813 resultados para ALLIUM SATIVUM


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In the last years, functional foods have awakened consumer, scientific and business interest. A commonly found vegetable in such kind of foods includes garlic (Allium sativum). By its ability for selenium (Se) bio-accumulation, garlic can turn into an attractive option of selenized food. Selenium is an essential micronutrient for many organisms including plants, animals, and humans. It is an important trace element due to its antioxidant properties and plays a main role in prevention of cancer and cardiovascular diseases. Nowadays, there is an increasing interest in the study of Se speciation due to the different roles that each species manifests in toxicological and nutrition fields. However, Se exhibits a narrow interval between toxicity and essentiality, which is puzzling toxicologists and alarming nutritionists and legislators. In the present review, an overview on the development of selenized garlic studies and its potential implementation in Argentine production is exposed. The development of novel foods with added value such us selenized garlic could be an attractive alternative for local market. Moreover, it becomes a good offering for factory owners, considering that Mendoza represents about 85% of total garlic production in the country.

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El ajo es una especie cultivada por sus propiedades terapéuticas, su significancia religiosa, su sabor y aroma. Por su alto aporte de flavonoides, compuestos polifenólicos y organoazufrados (OSCs) se encuentra entre los alimentos considerados saludables. Entre los efectos biológicos que posee se incluyen propiedades antimicrobianas, antidiabéticas, antimutagénicas y anticancerígenas. En la actualidad, existen en el mercado subproductos denominados aceites saborizados con ajo que de acuerdo a la legislación nacional vigente se comercializan bajo la denominación de aderezos sin ninguna diferenciación en cuanto al proceso de saborización empleado. Establecer el proceso de saborización utilizado resulta de importancia ya que de ello dependen tanto el perfil de compuestos bioactivos como las potenciales propiedades biológicas que estos ejerzan. Por otro lado, los aceites saborizados con ajo pueden ser empleados como medio para cocción mediante fritura. Numerosas variables se encuentran implicadas en este proceso culinario, existiendo condiciones de fritura óptimas para cada tipo de producto. De lo anteriormente expuesto surge el interés en caracterizar aceites saborizados con ajo en función de indicadores de calidad bromatológica, color y perfil cuali-cuantitativo de OSCs y en determinar posibles modificaciones durante su empleo como medio para la cocción mediante fritura. Para ello se adquirieron en el comercio local aceites saborizados con ajo en aceites vegetales de girasol, canola y oliva. Paralelamente, se obtuvieron aceites saborizados con ajo a escala de laboratorio utilizando dos métodos diferentes de saborización. Estos consistieron, por un lado en la adición de aceite destilado de ajo y por otro en la maceración de dientes de ajo fresco picado en un aceite vegetal. Posteriormente tanto los aceites comercializados como los obtenidos a escala de laboratorio, se sometieron a diferentes temperaturas de fritura (180 °C, 220 °C y 300 °C) durante 3 minutos. La calidad bromatológica se evaluó a través de las determinaciones de índice de peróxidos (IP) e índice de acidez (IA), el color a través del Sistema CIELAB y el perfil de OSCs mediante cromatografía gaseosa y cromatografía líquida. A partir de los indicadores de calidad bromatológica evaluados fue posible determinar el estado oxidativo de los aceites saborizados con ajo evaluados. El color estuvo determinado por las características y la presencia de pigmentos propios de cada aceite vegetal. Se evidenciaron diferencias tanto cuali- como cuantitativas en el perfil de OSCs, estableciendo que la metodología de HPLC es la más idónea para la detección de dichos compuestos. Se diferenciaron a los aceites saborizados con ajo bajo estudio en „aceites de ajo macerado‟ cuando contenían alicina, ajoeno y vinilditiinas y en „aceites destilados de ajo‟ por la presencia de sulfuros y polisulfuros. Al ser sometidos a condiciones de cocción mediante fritura, se observaron modificaciones en los indicadores de calidad bromatológica, color y perfil de OSCs. Estas modificaciones implicaron cambios en el IP, IA y color. En todos los casos las modificaciones observadas fueron dependientes del aceite vegetal evaluado. Respecto del perfil y concentración de OSCs, también se denotaron modificaciones, evidenciándose cierta inestabilidad de algunos compuestos. Otro aspecto importante a destacar es que aún a la temperatura más alta de fritura ensayada, los aceites saborizados con ajo aún contuvieron compuestos organoazufrados que evidencian importantes propiedades benéficas para la salud.

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BACKGROUND Gastrointestinal and respiratory diseases in calves and piglets lead to significant economic losses in livestock husbandry. A high morbidity has been reported for diarrhea (calves ≤ 35 %; piglets ≤ 50 %) and for respiratory diseases (calves ≤ 80 %; piglets ≤ 40 %). Despite a highly diverse etiology and pathophysiology of these diseases, treatment with antimicrobials is often the first-line therapy. Multi-antimicrobial resistance in pathogens results in international accordance to strengthen the research in novel treatment options. Medicinal plants bear a potential as alternative or additional treatment. Based on the versatile effects of their plant specific multi-component-compositions, medicinal plants can potentially act as 'multi-target drugs'. Regarding the plurality of medicinal plants, the aim of this systematic review was to identify potential medicinal plant species for prevention and treatment of gastrointestinal and respiratory diseases and for modulation of the immune system and inflammation in calves and piglets. RESULTS Based on nine initial sources including standard textbooks and European ethnoveterinary studies, a total of 223 medicinal plant species related to the treatment of gastrointestinal and respiratory diseases was identified. A defined search strategy was established using the PRISMA statement to evaluate 30 medicinal plant species starting from 20'000 peer-reviewed articles published in the last 20 years (1994-2014). This strategy led to 418 references (257 in vitro, 84 in vivo and 77 clinical trials, thereof 48 clinical trials in veterinary medicine) to evaluate effects of medicinal plants and their efficacy in detail. The findings indicate that the most promising candidates for gastrointestinal diseases are Allium sativum L., Mentha x piperita L. and Salvia officinalis L.; for diseases of the respiratory tract Echinacea purpurea (L.) MOENCH, Thymus vulgaris L. and Althea officinalis L. were found most promising, and Echinacea purpurea (L.) MOENCH, Camellia sinensis (L.) KUNTZE, Glycyrrhiza glabra L. and Origanum vulgare L. were identified as best candidates for modulation of the immune system and inflammation. CONCLUSIONS Several medicinal plants bear a potential for novel treatment strategies for young livestock. There is a need for further research focused on gastrointestinal and respiratory diseases in calves and piglets, and the findings of this review provide a basis on plant selection for future studies.

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Onion (Allium cepa L.) is botanically included in the Liliaceae and species are found across a wide range of latitudes and altitudes in Europe, Asia, N. America and Africa. World onion production has increased by at least 25% over the past 10 years with current production being around 44 million tonnes making it the second most important horticultural crop after tomatoes. Because of their storage characteristics and durability for shipping, onions have always been traded more widely than most vegetables. Onions are versatile and are often used as an ingredient in many dishes and are accepted by almost all traditions and cultures. Onion consumption is increasing significantly, particularly in the USA and this is partly because of heavy promotion that links flavour and health. Onions are rich in two chemical groups that have perceived benefits to human health. These are the flavonoids and the alk(en)yl cysteine sulphoxides (ACSOs). Two flavonoid subgroups are found in onion, the anthocyanins, which impart a red/purple colour to some varieties and flavanols such as quercetin and its derivatives responsible for the yellow and brown skins of many other varieties. The ACSOs are the flavour precursors, which, when cleaved by the enzyme alliinase, generate the characteristic odour and taste of onion. The downstream products are a complex mixture of compounds which include thiosulphinates, thiosulphonates, mono-, di- and tri-sulphides. Compounds from onion have been reported to have a range of health benefits which include anticarcinogenic properties, antiplatelet activity, antithrombotic activity, antiasthmatic and antibiotic effects. Here we review the agronomy of the onion crop, the biochemistry of the health compounds and report on recent clinical data obtained using extracts from this species. Where appropriate we have compared the data with that obtained from garlic (Allium sativum L.) for which more information is widely available. Copyright © 2002 John Wiley & Sons, Ltd.

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Esta pesquisa estudou a ação inseticida de extrato alcoólico de alho (Allium sativum L.) e pimenta-do-reino (Piper nigrum L.), já utilizados no controle de pragas em sistemas agroflorestais no nordeste paraense, contra larvas de 4º instar de Tenebrio molitor (Col., Tenebrionidae) em laboratório. Os experimentos foram desenvolvidos no Laboratório de Entomologia da Embrapa Amazônia Oriental, em Belém, Pará. Os extratos alcoólicos de A. sativum e P. nigrum foram obtidos de 50g dos produtos vegetais, colocados em repouso em 200 mL de álcool etílico hidratado (92,8º INPM) por 5 dias. As formulações à base de 50 mL de extrato alcoólico para cada extrato isoladamente e 25 mL de ambos na mistura, com 25mL de sabão líquido cada, foram aplicadas nas concentrações de 1% e 10%, além de um tratamento testemunha com água destilada, em um delineamento experimental inteiramente casualizado, com 20 repetições. Os insetos foram expostos ao tratamento por aplicação tópica com auxílio de micropipetas com pressão e precisão de 0,2 mL e mantidos em placas de Petri com discos de papel de filtro (9,0 cm Ø), providas de pedaços de chuchu para alimentação e armazenadas em câmaras climatizadas, tipo B.O.D, à temperatura de 27 ± 2oC, umidade relativa de 70 ± 5% e fotofase de 12 horas. A mortalidade foi avaliada por 5 dias após a exposição dos mesmos aos tratamentos. Extratos alcoólicos de A. sativum e P. nigrum apresentaram ação inseticida contra larvas de T. molitor, com taxa de mortalidade variando de 60% (1º dia) a 80% (5º dia) na maior dosagem de resposta biológica (10%) do experimento

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2016

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O objetivo deste estudo foi analisar a variabilidade morfológica de isolados do fungo.

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Los estudios realizados en la Argentina sobre poscosecha del género Allium se refieren a A. sativum, no habiéndolos sobre Allium ampeloprasum (ajo elefante), de buenas características organolépticas (sabor más suave) y creciente demanda en los mercados internos y externos. Por tal motivo se decidió investigar la incidencia del método de secado en su pérdida de peso comparando el procedimiento tradicional en caballete con el realizado en horno solar con circulación forzada de aire. En ambos casos se efectuaron 5 repeticiones para control de pérdida de peso. Se sacaron muestras al azar de los distintos niveles de las paseras para establecer la humedad en bulbo entero, bulbo pelado y hojas, efectuando 3 repeticiones para cada determinación y tratamiento. La duración de los tratamientos se determinó en base a la humedad en hoja y bulbo entero, puesto que la variación en bulbo pelado no fue significativa. Los datos fueron evaluados con el análisis de la varianza utilizando un nivel de significancia del 5 % y la prueba de Duncan. En las condiciones del ensayo, el secado en horno solar adelanta 6 días la terminación, con una pérdida de peso del 30,7 %.

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Fusarium proliferatum has been reported on garlic in the Northwest USA, Spain and Serbia, causing water-soaked tan-colored lesions on cloves. In this work, Fusarium proliferatum was isolated from 300 symptomatic garlic bulbs. Morphological identification of Fusarium was confirmed using species-specific PCR assays and EF-1α sequencing. Confirmation of pathogenicity was conducted with eighteen isolates. Six randomly selected F. proliferatum isolates from garlic were tested for specific pathogenicity and screened for fusaric acid production. Additionally, pathogenicity of each F. proliferatum isolate was tested on healthy seedlings of onion (Allium cepa), leek (A. porrum), scallions (A. fistulosum), chives (A. schoenoprasum) and garlic (A. sativum). A disease severity index (DSI) was calculated as the mean severity on three plants of each species with four test replicates. Symptoms on onion and garlic plants were observed three weeks after inoculation. All isolates tested produced symptoms on all varieties inoculated. Inoculation of F. proliferatum isolates from diseased garlic onto other Allium species provided new information on host range and pathogenicity. The results demonstrated differences in susceptibility with respect to host species and cultivar. The F. proliferatum isolates tested all produced fusaric acid (FA); correlations between FA production and isolate pathogenicity are discussed. Additionally, all isolates showed the presence of the FUM1 gene suggesting the ability of Spanish isolates to produce fumonisins.

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A cDNA encoding the chloroplast/mitochondrial form of glutathione reductase (GR:EC 1,6,4,2) from pea (Pisum sativum L.) was used to map a single GR locus, named GORI. In two domesticated genotypes of pea (cv, Birte and JI 399) it is likely that the GORI locus contains a single gene. However, in a semi-domesticated land race of pea sequences were detected but closely related sets of GR gene sequences were in JI 281 represent either a second intact gene or a partial or pseudogene copy. A GR gene was cloned from ev. Birte, sequenced and its structure analysed. No features of the transcription or structure of the gene suggested a mechanism for generating any more than one form of . From these data plus previously published biochemical evidence was suggested a second, distinct gene encoding for the cytosolic form of GR should be present in peas. The GORI-encoded GR mRNA can be detected in all main organs of the plant and no alternative spliced species was present which could perhaps account for the generation of multiple isoforms of GR. The mismatch between the number of charge-separable isoforms in pea and the proposed number suggests that different GR isoforms arise by some form of post-transnational modification.

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Restriction fragment length polymorphisms have been used to determine the chromosomal location of the genes encoding the glycine decarboxylase complex (GDC) and serine hydroxymethyltransferase (SHMT) of pea leaf mitochondria. The genes encoding the H subunit of GDC and the genes encoding SHMT both show linkage to the classical group I marker i. In addition, the genes for the P protein of GDC show linkage to the classic group I marker a. The genes for the L and T proteins of GDC are linked to one another and are probably situated on the satellite of chromosome 7. The mRNAs encoding the five polypeptides that make up GDC and SHMT are strongly induced when dark-grown etiolated pea seedlings are placed in the light. Similarly, when mature plants are placed in the dark for 48 h, the levels of both GDC protein and SHMT mRNAs decline dramatically and then are induced strongly when these plants are returned to the light. During both treatments a similar pattern of mRNA induction is observed, with the mRNA encoding the P protein of GDC being the most rapidly induced and the mRNA for the H protein the slowest. Whereas during the greening of etiolated seedlings the polypeptides of GDC and SHMT show patterns of accumulation similar to those of the corresponding mRNAs, very little change in the level of the polypeptides is seen when mature plants are placed in the dark and then re-exposed to the light.

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Glucosinolates are sulphur-containing glycosides found in brassicaceous plants that can be hydrolysed enzymatically by plant myrosinase or non-enzymatically to form primarily isothiocyanates and/or simple nitriles. From a human health perspective, isothiocyanates are quite important because they are major inducers of carcinogen-detoxifying enzymes. Two of the most potent inducers are benzyl isothiocyanate (BITC) present in garden cress (Lepidium sativum), and phenylethyl isothiocyanate (PEITC) present in watercress (Nasturtium officinale). Previous studies on these salad crops have indicated that significant amounts of simple nitriles are produced at the expense of the isothiocyanates. These studies also suggested that nitrile formation may occur by different pathways: (1) under the control of specifier protein in garden cress and (2) by an unspecified, non-enzymatic path in watercress. In an effort to understand more about the mechanisms involved in simple nitrile formation in these species, we analysed their seeds for specifier protein and myrosinase activities, endogenous iron content and glucosinolate degradation products after addition of different iron species, specific chelators and various heat treatments. We confirmed that simple nitrile formation was predominantly under specifier protein control (thiocyanate-forming protein) in garden cress seeds. Limited thermal degradation of the major glucosinolate, glucotropaeolin (benzyl glucosinolate), occurred when seed material was heated to >120 degrees C. In the watercress seeds, however, we show for the first time that gluconasturtiin (phenylethyl glucosinolate) undergoes a non-enzymatic, iron-dependent degradation to a simple nitrile. On heating the seeds to 120 degrees C or greater, thermal degradation of this heat-labile glucosinolate increased simple nitrile levels many fold.

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The most important vegetable crops grown in Indonesia, and particularly lowland coastal production, are the true shallot and chilli. These crops are usually grown in rotation with rice but are far more valuable crops and are increasingly in high demand. They offer an opportunity for small farmers to generate extra income, increase farm profitability and shift away from subsistence production. However, the yield and profitability of shallot and chilli production is severely limited by a range of agronomic constraints. This project aims towards raising the productivity of allium (shallot and garlic) and chilli/capsicum cropping systems. The methodology will include a benchmarking survey and review of grower practices. This will be supplemented with physical surveys of crops for disease incidence and efficiency of fertiliser use. Once surveys are completed in Indonesia and the important pathogens identified, recommendations can be made for disease management. This will include review of chemical usage in Indonesia and Australia to provide best management guidelines for the application of insecticides, fungicides and other chemicals.

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Acetylcholinesterase (AChE) from Pisum sativum purified 28 fold showed two closely moving protein bands on polyacrylamide gel electrophoresis, both of which have AChE activity. AChE activity occurs in roots, stem and leaves, that in roots varying with age. Activity is optimal at pH 9 and at 30”. The energy of activation is 9.82 x lo3 J per mol and MW is greater than 200000. Although the enzyme can hydrolyze both choline and non-choline esters, it has greater affinity for acetylthiocholine (ATCh) and acetylcholine (ACh). ATCh inhibits the enzyme at higher concentrations and the K, is 0.2 mM with this as substrate. The enzyme is not as sensitive to Eserine as it is to Neostigmine. It is also inhibited by organophosphorus pesticides such as Fensulfothion, Parathion and Dimethoate. Treatment of the seeds with Fensulfothion [O, O-diethyl (p-methylsulfinylphenyl) phosphorothioate] affects growth and secondary root development. This might be explained by its inhibition of AChE and the consequent increase of endogenous levels of ACh.

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Pisum sativum seeds contain a conserved acetylcholinesterase (AChE) which is active during the early stages of germination. The enzyme activity soon disappears and reappears after 72 hr of germination. A protein devoid of catalytic ability, but exhibiting similar chromatographic and electrophoretic properties as the active AChE, could be detected after 24 hr of germination. The pattern of incorporation of labelled amino acids into AChE and the influence of cycloheximide revealed that the AChE found in the roots from 72 hr onwards was entirely new. During this period of growth, the AChE protein accounts for 4–10% of the total proteins in the root tissue.