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Journal Abstract Search


593 related items for PubMed ID: 22429285

  • 1. Effects of BmKIT 3 R gene transfer on pupal development of Bombyx mori Linnaeus using a Gal4/UAS binary transgenic system.
    Zhang HK, Cao GL, Zhang XR, Wang XJ, Xue RY, Gong CL.
    J Agric Food Chem; 2012 Mar 28; 60(12):3173-9. PubMed ID: 22429285
    [Abstract] [Full Text] [Related]

  • 2. Effects of BmKIT3R gene transfer on the development and survival of silkworm Bombyx mori.
    Wang X, Cao G, Xue R, Xie M, Zhang X, Yu X, Gong C.
    J Biosci Bioeng; 2011 Dec 28; 112(6):523-8. PubMed ID: 21890407
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  • 3. Effects of egt gene transfer on the development of Bombyx mori.
    Zhang X, Xue R, Cao G, Hu X, Wang X, Pan Z, Xie M, Yu X, Gong C.
    Gene; 2012 Jan 10; 491(2):272-7. PubMed ID: 22004837
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  • 4. An efficient binary system for gene expression in the silkworm, Bombyx mori, using GAL4 variants.
    Kobayashi I, Kojima K, Uchino K, Sezutsu H, Iizuka T, Tatematsu K, Yonemura N, Tanaka H, Yamakawa M, Ogura E, Kamachi Y, Tamura T.
    Arch Insect Biochem Physiol; 2011 Apr 10; 76(4):195-210. PubMed ID: 21254202
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  • 5. Insights into the regulatory characteristics of silkworm fibroin gene promoters using a modified Gal4/UAS system.
    Liu R, Zeng W, Tan T, Chen T, Luo Q, Qu D, Tang Y, Long D, Xu H.
    Transgenic Res; 2019 Dec 10; 28(5-6):627-636. PubMed ID: 31564030
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  • 6. Transgenic breeding of anti-Bombyx mori L. nuclear polyhedrosis virus silkworm Bombyx mori.
    Yang H, Fan W, Wei H, Zhang J, Zhou Z, Li J, Lin J, Ding N, Zhong B.
    Acta Biochim Biophys Sin (Shanghai); 2008 Oct 10; 40(10):873-6. PubMed ID: 18850052
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  • 7. Expression of the hIGF-I gene driven by the Fhx/P25 promoter in the silk glands of germline silkworm and transformed BmN cells.
    Li Y, Cao G, Wang Y, Xue R, Zhou W, Gong C.
    Biotechnol Lett; 2011 Mar 10; 33(3):489-94. PubMed ID: 21072564
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  • 8. Germline transformation of the silkworm Bombyx mori L. using a piggyBac transposon-derived vector.
    Tamura T, Thibert C, Royer C, Kanda T, Abraham E, Kamba M, Komoto N, Thomas JL, Mauchamp B, Chavancy G, Shirk P, Fraser M, Prudhomme JC, Couble P.
    Nat Biotechnol; 2000 Jan 10; 18(1):81-4. PubMed ID: 10625397
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  • 9. Translational enhancement of recombinant protein synthesis in transgenic silkworms by a 5'-untranslated region of polyhedrin gene of Bombyx mori Nucleopolyhedrovirus.
    Iizuka M, Tomita M, Shimizu K, Kikuchi Y, Yoshizato K.
    J Biosci Bioeng; 2008 Jun 10; 105(6):595-603. PubMed ID: 18640598
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  • 10. Reducing blood glucose level in TIDM mice by orally administering the silk glands of transgenic hIGF-I silkworms.
    Cong L, Cao G, Renyu X, Zhonghua P, Xiaojian Z, Zhou W, Gong C.
    Biochem Biophys Res Commun; 2011 Jul 15; 410(4):721-5. PubMed ID: 21672515
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  • 11. Functional characterization of the vitellogenin promoter in the silkworm, Bombyx mori.
    Xu J, Wang YQ, Li ZQ, Ling L, Zeng BS, You L, Chen YZ, Aslam AF, Huang YP, Tan AJ.
    Insect Mol Biol; 2014 Oct 15; 23(5):550-7. PubMed ID: 24828437
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  • 12. Construction of a binary transgenic gene expression system for recombinant protein production in the middle silk gland of the silkworm Bombyx mori.
    Tatematsu K, Kobayashi I, Uchino K, Sezutsu H, Iizuka T, Yonemura N, Tamura T.
    Transgenic Res; 2010 Jun 15; 19(3):473-87. PubMed ID: 19789990
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  • 13. Transcription factors BmPOUM2 and BmβFTZ-F1 are involved in regulation of the expression of the wing cuticle protein gene BmWCP4 in the silkworm, Bombyx mori.
    Deng H, Zheng S, Yang X, Liu L, Feng Q.
    Insect Mol Biol; 2011 Feb 15; 20(1):45-60. PubMed ID: 20825506
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  • 14. YorkieCA overexpression in the posterior silk gland improves silk yield in Bombyx mori.
    Zhang P, Liu S, Song HS, Zhang G, Jia Q, Li S.
    J Insect Physiol; 2017 Jul 15; 100():93-99. PubMed ID: 28583832
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  • 15. Targeted gene expression using the GAL4/UAS system in the silkworm Bombyx mori.
    Imamura M, Nakai J, Inoue S, Quan GX, Kanda T, Tamura T.
    Genetics; 2003 Nov 15; 165(3):1329-40. PubMed ID: 14668386
    [Abstract] [Full Text] [Related]

  • 16. The intronic promoter of Actin4 mediates high-level transgene expression mainly in the wing and epidermis of silkworms.
    Tan T, Liu R, Luo Q, Ma J, Ou Y, Zeng W, Feng L, Xu H.
    Transgenic Res; 2020 Apr 15; 29(2):243-251. PubMed ID: 31960249
    [Abstract] [Full Text] [Related]

  • 17. Knockdown of ecdysis-triggering hormone gene with a binary UAS/GAL4 RNA interference system leads to lethal ecdysis deficiency in silkworm.
    Dai H, Ma L, Wang J, Jiang R, Wang Z, Fei J.
    Acta Biochim Biophys Sin (Shanghai); 2008 Sep 15; 40(9):790-5. PubMed ID: 18776991
    [Abstract] [Full Text] [Related]

  • 18. An efficient and safe strategy for germ cell-specific automatic excision of foreign DNA in F1 hybrid transgenic silkworms.
    Long D, Liu R, Huang Y, Fu A, Zhang Y, Hao Z, Li Q, Xu H, Xiang Z, Zhao A.
    Insect Sci; 2024 Feb 15; 31(1):28-46. PubMed ID: 37356084
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  • 19. Elementary research into the transformation BmN cells mediated by the piggyBac transposon vector.
    Xue R, Li X, Zhao Y, Xingliang P, Zhu X, Cao G, Gong C.
    J Biotechnol; 2009 Dec 15; 144(4):272-8. PubMed ID: 19761806
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  • 20. BmBR-C Z4 is an upstream regulatory factor of BmPOUM2 controlling the pupal specific expression of BmWCP4 in the silkworm, Bombyx mori.
    Deng H, Niu K, Zhang J, Feng Q.
    Insect Biochem Mol Biol; 2015 Nov 15; 66():42-50. PubMed ID: 26363295
    [Abstract] [Full Text] [Related]


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