985 resultados para Antibióticos - Biotecnologia


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The objective of this work was to evaluate 210 Bacillus thuringiensis strains against Aedes aegypti and Culex quinquefasciatus larvae to select the most effective. These strains were isolated from different regions of Brazil and are stored in a Bacillus spp. collection at Embrapa Recursos Genéticos e Biotecnologia, Brasília, Brazil. The selected strains were characterized by morphological (microscopy), biochemical (SDS-PAGE 10%) and molecular (PCR) methods. Six B. thuringiensis strains were identified as mosquito-toxic after the selective bioassays. None of the strains produced the expected PCR products for detection of cry4, cry11 and cyt1A genes. These results indicate that the activity of mosquitocidal Brazilian strains are not related with Cry4, Cry11 or Cyt proteins, so they could be used as an alternative bioinsecticide against mosquitoes.

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Dicyma pulvinata é um eficiente agente de biocontrole de Microcyclus ulei, causador do mal-das-folhas da seringueira. O objetivo deste trabalho foi obter isolados com grande potencial antagônico. Em levantamentos realizados em 14 municípios produtores de borracha, localizados nos Estados do Acre, Amazonas, Bahia, Mato Grosso, Pará e Rondônia, obtiveram-se 52 isolados de D. pulvinata. O fungo antagônico, isolado diretamente em meio de cultura de batata-dextrose-ágar (BDA), foi identificado com base na morfologia dos conídios e conidióforos e preservado pelos métodos da liofilização, congelamento à temperatura de -80ºC e criopreservação em nitrogênio líquido, a fim de manter as características morfológicas e patogênicas dos isolados. O efeito antagônico foi testado por meio de inoculações de D. pulvinata em lesões de Fusicladium macrosporum induzidas em plantas de seringueira previamente infectadas. Todos os isolados foram incorporados à coleção de fungos da Embrapa Recursos Genéticos e Biotecnologia.

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Postprint (published version)

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O objetivo deste trabalho foi identificar híbridos, oriundos de hibridações controladas entre 'Folha Murcha' x 'Ponkan' e testá-los quanto à resistência a Alternaria alternata f. sp. citri. As plântulas foram obtidas via cultura in vitro de embriões. Utilizou-se o marcador molecular fAFLP para identificação dos híbridos e, em seguida, realizou-se o teste de patogenicidade nos híbridos com isolados de Alternaria alternata f. sp. citri, em condições de laboratório. Os pares de primers EcoRI AAG - MseI CAG e EcoRI ACC - MseI CAA foram os mais eficientes na identificação dos híbridos, os quais identificaram 48,5% de híbridos. Os híbridos F64, F108, F111, F113, F131 e F139 são potencialmente resistentes a Alternaria alternata f. sp. citri.

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Lipases have received great attention as industrial biocatalysts in areas like oils and fats processing, detergents, baking, cheese making, surface cleaning, or fine chemistry . They can catalyse reactions of insoluble substrates at the lipid-water interface, preserving their catalytic activity in organic solvents. This makes of lipases powerful tools for catalysing not only hydrolysis, but also various reverse reactions such as esterification, transesterification, aminolysis, or thiotransesterifications in anhydrous organic solvents. Moreover, lipases catalyse reactions with high specificity, regio and enantioselectivity, becoming the most used enzymes in synthetic organic chemistry. Therefore, they display important advantages over classical catalysts, as they can catalyse reactions with reduced side products, lowered waste treatment costs, and under mild temperature and pressure conditions. Accordingly, the use of lipases holds a great promise for green and economical process chemistry.

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Background Enzymatic biodiesel is becoming an increasingly popular topic in bioenergy literature because of its potential to overcome the problems posed by chemical processes. However, the high cost of the enzymatic process still remains the main drawback for its industrial application, mostly because of the high price of refined oils. Unfortunately, low cost substrates, such as crude soybean oil, often release a product that hardly accomplishes the final required biodiesel specifications and need an additional pretreatment for gums removal. In order to reduce costs and to make the enzymatic process more efficient, we developed an innovative system for enzymatic biodiesel production involving a combination of a lipase and two phospholipases. This allows performing the enzymatic degumming and transesterification in a single step, using crude soybean oil as feedstock, and converting part of the phospholipids into biodiesel. Since the two processes have never been studied together, an accurate analysis of the different reaction components and conditions was carried out. Results Crude soybean oil, used as low cost feedstock, is characterized by a high content of phospholipids (900 ppm of phosphorus). However, after the combined activity of different phospholipases and liquid lipase Callera Trans L, a complete transformation into fatty acid methyl esters (FAMEs >95%) and a good reduction of phosphorus (P <5 ppm) was achieved. The combination of enzymes allowed avoidance of the acid treatment required for gums removal, the consequent caustic neutralization, and the high temperature commonly used in degumming systems, making the overall process more eco-friendly and with higher yield. Once the conditions were established, the process was also tested with different vegetable oils with variable phosphorus contents. Conclusions Use of liquid lipase Callera Trans L in biodiesel production can provide numerous and sustainable benefits. Besides reducing the costs derived from enzyme immobilization, the lipase can be used in combination with other enzymes such as phospholipases for gums removal, thus allowing the use of much cheaper, non-refined oils. The possibility to perform degumming and transesterification in a single tank involves a great efficiency increase in the new era of enzymatic biodiesel production at industrial scale.

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The repetitive DNA sequences found at telomeres and centromeres play a crucial role in the structure and function of eukaryotic chromosomes. This role may be related to the tendency observed in many repetitive DNAs to adopt non-canonical structures. Although there is an increasing recognition of the importance of DNA quadruplexes in chromosome biology, the co-existence of different quadruplex-forming elements in the same DNA structure is still a matter of debate. Here we report the structural study of the oligonucleotide d(TCGTTTCGT) and its cyclic analog d. Both sequences form dimeric quadruplex structures consisting of a minimal i-motif capped, at both ends, by a slipped minor groove-aligned G:T:G:T tetrad. These mini i-motifs, which do not exhibit the characteristic CD spectra of other i-motif structures, can be observed at neutral pH, although they are more stable under acidic conditions. This finding is particularly relevant since these oligonucleotide sequences do not contain contiguous cytosines. Importantly, these structures resemble the loop moiety adopted by an 11-nucleotide fragment of the conserved centromeric protein B (CENP-B) box motif, which is the binding site for the CENP-B.

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The repetitive DNA sequences found at telomeres and centromeres play a crucial role in the structure and function of eukaryotic chromosomes. This role may be related to the tendency observed in many repetitive DNAs to adopt non-canonical structures. Although there is an increasing recognition of the importance of DNA quadruplexes in chromosome biology, the co-existence of different quadruplex-forming elements in the same DNA structure is still a matter of debate. Here we report the structural study of the oligonucleotide d(TCGTTTCGT) and its cyclic analog d. Both sequences form dimeric quadruplex structures consisting of a minimal i-motif capped, at both ends, by a slipped minor groove-aligned G:T:G:T tetrad. These mini i-motifs, which do not exhibit the characteristic CD spectra of other i-motif structures, can be observed at neutral pH, although they are more stable under acidic conditions. This finding is particularly relevant since these oligonucleotide sequences do not contain contiguous cytosines. Importantly, these structures resemble the loop moiety adopted by an 11-nucleotide fragment of the conserved centromeric protein B (CENP-B) box motif, which is the binding site for the CENP-B.

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O objetivo deste trabalho foi avaliar as respostas morfofisiológicas de ápices caulinares de diploides de Musa acuminata submetidos à poliploidização in vitro. Foram avaliados os antimitóticos colchicina (0, 1,25, 2,5, 3,75 e 5 mmol L-1) e orizalina (0, 15, 22,5 e 30 µmol L-1), e dois tempos de poliploidização: 24 e 48 horas para colchicina, e 3 e 7 dias para orizalina. A aplicação de colchicina reduziu significativamente a sobrevivência e o número médio de brotos dos ápices. A orizalina teve um leve efeito negativo na sobrevivência dos ápices caulinares e influenciou positivamente o número médio de brotos por explante. Observou-se alta mortalidade e níveis acentuados de oxidação dos explantes primários tratados e regenerados, com ambos os antimitóticos. No entanto, a capacidade morfogenética dos explantes foi restabelecida após sucessivos subcultivos em meio fresco, e as brotações produzidas foram alongadas/enraizadas e aclimatizadas com sucesso. O uso de colchicina, nas concentrações de 1,25 e 3,75 mmol L-1, e de orizalina representam abordagens viáveis e práticas para programas de melhoramento da bananeira. Os efeitos morfofisiológicos observados in vitro são importantes para definir estratégias de indução de poliploidia em bananeira.

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O objetivo deste trabalho foi selecionar e caracterizar estirpes nativas de Bacillus thuringiensis tóxicas a Diatraea saccharalis (Lepidoptera: Crambidae). Cento e seis estirpes pertencentes ao Banco de Bactérias de Invertebrados, da Embrapa Recursos Genéticos e Biotecnologia, foram testadas quanto à toxicidade a D. saccharalis, e, as mais tóxicas, caracterizadas por métodos bioquímicos e moleculares. Das 106 estirpes testadas, 16 causaram 100% de mortalidade em 24 horas. As três estirpes mais tóxicas apresentaram concentração letal média entre 8 e 43 ng cm-2. O perfil proteico das 16 estirpes mostrou a presença de proteínas de 130 e 65 kDa, e a caracterização molecular mostrou a presença dos genes tipo cry1 e cry2: cry1Aa, cry1Ab, cry1Ac e cry2Aa. A concentração letal média de esporos e cristais obtidos a partir de estirpes recombinantes, que expressavam individualmente os genes cry1Aa, cry1Ab, cry1Ac e cry2Aa, variou entre 222 e 610 ng cm-2, valores muito superiores aos das estirpes nativas mais tóxicas, que apresentavam possibilidade de expressão simultânea desses genes. Este resultado é indicativo de que há sinergia entre as toxinas. Há interação entre as toxinas de B. thuringiensis e seus receptores na broca-do-colmo da cana-de-açúcar.

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Peer reviewed