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Journal Abstract Search


254 related items for PubMed ID: 21272623

  • 41. Construction of cDNA library and preliminary analysis of expressed sequence tags from tea plant [Camellia sinensis (L) O. Kuntze].
    Phukon M, Namdev R, Deka D, Modi MK, Sen P.
    Gene; 2012 Sep 10; 506(1):202-6. PubMed ID: 22759521
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  • 42. Generation and analysis of expressed sequence tags from a normalized cDNA library of young leaf from Ma bamboo (Dendrocalamus latiflorus Munro).
    Gao ZM, Li CL, Peng ZH.
    Plant Cell Rep; 2011 Nov 10; 30(11):2045-57. PubMed ID: 21713530
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  • 43. Construction and analysis of an SSH cDNA library of early heat-induced genes of Vigna aconitifolia variety RMO-40.
    Rampuria S, Joshi U, Palit P, Deokar AA, Meghwal RR, Mohapatra T, Srinivasan R, Bhatt KV, Sharma R.
    Genome; 2012 Nov 10; 55(11):783-96. PubMed ID: 23199573
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  • 44. Transcriptional analysis of differentially expressed genes in response to stem inclination in young seedlings of pine.
    Ramos P, Le Provost G, Gantz C, Plomion C, Herrera R.
    Plant Biol (Stuttg); 2012 Nov 10; 14(6):923-33. PubMed ID: 22646487
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  • 45. Molecular characterization and expression of four cDNAs encoding sucrose synthase from green bamboo Bambusa oldhamii.
    Chiu WB, Lin CH, Chang CJ, Hsieh MH, Wang AY.
    New Phytol; 2006 Nov 10; 170(1):53-63. PubMed ID: 16539603
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  • 46. Differential gene expression profile of the calanoid copepod, Pseudodiaptomus annandalei, in response to nickel exposure.
    Jiang JL, Wang GZ, Mao MG, Wang KJ, Li SJ, Zeng CS.
    Comp Biochem Physiol C Toxicol Pharmacol; 2013 Mar 10; 157(2):203-11. PubMed ID: 23164661
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  • 47. Differentially expressed transcripts from leaf and root tissue of Chlorophytum borivilianum: a plant with high medicinal value.
    Kumar S, Kalra S, Kumar S, Kaur J, Singh K.
    Gene; 2012 Dec 10; 511(1):79-87. PubMed ID: 23000016
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  • 48. Isolation, identification and expression analysis of salt-induced genes in Suaeda maritima, a natural halophyte, using PCR-based suppression subtractive hybridization.
    Sahu BB, Shaw BP.
    BMC Plant Biol; 2009 Jun 05; 9():69. PubMed ID: 19497134
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  • 49. Identification, characterization and gene expression analyses of important flowering genes related to photoperiodic pathway in bamboo.
    Dutta S, Biswas P, Chakraborty S, Mitra D, Pal A, Das M.
    BMC Genomics; 2018 Mar 10; 19(1):190. PubMed ID: 29523071
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  • 50. Isolation and analysis of water stress induced genes in maize seedlings by subtractive PCR and cDNA macroarray.
    Zheng J, Zhao J, Tao Y, Wang J, Liu Y, Fu J, Jin Y, Gao P, Zhang J, Bai Y, Wang G.
    Plant Mol Biol; 2004 Aug 10; 55(6):807-23. PubMed ID: 15604718
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  • 51. Identification and analysis of differentially expressed genes in differentiating xylem of Chinese fir (Cunninghamia lanceolata) by suppression subtractive hybridization.
    Wang G, Gao Y, Yang L, Shi J.
    Genome; 2007 Dec 10; 50(12):1141-55. PubMed ID: 18059541
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  • 52. Identification and characterization of two bamboo (Phyllostachys praecox) AP1/SQUA-like MADS-box genes during floral transition.
    Lin EP, Peng HZ, Jin QY, Deng MJ, Li T, Xiao XC, Hua XQ, Wang KH, Bian HW, Han N, Zhu MY.
    Planta; 2009 Dec 10; 231(1):109-20. PubMed ID: 19855996
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  • 53. Identification of genes related to the development of bamboo rhizome bud.
    Wang K, Peng H, Lin E, Jin Q, Hua X, Yao S, Bian H, Han N, Pan J, Wang J, Deng M, Zhu M.
    J Exp Bot; 2010 Dec 10; 61(2):551-61. PubMed ID: 19965904
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  • 54. Plant mitochondrial transcriptomics by quantitative RT-PCR.
    Clifton R, Whelan J.
    Methods Mol Biol; 2007 Dec 10; 372():529-42. PubMed ID: 18314749
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  • 55. Global gene expression analysis of the shoot apical meristem of maize (Zea mays L.).
    Ohtsu K, Smith MB, Emrich SJ, Borsuk LA, Zhou R, Chen T, Zhang X, Timmermans MC, Beck J, Buckner B, Janick-Buckner D, Nettleton D, Scanlon MJ, Schnable PS.
    Plant J; 2007 Nov 10; 52(3):391-404. PubMed ID: 17764504
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  • 56. Identification of differentially expressed genes in the oviduct of two rabbit lines divergently selected for uterine capacity using suppression subtractive hybridization.
    Ballester M, Castelló A, Peiró R, Argente MJ, Santacreu MA, Folch JM.
    Anim Genet; 2013 Jun 10; 44(3):296-304. PubMed ID: 23137011
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  • 57. Identification of sheep ovary genes potentially associated with off-season reproduction.
    Chen L, Liu K, Zhao Z, Blair HT, Zhang P, Li D, Ma RZ.
    J Genet Genomics; 2012 Apr 20; 39(4):181-90. PubMed ID: 22546540
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  • 58. Identification of genes involved in spontaneous leaf color variation in Pseudosasa japonica.
    Yang HY, Xia XW, Fang W, Fu Y, An MM, Zhou MB.
    Genet Mol Res; 2015 Oct 02; 14(4):11827-40. PubMed ID: 26436507
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  • 59. Suppressive subtractive hybridization approach revealed differential expression of hypersensitive response and reactive oxygen species production genes in tea (Camellia sinensis (L.) O. Kuntze) leaves during Pestalotiopsis thea infection.
    Senthilkumar P, Thirugnanasambantham K, Mandal AK.
    Appl Biochem Biotechnol; 2012 Dec 02; 168(7):1917-27. PubMed ID: 23065401
    [Abstract] [Full Text] [Related]

  • 60. Subtractive transcriptome analysis of leaf and rhizome reveals differentially expressed transcripts in Panax sokpayensis.
    Gurung B, Bhardwaj PK, Talukdar NC.
    Funct Integr Genomics; 2016 Nov 02; 16(6):619-639. PubMed ID: 27586658
    [Abstract] [Full Text] [Related]


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