935 resultados para ORNAMENTAL PLANTS


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A Embrapa Mandioca e Fruticultura Tropical iniciou em principios dos anos 80 um Banco de Gemoplasma tendo reunido atualmente um total de quase 700 acessos no campo, do gênero Ananas e outras bromeliáceas, sendo uma das maiores coleções de gemoplasma desse gênero no mundo, reunindo expressiva variabilidade genética intra e interespecífica. A coleção está em condições de campo e uma duplicata vem sendo introduzida na conservação in vitro desde 2003, como cópia de segurança. A variabilidade genética do gênero Ananas, no entanto, é ainda muito pouco explorada, apesar do potencial que essas plantas têm para a geração de diversos produtos. Os genótipos silvestres possuem uma diversidade de formas e cores, que chamam atenção pela beleza e exoticidade. Essas características conferem a essas plantas um grande potencial para serem usadas como planta omamental. O abacaxi já vem se destacando como fruteira omamental, representando, atualmente, o segundo produto mais exportado da floricultura do Ceará. Essa comercialização, no entanto, está pautada em apenas duas cultivares, o Ananas comosus var. erectifolius (=Lucidus) e o Ananas comosus var. bracteatus (=Ananas Porteanus).

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El mercado de plantas ornamentales tropicales ha mostrado un crecimiento expresivo y la búsqueda por novedades es constante. Actualmente hay pocas variedades de bananos ornamentales disponibles para comercialización, y en su mayoría constituyen el uso directo de especies de las secciones Rhodoclamys (M. ornata y M. velutina) y Callimusa (M. coccinea). La generación de nuevas variedades de banano ornamental para diferentes usos constituye una alternativa para satisfacer esta demanda. La Embrapa Yuca y Frutales mantiene un banco de germoplasma de Musa spp. con 290 accesiones, que contemplan variedades y especies silvestres de la sección Eumusa, con un predominio de M. acuminata y M. balbisiana, con diferentes grados de ploidia y combinaciones de los genomas A y B. La colección también alberga representantes de las secciones Rhodochlamys y Callimusa. Tradicionalmente el uso de este germoplasma estaba direccionado sólo a la producción de cultivares para la alimentación, y ha generado varios cultivares productivos, con frutos de buena calidad y resistentes al mal de Panamá, Sigatoka amarilla y Sigatoka negra.

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R. Zwiggelaar, 'A review of spectral properties of plants and their potential use for crop/weed discrimination in row-crops', Crop Protection 17 (3), 189-206 (1998)

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The concentrations of 12 pharmaceutical compounds (atenolol, erythromycin, cyclophosphamide, paracetamol, bezafibrate, carbamazepine, ciprofloxacin, caffeine, clarithromycin, lidocaine, sulfamethoxazole and Nacetylsulfamethoxazol (NACS)) were investigated in the influents and effluents of two hospital wastewater treatment plants (HWWTPs) in Saudi Arabia. The majority of the target analytes were detected in the influent samples apart from bezafibrate, cyclophosphamide, and erythromycin. Caffeine and paracetamol were detected in the influent at particularly high concentrations up to 75 and 12 ug/L, respectively. High removal efficiencies of the pharmaceutical compounds were observed in both HWWTPs, with greater than 90 % removal on average. Paracetamol, sulfamethoxazole, NACS, ciprofloxacin, and caffeine were eliminated by between >95 and >99 % on average. Atenolol, carbamazepine, and clarithromycin were eliminated by >86 % on average. Of particular interest were the high removal efficiencies of carbamazepine and antibiotics that were achieved by the HWWTPs; these compounds have been reported to be relatively recalcitrant to biological treatment and are generally only partially removed. Elevated temperatures and high levels of sunlight were considered to be the main factors that enhanced the removal of these compounds.

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A set of 13 US based experts in post-combustion and oxy-fuel combustion CO2 capture systems responded to an extensive questionnaire asking their views on the present status and future expected performance and costs for amine-based, chilled ammonia, and oxy-combustion retrofits of coal-fired power plants. This paper presents the experts' responses for technology maturity, ideal plant characteristics for early adopters, and the extent to which R&D and deployment incentives will impact costs. It also presents the best estimates and 95% confidence limits of the energy penalties associated with amine-based systems. The results show a general consensus that amine-based systems are closer to commercial application, but potential for improving performance and lowering costs is limited; chilled ammonia and oxy-combustion offer greater potential for cost reductions, but not without greater uncertainty regarding scale and technical feasibility. © 2011 Elsevier Ltd.

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Plants exhibit different developmental strategies than animals; these are characterized by a tight linkage between environmental conditions and development. As plants have neither specialized sensory organs nor a nervous system, intercellular regulators are essential for their development. Recently, major advances have been made in understanding how intercellular regulation is achieved in plants on a molecular level. Plants use a variety of molecules for intercellular regulation: hormones are used as systemic signals that are interpreted at the individual-cell level; receptor peptide-ligand systems regulate local homeostasis; moving transcriptional regulators act in a switch-like manner over small and large distances. Together, these mechanisms coherently coordinate developmental decisions with resource allocation and growth.

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PREMISE OF THE STUDY: We investigated the origins of 252 Southern Appalachian woody species representing 158 clades to analyze larger patterns of biogeographic connectivity around the northern hemisphere. We tested biogeographic hypotheses regarding the timing of species disjunctions to eastern Asia and among areas of North America. METHODS: We delimited species into biogeographically informative clades, compiled sister-area data, and generated graphic representations of area connections across clades. We calculated taxon diversity within clades and plotted divergence times. KEY RESULTS: Of the total taxon diversity, 45% were distributed among 25 North American endemic clades. Sister taxa within eastern North America and eastern Asia were proportionally equal in frequency, accounting for over 50% of the sister-area connections. At increasing phylogenetic depth, connections to the Old World dominated. Divergence times for 65 clades with intercontinental disjunctions were continuous, whereas 11 intracontinental disjunctions to western North America and nine to eastern Mexico were temporally congruent. CONCLUSIONS: Over one third of the clades have likely undergone speciation within the region of eastern North America. The biogeographic pattern for the region is asymmetric, consisting of mostly mixed-aged, low-diversity clades connecting to the Old World, and a minority of New World clades. Divergence time data suggest that climate change in the Late Miocene to Early Pliocene generated disjunct patterns within North America. Continuous splitting times during the last 45 million years support the hypothesis that widespread distributions formed repeatedly during favorable periods, with serial cooling trends producing pseudocongruent area disjunctions between eastern North America and eastern Asia.

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Phytochromes are red/far-red photoreceptors that play essential roles in diverse plant morphogenetic and physiological responses to light. Despite their functional significance, phytochrome diversity and evolution across photosynthetic eukaryotes remain poorly understood. Using newly available transcriptomic and genomic data we show that canonical plant phytochromes originated in a common ancestor of streptophytes (charophyte algae and land plants). Phytochromes in charophyte algae are structurally diverse, including canonical and non-canonical forms, whereas in land plants, phytochrome structure is highly conserved. Liverworts, hornworts and Selaginella apparently possess a single phytochrome, whereas independent gene duplications occurred within mosses, lycopods, ferns and seed plants, leading to diverse phytochrome families in these clades. Surprisingly, the phytochrome portions of algal and land plant neochromes, a chimera of phytochrome and phototropin, appear to share a common origin. Our results reveal novel phytochrome clades and establish the basis for understanding phytochrome functional evolution in land plants and their algal relatives.

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This report examines the credibility of the claim by the UK government that nuclear power plants can be built in the UK without public subsidies and guarantees

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