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1.
Plant Cell ; 29(6): 1196-1217, 2017 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-28522548

RESUMO

We report a comprehensive toolkit that enables targeted, specific modification of monocot and dicot genomes using a variety of genome engineering approaches. Our reagents, based on transcription activator-like effector nucleases (TALENs) and the clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9 system, are systematized for fast, modular cloning and accommodate diverse regulatory sequences to drive reagent expression. Vectors are optimized to create either single or multiple gene knockouts and large chromosomal deletions. Moreover, integration of geminivirus-based vectors enables precise gene editing through homologous recombination. Regulation of transcription is also possible. A Web-based tool streamlines vector selection and construction. One advantage of our platform is the use of the Csy-type (CRISPR system yersinia) ribonuclease 4 (Csy4) and tRNA processing enzymes to simultaneously express multiple guide RNAs (gRNAs). For example, we demonstrate targeted deletions in up to six genes by expressing 12 gRNAs from a single transcript. Csy4 and tRNA expression systems are almost twice as effective in inducing mutations as gRNAs expressed from individual RNA polymerase III promoters. Mutagenesis can be further enhanced 2.5-fold by incorporating the Trex2 exonuclease. Finally, we demonstrate that Cas9 nickases induce gene targeting at frequencies comparable to native Cas9 when they are delivered on geminivirus replicons. The reagents have been successfully validated in tomato (Solanum lycopersicum), tobacco (Nicotiana tabacum), Medicago truncatula, wheat (Triticum aestivum), and barley (Hordeum vulgare).


Assuntos
Engenharia Genética/métodos , Proteínas de Plantas/genética , Plantas Geneticamente Modificadas/genética , Repetições Palindrômicas Curtas Agrupadas e Regularmente Espaçadas/genética , Hordeum/genética , Solanum lycopersicum/genética , RNA de Plantas/genética , Nucleases dos Efetores Semelhantes a Ativadores de Transcrição/genética , Triticum/genética
2.
Plant J ; 89(6): 1251-1262, 2017 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-27943461

RESUMO

The ability to edit plant genomes through gene targeting (GT) requires efficient methods to deliver both sequence-specific nucleases (SSNs) and repair templates to plant cells. This is typically achieved using Agrobacterium T-DNA, biolistics or by stably integrating nuclease-encoding cassettes and repair templates into the plant genome. In dicotyledonous plants, such as Nicotinana tabacum (tobacco) and Solanum lycopersicum (tomato), greater than 10-fold enhancements in GT frequencies have been achieved using DNA virus-based replicons. These replicons transiently amplify to high copy numbers in plant cells to deliver abundant SSNs and repair templates to achieve targeted gene modification. In the present work, we developed a replicon-based system for genome engineering of cereal crops using a deconstructed version of the wheat dwarf virus (WDV). In wheat cells, the replicons achieve a 110-fold increase in expression of a reporter gene relative to non-replicating controls. Furthermore, replicons carrying CRISPR/Cas9 nucleases and repair templates achieved GT at an endogenous ubiquitin locus at frequencies 12-fold greater than non-viral delivery methods. The use of a strong promoter to express Cas9 was critical to attain these high GT frequencies. We also demonstrate gene-targeted integration by homologous recombination (HR) in all three of the homoeoalleles (A, B and D) of the hexaploid wheat genome, and we show that with the WDV replicons, multiplexed GT within the same wheat cell can be achieved at frequencies of ~1%. In conclusion, high frequencies of GT using WDV-based DNA replicons will make it possible to edit complex cereal genomes without the need to integrate GT reagents into the genome.


Assuntos
Sistemas CRISPR-Cas/fisiologia , Marcação de Genes/métodos , Replicon/genética , Triticum/genética , Triticum/metabolismo , Agrobacterium/genética , Sistemas CRISPR-Cas/genética , DNA Bacteriano/genética , Edição de Genes , Solanum lycopersicum/genética , Solanum lycopersicum/metabolismo , Nicotiana/genética , Nicotiana/metabolismo
3.
Plant Biotechnol J ; 16(4): 902-910, 2018 04.
Artigo em Inglês | MEDLINE | ID: mdl-28921815

RESUMO

Coeliac disease is an autoimmune disorder triggered in genetically predisposed individuals by the ingestion of gluten proteins from wheat, barley and rye. The α-gliadin gene family of wheat contains four highly stimulatory peptides, of which the 33-mer is the main immunodominant peptide in patients with coeliac. We designed two sgRNAs to target a conserved region adjacent to the coding sequence for the 33-mer in the α-gliadin genes. Twenty-one mutant lines were generated, all showing strong reduction in α-gliadins. Up to 35 different genes were mutated in one of the lines of the 45 different genes identified in the wild type, while immunoreactivity was reduced by 85%. Transgene-free lines were identified, and no off-target mutations have been detected in any of the potential targets. The low-gluten, transgene-free wheat lines described here could be used to produce low-gluten foodstuff and serve as source material to introgress this trait into elite wheat varieties.


Assuntos
Sistemas CRISPR-Cas , Engenharia Genética/métodos , Gliadina/genética , Glutens/genética , Triticum/genética , Edição de Genes , Glutens/metabolismo , Mutação , Fenótipo , Plantas Geneticamente Modificadas , RNA Guia de Cinetoplastídeos
4.
Plant Mol Biol ; 95(1-2): 111-121, 2017 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-28755320

RESUMO

In the present study, we utilized TALEN- and CRISPR/Cas9-induced mutations to analyze the promoter of the barley phytase gene HvPAPhy_a. The purpose of the study was dual, validation of the PAPhy_a enzyme as the main contributor of the mature grain phytase activity (MGPA), as well as validating the importance of a specific promoter region of the PAPhy_a gene which contains three overlapping cis-acting regulatory elements (GCN4, Skn1 and the RY-element) known to be involved in gene expression during grain filling. The results confirm that the barley PAPhy_a enzyme is the main contributor to the MGPA as grains of knock-out lines show very low MGPA. Additionally, the analysis of the HvPAPhy_a promoter region containing the GCN4/Skn1/RY motif highlights its importance for HvPAPhy_a expression as the MGPA in grains of plant lines with mutations within this motif is significantly reduced. Interestingly, lines with deletions located downstream of the motif show even lower MGPA levels, indicating that the GCN4/SKn1/RY motif is not the only element responsible for the level of PAPhy_a expression during grain maturation. Mutant grains with very low MPGA showed delayed germination as compared to grains of wild type barley. As grains with high levels of preformed phytases would provide more readily available phosphorous needed for a fast germination, this indicates that faster germination may be implicated in the positive selection of the ancient PAPhy gene duplication that lead to the creation of the PAPhy_a gene.


Assuntos
6-Fitase/genética , Sistemas CRISPR-Cas/genética , Hordeum/enzimologia , Hordeum/genética , Sementes/enzimologia , Nucleases dos Efetores Semelhantes a Ativadores de Transcrição/metabolismo , 6-Fitase/metabolismo , Sequência de Bases , DNA Bacteriano/genética , Vetores Genéticos/metabolismo , Germinação/genética , Homozigoto , Mutação/genética , Consumo de Oxigênio , Alinhamento de Sequência
5.
Plant Cell ; 26(1): 151-63, 2014 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-24443519

RESUMO

Sequence-specific nucleases enable facile editing of higher eukaryotic genomic DNA; however, targeted modification of plant genomes remains challenging due to ineffective methods for delivering reagents for genome engineering to plant cells. Here, we use geminivirus-based replicons for transient expression of sequence-specific nucleases (zinc-finger nucleases, transcription activator-like effector nucleases, and the clustered, regularly interspaced, short palindromic repeat/Cas system) and delivery of DNA repair templates. In tobacco (Nicotiana tabacum), replicons based on the bean yellow dwarf virus enhanced gene targeting frequencies one to two orders of magnitude over conventional Agrobacterium tumefaciens T-DNA. In addition to the nuclease-mediated DNA double-strand breaks, gene targeting was promoted by replication of the repair template and pleiotropic activity of the geminivirus replication initiator proteins. We demonstrate the feasibility of using geminivirus replicons to generate plants with a desired DNA sequence modification. By adopting a general plant transformation method, plantlets with a desired DNA change were regenerated in <6 weeks. These results, in addition to the large host range of geminiviruses, advocate the use of replicons for plant genome engineering.


Assuntos
Engenharia Genética/métodos , Genoma de Planta , Nicotiana/genética , Replicon , Agrobacterium tumefaciens/genética , Arabidopsis/genética , Quebras de DNA de Cadeia Dupla , DNA Bacteriano , Geminiviridae/genética , Marcação de Genes , Plantas Geneticamente Modificadas/genética , Transformação Genética
6.
Plant Biotechnol J ; 14(3): 986-96, 2016 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-26300126

RESUMO

Gluten proteins are responsible for the viscoelastic properties of wheat flour but also for triggering pathologies in susceptible individuals, of which coeliac disease (CD) and noncoeliac gluten sensitivity may affect up to 8% of the population. The only effective treatment for affected persons is a strict gluten-free diet. Here, we report the effectiveness of seven plasmid combinations, encompassing RNAi fragments from α-, γ-, ω-gliadins, and LMW glutenin subunits, for silencing the expression of different prolamin fractions. Silencing patterns of transgenic lines were analysed by gel electrophoresis, RP-HPLC and mass spectrometry (LC-MS/MS), whereas gluten immunogenicity was assayed by an anti-gliadin 33-mer monoclonal antibody (moAb). Plasmid combinations 1 and 2 downregulated only γ- and α-gliadins, respectively. Four plasmid combinations were highly effective in the silencing of ω-gliadins and γ-gliadins, and three of these also silenced α-gliadins. HMW glutenins were upregulated in all but one plasmid combination, while LMW glutenins were downregulated in three plasmid combinations. Total protein and starch contents were unaffected regardless of the plasmid combination used. Six plasmid combinations provided strong reduction in the gluten content as measured by moAb and for two combinations, this reduction was higher than 90% in comparison with the wild type. CD epitope analysis in peptides identified in LC-MS/MS showed that lines from three plasmid combinations were totally devoid of CD epitopes from the highly immunogenic α- and ω-gliadins. Our findings raise the prospect of breeding wheat species with low levels of harmful gluten, and of achieving the important goal of developing nontoxic wheat cultivars.


Assuntos
Pão , Doença Celíaca/imunologia , Epitopos/imunologia , Gliadina/imunologia , Prolaminas/metabolismo , Interferência de RNA , Triticum/genética , Sequência de Aminoácidos , Anticorpos Monoclonais/imunologia , Cromatografia Líquida , Epitopos/química , Peptídeos/química , Peptídeos/imunologia , Plantas Geneticamente Modificadas , Plasmídeos/metabolismo , Característica Quantitativa Herdável , Espectrometria de Massas em Tandem
7.
BMC Plant Biol ; 13: 136, 2013 Sep 17.
Artigo em Inglês | MEDLINE | ID: mdl-24044767

RESUMO

BACKGROUND: Wheat gluten has unique nutritional and technological characteristics, but is also a major trigger of allergies and intolerances. One of the most severe diseases caused by gluten is coeliac disease. The peptides produced in the digestive tract by the incomplete digestion of gluten proteins trigger the disease. The majority of the epitopes responsible reside in the gliadin fraction of gluten. The location of the multiple gliadin genes in blocks has to date complicated their elimination by classical breeding techniques or by the use of biotechnological tools.As an approach to silence multiple gliadin genes we have produced 38 transgenic lines of bread wheat containing combinations of two endosperm-specific promoters and three different inverted repeat sequences to silence three fractions of gliadins by RNA interference. RESULTS: The effects of the RNA interference constructs on the content of the gluten proteins, total protein and starch, thousand seed weights and SDSS quality tests of flour were analyzed in these transgenic lines in two consecutive years. The characteristics of the inverted repeat sequences were the main factor that determined the efficiency of silencing. The promoter used had less influence on silencing, although a synergy in silencing efficiency was observed when the two promoters were used simultaneously. Genotype and the environment also influenced silencing efficiency. CONCLUSIONS: We conclude that to obtain wheat lines with an optimum reduction of toxic gluten epitopes one needs to take into account the factors of inverted repeat sequences design, promoter choice and also the wheat background used.


Assuntos
Doença Celíaca/metabolismo , Gliadina/genética , Sequências Repetidas Invertidas/genética , Regiões Promotoras Genéticas/genética , Proteômica , Triticum/metabolismo , Triticum/genética
8.
Proc Natl Acad Sci U S A ; 107(39): 17023-8, 2010 Sep 28.
Artigo em Inglês | MEDLINE | ID: mdl-20829492

RESUMO

Celiac disease (CD) is an enteropathy triggered by the ingestion of gluten proteins from wheat and similar proteins from barley and rye. The inflammatory reaction is controlled by T cells that recognize gluten peptides in the context of human leukocyte antigen (HLA) DQ2 or HLA-DQ8 molecules. The only available treatment for the disease is a lifelong gluten-exclusion diet. We have used RNAi to down-regulate the expression of gliadins in bread wheat. A set of hairpin constructs were designed and expressed in the endosperm of bread wheat. The expression of gliadins was strongly down-regulated in the transgenic lines. Total gluten protein was extracted from transgenic lines and tested for ability to stimulate four different T-cell clones derived from the intestinal lesion of CD patients and specific for the DQ2-α-II, DQ2-γ-VII, DQ8-α-I, and DQ8-γ-I epitopes. For five of the transgenic lines, there was a 1.5-2 log reduction in the amount of the DQ2-α-II and DQ2-γ-VII epitopes and at least 1 log reduction in the amount of the DQ8-α-I and DQ8-γ-I epitopes. Furthermore, transgenic lines were also tested with two T-cell lines that are reactive with ω-gliadin epitopes. The total gluten extracts were unable to elicit T-cell responses for three of the transgenic wheat lines, and there were reduced responses for six of the transgenic lines. This work shows that the down-regulation of gliadins by RNAi can be used to obtain wheat lines with very low levels of toxicity for CD patients.


Assuntos
Doença Celíaca/imunologia , Epitopos de Linfócito T/genética , Gliadina/genética , Plantas Geneticamente Modificadas/imunologia , Interferência de RNA , Triticum/imunologia , Sequência de Bases , Linhagem Celular , Epitopos de Linfócito T/imunologia , Gliadina/imunologia , Antígenos HLA-DQ/imunologia , Humanos , Dados de Sequência Molecular , Conformação de Ácido Nucleico , Plantas Geneticamente Modificadas/genética , RNA Interferente Pequeno/química , RNA Interferente Pequeno/genética , Linfócitos T/imunologia , Triticum/genética
9.
J Exp Bot ; 62(12): 4203-13, 2011 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-21561951

RESUMO

Wheat gluten proteins, gliadins and glutenins, are of great importance in determining the unique biomechanical properties of wheat. Studies have therefore been carried out to determine their pathways and mechanisms of synthesis, folding, and deposition in protein bodies. In the present work, a set of transgenic wheat lines has been studied with strongly suppressed levels of γ-gliadins and/or all groups of gliadins, using light and fluorescence microscopy combined with immunodetection using specific antibodies for γ-gliadins and HMW glutenin subunits. These lines represent a unique material to study the formation and fusion of protein bodies in developing seeds of wheat. Higher amounts of HMW subunits were present in most of the transgenic lines but only the lines with suppression of all gliadins showed differences in the formation and fusion of the protein bodies. Large rounded protein bodies were found in the wild-type lines and the transgenic lines with reduced levels of γ-gliadins, while the lines with all gliadins down-regulated had protein bodies of irregular shape and irregular formation. The size and number of inclusions, which have been reported to contain triticins, were also higher in the protein bodies in the lines with all the gliadins down-regulated. Changes in the protein composition and PB morphology reported in the transgenic lines with all gliadins down-regulated did not result in marked changes in the total protein content or instability of the different fractions.


Assuntos
Gliadina/metabolismo , Sementes/metabolismo , Triticum/metabolismo , Western Blotting , Eletroforese em Gel de Poliacrilamida , Glutens/metabolismo , Peso Molecular , Plantas Geneticamente Modificadas , Subunidades Proteicas/metabolismo , Sementes/citologia , Coloração e Rotulagem , Triticum/citologia , Triticum/genética
10.
Biochem Genet ; 49(11-12): 735-47, 2011 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-21660455

RESUMO

In this work, gliadin composition has been analyzed in 33 accessions of durum wheat using MALDI-TOF MS and compared with A-PAGE results. The MALDI-TOF MS spectra were 29,900-42,500 Da, which corresponds to the α/ß- and γ-gliadin regions in A-PAGE. The average of gliadin peaks per line was 23 for MALDI-TOF MS and only 14.8 bands for A-PAGE. MALDI-TOF MS identified 33 gliadin peaks in the durum wheat collection, 20 of which were unique peaks present in 7 lines. A-PAGE analysis identified 30 bands, of which only 4 were unique. Thus, the MALDI-TOF MS method was more sensitive than A-PAGE for identifying α/ß- and γ-gliadins in the 33 durum wheat lines studied. Phylogenetic analyses performed using MALDI-TOF MS data assigned the durum wheat lines to two groups. The utility of MALDI-TOF MS to determine relationships among genotypes and for identification of durum wheat accessions is discussed.


Assuntos
Gliadina/química , Gliadina/genética , Triticum/genética , Eletroforese em Gel de Poliacrilamida , Filogenia , Espectrometria de Massas por Ionização e Dessorção a Laser Assistida por Matriz , Triticum/classificação
11.
BMC Plant Biol ; 9: 66, 2009 May 29.
Artigo em Inglês | MEDLINE | ID: mdl-19480686

RESUMO

BACKGROUND: The APETALA2-like genes form a large multi-gene family of transcription factors which play an important role during the plant life cycle, being key regulators of many developmental processes. Many studies in Arabidopsis have revealed that the APETALA2 (AP2) gene is implicated in the establishment of floral meristem and floral organ identity as well as temporal and spatial regulation of flower homeotic gene expression. RESULTS: In this work, we have cloned and characterised the AP2-like gene from accessions of Hordeum chilense and Hordeum vulgare, wild and domesticated barley, respectively, and compared with other AP2 homoeologous genes, including the Q gene in wheat. The Hordeum AP2-like genes contain two plant-specific DNA binding motifs called AP2 domains, as does the Q gene of wheat. We confirm that the H. chilense AP2-like gene is located on chromosome 5Hch. Patterns of expression of the AP2-like genes were examined in floral organs and other tissues in barley, wheat and in tritordeum amphiploids (barley x wheat hybrids). In tritordeum amphiploids, the level of transcription of the barley AP2-like gene was lower than in its barley parental and the chromosome substitutions 1D/1Hch and 2D/2Hch were seen to modify AP2 gene expression levels. CONCLUSION: The results are of interest in order to understand the role of the AP2-like gene in the spike morphology of barley and wheat, and to understand the regulation of this gene in the amphiploids obtained from barley-wheat crossing. This information may have application in cereal breeding programs to up- or down-regulate the expression of AP2-like genes in order to modify spike characteristics and to obtain free-threshing plants.


Assuntos
Hibridização Genômica Comparativa , Hordeum/genética , Proteínas de Plantas/metabolismo , Triticum/genética , Sequência de Aminoácidos , Cromossomos de Plantas/genética , DNA de Plantas/genética , Regulação da Expressão Gênica de Plantas , Genes de Plantas , Proteínas de Homeodomínio/genética , Proteínas de Homeodomínio/metabolismo , Hordeum/metabolismo , Dados de Sequência Molecular , Fases de Leitura Aberta , Proteínas de Plantas/genética , Polimorfismo de Nucleotídeo Único , Alinhamento de Sequência , Análise de Sequência de DNA , Fatores de Transcrição/genética , Fatores de Transcrição/metabolismo , Triticum/metabolismo
12.
Prog Mol Biol Transl Sci ; 149: 1-26, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-28712492

RESUMO

In recent years, plant biotechnology has witnessed unprecedented technological change. Advances in high-throughput sequencing technologies have provided insight into the location and structure of functional elements within plant DNA. At the same time, improvements in genome engineering tools have enabled unprecedented control over genetic material. These technologies, combined with a growing understanding of plant systems biology, will irrevocably alter the way we create new crop varieties. As the first wave of genome-edited products emerge, we are just getting a glimpse of the immense opportunities the technology provides. We are also seeing its challenges and limitations. It is clear that genome editing will play an increased role in crop improvement and will help us to achieve food security in the coming decades; however, certain challenges and limitations must be overcome to realize the technology's full potential.


Assuntos
Agricultura , Engenharia Genética , Genoma de Planta , Plantas/genética , Alimentos , Edição de RNA/genética
13.
G3 (Bethesda) ; 6(2): 423-33, 2015 Dec 17.
Artigo em Inglês | MEDLINE | ID: mdl-26681515

RESUMO

Small nonprotein-coding microRNAs (miRNAs) are present in most eukaryotes and are central effectors of RNA silencing-mediated mechanisms for gene expression regulation. In plants, DICER-LIKE1 (DCL1) is the founding member of a highly conserved family of RNase III-like endonucleases that function as core machinery proteins to process hairpin-like precursor transcripts into mature miRNAs, small regulatory RNAs, 21-22 nucleotides in length. Zinc finger nucleases (ZFNs) were used to generate single and double-mutants of putative soybean DCL1 homologs, DCL1a and DCL1b, to confirm their functional role(s) in the soybean miRNA pathway. Neither DCL1 single mutant, dcl1a or dcl1b plants, exhibited a pronounced morphological or molecular phenotype. However, the dcl1a/dcl1b double mutant expressed a strong morphological phenotype, characterized by reduced seed size and aborted seedling development, in addition to defective miRNA precursor transcript processing efficiency and deregulated miRNA target gene expression. Together, these findings indicate that the two soybean DCL1 paralogs, DCL1a and DCL1b, largely play functionally redundant roles in the miRNA pathway and are essential for normal plant development.


Assuntos
Regulação da Expressão Gênica de Plantas , Glycine max/genética , MicroRNAs/genética , Mutação , Interferência de RNA , Estabilidade de RNA , RNA Mensageiro/genética , Ribonuclease III/genética , Alelos , Sequência de Bases , Análise por Conglomerados , Perfilação da Expressão Gênica , MicroRNAs/metabolismo , Mutagênese Sítio-Dirigida , Fenótipo , Ligação Proteica , RNA Mensageiro/metabolismo , Ribonucleases/metabolismo , Dedos de Zinco
14.
PLoS One ; 9(3): e91931, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-24633046

RESUMO

Celiac disease is a food-sensitive enteropathy triggered by the ingestion of wheat gluten proteins and related proteins from barley, rye, and some varieties of oat. There are no interventional therapies and the only solution is a lifelong gluten-free diet. The down-regulation of gliadins by RNAi provides wheat lines with all the gliadin fractions strongly down-regulated (low-gliadin). The technological properties of doughs prepared from the low-gliadin lines indicated a general weakening effect, although some of the lines displayed similar properties to that of the wild-type lines. In contrast, the stability was increased significantly in some of the transgenic lines, indicating better tolerance to over-mixing. Results reported here are the first analyses of the mixing and bread-making quality of the wheat lines with all gliadin fractions strongly down-regulated. Flour from these lines may be an important breakthrough in the development of new products for the celiac community. These lines might be used directly or blended with other non-toxic cereals, as raw material for developing food products that can be safely tolerated by CD patients and others with gluten intolerance or gluten sensitivity, incrementing the range of available food products and enhancing their diet.


Assuntos
Pão , Doença Celíaca/etiologia , Epitopos/genética , Farinha , Gliadina/imunologia , Interferência de RNA , Triticum/genética , Animais , Manipulação de Alimentos , Alimentos Geneticamente Modificados , Gliadina/química , Gliadina/genética , Peso Molecular , Análise de Componente Principal
15.
PLoS One ; 9(3): e90898, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-24621595

RESUMO

Wheat flour cannot be tolerated by those who suffer allergies to gluten. Human pathologies associated with grain proteins have increased worldwide in recent years, and the only effective treatment available is a lifelong gluten-free diet, which is complicated to follow and detrimental to gut health. This manuscript describes the development of wheat bread potentially suitable for celiac patients and other gluten-intolerant individuals. We have made bread using wheat flour with very low content of the specific gluten proteins (near gliadin-free) that are the causal agents for pathologies such as celiac disease. Loaves were compared with normal wheat breads and rice bread. Organoleptic, nutritional, and immunotoxic properties were studied. The reduced-gliadin breads showed baking and sensory properties, and overall acceptance, similar to those of normal flour, but with up to 97% lower gliadin content. Moreover, the low-gliadin flour has improved nutritional properties since its lysine content is significantly higher than that of normal flour. Conservative estimates indicate that celiac patients could safely consume 67 grams of bread per day that is made with low-gliadin flour. However, additional studies, such as feeding trials with gluten-intolerant patients, are still needed in order to determine whether or not the product can be consumed by the general celiac population, as well as the actual tolerated amount that can be safely ingested. The results presented here offer a major opportunity to improve the quality of life for millions of sufferers of gluten intolerance throughout the world.


Assuntos
Pão/análise , Doença Celíaca , Dieta Livre de Glúten , Gliadina/análise , Farinha/análise , Manipulação de Alimentos , Humanos , Lisina/análise , Fenômenos Físicos
16.
PLoS One ; 7(9): e45937, 2012.
Artigo em Inglês | MEDLINE | ID: mdl-23029328

RESUMO

In the present work the effects on dough quality by the down-regulation of γ-gliadins in different genetic backgrounds of bread wheat were investigated. RNAi-mediated silencing of γ-gliadins was introgressed by conventional crossing into three commercial bread wheat lines (namely 'Gazul', 'Podenco' and 'Arpain'), and along with the transgenic line A1152 (cv. Bobwhite) compared with their respective wild types. The protein fractions were quantified by RP-HPLC, whereas the technological and mixing properties were assessed by SDSS test and by the Mixograph instrument. Principal component analysis (PCA) was carried out for both the wild types and the transgenic lines, showing differences in the factors affecting the technological and mixing properties of the dough as a consequence of the reduction of the γ-gliadins. In transgenic lines, the α- and ω-gliadins, and total gliadins negatively affected the dough strength and tolerance to over-mixing, whereas the L/H ratio showed the opposite effect, positively influencing the dough quality. The increase of the SDSS volume in the transgenic lines of 'Gazul', 'Podenco' and 'Arpain' indicates increased gluten strength and quality respect to the wild types. SDSS volume was found to be positively influenced by the amount of glutenins, which were also increased in the transgenic lines. In addition, a positive effect was observed in the MT, PR1 and RBD in some of the transgenic lines of 'Podenco' and 'Arpain'. In conclusion, the down-regulation of γ-gliadins resulted in stronger doughs and a better tolerance to over-mixing in some transgenic lines. Although the reduction of γ-gliadins seems not to have a direct effect on the mixing and bread-making properties, the compensatory effect on the synthesis of the other prolamins may result in stronger doughs with improved over-mixing resistance.


Assuntos
Pão/análise , Farinha/análise , Gliadina/genética , Interferência de RNA , Triticum/genética , Eletroforese em Gel de Poliacrilamida , Indústria Alimentícia/métodos , Plantas Geneticamente Modificadas/genética
17.
Plant Physiol Biochem ; 58: 16-22, 2012 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-22771431

RESUMO

The resistance mechanism of a glyphosate-resistant Lolium multiflorum Lam. biotype collected in Córdoba (Southern Spain) was examined. Resistance Factor values at three different growth stages ranged between 4.77 and 4.91. At 96 hours after treatment (HAT) the S biotype had accumulated seven times more shikimic acid than the R biotype. There were significant differences in translocation of (14)C-glyphosate between biotypes, i.e. at 96 HAT, the R biotype accumulated in the treated leaf more than 70% of the absorbed herbicide, in comparison with 59.21% of the S biotype; the R biotype translocated only 14.79% of the absorbed (14)C-glyphosate to roots, while in the S population this value was 24.79%. Visualization of (14)C-glyphosate by phosphor imaging showed a reduced distribution in the R biotype compared with the S. Glyphosate metabolism was not involved in the resistance mechanism due to both biotypes showing similar values of glyphosate at 96 HAT. Comparison of the EPSPS gene sequences between biotypes indicated that the R biotype has a proline 182 to serine amino acid substitution. In short, the resistance mechanism of the L. multiflorum Lam. biotype is due to an impaired translocation of the herbicide and an altered target site.


Assuntos
3-Fosfoshikimato 1-Carboxiviniltransferase/genética , Adaptação Fisiológica/genética , Glicina/análogos & derivados , Herbicidas/farmacologia , Lolium/genética , Mutação , Folhas de Planta/metabolismo , 3-Fosfoshikimato 1-Carboxiviniltransferase/química , Sequência de Aminoácidos , Sequência de Bases , Transporte Biológico , Glicina/farmacologia , Lolium/metabolismo , Dados de Sequência Molecular , Prolina/metabolismo , Serina/metabolismo , Ácido Chiquímico/metabolismo , Espanha , Especificidade da Espécie , Estresse Fisiológico/genética , Glifosato
18.
PLoS One ; 7(12): e48365, 2012.
Artigo em Inglês | MEDLINE | ID: mdl-23284616

RESUMO

A strict gluten-free diet (GFD) is the only currently available therapeutic treatment for patients with celiac disease (CD). Traditionally, treatment with a GFD has excluded wheat, barley and rye, while the presence of oats is a subject of debate. The most-recent research indicates that some cultivars of oats can be a safe part of a GFD. In order to elucidate the toxicity of the prolamins from oat varieties with low, medium, and high CD toxicity, the avenin genes of these varieties were cloned and sequenced, and their expression quantified throughout the grain development. At the protein level, we have accomplished an exhaustive characterization and quantification of avenins by RP-HPLC and an analysis of immunogenicity of peptides present in prolamins of different oat cultivars. Avenin sequences were classified into three different groups, which have homology with S-rich prolamins of Triticeae. Avenin proteins presented a lower proline content than that of wheat gliadin; this may contribute to the low toxicity shown by oat avenins. The expression of avenin genes throughout the development stages has shown a pattern similar to that of prolamins of wheat and barley. RP-HPLC chromatograms showed protein peaks in the alcohol-soluble and reduced-soluble fractions. Therefore, oat grains had both monomeric and polymeric avenins, termed in this paper gliadin- and glutenin-like avenins. We found a direct correlation between the immunogenicity of the different oat varieties and the presence of the specific peptides with a higher/lower potential immunotoxicity. The specific peptides from the oat variety with the highest toxicity have shown a higher potential immunotoxicity. These results suggest that there is wide range of variation of potential immunotoxicity of oat cultivars that could be due to differences in the degree of immunogenicity in their sequences.


Assuntos
Avena/química , Doença Celíaca/imunologia , Glutens/imunologia , Glutens/isolamento & purificação , Sequência de Aminoácidos , Avena/crescimento & desenvolvimento , Doença Celíaca/etiologia , Criança , Pré-Escolar , Clonagem Molecular , Feminino , Regulação da Expressão Gênica de Plantas , Gliadina/química , Gliadina/genética , Gliadina/imunologia , Gliadina/isolamento & purificação , Glutens/química , Glutens/genética , Humanos , Lactente , Masculino , Dados de Sequência Molecular , Fragmentos de Peptídeos/química , Fragmentos de Peptídeos/imunologia , Multimerização Proteica , Estrutura Quaternária de Proteína , Especificidade da Espécie , Relação Estrutura-Atividade
19.
J Agric Food Chem ; 60(2): 615-22, 2012 Jan 18.
Artigo em Inglês | MEDLINE | ID: mdl-22175446

RESUMO

Digitaria insularis biotypes resistant to glyphosate have been detected in Brazil. Studies were carried out in controlled conditions to determine the role of absorption, translocation, metabolism, and gene mutation as mechanisms of glyphosate resistance in D. insularis. The susceptible biotype absorbed at least 12% more (14)C-glyphosate up to 48 h after treatment (HAT) than resistant biotypes. High differential (14)C-glyphosate translocation was observed at 12 HAT, so that >70% of the absorbed herbicide remained in the treated leaf in resistant biotypes, whereas 42% remained in the susceptible biotype at 96 HAT. Glyphosate was degraded to aminomethylphosphonic acid (AMPA), glyoxylate, and sarcosine by >90% in resistant biotypes, whereas a small amount of herbicide (up to 11%) was degraded by the susceptible biotype up to 168 HAT. Two amino acid changes were found at positions 182 and 310 in EPSPS, consisting of a proline to threonine and a tyrosine to cysteine substitution, respectively, in resistant biotypes. Therefore, absorption, translocation, metabolism, and gene mutation play an important role in the D. insularis glyphosate resistance.


Assuntos
Digitaria/efeitos dos fármacos , Digitaria/fisiologia , Glicina/análogos & derivados , Resistência a Herbicidas , 3-Fosfoshikimato 1-Carboxiviniltransferase/genética , 3-Fosfoshikimato 1-Carboxiviniltransferase/metabolismo , Brasil , Glicina/farmacocinética , Glicina/farmacologia , Glioxilatos/metabolismo , Herbicidas/farmacologia , Isoxazóis , Mutação , Organofosfonatos/metabolismo , Folhas de Planta/efeitos dos fármacos , Folhas de Planta/metabolismo , Sarcosina/metabolismo , Ácido Chiquímico/análise , Ácido Chiquímico/metabolismo , Tetrazóis , Glifosato
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