7 resultados para Casino Control Act

em Consorci de Serveis Universitaris de Catalunya (CSUC), Spain


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En los últimos treinta años la posición de España respecto al fenómeno migratorio ha variado radicalmente. Ha pasado de ser un país con saldos migratorios negativos a atraer mano de obra extranjera. Esta nueva tendencia, que se ha consolidado durante los últimos diez años, lejos de remitir, presenta indicios de expansión. Varios fenómenos de carácter global contribuyen a ello. En primer lugar, las tasas de crecimiento de la población en los países en vías de desarrollo (PVD) son superiores a las tasas de crecimiento de la ocupación en dichos países. En segundo lugar, los diferenciales de renta entre países ricos y pobres se están incrementando. Asimismo, el gran desarrollo de las telecomunicaciones hace accesible el conocimiento del nivel de vida occidental a los habitantes del llamado Tercer Mundo. Por último, el abaratamiento de los costes de transporte ha disminuido el coste de las migraciones internacionales.La situación, aunque nueva para España, ya ha sido experimentada por otros países, en especial por los Estados Unidos, tradicional polo de atracción de movimientos migratorios. El objetivo de este artículo es presentar y analizar las estrategias generales eguidas por la agencia de inmigración norteamericana (Immigration and Naturalization Service, INS) con el propósito de aportar elementos de reflexión a los sectores de la opinión pública de nuestro país afectados por esta problemática. El pilar básico del marco legal vigente de la política migratoria norteamericana es la Immigration Reform and Control Act (IRCA), aprobada el 6 de noviembre de 1986 por el presidente Reagan, y cuyo objetivo era, y es, reducir el volumen de inmigrantes ilegales en los Estados Unidos. A continuación, presentamos la evolución histórica de la legislación norteamericana existente y explicamos cómo esta evolución ha llevado a la implementación de la IRCA. En segundo lugar, evaluamos las diversas estrategias seguidas por la agencia de inmigración norteamericana y los criterios de asignación de fondos entre estas diversas alternativas; en particular, mostramos que en los últimos años la agencia ha dado primacía a las políticas de frontera1. A continuación, demostramos que las políticas de control de frontera son menos efectivas que las de interior. Concluimos argumentando que el uso excesivo de políticas de frontera por parte del INS parece responder más al objetivo de obtener grandes presupuestos, que al de minimizar el número de inmigrantes ilegales en el país. Una vez analizada la experiencia estadounidense terminamos sugiriendo las medidas de política migratoria que a nuestro juicio maximizarían el bienestar social de un país receptor como España.

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Aquest treball de fi de carrera, com descriu el seu títol, consisteix a dissenyar i implementar un sistema de control de projectes. Com tot projecte, complirà el requisit de disposar d'un pla que permeti fer un seguiment dels terminis d'execució, de les fites establertes i un control dels lliurables identificats. Pel fet de tractar-se del desenvolupament d'un sistema informàtic, considerarà les etapes d'especificació de requisits, anàlisi, disseny, codificació, proves unitàries i proves funcionals, i es generaran els informes pertinents que serveixin de documentació i de referència en les etapes posteriors. Des d'un punt de vista tecnològic, permetrà aprofundir en el coneixement de l'estructura de funcionament del PL/SQL d'Oracle (crides a procediments i, especialment, al tractament).

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Jasmonates are ubiquitous oxylipin-derived phytohormones that are essential in the regulation of many development, growth and defence processes. Across the plant kingdom, jasmonates act as elicitors of the production of bioactive secondarymetabolites that serve in defence against attackers. Knowledge of the conserved jasmonate perception and early signalling machineries is increasing, but the downstream mechanisms that regulate defence metabolism remain largely unknown. Herewe showthat, in the legumeMedicago truncatula, jasmonate recruits the endoplasmic-reticulum-associated degradation (ERAD)quality control system tomanagethe production of triterpene saponins, widespread bioactive compounds that share a biogenic origin with sterols. An ERAD-type RING membraneanchor E3 ubiquitin ligase is co-expressed with saponin synthesis enzymes to control the activity of 3-hydroxy-3-methylglutaryl-CoA reductase (HMGR), the rate-limiting enzyme in the supply of the ubiquitous terpene precursor isopentenyl diphosphate. Thus, unrestrained bioactive saponin accumulationis prevented and plant development and integrity secured. This control apparatus is equivalent to the ERAD system that regulates sterol synthesis in yeasts and mammals but that uses distinct E3 ubiquitin ligases, of the HMGR degradation 1 (HRD1) type, to direct destruction of HMGR. Hence, the general principles for the management of sterol and triterpene saponin biosynthesis are conserved across eukaryotes but can be controlled by divergent regulatory cues.

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Carnitine palmitoyltransferase-1 (CPT-1) liver isoform or CPT-1a is implicated in CNS control of food intake. However, the exact brain nucleus site(s) in mediating this action of CPT-1a has not been identified. In this report, we assess the role of CPT-1a in hypothalamic ventromedial nucleus (VMN). We stereotaxically injected an adenoviral vector containing CPT-1a coding sequence into the VMN of rats to induce overexpression and activation of CPT-1a. The VMN-selective activation of CPT-1a induced orexigenic effect, suggesting CPT-1a in the VMN is involved in the central control of feeding. Intracerebroventricular administration of etomoxir, a CPT-1 inhibitor, decreases food intake. Importantly, in the animals with VMN-overexpression of a CPT-1a mutant that antagonizes the CPT-1 inhibition by etomoxir, the anorectic response to etomoxir was attenuated. This suggests that VMN is involved in mediating the anorectic effect of central inhibition of CPT-1a. In contrast, Arc overexpression of the mutant did not alter etomoxir-induced inhibition of food intake, suggesting that Arc CPT-1a does not play significant roles in this anorectic action. Furthermore, in the VMN, CPT-1a appears to act downstream of hypothalamic malonyl-CoA action of feeding. Finally, we show that in the VMN, CPT-1 activity altered in concert with fasting and refeeding states, supporting a physiological role of CPT-1a in mediating the control of feeding. Taking together, CPT-1a in the hypothalamic VMN appears to play an important role in the central control of food intake. VMN-selective modulation of CPT-1a activity may therefore be a promising strategy in controlling food intake and maintaining normal body weight.

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Jasmonates are ubiquitous oxylipin-derived phytohormones that are essential in the regulation of many development, growth and defence processes. Across the plant kingdom, jasmonates act as elicitors of the production of bioactive secondarymetabolites that serve in defence against attackers. Knowledge of the conserved jasmonate perception and early signalling machineries is increasing, but the downstream mechanisms that regulate defence metabolism remain largely unknown. Herewe showthat, in the legumeMedicago truncatula, jasmonate recruits the endoplasmic-reticulum-associated degradation (ERAD)quality control system tomanagethe production of triterpene saponins, widespread bioactive compounds that share a biogenic origin with sterols. An ERAD-type RING membraneanchor E3 ubiquitin ligase is co-expressed with saponin synthesis enzymes to control the activity of 3-hydroxy-3-methylglutaryl-CoA reductase (HMGR), the rate-limiting enzyme in the supply of the ubiquitous terpene precursor isopentenyl diphosphate. Thus, unrestrained bioactive saponin accumulationis prevented and plant development and integrity secured. This control apparatus is equivalent to the ERAD system that regulates sterol synthesis in yeasts and mammals but that uses distinct E3 ubiquitin ligases, of the HMGR degradation 1 (HRD1) type, to direct destruction of HMGR. Hence, the general principles for the management of sterol and triterpene saponin biosynthesis are conserved across eukaryotes but can be controlled by divergent regulatory cues.

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Jasmonates are ubiquitous oxylipin-derived phytohormones that are essential in the regulation of many development, growth and defence processes. Across the plant kingdom, jasmonates act as elicitors of the production of bioactive secondarymetabolites that serve in defence against attackers. Knowledge of the conserved jasmonate perception and early signalling machineries is increasing, but the downstream mechanisms that regulate defence metabolism remain largely unknown. Herewe showthat, in the legumeMedicago truncatula, jasmonate recruits the endoplasmic-reticulum-associated degradation (ERAD)quality control system tomanagethe production of triterpene saponins, widespread bioactive compounds that share a biogenic origin with sterols. An ERAD-type RING membraneanchor E3 ubiquitin ligase is co-expressed with saponin synthesis enzymes to control the activity of 3-hydroxy-3-methylglutaryl-CoA reductase (HMGR), the rate-limiting enzyme in the supply of the ubiquitous terpene precursor isopentenyl diphosphate. Thus, unrestrained bioactive saponin accumulationis prevented and plant development and integrity secured. This control apparatus is equivalent to the ERAD system that regulates sterol synthesis in yeasts and mammals but that uses distinct E3 ubiquitin ligases, of the HMGR degradation 1 (HRD1) type, to direct destruction of HMGR. Hence, the general principles for the management of sterol and triterpene saponin biosynthesis are conserved across eukaryotes but can be controlled by divergent regulatory cues.

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Jasmonates are ubiquitous oxylipin-derived phytohormones that are essential in the regulation of many development, growth and defence processes. Across the plant kingdom, jasmonates act as elicitors of the production of bioactive secondarymetabolites that serve in defence against attackers. Knowledge of the conserved jasmonate perception and early signalling machineries is increasing, but the downstream mechanisms that regulate defence metabolism remain largely unknown. Herewe showthat, in the legumeMedicago truncatula, jasmonate recruits the endoplasmic-reticulum-associated degradation (ERAD)quality control system tomanagethe production of triterpene saponins, widespread bioactive compounds that share a biogenic origin with sterols. An ERAD-type RING membraneanchor E3 ubiquitin ligase is co-expressed with saponin synthesis enzymes to control the activity of 3-hydroxy-3-methylglutaryl-CoA reductase (HMGR), the rate-limiting enzyme in the supply of the ubiquitous terpene precursor isopentenyl diphosphate. Thus, unrestrained bioactive saponin accumulationis prevented and plant development and integrity secured. This control apparatus is equivalent to the ERAD system that regulates sterol synthesis in yeasts and mammals but that uses distinct E3 ubiquitin ligases, of the HMGR degradation 1 (HRD1) type, to direct destruction of HMGR. Hence, the general principles for the management of sterol and triterpene saponin biosynthesis are conserved across eukaryotes but can be controlled by divergent regulatory cues.