genetic engineering in virus 中文意思是什麼

genetic engineering in virus 解釋
病毒基因工程
  • genetic : adj. 1. 遺傳(學)上的。2. 發生的,發展的;創始的。adv. -ically
  • engineering : n. 1. 工程(技術),工程學。2. 開車技術。3. 土木工程,工事。4. 操縱,管理。
  • in : adv 1 朝里,向內,在內。 A coat with a furry side in有皮裡子的外衣。 Come in please 請進來。 The ...
  • virus : n 1 【醫學】病毒;濾過性病原體。2 毒素;毒害。3 惡意,惡毒。4 【計算機】(電腦)病毒〈指擾亂或破...
  1. The research adopts that hu - - ifn gene were introduced into the nuclei of oocytes or cytoplasm of grass carp to develop anti - disease transgenic grass carp breeding researches, combing the adva ntag e of hu - - ifn gene and breeding by genetic engineering, with an aim of finding out an effective way of solving antivirus of hemorrhagic virus of carp completely. in research of transgenic fish, hu - - ifn gene ( recombination gene ) is cutdown and introduced into the nuclei of oocytes or cytoplasm of grass carp at one - cell or two - cell stage via micyoinjection by narashige micyoinjection apparatus

    本研究的目的在於以人的-干擾素基因( ifn - )作為目的基因,與鯉魚-肌動蛋白基因啟動子在體外重組,利用原核顯微注射轉基因技術將人-干擾素基因導入草魚基因組而開展的抗病轉基因草魚育種研究,其結合了干擾素和基因工程育種抗草魚出血病病毒的優點,以期獲得對草魚出血病具有天然抗性的轉基因魚,並在此基礎上培育出草魚抗病新品系。
  2. The results in this experiment are very important for further study on development of genetic engineering vaccine against rabies and on the investigation of molecular epidemiology of rabies virus

    實驗結果對狂犬病的分子流行病學、致病機理的研究及基因工程疫苗開發是十分重要的。
  3. In this study, the recombinant fowl - poxvirus was transfected into expressing the vp3 gene of isolated gpv h1 strain into the cef cells with fpv - 017 by liposome, which have the lacz reporter gene, earlier / latter promoters lp2ep2 of fpv, promoters p7. 5 and p7. 1 of vaccinia virus, replication unnecessary region of fpv - 017. following 6 cycles screenings, clonings, purification of blue plaques, detection of pcr and dot - elisa, which verified the genetic stable vp3 - fowlpox virus recombinant constructed successfully. this study provided the theoretical and practical foundation for development of gpv recombinant fowl - poxvirus genetic engineering vaccine, as well as provided substance preparatory for prevention the high mortality gpv

    本研究採用脂質體轉染方法,將含有完整gpvh1分離株vp3基因、報告基因lacz 、禽痘病毒早晚期啟動子lp2ep2 、痘苗病毒啟動子p7 . 5 、 p11和fpv - 017復制非必須區的轉移載體質粒psy681vp3lacz與fpv - 017共轉染雞胚成纖維細胞,經6輪蝕斑克隆、篩選、表達, pcr鑒定和dot - elisa檢測,證明該重組病毒已構建成功,並獲得了遺傳性狀穩定的鵝細小病毒vp3基因的重組禽痘病毒。
  4. Prevention and cure of the derzsy ' s disease depended on vaccine and antiserum, antibodies of eggs. the vaccines includes goose embryo and duck embryo vaccines which were used 1n breed goose and goslings, and those vaccines have great effect in breeding goose, but the entire virion live vaccines and attenuated vaccines exist many deficiencies. such as preclinical infection, dissemination of virus, recovery of viru5, etc. those proplems can be sol / ed by producing genetic engineering " asclne

    目前使用的疫苗分為種鵝用和雛鵝用的鵝胚和鴨胚化疫苗,這些疫苗在實際生產中發揮巨大作用,因其為全毒苗或弱毒苗,存在著潛伏感染,排毒散毒,毒力返祖的缺陷,基因工程疫苗的研製可解決上述問題。
  5. Introduced infected by the turnip mosaic virus. there are many useful objective genes can be used in vegetable genetic transformation, but the research work of chinese cabbage genetic transformation is little. the reaserch on transforming chinese cabbage using agrobacterium - med ated method has n ' t been report at home and abroad. ln the test, tumv - cp gene was transferred into chinese cabbage ( brassica campestris l. ssp. pekinensis ) via agrobacterium - mediated method. a high effective regeneration and genetic transformatin system has been established, the detection by the method of molecular biology, has proved that the regenerative plants are transgenic plants and the target genes have been expressed transgenic plants partly. meanwhile transgenic progenies were traced and investigated so that heredity, stability and expression of target gene were researched. the virus resistant, stable plants were expected to obt ain so that theoretical base can be established for chinese cabbage breeding by gene engineering

    利用農桿菌介導法轉化大白菜抗病基因的研究工作在國內外未見報道。本課試驗採用農桿菌介導法將tumv - cp基因導入大白菜中,建立了高效的大白菜離體再生、遺傳轉化體系,並對轉基因植株進行分子生物學檢測,證實得到的再生植株為轉基因植株,目的基因已在部分植株上表達。同時,對轉基因植株的後代進行檢測,分析該基因所控制性狀的遺傳穩定性以及基因表達情況,為大白菜基因工程抗病育種提供理論依據。
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