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海马齿SpSCL1基因启动子克隆及序列分析 被引量:9

Cloning and sequence analysis of SpSCL1 promoter from Sesuvium portulacastrum
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摘要 GRAS蛋白是植物特有的一类蛋白家族,在植物的生长发育方面具有重要作用。根据前期分离的海马齿SpSCL1基因的5'端序列,设计特异引物进行Genome Walking,从海马齿基因组DNA中克隆了SpSCL1基因上游的1 254 bp片段。序列分析表明,该序列包含681 bp的启动子调控序列及573 bp的基因编码序列,启动子调控序中除含有典型的真核生物核心启动子区域(-60^-10bp)外,还含有多个TATA-box、CAAT-box等启动子元件以及多种与脱水、耐盐和光响应相关的顺式作用元件。结果预示海马齿SpSCL1可能在抗旱、耐盐以及光敏色素信号转导途径中发挥重要作用。 The GRAS proteins are a recently identified family of plant-specific proteins, which play a crucial role in diverse plant growth and development. Specific primers was designed according to the 5 legion of SpSCL1 gene from Sesuvium portulacastrum, the 1 254 bp 5regulatory sequenee of SpSCL1 was cloned from shoot genomie DNA of Sesuvium portulacastrum by Genome Walking method. Sequence analysis showed the sequence contains 681 bp of the promoter regulation sequence and the gene coding region sequence of 573 bp, the promoter regulation sequence consisted of a typical core promoter region of eukaryotic (-60-10 bp), several promoter element such as TATA-box and CAAT-box, as well as many cis-regulatory elements related to salt, dehydration and stress responses, there are also some eis-regulatory elements related to light responses. It suggested that SpSCL1 gene might play an important role in the salt tolerance, drought tolerance, phytochrome signal transduction pathways.
出处 《广东农业科学》 CAS CSCD 北大核心 2013年第4期124-127,共4页 Guangdong Agricultural Sciences
基金 国家自然科学基金(31000313) 中央级公益性科研院所业务费专项资金(ITBB110201)
关键词 海马齿 SpSCL1启动子 顺式调控元件 耐盐 抗旱 光敏色素信号转导 Sesuvium portulacastrum SpSCL1 promoter cis-regulatory elements salt tolerance drought tolerance phytochrome signal transduction pathways
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参考文献17

  • 1Pysh L D,Wysocka-Diller J W,Camilleri C, et al.The GRASgene family inArabidopsis: sequence characterization and basic expression analysis of the SCARECROW-LIKE genes [J].Plant J, 1999,18:111-119.
  • 2郭华军,焦远年,邸超,姚冬霞,张盖华,郑雪,刘岚,张群莲,郭蔼光,苏震.拟南芥转录因子GRAS家族基因群响应渗透和干旱胁迫的初步探索[J].植物学报,2009,44(3):290-299. 被引量:31
  • 3Benjamin Fode,Tanja Siemse, Corinna Thurow, et akThe arabidopsis GRAS Protein SCL14 Interacts with ClassII TGA transcription factors and is essential for the activation of stress-inducible promoters[J].The Plant Cell, 200820:. 3122-3135.
  • 4Ma H S.The salt- and drought-inducible poplar GRAS protein SCL7 confers salt and drought tolerance in Arabidopsis thaliana[J]Journal of Experimental Botany, 2010,14.'4011-4-019.
  • 5Yang M G , Dan L , Peng S, et ak Overexpression of the Brassica napus BnLAS gene in Arabidopsis affects plant development and increases drought tolerance [J} Plant Cell,2011,30373-388.
  • 6Vandenabeele S, Van Der Kelen K, Dat J, et aL A comprehensive analysis ofhydrogen peroxide-induced gene expression in tobacco [J]. Proc. Natl Acad~Sci. USA, 2003,100:16113-16118.
  • 7Mayrose M, Ekengren S K, Melech-Bonfil S, et al. A novel link between tomato GRAS genes, plant disease resistance and mechanical stress response[J]. Mol Plant Pathol 2006,7(6):593-604.
  • 8Robinson K A, Koepke J I, Kharodawala M, et al. A network of yeast basic helix-loop-helix interactions.[J] Nucl. Acids Res., 2000, 28(22): 4460-4466.
  • 9Pakr H C, Kim M L Kang Y H, et al. Pathogen-and NaCl-induced expression of the SCaM--.4 promoter is mediated in part by a GT-1 box that interacts with a GT-1-like transcription factor [J]. Plant Physi01,2004,135..2150-2161.
  • 10Zhou J M, Tang X Y, Martin G B.T he Pro kinase conferring resistance to tomato bacterial speck disease interacts with proteins that bind a cis-element of pathogenesis-related genes [J]. EMBO J, 1997,16: 3207-3218.

二级参考文献69

  • 1Balazadeh S, Riano-Pachon DM, Mueller-Roeber B (2008). Transcription factors regulating leaf senescence in Arabidopsis thaliana. Plant Biol (Stuttg) 10(Suppl 1 ), 63-75.
  • 2Barrett T, Troup DB, Wilhite SE, Ledoux P, Rudnev D, Evangelista C, Kim IF, Soboleva A, Tomashevsky M, Marshall KA, Phillippy KH, Sherman PM, Muertter RN, Edgar R (2009). NCBI GEO: archive for high-throughput functional genomic data. Nucleic Acids Res 37, D885-D890.
  • 3Bolle C (2004). The role of GRAS proteins in plant signal transduction and development. Planta 218,683-692.
  • 4Bolle C, Koncz C, Chua NH (2000). PAT1, a new member of the GRAS family, is involved in phytochrome A signal transduction. Genes Dev 14, 1269-1278.
  • 5Braam J (2005). In touch: plant responses to mechanical stimuli. New Phyto1165, 373-389.
  • 6Brazma A, Kapushesky M, Parkinson H, Sarkans U, Shojatalab M (2006). Data storage and analysis in ArrayExpress. Methods Enzymol 411, 370-386.
  • 7Broun P (2004). Transcription factors as tools for metabolic engineering in plants. Curt Opin P/ant Bio/ 7, 202-209.
  • 8Chen W, Provart N J, Glazebrook J, Katagiri F, Chang HS, Eulgem T, Mauch F, Luan S, Zou G, Whitham SA, Budworth PR, Tao Y, Xie Z, Chert X, Lain S, Kreps JA, Harper JF, Si-Ammour A, Mauch-Mani B, Heinlein M, Kobayashi K, Hohn T, Dangl JL, Wang X, Zhu T (2002). Expression profile matrix of Arabidopsis transcription factor genes suggests their putative functions in response to envi- ronmental stresses. Plant Cell 14. 559-574.
  • 9Chen WJ, Zhu T (2004). Networks of transcription factors with roles in environmental stress response. Trends Plant Sci 9, 591-596.
  • 10Chen Y, Yang X, He K, Liu M, Li J, Gao Z, l.in Z, Zhang Y, Wang X, Qiu X, Shen Y, Zhang L, Deng X, Luo J, Deng XW, Chen Z, Gu H, Qu LJ (2006). The MYB transcription factor superfamily of Arabidopsis: expression analysis and phylogenetic comparison with the rice MYB family. Plant Mol Biol 60. 107-124.

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