed as follows: for stations situated above, and in the upper part of the OMZ, sediment slices were taken for the 0-0.5 and 0.5-1 cm intervals, and then in 1 cm intervals down to 10 cm. For the lower part of the OMZ, the second centimetre was also sliced in half-centimetre intervals. Each sample was stored in 10 % borax-buffered formalin for further processing. Onshore, the samples were wet sieved over 63 µm, 150 µm and 300 µm sieves and the residues were stained for one week in ethanol with Rose Bengal. After staining, the residue was washed again. The stained faunas were picked wet in three granulometric fractions (63-150 µm, 150-300 µm and >300 µm), down to 10 cm depth. To gain more insight into the population dynamics we investigated the dead (unstained) foraminifera in the 2-3 cm level for the fractions 150-300 µm and >300 µm. The fractions >300 µm and 150-300 µm show nearly the same faunal distribution and therefore the results are presented here for both fractions combined (i.e. the >150 µm fraction). Live foraminiferal densities show a clear maximum in the first half centimetre of the sediment; only few specimens are found down to 4 cm depth. The faunas exhibit a clear zonation across the Pakistan margin OMZ. Down to 500 m water depth, Uvigerina ex gr. U. semiornata and Bolivina aff. B. dilatata dominate the assemblages. These taxa are largely restricted to the upper cm of the sediment. They are adapted to the very low bottom-water oxygen values (ab. 0.1 ml/l in the OMZ core) and the extremely high input of organic carbon on the upper continental slope. The lower part of the OMZ is characterized by cosmopolitan faunas, containing also some taxa that in other areas have been described in deep infaunal microhabitats.

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Assemblages of living deep-sea benthic foraminifera, their densities, vertical distribution pattern, and diversity, were investigated in the intermonsoon period after the northeast monsoon in the Arabian Sea in spring 1997. Foraminiferal numbers show a distinct gradient from north to south, with a maximum of 623 foraminifera in 50 cm**3 at the northern site. High percentages of small foraminifera were found in the western and northern part of the Arabian Sea. Most stations show a typical vertical distribution with a maximum in the first centimeter and decreasing numbers with increasing sediment depths. But at the central station, high densities can be found even in deeper sediment layers. Diversity is very high at the northern and western sites, but reduced at the central and southern stations. Data and faunal assemblages were compared with studies carried out in 1995. A principal component analysis of intermonsoon assemblages shows that the living benthic foraminifera can be characterized by five principal component communities. Dominant communities influencing each site differ strongly between the two years. In spring 1997, stations in the north, west and central Arabian Sea were dominated by opportunistic species, indicating the influence of fresh sedimentation pulses or enhanced organic carbon fluxes after the northeast monsoon.

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Surface sediment was sampled at two bathyal sites in the southwestern Gulf of Lions in the western Mediterranean Sea in February and August 1997 to study the distribution and microhabitat of living (Rose Bengal stained) deep sea benthic foraminifera. Both standing stock and diversity of the faunas, and the microhabitat of distinct species mirror the trophic situation and the depth of the oxidised layer at the different sites. Our results suggest that the faunas do not comprise highly opportunistic species and are adapted to rather stable environments. In the axial channel of the Lacaze-Duthiers Canyon, organic matter fluxes are enhanced due to advective transport of organic matter resulting in elevated oxygen consumption rates in the surface sediment and a rather thin oxidised layer. The corresponding benthic foraminiferal fauna is characterised by rather high standing stock and diversity, and a well-developed deep infauna. In addition to freshly deposited phytodetritus, more degraded organic matter seems to be an important food source. In contrast, at the open slope, organic matter fluxes and oxygen consumption rates in the surface sediment are lower and the oxidised layer is much thicker than inside the canyon. The corresponding benthic foraminiferal fauna comprises mainly epifaunal and shallow-infaunal species with much lower standing stocks and clear differences between February and August. In August standing stocks are higher and the average living depths of most species shift towards the sediment surface. These differences can be attributed to patchiness or represent a seasonal trophic signal.

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Trigger weight (TWC) and piston (PC) cores obtained from surveys of the three sites drilled during Ocean Drilling Program (ODP) Leg 105 were studied in detail for benthic foraminiferal assemblages, total carbonate (all sites), planktonic foraminiferal abundances (Sites 645 and 647), and stable isotopes (Sites 646 and 647). These high-resolution data provide the link between modern environmental conditions represented by the sediment in the TWC and the uppermost cores of the ODP holes. This link provides essential control data for interpretating late Pleistocene paleoceanographic records from these core holes. At Site 645 in Baffin Bay, local correlation is difficult because the area is dominated by ice-rafted deposits and by debris flows and/or turbidite sedimentation. At the two Labrador Sea sites (646 and 647), the survey cores and uppermost ODP cores can be correlated. High-resolution data from the site survey cores also provide biostratigraphic data that refine the interpretations compiled from core-catcher samples at each ODP site.

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Two cores, one from the Beaufort Sea Slope at 1000 m water depth (core 750) and one from the Amundsen Gulf at 426 m (core 124), were collected to help determine paleo-ice cover in the Holocene and late glacial of this area. Site 750 is particularly sensitive to changes in paleo-ice cover because it rests beneath the present ice margin of the permanent Arctic ice pack. Core 124 was sampled just in front of the former glacier that moved out into the Amundsen Gulf and started to recede about 13 ka B.P. Both cores have a strong occurrence of calcareous foraminifera in the upper few centimeters, but these disappear throughout most of the Holocene, suggesting more open water in that time period than present. In the sediments representing the end of the last glacial period (dated at ~11,500-14,000 calibrated years B.P. (cal B.P.)) a calcareous fauna with an abundant planktic foraminiferal fauna suggests a return to almost permanent ice cover, much like the central Arctic today. Together with the foraminifera there was also abundant ice-rafted debris (IRD) in both cores between 12,000 cal B.P. and ~14,000 cal B.P., but those units are of different ages between cores, suggesting different events. The IRD in both cores appears to have the same magnetic and chemical signals, but their origins cannot be determined exactly until clay mineralogy is completed. There is abundant organic debris in both cores below the IRD units: the organics in core 750 are very diffuse and not visually identifiable, but the organic material in core 124 is clearly identifiable with terrestrial root fragments; these are 14C dated at over 37,000 years B.P. This is a marine unit as it also has glacial front foraminifera in the sediment with the organic debris that must have been originating from subglacial streams. The seismic and multibeam data both indicate glaciers did not cross the core 124 site.

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The distribution, biomass, and diversity of living (Rose Bengal stained) deep-sea benthic foraminifera (>30 µm) were investigated with multicorer samples from seven stations in the Arabian Sea during the intermonsoonal periods in March and in September/October, 1995. Water depths of the stations ranged between 1916 and 4425 m. The distribution of benthic foraminifera was compared with dissolved oxygen, % organic carbon, % calcium carbonate, ammonium, % silica, chloroplastic pigment equivalents, sand content, pore water content of the sediment, and organic carbon flux to explain the foraminiferal patterns and depositional environments. A total of six species-communities comprising 178 living species were identified by principal component analysis. The seasonal comparison shows that at the western stations foraminiferal abundance and biomass were higher during the Spring Intermonsoon than during the Fall Intermonsoon. The regional comparison indicates a distinct gradient in abundance, biomass, and diversity from west to east, and for biomass from north to south. Highest values are recorded in the western part of the Arabian Sea, where the influence of coastal and offshore upwelling are responsible for high carbon fluxes. Estimated total biomass of living benthic foraminifera integrated for the upper 5 cm of the sediment ranged between 11 mg Corg m**-2 at the southern station and 420 mg Corg m**-2 at the western station. Foraminifera in the size range from 30 to 125 ?m, the so-called microforaminifera, contributed between 20 and 65% to the abundance, but only 3% to 28% to the biomass of the fauna. Highest values were found in the central and southern Arabian Sea, indicating their importance in oligotrophic deep-sea areas. The overall abundance of benthic foraminifera is positively correlated with oxygen content and pore volume, and partly with carbon content and chloroplastic pigment equivalents of the sediment. The distributional patterns of the communities seem to be controlled by sand fraction, dissolved oxygen, calcium carbonate and organic carbon content of the sediment, but the critical variables are of different significance for each community.