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Overexpression of OsNAC17 Enhances Drought Tolerance in Rice : 벼 OsNac17 전사인자의 가뭄저항성 증진에 관한 연구

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dc.contributor.advisor김주곤-
dc.contributor.author김태환-
dc.date.accessioned2017-10-31T07:43:39Z-
dc.date.available2017-10-31T07:43:39Z-
dc.date.issued2017-08-
dc.identifier.other000000146647-
dc.identifier.urihttps://hdl.handle.net/10371/137477-
dc.description학위논문 (석사)-- 서울대학교 국제농업기술대학원 국제농업기술학과, 2017. 8. 김주곤.-
dc.description.abstractDrought stress reduces crop production yields. Plant specific NAC transcription factors in rice are known to play an essential roles in stress resistance transcriptional regulation. However, It is still remains how each NAC genes involve transcriptional regulation in response to drought stress in rice. Here, we show that the rice (Oryza stiva L japonica) NAM, AFTF and CUC transcription factor OsNAC17, which is predominantly induced by abiotic stress in leaf, contributes to the drought tolerance in transgenic rice plants. We generate transgenic plants overexpressing OsNAC17 using constitutive (PGD1) promoter. Ectopic overexpression of OsNAC17 improved drought resistance phenotype at the vegetative stage. Agronomic traits such as grain yield, grain filling rate, and total grain weight improved by 22~64% over wild type plants under drought conditions during the reproductive stage. DEG profiling experiment identified 119 up-regulated genes by more than twofold (P<0.01). Differentially expressed genes include UDP-glycosyltransferase family protein, similar to 2-alkenal reductase (NADPH-dependent oxireductase), similar to retinol dehydrogenase 12, Lipoxygenase, and NB-ARC domain containing protein related in cell death. OsNAC17 acts as a transcriptional activator in transcriptional activation assay, which has an activation domain in C-terminal region. Furthermore, it was proved that OsNAC17 is localized in the nucleus. These result suggest that the overexpression of OsNAC17 improve drought tolerance by regulating ROS related enzymes and by reducing stomatal density.-
dc.description.tableofcontentsIntroduction 1
Materials and Methods 4
1. Vector construction and rice transformation 4
2. RNA isolation and real-time RT-RCR 5
3. Abiotic stress treatment 5
4. Drought tolerance assay 6
5. Characterization of agronomic traits 6
6. Subcellular localization 7
7. Transcriptional activation assay 7
8. Visualization of stomatal density 8
9. RNA sequencing and transcriptome analysis 8
Results 9
1. Structure and phylogenetic analysis of OsNAC17 9
2. OsNAC17 is induced under abiotic stress 10
3. OsNAC17 is a transcription factor that localized in nucleus and acts as a transcriptional activator 10
4. Overexpression of OsNAC17 improves drought tolerance in vegetative stage 12
5. Constitutive overexpression of OsNAC17 increases rice grain yield under field drought conditions 13
6. Identification of DEG involved in the OsNAC17-mediated drought tolerance pathway 14
7. Production of OsNAC17 K/O lines using CRISPR/cas9 system 15

Discussion 43
References 47
Abstract in Korean 51
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dc.formatapplication/pdf-
dc.format.extent2212992 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 국제농업기술대학원-
dc.subjectNAC transcription factors-
dc.subjectdrought tolerance-
dc.subjectROS-
dc.subjecttranscriptional activation-
dc.subjectStomatal density-
dc.subject.ddc631-
dc.titleOverexpression of OsNAC17 Enhances Drought Tolerance in Rice-
dc.title.alternative벼 OsNac17 전사인자의 가뭄저항성 증진에 관한 연구-
dc.typeThesis-
dc.description.degreeMaster-
dc.contributor.affiliation국제농업기술대학원 국제농업기술학과-
dc.date.awarded2017-08-
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