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1.
Psychiatry Res ; 325: 115221, 2023 07.
Artigo em Inglês | MEDLINE | ID: mdl-37172399

RESUMO

The population of persons of color (POC) are increasing in the United States. Unfortunately, POC are significantly impacted by serious mental illness; psychosis represents a mental health disparity among POC. Fortunately, first episode coordinated specialty care (CSC) is an effective treatment for individuals who are in the early phases of a psychotic disorder. This systematic review of the literature examined POC inclusion rates in randomized controlled trials (RCT) examining First Episode Psychosis (FEP) programs. Our review yielded seven articles that met inclusion criteria. Our findings were mixed-researchers conducting RCTs on FEP programs did an excellent job including African American participants suggesting that findings from RCTs on FEP programs may generalize to African American participants. Regarding Latines, they were broadly underrepresented in RCTs on FEP CSC. Based on the data, we cannot definitively conclude to what extent findings from RCTs on FEP CSC generalize to Latines although results from studies that included a reasonable number of Latines offer promising results. Asians were overrepresented in three of the seven studies included in this review; thus it seems that the findings from RCTs on FEP CSC generalize to the Asian population in the United States.


Assuntos
Transtornos Psicóticos , Humanos , Ensaios Clínicos Controlados Aleatórios como Assunto , Transtornos Psicóticos/terapia , Transtornos Psicóticos/psicologia , Resultado do Tratamento , América do Norte
2.
Theor Appl Genet ; 134(12): 3863-3872, 2021 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-34370048

RESUMO

KEY MESSAGE: A soybean landrace carries broad-spectrum resistance to Phytophthora sojae, which is conferred by a single gene, designated Rps14, on the short arm of chromosome 3. Phytophthora sojae is the causative agent for Phytophthora root and stem rot in soybean [Glycine max (L.) Merr.] and can be managed by deployment of resistance to P. sojae (Rps) genes. PI 340,029 is a soybean landrace carrying broad-spectrum resistance to the pathogen. Analysis of an F2 population derived from a cross between PI 340,029 and a susceptible cultivar 'Williams' reveals that the resistance to P. sojae race 1 is conferred by a single gene, designated Rps14, which was initially mapped to a 4.5-cM region on the short arm of chromosome 3 by bulked segregant analysis (BSA), and subsequently narrowed to a 1.48 cM region corresponding to 229-kb in the Williams 82 reference genome (Wm82 v2.a1), using F3:4 families derived from the F2 population. Further analysis indicates that the broad-spectrum resistance carried by PI 340,029 is fully attributable to Rps14. The genomic sequences corresponding to the defined Rps14 region from a set of diverse soybean varieties exhibit drastic NBS-LRR gene copy number variation, ranging from 3 to 17 copies. Ultimate isolation of Rps14 would be critical for precise selection and deployment of the gene for soybean protection.


Assuntos
Resistência à Doença/genética , Genes de Plantas , Glycine max/genética , Phytophthora/patogenicidade , Doenças das Plantas/genética , Mapeamento Cromossômico , Variações do Número de Cópias de DNA , Ligação Genética , Genótipo , Repetições de Microssatélites , Filogenia , Doenças das Plantas/microbiologia , Glycine max/microbiologia
3.
Plant Dis ; 103(8): 1858-1864, 2019 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-31242132

RESUMO

Although there has been research on managing Fusarium head blight (FHB) in spring barley, little has been published on cultivar resistance and optimal fungicide timing for FHB management in winter barley. A 3-year (2015 to 2017) field experiment was conducted to measure FHB resistance of winter barley varieties, gauge the potential benefit from a fungicide, and help determine the optimal timing for fungicide application. The split-plot experiment took place in a misted, inoculated nursery in Raleigh, North Carolina using main plots of four winter barley cultivars (Atlantic, Endeavor, Nomini, and Thoroughbred). Three fungicide treatments were applied to subplots: prothioconazole + tebuconazole at full spike emergence, the same fungicide 6 days later, or no fungicide. The late applications significantly reduced FHB index in each of 3 years and significantly reduced deoxynivalenol (DON) in harvested grain in 2 of the 3 years. Applications at full spike emergence also yielded significant benefit in 1 of the 3 years for each parameter. Neither disease symptoms nor DON gave reason to prefer one of the fungicide timings over the other. Across the 3 years, DON ranked the cultivars Endeavor < Nomini = Thoroughbred < Atlantic. Combining the moderate resistance of Endeavor with a fungicide application and averaging the two timings resulted in a 75% DON reduction compared with unsprayed Atlantic. Taken together, our results indicate that barley growers concerned about minimizing DON should both plant moderately resistant varieties and apply fungicide if there is scab risk. During the same period, 16 commercial winter barley cultivars were tested in from three to seven Virginia and North Carolina environments each, and the DON results were compared after standardization across environments. The winter two-row malting barley cultivars Endeavor and Calypso displayed superior and robust DON resistance across environments.


Assuntos
Resistência à Doença , Fungicidas Industriais , Fusarium , Hordeum , Resistência à Doença/genética , Fungicidas Industriais/farmacologia , Fusarium/efeitos dos fármacos , Fusarium/fisiologia , Hordeum/classificação , Hordeum/genética , Hordeum/microbiologia , North Carolina , Doenças das Plantas/microbiologia , Doenças das Plantas/prevenção & controle , Virginia
4.
Theor Appl Genet ; 129(12): 2379-2386, 2016 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-27591777

RESUMO

KEY MESSAGE: RpsUN1 and RpsUN2 were fine mapped to two genomic regions harboring disease resistance-like genes. The haplotypes and instability of the regions and candidate genes for the two resistance loci were characterized. Phytophthora root and stem rot caused by Phytophthora sojae, is one of the most destructive diseases of soybean. Deploying soybean cultivars carrying race-specific resistance conferred by Rps genes is the most practical approach to managing this disease. Previously, two Rps genes, RpsUN1 and RpsUN2 were identified in a landrace PI 567139B and mapped to a 6.5 cM region on chromosome 3 and a 3.0 cM region on chromosome 16, corresponding to 1387 and 423 kb of the soybean reference genome sequences. By analyzing recombinants defined by genotypic and phenotypic screening of the 826 F2:3 families derived from two reciprocal crosses between the two parental lines, RpsUN1 and RpsUN2, were further narrowed to a 151 kb region that harbors five genes including three disease resistance (R)-like genes, and a 36 kb region that contains four genes including five R-like genes, respectively, according to the reference genome. Expressional changes of these nine genes before and after inoculation with the pathogen, as revealed by RNA-seq, suggest that Glyma.03g034600 in the RpsUN1 region and Glyma.16g215200 and Glyma.16g214900 in the RpsUN2 region of PI 567139B may be associated with the resistance to P. sojae. It is also suggested that unequal recombination between/among R-like genes may have occurred, resulting in the formation of two recombinants with inconsistent genotypic and phenotypic observations. The haplotype variation of genomic regions where RpsUN1 and RpsUN2 reside in the entire soybean germplasm deposited in the US soybean germplasm collection suggests that RpsUN1 and RpsUN2 are most likely novel genes.


Assuntos
Mapeamento Cromossômico , Resistência à Doença/genética , Genes de Plantas , Glycine max/genética , Estudos de Associação Genética , Genótipo , Haplótipos , Phytophthora , Doenças das Plantas/genética , Doenças das Plantas/microbiologia , Análise de Sequência de RNA , Glycine max/microbiologia
5.
Theor Appl Genet ; 129(2): 445-51, 2016 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-26660465

RESUMO

KEY MESSAGE: Rps11 confers excellent resistance to predominant Phytophthora sojae isolates capable of defeating major Rps genes deployed into soybean production, representing a novel source of resistance for soybean cultivar enhancement. ABSTRACT: Phytophthora root and stem rot (PRSR), caused by the soil-borne pathogen Phytophthora sojae, is a devastating disease of soybean [Glycine max (L.) Merr.] throughout the world. Deploying resistant soybean cultivars is the most effective and environmentally friendly approach to managing this disease. The soybean landrace PI 594527 was found to carry excellent resistance to all P. sojae isolates examined, some of which were capable of overcoming the major Rps genesp, such as Rps1-k, Rps1-c, and Rps3-a, predominantly used for soybean protection in the past decades. A mapping population consisting of 58 F2 individuals and 209 F2:3 families derived from a cross between PI 594527 and the susceptible cultivar 'Williams' was used to characterize the inheritance pattern of the resistance to P. soja (Rps) in PI 594527. It was found that the resistance was conferred by a single Rps gene, designated Rps11, which was initially defined as an ~5 Mb genomic region at the beginning of chromosome 7 by bulked segregant analysis (BSA) with a nucleotide polymorphism (SNP) chip comprising 7039 SNP markers. Subsequently, simple sequence repeat (SSR) markers in the defined region were used to genotype the F2:3 mapping population to map Rps11 to a 225.3 kb genomic region flanked by SSR markers BARCSOYSSR_07_0286 and BARCSOYSSR_07_0300, according to the soybean reference genome sequence. Particularly, an SSR marker (i.e., BARCSOYSSR_07_0295) was found to tightly co-segregate with Rps11 in the mapping population and can be effectively used for marker-assisted selection of this gene for development of resistant soybean cultivars.


Assuntos
Resistência à Doença/genética , Glycine max/genética , Phytophthora , Doenças das Plantas/genética , Proteínas de Plantas/genética , Mapeamento Cromossômico , DNA de Plantas/genética , Genes Dominantes , Genes de Plantas , Técnicas de Genotipagem , Padrões de Herança , Repetições de Microssatélites , Doenças das Plantas/microbiologia , Polimorfismo de Nucleotídeo Único , Glycine max/microbiologia
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