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| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 常玉強 | |
| dc.contributor.author | Yu-Ching Lai | en |
| dc.contributor.author | 賴妤青 | zh_TW |
| dc.date.accessioned | 2021-06-16T17:23:16Z | - |
| dc.date.available | 2017-08-22 | |
| dc.date.copyright | 2012-08-22 | |
| dc.date.issued | 2012 | |
| dc.date.submitted | 2012-08-16 | |
| dc.identifier.citation | 1. 汪迎春、孫勇如、張利明、李文彬(2000)植物花葯花粉特異性基因的調控序列。生物工程進展。20: No. 2
2. 龎靖(2011)建構雙重誘導之植物表現系統(碩士論文,台灣大學)。全國碩博士論文網。 3. Aarts MG., Hodge R., Kalantidis K., Florack D., Wilson ZA, Mulligan BJ, Stiekema WJ., Scott R., Pereira A.(1997)The Arabidopsis MALE STERILITY 2 protein shares similarity with reductases in elongation /condensation complexes. Plant J. 12: 615-623. 4. Borg M., Brownfield L., Twell D.(2009)Male gametophyte development: a molecular perspective. Experimental Botany. 60: 1465–1478. 5. de Block M., Debrouwer D., Moens T.(1997)The development of a nuclear male sterility system in wheat. Expression of the barnase gene under the control of tapetum specific promoters. Theor. Appl. Genet. 95: 125-131. 6. Goldberg RB, Beals TP, Sanders PM.(1993)Anther development: basic principles and practical applications. Plant Cell. 5: 1217–29 7. Gu Y., Li S., Lord EM., Yang Z.(2006) Members of a novel class of Arabidopsis Rho guanine nucleotide exchange factors control Rho GTPase-dependent polar growth. Plant Cell.18(2): 366-81. 8. Hanson D. D., Hamilton D. A., Travis J. L., Bashe D. M., Mascarenhas J. P.(1989) Characterization of a pollen-specific cDNA clone from zea mays and its expression. The Plant Cell. 1: 173-179. 9. Holmes-Davis R, Tanaka CK, Vensel WH, Hurkman WJ, McCormick S.(2005) Proteome mapping of mature pollen of Arabidopsis thaliana. Proteomics. 5(18): 4864-84. 10. Honys D., Reňák D., Twell D.(2006) Male Gametophyte Development and Function. Global Science Books. 9:76-87. 11. Huang M. D., Wei F. J., Wu C. C., Hsing Y. I. C.(2009) Analyses of advanced rice anther transcriptomes reveal global tapetum secretory functions and potential proteins for lipid exine formation. Plant Physiology 149: 694–707. 12. Itoh J. I., Nonomura K. I., Ikeda K., Yamaki S., Inukai Y., Yamagishi H., Kitano H., Nagato Y.(2005) Rice plant development: from zygote to spikelet. Plant Cell Physiol. 46(1): 23–47. 13. Kerim, T., Imin, N., Weinman, J.J., and Rolfe, B.G.(2003). Proteome analysis of male gametophyte development in rice anthers. Proteomics. 3: 738–751. 14. Koltunow A. M., Truettner J., Cox K. H., Wallroth M., Goldberg R. B.(1990) Different temporal and spatial gene expression patterns occur during anther development. The Plant Cell. 2: 1201-1224. 15. Konagaya, K. I., Ando, S., Kamachi, S., Tsuda, M., Tabei, Y.(2008)Efficient production of genetically engineered, male-sterile Arabidopsis thaliana using anther-specific promoters and genes derived from Brassica oleracea and B. rapa. Plant Cell Rep. 27: 1741–1754. 16. Lee, Y.H., Chung, K.H., Kim, H.U., Jin, Y.M., Kim, H.I., Park, B.S.(2003) Induction of male sterile cabbage using a tapetum-specific promoter from Brassica campestris L. ssp. pekinensis. Plant Cell Rep. 22: 268–273. 17. Liu Y.G., Whittier R.F.(1995)Thermal asymmetric interlaced PCR : automatable amplification and sequencing of insert end fragments from P1 and YAC clones for chromosome walking. Genomics. 25: 674 - 681. 18. Luo H., Lee J. Y., Hu Q., Nelson-Vasilchik K., Eitas T. K., Lickwar C., Kausch A. P., Chandlee J. M., Hodges T. K.(2006) RTS, a rice anther specific gene is required for male fertility and its promoter sequence directs tissue-specific gene expression in different plant species. Plant Mol. Biol. 62: 397–408. 19. Ma H.(2005)Molecular genetic analyses of microsporogenesis and microgametogenesis in flowering plants. Plant Biol. 56:393–434. 20. Mariani C., Debeuckeleer M., Truettner J., Leemans J., Goldberg, R. B.(1990)Introduction of male sterility in plants by a chimeric ribonuclease gene. Nature. 347: 737–741. 21. McCormick S.(2004) Control of male gametophyte development. Plant Cell. 16(Suppl.): S142–53. 22. McNeil KJ, Smith AG.(2010)A glycine-rich protein that facilitates exine formation during tomato pollen development. Planta. 231: 793-808. 23. Pacini E.(1996) Types and meaning of pollen carbohydrate reserves. Sexual Plant Reproduction. 9: 362-366. 24. Pacini E.(2000) From anther and pollen ripening to pollen presentation. Plant. Sys. Evol. 222: 19-43. 25. Paddon, C. J., Hartley R. W.(1985) Cloning, sequencing and transcription of an inactivated copy of Bacillus amyloliquefaciens extracellular ribonuclease(barnase). Gene. 40: 231-239. 26. Pina C, Pinto F, Feijó J. A., Becker J. D.(2005) Gene family analysis of the arabidopsis pollen transcriptome reveals biological implications for cell growth, division control, and gene expression regulation. Plant Physiol. 138: 744-756. 27. Schwacke R, Grallath S, Breitkreuz KE, Stransky E, Stransky H, Frommer WB, Rentsch D(1999) LeProT1, a transporter for proline, glycine betaine, and gamma-amino butyric acid in tomato pollen. The Plant Cell. 11: 377-392. 28. Scott R., Dagless E., Hodge R., Paul W., Soufleri I., Draper J.(1991) Patterns of gene expression in developing anthers of Brassica napus. Plant Mol Biol. 17(2): 195-207. 29. Sha Y., Li S., Pei Z., Luo L., Tian Y., He C.(2004) Generation and flanking sequence analysis of a rice T-DNA tagged population. Theor. Appl. Genet. 108: 306-314. 30. Sheu J. J., Yu T. S., Yu S. M.(1996) Carbohydrate starvation stimulates differential expression of rice alpha-amylase genes that is modulates through complicated transcriptional and posttranscriptional processes. J. Biol. Chem. 271: 26998-27004. 31. Swapna L., Khurana R., Vijaya Kumar S., Tyagi A. K., Rao K. V.(2011) Pollen-Specific Expression of Oryza sativa Indica Pollen Allergen Gene(OSIPA) Promoter in Rice and Arabidopsis Transgenic Systems. Mol Biotechnol. 48:49–59. 32. Triglia T., Peterson M. G., Kemp D. J.(1988) A procedure for in vitro amplification of DNA segments that lie outside the boundaries of known sequences. Nucleic Acids Res. 16: 186. 33. Thilmony R., Guttman M., Thomson J. G., Blechl A. E.(2009) The LP2 leucine-rich repeat receptor kinase gene promoter directs organ-specific, light-responsive expression in transgenic rice. Plant Biotechnology Journal. 7: 867–882. 34. Twell D., Yamaguchi J., MeCormick S.,(1990) Pollen-specific gene expression in transgenic plants: coordinate regulation of two different tomato gene promoters during microsporogenesis. Development. 109: 705 - 713 35. Uknes S., Dincher S., Friedrich L., Negrotto D., Williams S., Thompson-Taylor H., Potter S., Ward E., Ryals J.(1993) Regulation of pathogenesis-related PR-1a gene expression in tobacco. The Plant Cell. 5: 159-169. 36. Wu L. J., Zhang Z. J., Zhang H. W., Wang X. C., Huang R. F.(2008) Transcriptional modulation of ethylene response factor protein JERF3 in the oxidative stress response enhances tolerance of tobacco seedlings to salt, drought, and freezing. Plant Physiol. 148: 1953 - 1963. 37. Wyatt P., Hodge R., Smartt S., Draper J., Scott R.(1992) The isolation and characterization of the tapetum-specific Arabidopsis thaliana A9 gene. Plant Mol. Biol. 19: 611-622. 38. Yan Y., An C., Li L., Gu J., Tan G., Chen Z.(2003) T-linker-specific ligation PCR(T-linker PCR): an advanced PCR technique for chromosome walking or for isolation of tagged DNA ends. Nucleic Acids Res. 31: e68. 39. Yang Y. I., Karlson D. T.(2011) Overexpression of AtCSP4 affects late stages of embryo development in Arabidopsis. Experimental Botany.1-13 40. Zhang Y., Feng S., Chen F. F., Chen H. D., Wang J., McCall C., Xiong Y., Deng X. W.(2008) Arabidopsis DDB1-CUL4 ASSOCIATED FACTOR1 forms a nuclear E3 ubiquitin ligase with DDB1 and CUL4 that is involved in multiple plant developmental processes. The Plant Cell. 20: 1437 - 1455. 41. Zhu C. F., Wu J. H., He C. Z.(2010) Induction of chromosomal inversion by integration of T-DNA in the rice genome. J. Genet. Genomics 37: 189−196. 42. Zoe A. Wilson1, Da-Bing Zhang.(2009) From Arabidopsis to rice: pathways in pollen development. Experimental Botany. 60: 1479–1492. | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/63925 | - |
| dc.description.abstract | 為了瞭解水稻花粉專一性基因表現之功能,本試驗根據前人研究針對水稻花粉時期表現量高但功能未知的基因,從中得到啟動子的片段,透過接上報導基因GUS、GFP以及致死基因barnase,來探討啟動子的專一性表現。本試驗分為兩大部份:第一部份為從水稻花粉發育時期中SBS轉錄體資料,選出花粉時期高TPM(transcripts per million)值的基因,在其上游約1.5kb片段處設計專一性引子,藉由PCR分別得到P124與P128啟動子。另外為了利於啟動子分析,將P124啟動子從5’端逐漸刪除(Deletion)為1.2 kb、1 kb、0.9 kb、0.6 kb、0.3 kb之片段。並置於pCAMBIA1301與pCAMBIA1303載體內,建立C1301/C1303報導基因表現系統構築,隨後透過農桿菌轉殖於水稻與阿拉伯芥中。最後將所得水稻轉植株進行TAIL-PCR,藉此合成T-DNA插入側翼序列後,與NCBI資料庫進行比對。第二部分則將P128啟動子接上barnase,預期專一性表現於雄不稔。經由上述所設計的專一性啟動子,在C1301-P124F/C1303-P124F的水稻轉植株中發現GUS明顯表現於花粉時期之花藥維管束及穎花花瓣,其餘根莖葉表現不明顯;阿拉伯芥中GUS出現於開花後的花粉及花藥維管束;C1301-P128F的轉植株水稻的GUS則明顯表現於花粉時期之花藥及花粉。試驗至此,推測P124、P128之啟動子可啟動水稻花粉的相關基因之表現,且具有相當程度的專一性,而P128的刪除分析更有待未來研究深入探討,期望產生無活性之花粉以利雄不稔發展。 | zh_TW |
| dc.description.abstract | In order to illustrate the functions of pollen-specific genes, putative promoter sequences were isolated from genes in rice pollen with high expression. The putative promoters were constructed with reporter genes, GUS, GFP or a lethal gene (barnase), to explore the specificity of the promoter. First, we screened for the genes with high TPM during the development stages of the pollen based on SBS transcription database. Specific primers were designed to amplify the DNA fragments of 1.5 kb upstream the target genes by PCR, which were named P124 and P128. Also, to characterize the P124 sequences, they were sequentially deleted from the 5’ end to acquire fragments of 1.2, 1.0, 0.9, 0.6, and 0.3 kb. The cloned DNA fragments were then constructed into pCAMBIA1301 and pCAMBIA1303 vectors, and introduced into the rice and Arabidopsis plant via Agrobacteria. Genomic DNA of the transgenic rice was subjected to amplify the flanking sequences by TAIL-PCR. In order to assess the ability of triggering male sterility, P128 was constructed with the barnase gene from Bacillus amyloliquefaciens. The GUS expression was observed mainly in vascular bundle of the anther and petal of the C1301/C1303-P124F transgenic rice as well as in vascular bundle of the anther and pollen of the transgenic Arabidopsis. Additionally, GUS was significantly expressed in the anther and pollen of the transgenic rice containing C1301-P128. The sequential deletion analysis of P128 contributes to further research in male sterility from inactive pollens. | en |
| dc.description.provenance | Made available in DSpace on 2021-06-16T17:23:16Z (GMT). No. of bitstreams: 1 ntu-101-R98621113-1.pdf: 3038705 bytes, checksum: a5d966cb3f918cead45bd817f0ef2d0c (MD5) Previous issue date: 2012 | en |
| dc.description.tableofcontents | 口試委員會審定書 i
誌謝 ii 中文摘要 iii 英文摘要 iv 目錄 v 圖目錄 vi 表目錄 viii 附錄目錄 ix 縮寫字對照表 x 前言 01 前人研究 02 實驗設計與流程 08 材料與方法 10 結果 27 討論 39 未來展望 44 參考文獻 45 表 49 圖 54 附錄 80 | |
| dc.language.iso | zh-TW | |
| dc.subject | 花粉 | zh_TW |
| dc.subject | 啟動子 | zh_TW |
| dc.subject | 專一性 | zh_TW |
| dc.subject | 啟動子分析 | zh_TW |
| dc.subject | Pollen | en |
| dc.subject | Specific Promoter | en |
| dc.subject | Promoter Analysis | en |
| dc.title | 水稻花粉專一啟動子之分析 | zh_TW |
| dc.title | Analysis of Rice Pollen-Specific Promoters | en |
| dc.type | Thesis | |
| dc.date.schoolyear | 100-2 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 洪傳揚,杜鎮 | |
| dc.subject.keyword | 花粉,啟動子,專一性,啟動子分析, | zh_TW |
| dc.subject.keyword | Pollen,Specific Promoter,Promoter Analysis, | en |
| dc.relation.page | 85 | |
| dc.rights.note | 有償授權 | |
| dc.date.accepted | 2012-08-16 | |
| dc.contributor.author-college | 生物資源暨農學院 | zh_TW |
| dc.contributor.author-dept | 農藝學研究所 | zh_TW |
| 顯示於系所單位: | 農藝學系 | |
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