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  • 學位論文

東亞蘭嵌紋病毒分離株移動機制的研究與病毒誘導基因靜默系統的建立

Studies the Cymbidium mosaic virus movement mechanism and establishment of a virus-induced gene silencing (VIGS) system

指導教授 : 葉信宏

摘要


東亞蘭嵌紋病毒(Cymbidium mosaic virus) 隸屬於Flexiviridae科下的Potexvirus屬,為最主要為害蘭花的病毒。由於蘭花栽培已經成為台灣最重要的農業產業之一,所以相對的CymMV也成為經濟上相當重要的病毒。雖然Potexvirus屬已被廣泛的研究,但是針對CymMV所做的研究還是集中在病毒分離株的基因定序以及偵測。此論文中我收集了各種不同的CymMV分離株,除了發展一套病毒偵測之方法外,亦利用這些分離株進行基礎與應用兩方面的研究。在本論文的第一部分我針對同一病毒不同之分離株於宿主內不同之移動特性進行探討,透過這個研究不僅了解了參與CymMV病毒分離株移動的因子,同時也對相關的分子機制做一系列探討。另外我進一步利用無病徵的CymMV分離株構築病毒誘導基因靜默載體以進行蘭花的功能性基因體研究,同時也發展了一套策略克服蘭花生長期長而不利於研究的問題。這些結果詳細描述於論文的第2和第3章,同時先前也發表成兩篇論文: Virology, 388:147-159. 和Plant Physiol. 143:558-569.

並列摘要


Cymbidium mosaic virus (CymMV) is a prevalent orchid virus and belongs to the genus Potexvirus in the family Flexiviridae (Adams et al., 2005b). Because the cultivation of orchids has become an important industry, CymMV is now a very economically important virus. Although potexvirus has been extensively studied, the study of CymMV remains focused on the isolate sequencing and detection. In my thesis, I have collected several CymMV isolates. Besides to develop the methods for detection of these isolates, I also utilized these isolates for basic and applied studies. In the first part of my thesis I established a system for the study of isolate-dependent host movement study. The studies revealed not only identify the factors involved in CymMV isolate dependent movement but also the molecular mechanism involved in CymMV movement. In addition, we utilized the collected symptomless CymMV isolates to develop virus-induced gene silencing (VIGS) vectors for orchid functional genomics studies. Beside the vector, we also develop a strategy to overcome the obstacles lie in the study of plants with long life cycle such as Phalaenopsis orchids. The results were detailed described in chapter 2 and 3 and published in two separated papers: Virology, 388:147-159 and Plant Physiol. 143:558-569.

並列關鍵字

CymMV viral vector movement Phalaenopsis orchid

參考文獻


Angell SM, Davies C, and Baulcombe DC. (1996) Cell-to-cell movement of potatovirus X is associated with a change in th esize-exclusion limit of plasmodesmata in trichome cells of Nicotiana clevelandii. Virology. 216:197–201.
Atabekov JG, Rodionova NP, Karpova OV, Kozlovsky SV, and Poljakov VY. (2000) The movement protein-triggered in situ conversion of potato virus X virion RNA from a nontranslatable into a translatable form. 271:259-263.
Chang C, Chen YC, Hsu YH, Wu JT, Hu CC, Chang WC, and Lin NS. (2005) Transgenic resistance to Cymbidium mosaic virus in Dendrobium expressing the viral xapsid protein gene. 14:41-46
Cheng JH, Peng CW, Hsu YH, and Tsai CH. (2002) The synthesis of minus-strand RNA of bamboo mosaic potexvirus initiates from multiple sites within the poly(A) tail. J Virol. 147:683-693.
Cheng IH, Meng M, Hsu YH, and Tsai CH. (2003) Functional analysis of the cloverleaf-like structure in the 3 untranslated region of bamboo mosaic potexvirus RNA revealed dual roles in viral RNA replication and long distance movement. Virology. 315:56-67.

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