802 resultados para Brassica-juncea
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The aim of this study was to assess the effects of inoculation of rhizosphere or endophytic bacteria (Psychrobacter sp. SRS8 and Pseudomonas sp. A3R3, respectively) isolated from a serpentine environment on the plant growth and the translocation and accumulation of Ni, Zn, and Fe by Brassica juncea and Ricinus communis on a multi-metal polluted serpentine soil (SS). Field collected SS was diluted to 0, 25, 50, and 75% with pristine soil in order to obtain a range of heavy metal concentrations and used in microcosm experiments. Regardless of inoculation with bacteria, the biomass of both plant species decreased with increase of the proportion of SS. Inoculation of plants with bacteria significantly increased the plant biomass and the heavy metal accumulation compared with non-inoculated control in the presence of different proportion of SS, which was attributed to the production of plant growth promoting and/or metal mobilizing metabolites by bacteria. However, SRS8 showed a maximum increase in the biomass of the test plants grown even in the treatment of 75% SS. In turn, A3R3 showed maximum effects on the accumulation of heavy metals in both plants. Regardless of inoculation of bacteria and proportion of SS, both plant species exhibited low values of bioconcentration factor (<1) for Ni and Fe. The inoculation of both bacterial strains significantly increased the translocation factor (TF) of Ni while decreasing the TF of Zn in both plant species. Besides this contrasting effect, the TFs of all metals were <1, indicating that all studied bacteria–plant combinations are suitable for phytostabilization. This study demonstrates that the bacterial isolates A3R3 and SRS8 improved the growth of B. juncea and R. communis in SS soils and have a great potential to be used as inoculants in phytostabilization scenarios of multi-metal contaminated soils.
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Atividades humanas como mineração, siderurgia e aplicação de fertilizantes tornam a poluição por metais sério problema ambiental na atualidade. A fitorremediação - uso de plantas e da microbiota, associada ou não a adições de amenizantes de solo, para extrair, seqüestrar e, ou, reduzir a toxicidade dos poluentes - tem sido descrita como uma tecnologia efetiva, não-destrutiva, econômica e socialmente aceita para remediar solos poluídos. O objetivo deste trabalho foi avaliar a eficiência da mostarda na remoção de Zn, Cu, Mn, Pb e B de um solo contaminado e o efeito da adição de materiais orgânicos na redução da disponibilidade de metais pesados e B para essa planta. O trabalho foi realizado em casa de vegetação, com delineamento inteiramente casualizado em esquema fatorial 3 x 5 com quatro repetições, utilizando 0, 7, 14, 21 e 28 g kg-1 de C no solo. Os materiais orgânicos utilizados foram: solomax, turfa e concentrado húmico mineral (CHM). A adição de turfa e concentrado húmico mineral reduziu os teores de Zn, Cu, Pb e B extraíveis do solo e na parte aérea da mostarda; contudo, essa redução não foi suficiente para impedir os efeitos fitotóxicos dos elementos. A adição dos materiais orgânicos promoveu aumento nos teores de Mn no solo, entretanto apenas o solomax proporcionou aumento na concentração do elemento na parte aérea das plantas. Os efeitos da turfa e do CHM sobre a disponibilidade de Zn, Cu, Mn, Pb e B no solo, a concentração na parte aérea e o crescimento das plantas indicaram o potencial desses materiais como agentes amenizantes de toxicidade e do solomax como auxiliar em programas de fitoextração induzida.
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Tesis (Maestría en Ciencias con Orientación en Procesos Sustentables) UANL, 2010.
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This study investigates the effects of temperature and pressure on inactivation of myrosinase extracted from black, brown and yellow mustard seeds. Brown mustard had higher myrosinase activity (2.75 un/mL) than black (1.50 un/mL) and yellow mustard (0.63 un/mL). The extent of enzyme inactivation increased with pressure (600-800 MPa) and temperature (30-70 °C) for all the mustard seeds. However, at combinations of lower pressures (200-400 MPa) and high temperatures (60-80 °C), there was less inactivation. For example, application of 300 MPa and 70 °C for 10 minutes retained 20%, 80% and 65% activity in yellow, black and brown mustard, respectively, whereas the corresponding activity retentions when applying only heat (70 °C, 10min) were 0%, 59% and 35%. Thus, application of moderate pressures (200-400 MPa) can potentially be used to retain myrosinase activity needed for subsequent glucosinolate hydrolysis.
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Twelve ileal cannulated pigs (30.9 ± 2.7 kg) were used to determine the apparent (AID) and standardized (SID) ileal digestibility of protein and AA in canola meals (CM) derived from black- (BNB) and yellow-seeded (BNY) Brassica napus canola and yellow-seeded Brassica juncea (BJY). The meals were produced using either the conventional pre-press solvent extraction process (regular meal) or a new, vacuum-assisted cold process of meal de-solventization (white flakes) to provide 6 different meals. Six cornstarch-based diets containing 35% canola meal as the sole source of protein in a 3 (variety) × 2 (processing) factorial arrangement were randomly allotted to pigs in a 6 × 7 incomplete Latin square design to have 6 replicates per diet. A 5% casein diet was fed to estimate endogenous AA losses. Canola variety and processing method interacted for the AID of DM (P = 0.048), N (P = 0.010), and all AA (P < 0.05), except for Arg, Lys, Phe, Asp, Glu, and Pro. Canola variety affected or tended to affect the AID of most AA but had no effect on the AID of Lys, Met, Val, Cys, and Pro, whereas processing method had an effect on only Lys and Asp and tended to affect the AID of Thr, Gly and Ser. The effects of canola variety, processing method, and their interaction on the SID values for N and AA followed a similar pattern as for AID values. For the white flakes, SID of N in BJY (74.2%) was lower than in BNY and BNB, whose values averaged 78.5%; however, among the regular meals, BJY had a greater SID value for N than BNY and BNB (variety × processing, P = 0.015). For the white flakes, the SID of Ile (86.4%), Leu (87.6%), Lys (88.9%), Thr (87.6%) and Val (84.2%) in BNB were greater than BNY and BJY. Opposite results were observed for the regular processing, with SID of Lys (84.1%), Met (89.5%), Thr (84.1%), and Val (83.6%) being greater in BJY, followed by BNB and BNY(variety × processing, P < 0.057). The SID of Met was greatest for the white flakes (90.2%) but least for the regular processing (83.0%) in BNY (variety × processing, P < 0.057). It was concluded that the AID and SID of N and AA of the CM tested varied according to canola variety and the processing method used. Overall, the SID values for Ile, Leu, Lys, Met, Thr, and Val averaged across CM types and processing methods were 81.8, 82.6, 83.4, 85.9, 80.8, and 78.4%, respectively.
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Los objetivos de este trabajo fueron: determinar la factibilidad de la utilización combinada de dos métodos de control biológico: la aplicación del hongo antagonista Trichoderma spp. y la biofumigación con la parte aérea de Brassica juncea en el estadio de fin de fructificación; evaluar su efecto sobre el crecimiento del patógeno Fusarium graminearum. Se trituraron plantas de B. juncea y se colocaron en recipientes de plástico en dosis de 5 y 10 g. Sobre el material triturado se apoyó una caja de Petri con agar papa glucosado al 2%, que contenía un disco con micelio de F. graminearum o Trichoderma spp. o ambos hongos. Los recipientes de plástico se cerraron e incubaron a 25±2°C en oscuridad durante 7 días. Finalizado este período, se midió el diámetro de las colonias. Se obtuvieron los siguientes resultados: i) cuando se biofumigaron por separado, no se observó efecto fungistático de B. juncea sobre Trichoderma spp. ni sobre F. graminearum; ii) en ausencia del biofumigante, Trichoderma spp. inhibió significativamente el crecimiento de las colonias de F. graminearum, iii) la combinación de Trichoderma spp. y la biofumigación con B. juncea mostró un efecto sinérgico sobre el control del crecimiento miceliar de F. graminearum. Los resultados in vitro sugieren que el crecimiento de Trichoderma spp. y su potencial efecto de biocontrol sobre F. graminearum, no son afectados por la biofumigación con B. juncea. La utilización combinada de Trichoderma spp. y la biofumigación con B. juncea, tendría un efecto sinérgico sobre el control del crecimiento de F. graminearum.
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Background and aims The high metal bioavailability and the poor conditions of mine soils yield a low plant biomass, limiting the application of phytoremediation techniques. A greenhouse experiment was performed to evaluate the effects of organic amendments on metal stabilization and the potential of Brassica juncea L. for phytostabilization in mine soils. Methods Plants were grown in pots filled with soils collected from two mine sites located in Central Spain mixed with 0, 30 and 60 tha?1 of pine bark compost and horse- and sheep-manure compost. Plant biomass and metal concentrations in roots and shoots were measured. Metal bioavailability was assessed using a rhizosphere-based method (rhizo), which consists of a mixture of low-molecular-weight organic acids to simulate root exudates. Results Manure reduced metal concentrations in shoots (10?50 % reduction of Cu and 40?80 % of Zn in comparison with non-amended soils), bioconcentration factor (10?50 % of Cu and 40?80 % of Zn) and metal bioavailability in soil (40?50 % of Cu and 10?30 % of Zn) due to the high pH and the contribution of organic matter. Manure improved soil fertility and was also able to increase plant biomass (5?20 times in shoots and 3?30 times in roots), which resulted in a greater amount of metals removed from soil and accumulated in roots (increase of 2?7 times of Cu and Zn). Plants grown in pine bark treatments and in non-amended soils showed a limited biomass and high metal concentrations in shoots. Conclusions The addition of manure could be effective for the stabilization of metals and for enhancing the phytostabilization ability of B. juncea in mine soils. In this study, this species resulted to be a potential candidate for phytostabilization in combination with manure, differing from previous results, in which B. juncea had been recognized as a phytoextraction plant.
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The goal of this thesis was to study factors related to the development of Brassica juncea as a sustainable nematicide. Brassica juncea is characterized by the glycoside (glucosinolate) sinigrin. Various methods were developed for the determination of sinigrin in Brassica juncea tissue extracts. Sinigrin concentrations in plant tissues at various stages of growth were monitored. Sinigrin enzymatically breaks down into allylisothiocyanate (AITC). AITC is unstable in aqueous solution and degradation was studied in water and in soil. Finally, the toxicity of AITC against the root-lesion nematode (Pratylenchus penetrans) was determined. A method was developed to extract sinigrin from whole Brassica j uncea tissues. The optimal time of extraction wi th boiling phosphate buffer (0.7mM, pH=6.38) and methanol/water (70:30 v/v) solutions were both 25 minutes. Methanol/water extracted 13% greater amount of sinigrin than phosphate buffer solution. Degradation of sinigrin in boiling phosphate buffer solution (0.13%/minute) was similar to the loss of sinigrin during the extraction procedure. The loss of sinigrin from boiling methanol/water was estimated to be O.Ol%/minute. Brassica juncea extract clean up was accomplished by an ion-pair solid phase extraction (SPE) method. The recovery of sinigrin was 92.6% and coextractive impurities were not detected in the cleaned up extract. Several high performance liquid chromatography (HPLC) methods were developed for the determination of sinigrin. All the developed methods employed an isocratic mobile phase system wi th a low concentration of phosphate buffer solution, ammonium acetate solution or an ion-pair reagent solution. A step gradient system was also developed. The method involved preconditioning the analytical column with phosphate buffer solution and then switching the mobile phase to 100% water after sample injection.Sinigrin and benzyl-glucosinolate were both studied by HPLC particle beam negative chemical ionization mass spectrometry (HPLCPB- NCI-MS). Comparison of the mass spectra revealed the presence of fragments arising from the ~hioglucose moiety and glucosinolate side-chain. Variation in the slnlgrin concentration within Brassica juncea plants was studied (Domo and Cutlass cuItivars). The sinigrin concentration in the top three leaves was studied during growth of each cultivar. For Cutlass, the minimum (200~100~g/g) and maximum (1300~200~g/g) concentrations were observed at the third and seventh week after planting, respectively. For Domo, the minimum (190~70~g/g) and maximum (1100~400~g/g) concentrations were observed at the fourth and eighth week after planting, respectively. The highest sinigrin concentration was observed in flower tissues 2050±90~g/g and 2300±100~g/g for Cutlass and Domo cultivars, respectively. Physical properties of AITC were studied. The solubility of AITC in water was determined to be approximately 1290~g/ml at 24°C. An HPLC method was developed for the separation of degradation compounds from aqueous AITC sample solutions. Some of the degradation compounds identified have not been reported in the literature: allyl-thiourea, allyl-thiocyanate and diallyl-sulfide. In water, AITC degradation to' diallyl-thiourea was favored at basic pH (9.07) and degradation to diallyl-sulfide was favored at acidic pH (4 . 97). It wap necessary to amend the aqueous AITC sample solution with acetonitrile ?efore injection into the HPLC system. The acetonitrile amendment considerably improved AITC recovery and the reproducibility of the results. The half-life of aqueous AITC degradation at room temperature did not follow first-order kinetics. Beginning with a 1084~g/ml solution, the half-life was 633 hours. Wi th an ini tial AITC concentration of 335~g/ml the half-life was 865 hours. At 35°C the half-life AITC was 76+4 hours essentially independent of the iiisolution pH over the range of pH=4.97 to 9.07 (1000~g/ml). AITC degradation was also studied in soil at 35°C; after 24 hours approximately 75% of the initial AITC addition was unrecoverable by water extraction. The ECso of aqueous AITC against the root-lesion nematode (Pratylenchus penetrans) was determined to be approximately 20~g/ml at one hour exposure of the nematode to the test solution. The toxicological study was also performed with a myrosinase treated Brassica juncea extract. Myrosinase treatment of the Brassica juncea extract gave nearly quantitative conversion of sinigrin into AITC. The myrosinase treated extract was of the same efficacy as an aqueous AITC solution of equivalent concentration. The work of this thesis was focused upon understanding parameters relevant to the development of Brassica juncea as a sustainable nematicide. The broad range of experiments were undertaken in support of a research priority at Agriculture and Agri-Food Canada.
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Copper contaminated areas pose environmental health risk to living organisms. Remediation processes are thus required for both crop production and industrial activities. This study employed bioaugmentation with copper resistant bacteria to improve phytoremediation of vineyard soils and copper mining waste contaminated with high copper concentrations. Oatmeal plant (Avena sativa L) was used for copper phytoextraction. Three copper resistant bacterial isolates from oatmeal rhizosphere (Pseudomonas putida A1 Stenotrophomonas maltophilia A2 and Acinetobacter calcoaceticus A6) were used for the stimulation of copper phytoextraction. Two long-term copper contaminated vineyard soils (Mollisol and Inceptisol) and copper mining waste from Southern Brazil were evaluated. Oatmeal plants substantially extracted copper from vineyard soils and copper mining waste. As much as 1549 mg of Cu kg(-1) dry mass was extracted from plants grown in Inceptisol soil. The vineyard Mollisol copper uptake (55 mg Cu kg(-1) of dry mass) in the shoots was significantly improved upon inoculation of oatmeal plants with isolate A2 (128 mg of Cu kg(-1) of shoot dry mass). Overall oatmeal plant biomass displayed higher potential of copper phytoextraction with inoculation of rhizosphere bacteria in vineyard soil to the extent that 404 and 327 g ha(-1) of copper removal were respectively observed in vineyard Mollisol bioaugmented with isolate A2 (S. maltophilia) and isolate A6 (A. calcoaceticus). Results suggest potential application of bacterial stimulation of phytoaccumulation of copper for biological removal of copper from contaminated areas. (C) 2010 Elsevier Ltd. All rights reserved.
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Experiments involving 14 accessions of Panicum miliaceum L. (Proso millet) and 11 accessions of Setaria italica L. (Foxtail millet) have demonstrated variability in the degree of osmoregulative capacity among these accessions. Birdseed millet is generally claimed to be sensitive to drought stress, apparently because of a shallow root system. Accessions with high osmoregulative capacity demonstrate at least some drought tolerance. Osmoregulative capacity was measured on flag leaves of headed millet plants in pots undergoing water stress in a controlled environment chamber. Osmoregulative capacity was determined from the relationship between osmotic potential and leaf water potential; and the logarithmic relationship between osmotic potential and relative water content. The group of accessions of S. italica showed an overall level of osmoregulative capacity which was greater than that observed for the group of P. miliaceum accessions. Four accessions of S. italica (108042, 108463, 108541 and 108564) and one accession of P. miliaceum (108104) demonstrated high osmoregulative capacity. Differences of 1.05 MPa or more between observed and estimated osmotic potential were found at relative water contents of 80 % among these accessions. The extent of osmoregulative capacity was associated with osmotic potential at full turgor and the rate of decline in osmotic potential as leaf water potentail declined.
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This paper deals with anatomical descriptions of some types of nectaries in 27 species of honey plants of Piracicaba, S. P. The material studied was divides in two groups: a) Extra-floral nectaries; b) Floral nectaries. Euphorbia pulcherrima, Willd; showed to belonging to the first group: its nectaries tissue consist of an epidermal layer of cell without stomata and with true gland, with subepidermal cells diferentiated by the thickness of the wall. Among the plants with floral nectaries, the following types has been listed, according the location of the nectary in the flower: 1 - with true glands: a) in sepals, Hibiscus rosa sinensis, L.; Dombeya Wallichii, Bth. e Hk; b) in the stamens tube, Antigonum leptopus, Hook e Arn.; 2 - on the receptacle with nectariferous tissue in the epidermal cell with: a) thickness wall with stomata, Prunus persical, L.; b) thin wall without stomata, Crotalaria paulinia, Shranck; Caesal-pinia sepiaria, Roxb; Aberia caffra; 3 - with a disc located in the receptacle with: epidermal: a) with stomata, Coffea arábica, L. var. semper florens; Citrus aurantifolia, Swing; Cinchona sp.; Pryrostegia ignea, Presl.; b) without stomata and with thin wall, Leojurus sibiricus, L.; Bactocydia unguis, Mart., Ipomoea purpurea, L.; Greviüea Thelemanniana, Hueg.; Dolichos lablab, L.; Vernonia polyanthes, Less., Montanoa bipinatifida, C. Koch., Eruca sativa, L. Brassica Juncea, Co; Eucalyptus tereticomis, Smith.; Eucalyptus rostrata, Schleche; Salvia splendens, Selow.; 4 - in the basal tissues of the ovary, Budleia brasiliensis, Jacq F.; Petrea subserrata, Cham.; 5 - in the base of stamens, Per sea americana, Mill. On the anatomical point of view, most of the types of nectary studied has external nectariferous tissues, located on the epidermal cells with thin periclinal wall and without stomata. The sub-epidermal layer were rich in sugar. Short correlation was found between the structure of the nectary and the amount of nectar secretion. So, in the nectary with true glands, in those with thin wall and without stomata on epidermal cells and in those with stomata, the secretion was higher than in the other types listed.
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O objetivo deste trabalho foi avaliar a dinâmica floral e determinar o índice de abortamento de flores de híbridos de canola (Brassica napus) e de mostarda castanha (Brassica juncea), bem como determinar suas relações com as condições meteorológicas do Sul do Brasil. Durante a floração, dez híbridos de canola e dois de mostarda foram avaliados a cada três dias quanto ao número de flores abertas, de síliquas e de flores abortadas. O número acumulado e relativo de flores foi usado para avaliação da dinâmica floral. A relação desses números com a soma térmica acumulada durante a floração foi determinada por meio de modelo logístico. A partir dos coeficientes desse modelo, identificaram-se grupos de genótipos com diferentes taxas de emissão de flores. O abortamento de flores entre híbridos variou de 10,53 a 45,96% e correlacionou-se com a temperatura e a demanda evaporativa da atmosfera. Genótipos com maiores tempos térmicos entre o período de máxima emissão de flores e o final da floração geralmente apresentam maiores percentagens de abortamento de flores. O ajuste dos dados de emissão de flores aos de soma térmica do período da floração, por meio de modelo logístico, permite simular a dinâmica floral de híbridos de canola e mostarda castanha.
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O objetivo deste trabalho foi determinar o número de folhas e o filocrono de genótipos de canola, em resposta a variações térmicas associadas com datas de semeadura. Foram realizados dois experimentos, em delineamento de blocos ao acaso, com arranjo fatorial de genótipos por datas de semeadura (5x2, em 2009, e 2x3 em 2010) e quatro repetições. O número de folhas do caule principal e do primeiro ramo foi determinado três vezes por semana. O filocrono foi estimado pelo inverso do coeficiente angular entre a soma térmica e o número de folhas, para os subperíodos da roseta e do alongamento do caule. O número de folhas no caule variou de 11,5 a 16,4; nos ramos, este número foi, em média, 70% menor. O número de folhas no caule foi maior em semeaduras precoces, e o inverso ocorreu no ramo. O filocrono foi maior no subperíodo da roseta e variou entre 21,4 e 52,9 graus-dia por folha conforme o genótipo e a data de semeadura. Semeaduras tardias aumentaram o filocrono. Genótipos de ciclo precoce apresentam número de folhas e filocrono menores que genótipos de ciclo médio ou longo, e a variabilidade entre os genótipos acentua-se em semeaduras tardias.
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Lodos gerados em Estações de Tratamento de Efluentes de fábricas de celulose kraft branqueada podem conter metais pesados e compostos organoclorados mesmo para fábricas que possuam sequências de branqueamento ECF (livres de cloro elementar), devido à presença de dióxido de cloro. Neste trabalho, buscou-se avaliar o potencial de absorção de metais pesados e compostos organoclorados (PCDD e PCDF) por Brassica juncea, utilizando como substrato o composto orgânico constituído por lodo biológico de uma Estação de Tratamento de Efluentes por lodos ativados misturado com cascas de eucalipto de uma fábrica de celulose brasileira. As plantas de Brassica juncea foram cultivadas em vasos de 0,63 dm³ em casa de vegetação, durante 73 dias. Os seguintes parâmetros foram monitorados no substrato e nas plantas: Fe, Mn, Pb, Ni, Cu, Zn, Cr, Cl-, carbono orgânico total e AOX (compostos organo-halogenados adsorvíveis). Os níveis de metais pesados presentes no solo após a aplicação do composto ficaram dentro de faixas permissíveis da legislação brasileira para aplicação de composto orgânico para uso agrícola. Traços de PCDD e PCDF foram encontrados no substrato em concentrações menores do que 0,5 ng I-TEQ/kg (ppt). Tais valores ficaram abaixo de 17 ng I-TEQ/kg, considerado o limite mais exigente de qualidade de compostos adotados na Alemanha e no Canadá.
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O composto diclorofenoxiacetato (2,4-D) foi o primeiro herbicida orgânico, sistêmico, seletivo e de aplicação em pós-emergência desenvolvido no mundo. Juntamente com a revolução verde, ele contribuiu para elevar a produção dos cereais nas décadas posteriores a 1950. Esse produto é uma auxina sintética que pode ser utilizada como regulador do crescimento vegetal ou, ainda, como herbicida para o controle de espécies daninhas dicotiledôneas. Várias espécies infestantes dicotiledôneas que apresentam dificuldade de controle com outros herbicidas são suscetíveis ao 2,4-D. Contudo, a utilização desse herbicida fica restrita pela falta de seletividade em algumas culturas agrícolas. Nas últimas décadas, a descoberta de genes relacionados à tolerância ao 2,4-D em bactérias encontradas no solo e a sua transferência para culturas possibilitaram o desenvolvimento de linhagens tolerantes ao produto. Os objetivos desta revisão de literatura foram apresentar os genes e a atividade das enzimas responsáveis pela tolerância ao herbicida 2,4-D; ilustrar os mecanismos envolvidos na seletividade ao 2,4-D e a outros herbicidas; e equacionar algumas implicações para o manejo de plantas daninhas. O primeiro gene de tolerância ao 2,4-D descoberto foi o tfdA, encontrado no plasmídeo pJP4 da bactéria Cupriavidus necator. Este gene codifica a enzima 2,4-D/oxoglutarato dioxigenase, a qual realiza a conversão do 2,4-D em 2,4-diclorofenol e glioxilato. No final da década de 1980, foi realizada a primeira inserção do gene tfdA em plantas de Nicotiana tabacum, mediada por Agrobacterium tumefaciens. Isso conferiu tolerância de plantas de fumo ao 2,4-D. Resultados similares foram obtidos com inserções posteriores deste gene em plantas de Gossypium hirsutum, Brassica juncea e Vitis vinifera. Com a continuidade dos estudos de bactérias de solo, identificaram-se outros dois genes: o gene rdpA de Sphingobium herbicidivorans MH, que codifica a enzima ariloxialcanoato dioxigenase-1 (AAD-1); e o sdpA de Delftia acidovorans MC1, que codifica a enzima ariloxialcanoato dioxigenase-1(AAD-12). Essas duas enzimas são similares, mas têm cinética enzimática diferenciada e são capazes de degradar o 2,4-D e outros herbicidas. A enzima AAD-1 degrada o 2,4-D e, surpreendentemente, alguns herbicidas inibidores da acetil-CoA carboxilase (ACCase) do grupo dos ariloxifenoxipropionatos (FOPs). A enzima AAD-12 apresenta alta afinidade de ligação com os auxínicos 2,4-D, MCPA, triclopyr e fluroxypyr. Atualmente os genes que codificam estas enzimas estão sendo utilizados para o desenvolvimento de cultivares de soja, algodão e milho tolerantes ao 2,4-D e FOPs. Plantas de soja com o transgene sdpA se mostraram tolerantes ao 2,4-D. Plantas de milho contendo o gene rdpA também são tolerantes aos herbicidas FOPs. Trabalhos realizados com as espécies daninhas Conyza bonariensis, Conyza canadensis e Amaranthus palmeri resistentes ao herbicida glyphosate têm mostrado controle adequado com o 2,4-D. Portanto, os genes sdpA e rdpA são bons candidatos no desenvolvimento de culturas tolerantes ao 2,4-D e deverão ampliar as opções de controle de espécies daninhas de difícil manejo com outros herbicidas.