296 resultados para wheat (Triticum aestivum. L.)


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The objective of this work was to assess the genetic diversity and population structure of wheat genotypes, to detect significant and stable genetic associations, as well as to evaluate the efficiency of statistical models to identify chromosome regions responsible for the expression of spike-related traits. Eight important spike characteristics were measured during five growing seasons in Serbia. A set of 30 microsatellite markers positioned near important agronomic loci was used to evaluate genetic diversity, resulting in a total of 349 alleles. The marker-trait associations were analyzed using the general linear and mixed linear models. The results obtained for number of allelic variants per locus (11.5), average polymorphic information content value (0.68), and average gene diversity (0.722) showed that the exceptional level of polymorphism in the genotypes is the main requirement for association studies. The population structure estimated by model-based clustering distributed the genotypes into six subpopulations according to log probability of data. Significant and stable associations were detected on chromosomes 1B, 2A, 2B, 2D, and 6D, which explained from 4.7 to 40.7% of total phenotypic variations. The general linear model identified a significantly larger number of marker-trait associations (192) than the mixed linear model (76). The mixed linear model identified nine markers associated to six traits.

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Abstract:The objective of this work was to characterize the performance of elite wheat genotypes from different Brazilian breeding programs for traits associated with grain yield and preharvest sprouting. The study was conducted in 2010 and 2011 in the municipality of Capão do Leão, in the state of Rio Grande do Sul, Brazil, in a randomized complete block design with three replicates. Thirty-three wheat genotypes were evaluated for traits related to preharvest sprouting and grain yield. The estimate of genetic distance was used to predict potential combinations for selection of plants with high grain yield and tolerance to preharvest sprouting. The combined analysis of sprouted grains and falling number shows that the TBIO Alvorada, TBIO Mestre, Frontana, Fundacep Raízes, Fundacep Cristalino, and BRS Guamirim genotypes are tolerant to preharvest sprouting. Combinations of TBIO Alvorada and TBIO Mestre with Fundacep Cristalino show high potential for recovering superior genotypes for high grain yield and tolerance to preharvest sprouting.

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The aim of this study was to determine the minimum conditions of wetness duration and mean temperature required for Fusarium head blight infection in wheat. The weather model developed by Zoldan (2008) was tested in field experiments for two wheat cultivars grown in 2005 (five sowing dates) and 2006 (six sowing dates) in 10 m² plots with three replicates. The disease was assessed according to head incidence (HI), spikelet incidence (SI), and the interaction between these two methods was called head blight severity (HBS). Starting at the beginning of anthesis, air temperature and head wetness duration were daily recorded with an automatic weather station. With the combination of these two factors, a weather favorability table was built for the disease occurrence. Starting on the day of flowering beginning (1 - 5% fully exserted anthers), the sum of daily values for infection favorability (SDVIF) was calculated by means of a computer program, according to Zoldan (2008) table. The initial symptoms of the disease were observed at 3.7% spikelet incidence, corresponding to 2.6 SVDFI. The infection occurs in wheat due to rainfall which results in spike wetting of > 61.4 h duration. Rainfall events forecast can help time fungicide application to control FHB. The name of this alert system is proposed as UPF-scab alert.

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Head blight of wheat is a disease of global importance. In Brazil, it can cause damage of up to 27%. As resistant cultivars are not available yet, short-term disease control relies on the use of fungicides. The first step to reach effective management is to identify potent fungicides. In vitro experiments were conducted to determine the inhibitory concentration 50% (IC50) for mycelial growth or conidial germination, according to the chemical group of fungicides, of five Fusarium graminearum isolates of different origins. The following demethylation inhibitor (DMI) fungicides were tested: epoxiconazole, cyproconazole, metconazole, prochloraz, protioconazole and tebuconazole. In addition, azoxystrobin, kresoxim-methyl, pyraclostrobin and trifloxystrobin were included in the study, representing Quinone outside inhibitor fungicides (QoI), as well as a tubulin synthesis inhibitor, carbendazim and two ready mixtures, trifloxystrobin + tebuconazole or trifloxistrobin + prothioconazole. DMI's showed lower IC50 values compared to the QoI's. For the five tested isolates, in the overall mean, IC50 considering mycelial growth ranged for DMI's from 0.01 mg/L (metconazole, prochloraz and prothioconazole) to 0.12 mg/L (cyproconazole) and considering conidial germination for QoI's from 0.21 mg/L (azoxystrobin) to 1.33 mg/L (trifloxystrobin). The IC50 for carbendazim was 0.07 mg/L. All tested isolates can be considered sensitive to the studied DMI's, although certain differences in sensitivity could be detected between the isolates originating from one same state.

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In Brazil, Fusarium head blight (FHB) affecting wheat can cause up to 39.8% damage. Resistant cultivars are not available yet; thus, short-term disease control relies on the use of fungicides. The first step to improve control is to monitor fungal populations that are sensitivity to chemicals in order to achieve efficient FHB management. In vitro experiments were conducted to evaluate the inhibitory concentration (IC50) of fungicides for both mycelial growth and conidial germination of ten Fusarium graminearum isolates. The following demethylation inhibitor (DMI) fungicides were tested: metconazole, prothioconazole and tebuconazole. In addition, pyraclostrobin and trifloxystrobin were included, representing QoI fungicides, as well as three co-formulations containing metconazole + pyraclostrobin, prothioconazole + trifloxystrobin, and tebuconazole + trifloxystrobin. For mycelial growth, the overall mean IC50 of isolates was: metconazole 0.07, prothioconazole 0.1, and tebuconazole 0.19 mg/L. For the co-formulations, it was: prothioconazole + trifloxystrobin 0.08, tebuconazole + trifloxystrobin 0.12, and metconazole + pyraclostrobin 0.14 mg/L. Regarding spore germination inhibition, IC50 for prothioconazole + trifloxystrobin was 0.06, for tebuconazole + trifloxystrobin, 0.12 mg/L, for QoI alone pyraclostrobin, was 0.09, and for trifloxystrobin, 0.28 mg/L. There was a sensitivity shift among isolates and the highest fungitoxicity to F. graminearum was confirmed for prothioconazole, metconazole and tebuconazole .

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Emex australis and E. spinosa are significant weed species in wheat and other crops. Information on the extent of competition of the Emex species will be helpful to access yield losses in wheat. Field experiments were conducted to quantify the interference of tested weed densities each as single or mixture of both at 1:1 on their growth and yield, wheat yield components and wheat grain yield losses in two consecutive years. Dry weight of both weed species increased from 3-6 g m-2 with every additional plant of weed, whereas seed number and weight per plant decreased with increasing density of either weed. Both weed species caused considerable decrease in yield components like spike bearing tillers, number of grains per spike, 1000-grain weight of wheat with increasing density population of the weeds. Based on non-linear hyperbolic regression model equation, maximum yield loss at asymptotic weed density was estimated to be 44 and 62% with E. australis, 56 and 70% with E. spinosa and 63 and 72% with mixture of both species at 1:1 during both year of study, respectively. It was concluded that E. spinosa has more competition effects on wheat crop as compared to E. australis.

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The objective of this experiment was to determine the influence of different salt levels (zero, 15, 30, 45 and 60mM NaCl) on seed physiological quality of two wheat cultivars (BRS 177 and BRS 179). SUMMARIZE METHODOLOGY. The results allow the following conclusions: the physiological quality (germination and vigor) of wheat seeds, cultivars BRS 179 and BRS 177, decrease with the increase of the salinity. The wheat seeds cv. BRS 179 performs better than BRS 177, mainly in higher salt concentrations (³ 45mM of NaCl). The electric conductivity of wheat seeds increases in function of the increment of the saline concentrations.

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The use of unconventional sources of K for plants has been widely studied, but the effects of alternative materials on physiological seed quality are still relatively unknown. The objective of this study was to evaluate the physiological quality of soybean and wheat seeds after using different potassium sources in a crop succession. The experimental design was a completely randomized block with four replications. Treatments consisted of three K sources (KCl, alkaline rock and ground phonolite, with 58%, 11% and 8.42% of K2O, respectively) applied in four doses (0, 25, 50 and 100 kg K2O ha-1). Potassium doses were applied in soybean and their residual effects were evaluated on the following wheat crop. Soybean and wheat seeds were evaluated immediately after harvesting by tests for moisture content, seed weight, germination, first count, electrical conductivity, seedling length and seedling dry matter. Soybean plants fertilized with alternative sources of K produced heavier seeds with a lower coat permeability compared to KCl; the physiological quality of soybean seeds and the weight of wheat seeds increase due to higher K2O doses, independently of their source.

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The fungus Alternaria alternata was quantified in 75 wheat seed samples collected from three different regions of southern Brazil for Cropping and Use Value (CUV) I, II and III. Fungal presence was evaluated in two hundred disinfested seeds per sample before sowing in a potato-dextrose-agar medium + antibiotic (PDA+A). Fungus survival was evaluated every 45 days for 180 days for three seed batches from six wheat cultivars stored in propylene bags in a storehouse, with air temperature varying between 18 to 22 °C and relative air humidity around 60%. The efficacy of carboxin+thiram, difenoconazol, thiram, triadimenol, triticonazol and triticonazol + iprodione fungicides to control A. alternata was determined. A. alternata was detected in all the samples with an incidences of 39.6 %, 38.8% and 35.9% for the CUV I, CUV II and CUV III regions, respectively. The highest mean incidence of the fungus was found in the CUV I region, the coolest and most humid, and was significantly different from the other two regions. The average reduction in A. alternata viability in the wheat cultivar seeds was 49.5% during the 180 days of storage (inter-harvest period), demonstrating that infected seeds are the primary inoculum source for the fungus. The triticonazol + iprodione fungicide mixture efficiently controls A. alternata.

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Nowadays, image analysis is one of the most modern tools in evaluating physiological potential of seeds. This study aimed at verifying the efficiency of the seedling imaging analysis to assess physiological potential of wheat seeds. The seeds of wheat, cultivars IAC 370 and IAC 380, each of which represented by five different lots, were stored during four months under natural environmental conditions of temperature (T) and relative humidity (RH), in municipality of Piracicaba, Stated of São Paulo, Brazil. For this, bimonthly assessments were performed to quantify moisture content and physiological potential of seeds by means of tests of: germination, first count, accelerated aging, electrical conductivity, seedling emergence, and computerized analysis of seedlings, using the Seed Vigor Imaging System (SVIS®). It has been concluded that the computerized analyses of seedling through growth indexes and vigor, using the SVIS®, is efficient to assess physiological potential of wheat seeds.

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Bactérias diazotróficas pertencentes a diferentes espécies podem estar associadas a gramíneas, como o trigo, promovendo incrementos no crescimento e na produtividade de grãos. Foi realizado um experimento, em condições de campo, com o objetivo de avaliar os benefícios e a viabilidade econômica da inoculação de novos isolados homólogos de bactérias diazotróficas endofíticas em genótipos de trigo sob diferentes doses de N. Foram empregados três isolados de bactérias diazotróficas endofíticas (IAC-AT-8-Azospirillum brasiliense, IAC-HT-11-Achromobacter insolitus e IAC-HT-12-Zoogloea ramigera), dois genótipos de trigo (ITD- 19-Triticum durum L. e IAC-370-Triticum aestivum hard L.) e três doses de N (0, 60 e 120 kg ha-1). Foram avaliados, no estádio de perfilhamento e de maturidade fisio³gica, a matéria seca, o N acumulado e o índice de eficiência de utilização do N na parte aérea e na colheita; a produtividade de grãos, os componentes de rendimento e os índices de colheita para biomassa e N. No estádio de perfilhamento, somente houve aumento na produção de biomassa com a inoculação de Azospirillum brasiliense e Achromobacter insolitus no genótipo IAC-370, com a adição de N. Entretanto, não houve especificidade dos genótipos de trigo empregados e essas novas bactérias diazotróficas endofíticas para as demais caracaterísticas avaliadas. Houve aumento no acumulado de N na espiga com a inoculação de Azospirillum brasiliense. A inoculação de Achromobacter insolitus propiciou aumento da produtividade de grãos, na maior dose de N utilizada (120 kg ha-1). A inoculação, embora não tenha substituído a adubação nitrogenada, reverteu-se em lucro para o agricultor.

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Em razão da grande importância do nitrogênio na nutrição mineral das plantas, instalou-se um experimento em condições de campo em um Latossolo Vermelho, no ano agrícola 2005, no campo experimental da Embrapa Cerrados, Planaltina (DF), com o objetivo de realizar a calibração de métodos de determinação desse nutriente no solo para a cultura do trigo. Utilizou-se o delineamento experimental de blocos ao acaso com seis repetições, e os tratamentos foram seis doses de N: 0, 70, 140, 210, 280 e 350 kg ha-1. Amostras de solo das camadas de 0-20 e 20-40 cm foram retiradas, e três diferentes extratores químicos foram utilizados para avaliação da disponibilidade de N no solo. Os maiores coeficientes de determinação, obtidos pela regressão quadrática entre a produtividade do trigo e o N do solo extraído pelos diferentes extratores, foram observados nas análises das amostras da camada de 0-20 cm, de acordo com a seguinte ordem: KCl 2 mol L-1 a 100 °C (R2 = 0,997**) > H2O2/MnO2 (R² = 0,992**) > tampão pH 11,2 + NO3- (R² = 0,985**) > tampão pH 11,2 (R² = 0,960**). Os elevados valores dos coeficientes de determinação indicam que a camada de 0-20 cm é a mais recomendada em análises de rotina de N no solo para o trigo. Considerando a simplicidade de análise e o elevado coeficiente de determinação, o método da solução-tampão pH 11,2 + NO3- pode ser indicado para análise de rotina de N no solo. Os níveis críticos econômicos de N no solo calculados pelos diferentes extratores químicos, para as relações preço do quilograma de N/preço do quilograma do trigo de 5 a 7, foram: 90 a 68 mg kg-1 (H2O2/MnO2), 87 a 66 mg kg-1 (KCl 2M a 100 ºC), 81 a 62 mg kg-1 (tampão pH 11,2 + NO3-) e 64 a 47 mg kg-1 (tampão pH 11,2). Já os níveis críticos calculados pelo método matemático de Cate - Nelson foram: 94 mg kg-1 (H2O2/MnO2), 90 mg kg-1 (KCl 2M a 100 ºC), 82 mg kg-1 (tampão pH 11,2 + NO3-) e 61 mg kg-1 (tampão pH 11,2).

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O P é um dos elementos mais críticos para a produção agrícola, pois, a©m de sua grande importância para as plantas, sua disponibilidade é cada vez mais limitada em virtude da progressiva escassez das suas jazidas. A diferenciação de genótipos quanto à tolerância à deficiência de P permite investigar os mecanismos atuantes e o desenvolvimento de genótipos que combinem diferentes mecanismos, aumentando o nível de tolerância. O objetivo deste trabalho foi diferenciar, em solução hidropônica, genótipos de trigo contrastantes quanto à tolerância à deficiência de P. Foram realizados três estudos. No primeiro, avaliou-se o efeito da retirada do endosperma na resposta de p¢ntulas à limitação de P. No segundo estudo, foram avaliadas características de p¢ntulas, submetidas a diferentes doses de P, dos cultivares Anahuac, sensível, e Toropi, tolerante. No terceiro estudo, foram avaliadas cinco linhagens recombinantes do cruzamento entre Toropi e Anahuac. A remoção do endosperma da semente é necessária para diferenciar genótipos quanto à tolerância à deficiência de P em solução nutritiva, aos 10 dias da germinação. A diferenciação de genótipos é feita pelo cálculo da razão entre a concentração de fosfato livre (Pi) na parte aérea obtida nas doses de 10 e de 1.000 µmol L-1 de P, ficando, nos genótipos tolerantes, essa razão próxima de 1,0 e, nos sensíveis, próxima de 0,5. As quantidades de Pi na parte aérea ou total na p¢ntula também podem ser utilizadas. O cultivar Toropi e os genótipos NYW 865-016, NYW 865-081 e NYW 865-086 são mais tolerantes à deficiência de P em solução nutritiva, quando comparados aos do cultivar Anahuac e aos genótipos NYW 865-084 e NYW 865-073. A tolerância de Toropi nas condições avaliadas não se deve ao volume do sistema radicular, mas possivelmente a fatores relacionados com o transporte e uso de Pi internamente.

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Alternative copper (Cu) sources could be used in fertilizer production, although the bioavailability of copper in these materials is unknown. The objective of this study was to evaluate the extractants neutral ammonium citrate (NAC), 2 % citric acid, 1 % acetic acid, 10 % HCl, 10 % H2SO4, buffer solution pH 6.0, DTPA, EDTA, water, and hot water in the quantification of available Cu content in several sources, relating them to the relative agronomic efficiency (RAE) of wheat grown in a clayey Latossolo Vermelho eutrófico (Oxisol) and Neossolo Quartzarênico (Typic Quartzipsamment). Copper was applied at the rate of 1.5 mg kg-1 as scrap slag, brass slag, Cu ore, granulated copper, and copper sulfate. The extractants 10 % HCl, 10 % H2SO4, and NAC extracted higher Cu concentrations. The RAE values of brass slag and Cu ore were similar to or higher than those of Cu sulfate and granulated Cu. Solubility in the 2nd NAC extractant, officially required for mineral fertilizers with Cu, was lower than 60 % for the scrap slag, Cu ore, and granulated copper sources. This fact indicates that adoption of the NAC extractant may be ineffective for industrial by-products, although no extractant was more efficient in predicting Cu availability for wheat fertilized with the Cu sources tested.

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P¢ntulas originárias de populações híbridas, em geração F2, de 26 cruzamentos entre cultivares de trigo tolerantes (BH-1146, IAC-227, IAC-24, IAC-60, C-3, IAC-5, IAC-18 e IAC-21) e sensíveis (Anahuac 75, IAC-287, IAC-289, Siete Cerros e Veery "S") à toxicidade de alumínio e de 18 cruzamentos entre cultivares tolerantes (BH-1146, IAC-227, IAC-24, IAC-60, C-3, IAC-5, IAC-21, C-17, IAC-74 e IAC-18) foram avaliadas em relação à tolerância a 3 mg/L de Al3+, empregando soluções nutritivas. A tolerância à toxicidade de alumínio foi medida pela capacidade de crescimento da raiz primária central em solução nutritiva completa, após um tratamento de 48 horas em solução contendo 3 mg/L de Al3+. Avaliando-se as p¢ntulas das populações F2 provindas de cruzamentos entre cultivares tolerantes e sensíveis, verificou-se que a tolerância à toxicidade de Al3+ foi dominante, e que em 24 dos cruzamentos, as cultivares tolerantes diferiram das sensíveis por um par de genes. Não foi detectada diferença entre as cultivares tolerantes em relação ao par de genes dominantes em relação à tolerância. Qualquer uma dessas cultivares poderá ser utilizada como fonte de tolerância num programa de cruzamentos em que essa característica for desejada.