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1.
Zhongguo Zhong Yao Za Zhi ; 40(9): 1699-704, 2015 May.
Artigo em Chinês | MEDLINE | ID: mdl-26323132

RESUMO

Based on variation of Pinus massoniana families, heritablility and correlation analysis, the contents of shikimic acid and procyanidine (heritability 0.90, 0.70), dry weight of single branch (heritability 0.60) and and leaf length (heritability 0.46) were screened out as quality, yield and harvest cost traits of Folium Pini, respectively. For the different medicinal application of Folium Pini, varied methods were chosen to estimate weight and construct index equation. Weight adjustment based.on equal emphasis were used as economic weight determining method to select the best families, and the index (accuracy 0. 936 4 and heritability 0. 881 6) obtained was a little better than that obtained by equal emphasis, and much better than that by restricted index. The superior families selected with adjustment weight and equal emphasis were No. 46, 43 and 28. Partial regression were used as economic weight determining method to select the best families,and the index obtained had the highest accuracy (0.941 5) , index heritability (0. 889 9) and the genetic gain of shikimic acid content. The superior families selected with this method were No. 46, 27 and 47. No. 46 was the best families with maximal economic benefit. Our study indicated that suitable method for estimate weight and construct index equation can be applied for better accuracy of superior families selection of P. massoniana.


Assuntos
Medicamentos de Ervas Chinesas/análise , Pinus/química , Plantas Medicinais/química , Cruzamento , Pinus/classificação , Pinus/genética , Pinus/crescimento & desenvolvimento , Folhas de Planta/química , Plantas Medicinais/classificação , Plantas Medicinais/genética , Plantas Medicinais/crescimento & desenvolvimento
2.
Theor Appl Genet ; 128(8): 1489-505, 2015 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-25930057

RESUMO

KEY MESSAGE: Soybean mosaic virus resistance was significantly improved in multiple soybean cultivars through genetic transformation induced by inverted repeat-SMV- HC - Pro genes based on RNAi and post-transcriptional gene silencing. Here, we demonstrate Soybean mosaic virus (SMV) resistance in transgenic soybean plants. Transformation of five soybean genotypes with a construct containing inverted repeat-SMV-HC-Pro genes-induced high-level SMV resistance. Through leaf-painting assays, polymerase chain reaction (PCR) verification and LibertyLink(®) strip detection, 105 T0 and 1059 T1 plants were confirmed as transgene-positive. Southern blotting confirmed insertion of the T-DNA into the genomic DNA and revealed a low-copy integration pattern. Most T0 plants were fertile and transmitted the exogenous genes to their progenies (ratios of 3:1 or 15:1). In the T1 generation, virus resistance was evaluated visually after inoculation with SMV (strain SC3) and 441 plants were highly resistant (HR). SMV disease rating was classified on a scale with 0 = symptomless and 4 = mosaic symptoms with severe leaf curl. In the positive T1 plants, the disease rating on average was 1.42 (range 0.45-2.14) versus 3.2 (range 2-4) for the nontransformed plants. With the T2 generation, 75 transgene-positive plants were inoculated with SC3, and 57 HR plants were identified. Virus-induced seed coat mottling was eliminated in the resistant lines. Analysis of SMV levels in the plants was performed using quantitative real-time PCR and double-antibody sandwich enzyme-linked immunosorbent assays; the results revealed no virus or a gradual reduction over time in the viral content, thereby supporting the visual examination results. This is the first report demonstrating pathogen-derived resistance to SMV induced by inverted repeat-SMV-HC-Pro genes in multiple soybean cultivars. Our findings contribute positively to the study of transgenic SMV-resistance using RNA interference.


Assuntos
Cisteína Endopeptidases/genética , Resistência à Doença/genética , Glycine max/genética , Vírus do Mosaico/patogenicidade , Doenças das Plantas/virologia , Proteínas Virais/genética , Agrobacterium tumefaciens , DNA Bacteriano/genética , DNA de Plantas/genética , Genótipo , Doenças das Plantas/genética , Plantas Geneticamente Modificadas/genética , Plantas Geneticamente Modificadas/virologia , Interferência de RNA , Glycine max/virologia , Transformação Genética
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