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  1. NTU Theses and Dissertations Repository
  2. 生物資源暨農學院
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請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/18692
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor陳凱儀
dc.contributor.authorSzu-Hung Wuen
dc.contributor.author吳思宏zh_TW
dc.date.accessioned2021-06-08T01:19:45Z-
dc.date.copyright2014-08-14
dc.date.issued2014
dc.date.submitted2014-08-08
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彭瑞菊、陳昇寬. (2006) 番茄黃化捲葉病毒田間監測及銀葉粉蝨傳毒試驗. 臺南區農業改良場研究彙報:9-16.
戴振洋、趙佳鴻. (2013) 臺灣番茄病毒病介紹~ 以黃化捲葉病毒病為例. 臺中區農業改良場特刊:73-80.
Agrama H, J Scott (2006) Quantitative trait loci for Tomato yellow leaf curl virus and Tomato mottle virus resistance in tomato. Journal of the American Society for Horticultural Science 131:267-272.
Anbinder I, M Reuveni, R Azari, I Paran, S Nahon, H Shlomo, L Chen, M Lapidot, I Levin (2009) Molecular dissection of Tomato leaf curl virus resistance in tomato line TY172 derived from Solanum peruvianum. Theoretical and Applied Genetics 119:519-530.
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Chague V, J Mercier, M Guenard, A de Courcel, F Vedel (1997) Identification of RAPD markers linked to a locus involved in quantitative resistance to TYLCV in tomato by bulked segregant analysis. Theoretical and Applied Genetics 95:671-677.
Cohen S, Y Antignus (1994) Tomato yellow leaf curl virus, a whitefly-borne geminivirus of tomatoes. p.259-288. In: Advances in Disease Vector Research Vol.10, KF Harris (ed.), Springer, Dordrecht, The Netherlands.
de Castro AP, JM Blanca, MJ Diez, FN Vinals (2007) Identification of a CAPS marker tightly linked to the tomato yellow leaf curl disease resistance gene Ty-1 in tomato. European Journal of Plant Pathology 117:347-356.
Fulton TM, J Chunwongse, SD Tanksley (1995) Microprep protocol for extraction of DNA from tomato and other herbaceous plants. Plant Molecular Biology Reporter 13:207-209.
Garcia BE, E Graham, KS Jensen, P Hanson, L Mejia, DP Maxwell (2007) Co-dominant SCAR marker for detection of the begomovirus-resistance Ty-2 locus derived from Solanum habrochaites in tomato germplasm. Tomato Genetics Cooperative Report 57:21-24.
Green SK, S Shanmugasundaram (2007) AVRDC's international networks to deal with the tomato yellow leaf curl disease: the needs of developing countries. p.417-439. In: Tomato yellow leaf curl virus disease: management, molecular biology, breeding for resistance, H Czosnek (ed.), Springer, Dordrecht, The Netherlands.
Hanson PM, D Bernacchi, S Green, SD Tanksley, V Muniyappa, AS Padmaja, HM Chen, G Kuo, D Fang, JT Chen (2000) Mapping a wild tomato introgression associated with tomato yellow leaf curl virus resistance in a cultivated tomato line. Journal of the American Society for Horticultural Science 125:15-20.
Hanson PM, S Green, G Kuo (2006) Ty-2, a gene on chromosome 11 conditioning geminivirus resistance in tomato. Tomato Genetics Cooperative Report 56:17-18.
Hutton SF, JW Scott, DJ Schuster (2010) Fine mapping of a begomovirus resistance gene in tomato, Proceedings of the Plant & Animal Genomes XVIII Conference. CA, USA: San Diego.
Hutton SF, JW Scott, DJ Schuster (2012) Recessive resistance to tomato yellow leaf curl virus from the tomato cultivar Tyking is located in the same region as Ty-5 on chromosome 4. HortScience 47:324-327.
Ji Y, M Salus, B van Betteray, J Smeets, K Jensen, C Martin, L Mejia, JW Scott, M Havey, D Maxwell (2008) Co-dominant SCAR markers for detection of the Ty-3 and Ty-3a loci from Solanum chilense at 25 cM of chromosome 6 of tomato. Tomato Genetics Cooperative Report 57:25-29.
Ji Y, DJ Schuster, JW Scott (2007a) Ty-3, a begomovirus resistance locus near the tomato yellow leaf curl virus resistance locus Ty-1 on chromosome 6 of tomato. Molecular Breeding 20:271-284.
Ji Y, JW Scott (2006) Development of breeder friendly markers for begomovirus resistance genes derived from L. chilense. Proceedings of the Tomato Breeders Roundtable. Tampa, FL, USA, May:7-12.
Ji Y, JW Scott, P Hanson, E Graham, DP Maxwell (2007b) Sources of resistance, inheritance, and location of genetic loci conferring resistance to members of the tomato-infecting begomoviruses. p.343-362. In: Tomato Yellow Leaf Curl Virus Disease, H Czosnek (ed.), Springer, Dordrecht, The Netherlands.
Ji Y, JW Scott, DJ Schuster (2009a) Toward fine mapping of the tomato yellow leaf curl virus resistance gene Ty-2 on chromosome 11 of tomato. HortScience 44:614-618.
Ji Y, JW Scott, DJ Schuster, DP Maxwell (2009b) Molecular mapping of Ty-4, a new tomato yellow leaf curl virus resistance locus on chromosome 3 of tomato. Journal of the American Society for Horticultural Science 134:281-288.
Kadirvel P, R de la Pena, R Schafleitner, S Huang, S Geethanjali, L Kenyon, W Tsai, P Hanson (2013) Mapping of QTLs in tomato line FLA456 associated with resistance to a virus causing tomato yellow leaf curl disease. Euphytica 190:297-308.
Milo J (2001) The PCR-based marker REX-1, linked to the gene Mi, can be used as a marker to TYLCV tolerance. Proceedings of the Tomato Breeders Roundtable, Antigua, Guatemala, March:12-16.
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Tsai W, S Shih, L Kenyon, S Green, FJ Jan (2011) Temporal distribution and pathogenicity of the predominant tomato‐infecting begomoviruses in Taiwan. Plant Pathology 60:787-799.
Verlaan MG, SF Hutton, RM Ibrahem, R Kormelink, RG Visser, JW Scott, JD Edwards, Y Bai (2013) The tomato yellow leaf curl virus resistance genes Ty-1 and Ty-3 are allelic and code for DFDGD-class RNA–dependent RNA polymerases. PLoS Genetics 9:e1003399.
Verlaan MG, D Szinay, SF Hutton, H de Jong, R Kormelink, RG Visser, JW Scott, Y Bai (2011) Chromosomal rearrangements between tomato and Solanum chilense hamper mapping and breeding of the TYLCV resistance gene Ty‐1. The Plant Journal 68:1093-1103.
Vidavsky F, H Czosnek (1998) Tomato breeding lines resistant and tolerant to tomato yellow leaf curl virus issued from Lycopersicon hirsutum. Phytopathology 88:910-914.
Yang X, M Caro, SF Hutton, JW Scott, Y Guo, X Wang, MH Rashid, D Szinay, H de Jong, RG Visser, Y Bai, Y Du (2014) Fine mapping of the tomato yellow leaf curl virus resistance gene Ty-2 on chromosome 11 of tomato. Molecular Breeding 34:749-760.
Zamir D, I Ekstein-Michelson, Y Zakay, N Navot, M Zeidan, M Sarfatti, Y Eshed, E Harel, T Pleban, H Van-Oss (1994) Mapping and introgression of a tomato yellow leaf curl virus tolerance gene, Ty-1. Theoretical and Applied Genetics 88:141-146.
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dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/18692-
dc.description.abstract番茄黃化捲葉病毒病 (tomato yellow leaf curl virus disease) 流行於熱帶與亞熱帶地區,常造成番茄產量極為嚴重的損失。本研究的目的在開發位於Ty-1/Ty-3抗病基因座內的「酶切增幅多型性序列」 (Cleaved Amplified Polymorphic Sequence, CAPS) 分子標誌,並利用抗病自交系T3224與不抗此病毒病的野生番茄Solanum pimpinellifolium 種原L3708雜交所建立之F2:3系統分離族群,驗證該系統分離族群在粉蝨傳媒病圃接種番茄捲葉病毒的病徵與此CAPS分子標誌基因型之間的相關性。試驗結果發現藉由比較抗病對偶基因序列與感病對偶基因序列之間的單一核苷酸多型性 (single nucleotide polymorphism, SNP),抗病自交系T3224的對偶基因與Ty-3抗病對偶基因最相似。本試驗由區分抗病對偶基因與感病對偶基因之間的一個SNP,開發出CAPS分子標誌RSp14B。在2012年秋作和2013年春作,具有不同RSp14B基因型植株之間,番茄黃化捲葉病毒病的罹病程度皆呈現統計上顯著的差異。zh_TW
dc.description.abstractTomato yellow leaf curl virus disease often causes severe yield losses in tomato production especially in tropical and subtropical areas. The purpose of the current study was to develop the cleaved amplified polymorphic sequences (CAPS) marker at the Ty-1/Ty-3 locus resistant to the tomato yellow leaf curl virus disease. F2:3 families derived from the cross of the resistant inbred line T3224 and the susceptible wild tomato accession L3708 (Solanum pimpinellifolium) were used to validate the correlation between the genotypes of the CAPS marker and the disease severity in the field. The results showed that the allele of the Ty-1/Ty-3 locus in the inbred line T3224 showed the highest sequence similarity to the Ty-3 allele based on the comparison of SNPs between the resistant alleles and the susceptible alleles. The CAPS marker RSp14B was developed based on one SNP site that distinguishes the resistant and susceptible alleles of the Ty-1/Ty-3 locus. Statistically significant differences for severity of tomato yellow leaf curl virus disease were observed among tomato plants with different genotypes of the RSp14B marker in the F2:3 families in the field trials in Fall 2012 and Spring 2013.en
dc.description.provenanceMade available in DSpace on 2021-06-08T01:19:45Z (GMT). No. of bitstreams: 1
ntu-103-R00621120-1.pdf: 2985902 bytes, checksum: 36f6719f9347a56079b2032ca69c5901 (MD5)
Previous issue date: 2014
en
dc.description.tableofcontents摘要 i
Abstract ii
表目錄 v
圖目錄 vi
一、前言 1
二、研究目的 6
三、材料與方法 7
3.1 試驗材料 7
3.2 參試材料接種番茄黃化捲葉病毒的方法與試驗設計 7
3.3 參試材料的病徵評估方法 7
3.4 基因組DNA的萃取與定量 11
3.5 Ty-1/Ty-3基因座外顯子區間之重新定序 12
3.6 CAPS標誌設計與基因型判定 15
3.7 統計分析 16
四、結果 17
4.1 CAPS分子標誌之開發 17
4.2 CAPS分子標誌之檢測結果 22
五、討論 27
5.1 胺基酸多型性位點 27
5.2 病徵調查 28
六、引用文獻 30
附錄 33
附表一、12個組合中各自所含的雙親、F1及250個F2:3系統編號 33
附表二、150個F2系統的分子標誌RSp14B基因型和6次病徵調查所得之平均等級。 34
附表三、台南地區2012年12月及2013年4、5月的月平均氣溫、雨量及降水日數 37
附圖一、以分子標誌RSp14B檢測150個F2系統所得之電泳圖。有單一一條700 bp條帶者判定為A,有兩條500 bp及 200 bp條帶者判定為B,有三條條帶皆有者判定為H。 38
dc.language.isozh-TW
dc.title開發番茄抗黃化捲葉病毒病基因座Ty-1/Ty-3之分子標誌zh_TW
dc.titleDevelopment of a molecular marker at the Ty-1/Ty-3 locus resistant to tomato yellow leaf curl virusen
dc.typeThesis
dc.date.schoolyear102-2
dc.description.degree碩士
dc.contributor.oralexamcommittee胡凱康,陳正次
dc.subject.keyword番茄黃化捲葉病毒病,分子標誌,zh_TW
dc.subject.keywordtomato yellow leaf curl virus,molecular marker,Ty-1/Ty-3,en
dc.relation.page38
dc.rights.note未授權
dc.date.accepted2014-08-08
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
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