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油菜BnHMGB2基因的克隆及表达分析 被引量:8

Cloning and Expression Analysis of BnHMGB2 Gene in Brassica napus
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摘要 通过RACE技术从陇油6号油菜中克隆得到了一种新的BnHMGB2基因的cDNA,全长823 bp,其中包括438 bp的开放阅读框,131 bp的5'非翻译区(5'UTR),253 bp的3'非翻译区(3'UTR)。与拟南芥AtHMGB2的同源性达到了87.4%,因此命名为BnHMGB2(GenBank登录号:JN807314)。该基因编码145个氨基酸的蛋白质,分子量15.9 KDa,等电点为5.63。实时荧光定量PCR结果表明该基因在油菜根、茎、叶、下胚轴均有表达,根中表达量最高。同时,该基因的表达受低温胁迫的诱导,表明该基因在油菜适应低温胁迫的过程中发挥作用。 A new cDNA BnHMGB2 was isolated from Brassica napus long you6 by RACE. The cloned full- length cDNA was 823 bp, contained a 438 bp ORF, a 5'untranslated region (5-UTR) of 131 bp, and a 3'un- translated region (3'UTR) of 253 bp. The nucleotide sequence of BnHMGB2 was 87.4% identical with the Ara- bidopsis thaliana AtHMGB2, so it was named BnHMGB2( GenBank accession: JN807314). BnHMGB2 encoded a protein of 145 amino acids with a deduced molecular weight of about 15.9 KDa and with a PI of 5.63. Analysis by real-time RT-PCR indicated that BnHMGB2 was expressed in root, stem, leaf and hypocotyl of B. napus and relatively higher abundance was observed in root tissue. Sequence analysis indicated that the BnMKK2 :protein exhibited closest homology to MAPKK which is responded to cold stress, and BnHMGB2 played an important role in defending cold stress.
出处 《植物研究》 CAS CSCD 北大核心 2012年第6期724-730,共7页 Bulletin of Botanical Research
基金 国家自然科学基金(30960065 31160089 31070358) 甘肃省高等学校基本科研业务费项目
关键词 陇油6号 BnHMGB2基因 分子克隆 表达分析 longyou 6 BnHMGB2 gene gene cloning expression analysis
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  • 1钱若兰 陈雅娣 等.人体β-珠蛋白基因5'旁侧DNA序列内的负调控区域1(NCR1)与HMG蛋白质(1+2)的相互作用[J].中国科学:B辑,1992,(10):1045-1051.
  • 2Agresti A, Bianchi ME (2003). HMGB proteins and gene expression. Curr. Opin. Gen. Dev. 13, 170-178.
  • 3Barrero JM, Rodriguez PL, Quesada V, Piqueras P, Ponce MR, Micol JL (2006). Both abscisic acid (ABA)-dependent and ABA- independent pathways govern the induction of NCED3, AA03 and ABA1 in response to salt stress. Plant Cell Environ. 29, 2000-2008.
  • 4Bechtold N, Pelletier G (1998). In planta Agrobacterium-mediated transformation of adult Arabidopsis thaliana plants by vacuum infiltration. Methods Mol. Biol. 82, 259-266.
  • 5Bonaldi T, Langst G, Strohner R, Becker PB, Bianchi ME (2002). The DNA chaperone HMGB1 facilitates ACF/CHRAC-dependent nucleosome sliding. EMBO J. 21, 6865-6873.
  • 6Bustin M (1999). Regulation of DNA-dependent activities by the functional motifs of the high-mobility-group chromosomal proteins. Mol. Cell Biol. 19, 5237-5246.
  • 7Bustin M (2001). Revised nomenclature for high mobility group (HMG) chromosomal proteins. Trends Biochem. Sci. 26, 152-153.
  • 8Bustin M, Reeves R (1996). High mobility-group chromosomal proteins: architectural components that facilitate chromatin function. Prog. Nucleic Acids Res. 54, 35-100.
  • 9Calogero S, Grassi F, Aguzzi A, Voigtlander T, Ferrier P, Ferrari S et al. (1999). The lack of chromosomal protein HMG1 does not disrupt cell growth but causes lethal hypoglycaemia in newborn mice, Nat. Genet, 22, 276-280.
  • 10Cavalar M, Moller C, Krohn NM, Grasser KD, Peterhansel C (2003). The interaction of DOF transcription factors with nucleosomes depends on the positioning of the binding site and is facilitated by maize HMGB5. Biochemistry 42, 2149-2157.

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