Dissertation > Excellent graduate degree dissertation topics show
The Study on Cp-Mediated Virus Resistance with Cp Gene of Aspv and Construction of Plant Expression Vectors
Author: LiuYingHua
Tutor: HongNi;WangGuoPing
School: Huazhong Agricultural University
Course: Plant Pathology
Keywords: Apple stem pitting virus analysis of resistance cp gene gfp genetic transformation Nicotiana occidentalis PCR
CLC: S436.611
Type: Master's thesis
Year: 2009
Downloads: 52
Quote: 0
Read: Download Dissertation
Abstract
|
Apple stem pitting virus (ASPV) is one of the world widely occurred latent viruses in apple and pear trees. When it presents with other viruses, the virus can induce the declining of these trees. The application of genetically modified plant with coat protein gene of viruses has been proved to be an efficient measure for obtaining virus resistant germplasm.In this study, fourteen lines of Nicotiana occidentalis transformed with sense and anti-sense DNA of cp gene of ASPV obtained formerly in our lab were used as materials for virus resistant evaluation after screening by PCR and analysis by western blot. The plant expression vectors pCAMBIA1301S-cp(+)-gfp and pCAMBIA1301S-cp(-)-gfp were successfully constructed and transferred into tobacco plants with Agrobecterium tumefaciens EHA105. The obtained results are illustrated as follows:1. Genomic DNA was extracted from transgenic tobacco plants of 14 lines and identified for the presence of inserts by PCR using three sets of primers. Argarose gel electrophoresis showed that three specific bands with sizes 316bp (the partial of ASPV cp gene), 565bp (hygromycin gene), 1203bp (cp gene of ASPV) were detected. The results indicated that the transformed exogenous genes were joined into the genome of tobacco plants of 13 lines and could be stably inherited.2. Total proteins were extracted from a tobacco plant (S1) transformed with cp gene of ASPV and non-transgenic tobacco plant and analyzed by SDS-PAGE electrophoresis. A specific band of~44 kDa was observed in the sample S1, which suggested that the ASPV cp gene should be expressed in the sample S1. Further, the expression of cp gene of ASPV in the transgenic tobacco plants was confirmed by western blot using polyclonal antibody of the ASPV. The results showed that the 44 kDa product had specific immune reaction with the polyclonal antibody of ASPV, indicating that the ASPV CP gene was expressed in transgenic tobacco plants.3. The transgenic tobacco plants (To generation) were rooted and explanted into pots in greenhouse. The evaluation of virus resistance was performed by mechanically inoculating with ASPV at 4-6 leaves stage, and non-transgenic tobacco plants were used as controls. Symptoms were recorded 15 days post inoculation. Results showed that plant of 8 lines (S1, S5, S6, S7, S8, S10, A1, A3) were resistant to the virus, which showed mild symptom, and plant of 5 lines (S2, S4, S9, A2, A4) and all non-transgenic tobacco plants showed typical symptom, white necrotic spots on leaves.4. A gfp and ASPV cp gene were gel-purified after PCR amplification and enzyme digestion. The vectors expressing fusion RNAs of the sense (cp+) and anti-sense strand (cp-) of ASPV cp gene with gfp gene, named pCAMBIA1301S -cp(+)-gfp and pCAMBIA1301S -cp(-)-gfp were constructed, respectively. The leaf discs from healthy Nicotiana occidentalis plants with 5-6 leaves were used as explants and transformed with those constructed plasmids by Agrobecterium tumefaciens EHA105 12 lines of plants transformed with pCAMBIA1301S -cp (+)-gfp and 18 lines of plants transformed with pCAMBIA1301S -cp (-)-gfp were obtained after co-culturing and resistance selection on medium with Hygromycin B.
|
Related Dissertations
- Cloning and Expression of CHS and CHI Genes and Their Regulation on the Accumulation of Flavonoids in ’Cara Cara’ Navel Orange (Citrus Sinensis Osbeck) and ’Guoqing NO.4’ Satsuma Mandarin (Citrus Unshiu Marcow),S666.4
- Studies on the Quality of Phisio-Chemical and Fresh Keeping Technologies of Post-Harvest in Volvariella Volvacea,S646.13
- Construction of the Recombinant of HSV-2gD Minotope、 HBsAg、 IL-18 DNA Vaccines and Its Inducing Immune Respons in Mice,R392
- Directed Evolution of Lipase from Penicillium Expansum FS1884 by Error Prone PCR,Q78
- Improvement of the Resistance of Nicotiana Tabaccum to Virus by RNAi and Initial Establishment of Genetic Transformation System of L.regale,S435.72
- Mutagenesis of a Laccase Gene from Pleurotus eryngii in Vitro and Expression in Pichia Pastoris,TQ925
- Survey in Nanjing and Analysis of the Mitochondrial Genome of Frankliniella Occidentalis (Pergande),S433
- Identification of Cyto-and Molecular Genetics of Multisomic Addition Line "Nj08-063" in Brassica Napus and Its Agronomical Traits,S565.4
- Transformation of RdreBlBI Gene Drived by Rd29A in ’Benihope’ Strawberry,S668.4
- GIH cDNA Cloning and Mrna Expression in Litopenaeus Vannamei,S917.4
- The Detection of the Virulence-related Gene from Vibrio Alginolyticus and the Study on Preservation Methods,S943
- Gene Prediction and Sequence Analysis of Insect OBP CSP and sid-1,Q78
- Cloning and Expression Analysis of Scavenger Receptor Class B Type Ⅰ and Antifreeze Proteinstype Ⅱ Genes in Lutjanus Sanguineus,S917.4
- Isolation, Identification and Molecular Characteristics of Japane Encephalitis Virus in Henan Province,S852.65
- Control of Verticillium Wilt Disease of Cotton Plants with the Application of a Bio-Organic Fertilizer and Its Microbiologecal Mechanism in Rhizosphere,S144.1
- Detection of Exogenous Recombinan DNA of Transgenic Rice and Its Rice Product,S511
- Biological Effect of Rare Earth Element and Genetic Transformation on Arnebia Euchroma(Royle) Johnst.Cell,S567.239
- Analysing Sequence Characters of ADSL and PurH Gene and Correlation between Genes Expression and IMP Content in Duck,S834
- Studies on the Difference of PRRSV Infectious and PRRSV ADE,S858.28
- Isolationand Identification of Porcine Parvovirus and Parts of Its Biological Characteristics,S852.65
- Establishing and Applying a Rapid Detection System of Yersinia Enterocolitica,TS207.4
CLC: > Agricultural Sciences > Plant Protection > Pest and Disease Control > Horticultural Crops Pest and Disease Control > Fruit tree pests and diseases > Pome pests and diseases > Apple pests and diseases
© 2012 www.DissertationTopic.Net Mobile
|