VIRUS-DERIVED RNA SILENCING USING TSL MUTATION

The present invention relates to a mechanism which uses TSL (serine/threonine protein kinase, tousled) or a homologous gene thereof from Arabidopsis and other plants to induce the transcription of a virus and to engage specifically in gene silencing. Specifically, TSI mutation can affect extrinsic g...

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Hauptverfasser: MOHAMMAD NAZIMUDDIN, KIM, JAE YEAN
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KIM, JAE YEAN
description The present invention relates to a mechanism which uses TSL (serine/threonine protein kinase, tousled) or a homologous gene thereof from Arabidopsis and other plants to induce the transcription of a virus and to engage specifically in gene silencing. Specifically, TSI mutation can affect extrinsic gene silencing without affecting at all the endogenous production or activation of miRNA or tasiiRNA that plants inherently have, thereby minimizing side effects for RNAi technology. Therefore, the present invention can be usefully employed in inhibiting copying of plant viruses, reducing virus proteins or virus vector-mediated recombination proteins, enhancing the virus resistance of farming goods, and the like. 본 발명은 애기장대() 및 타 식물에서 TSL(serine/threonine protein kinase, TOUSLED ) 또는 그 상동체를 이용하여 외부 유전자 및 바이러스 유도 전사 후 유전자침묵에 특이하게 관여하는 기작에 관한 것으로, 특히, tsl 돌연변이는 식물체가 갖는 고유의 miRNA 또는 tasiRNA 등의 내생성 생산이나 활성에는 전혀 영향을 미치지 않고, 외인성 유전자침묵에 대해서만 영향을 미치는 바, RNAi 기술에 대한 부작용을 최소화 할 수 있어 식물 바이러스의 복제, 바이러스 단백질, 바이러스 벡터 매개 재조합 단백질 또는 농작물의 바이러스 저항성 증대 등에 유용하게 활용될 수 있을 것이다.
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Specifically, TSI mutation can affect extrinsic gene silencing without affecting at all the endogenous production or activation of miRNA or tasiiRNA that plants inherently have, thereby minimizing side effects for RNAi technology. Therefore, the present invention can be usefully employed in inhibiting copying of plant viruses, reducing virus proteins or virus vector-mediated recombination proteins, enhancing the virus resistance of farming goods, and the like. 본 발명은 애기장대() 및 타 식물에서 TSL(serine/threonine protein kinase, TOUSLED ) 또는 그 상동체를 이용하여 외부 유전자 및 바이러스 유도 전사 후 유전자침묵에 특이하게 관여하는 기작에 관한 것으로, 특히, tsl 돌연변이는 식물체가 갖는 고유의 miRNA 또는 tasiRNA 등의 내생성 생산이나 활성에는 전혀 영향을 미치지 않고, 외인성 유전자침묵에 대해서만 영향을 미치는 바, RNAi 기술에 대한 부작용을 최소화 할 수 있어 식물 바이러스의 복제, 바이러스 단백질, 바이러스 벡터 매개 재조합 단백질 또는 농작물의 바이러스 저항성 증대 등에 유용하게 활용될 수 있을 것이다.</abstract><oa>free_for_read</oa></addata></record>
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subjects AGRICULTURE
ANIMAL HUSBANDRY
BEER
BIOCHEMISTRY
CHEMISTRY
COMPOSITIONS THEREOF
CULTURE MEDIA
ENZYMOLOGY
FISHING
FORESTRY
HUMAN NECESSITIES
HUNTING
METALLURGY
MICROBIOLOGY
MICROORGANISMS OR ENZYMES
MUTATION OR GENETIC ENGINEERING
NEW PLANTS OR PROCESSES FOR OBTAINING THEM
PLANT REPRODUCTION BY TISSUE CULTURE TECHNIQUES
PROPAGATING, PRESERVING OR MAINTAINING MICROORGANISMS
SPIRITS
TRAPPING
VINEGAR
WINE
title VIRUS-DERIVED RNA SILENCING USING TSL MUTATION
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