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A cDNA encoding an O-methyltransferase (OMT) was isolated from salt-tolerant barley roots by subtraction hybridization with cDNAs of salt-tolerant barley roots as a tester cDNA and cDNAs of the salt-sensitive barley roots as a driver cDNA. The deduced amino acid sequence showed significant identity with plant caffeic acid/5-hydroxyferulic acid OMTs. Southern blot analysis showed that the OMT gene was a single copy in both salt-tolerant and -sensitive barley. The cloned gene was expressed in a wheat germ cell-free system to produce the OMT, which had methylating activity for caffeic acid. Northern blot analysis showed that the OMT gene was expressed constitutively in the salt-tolerant barley roots and the expression level was increased 1.5 times by salt stress, but the salt-sensitive barley showed no expression of the gene in roots and leaves.  相似文献   

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Zhao H  Wang R  Guo A  Hu S  Sun G 《Hereditas》2004,141(3):193-198
Glutenins are multimeric aggregates of high molecular weight (HMW) and low molecular weight (LMW) subunits, which determine the quality in wheat. Development of locus-specific primers is an important step toward cloning specific LMW glutenin subunits (LMW-GS) by PCR method. Based on the publicly available, a pair of primer, namely primer 3 (5' TTGTAGAAACTGCCATCCTT 3') and primer 4 (5' GTCACCGCTGCAT CGACATA 3') was designed and verified to specific for LMW-GS genes located on chromosome 1D in this study. The LMW-GS gene located at the Glu-D3 locus in bread wheat cultivar Xiaoyan 6 was cloned using this pair of primer. The clone designated as XYGluD3-LMWGS1 (AY263369), contains the endosperm-specific-expression promoter and the entire coding region. Nucleotide sequence comparison of the XYGluD3-LMWGS1 with other reported LMW-GS genes located at different Glu-3 loci showed the degree of identity among them ranged from 59.57% to 99.78%. The LMW-GS genes at the same locus showed more similar to each other than to the gene at different locus. Comparison of the deduced amino acid sequence of the XYGluD3-LMWGS1 with the sequences of 12 group LMW-GSs of wheat cultivar Norin 61 showed that the deduced amino acid sequence was nearly the same to LMW-GS group 10 (identity 99.67%). The deduced LMW-GS contains nine cystine residues, which contained one more cystine residue in the C-terminal conserved domain than previous reported. This was the first LMW-GS gene encoding for a LMW-GS with 9 cystine residues that has been discovered so far.  相似文献   

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丹参BTF3基因的克隆及生物信息学分析   总被引:2,自引:0,他引:2  
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刘志华  杨谦 《生物信息学》2005,3(3):108-111
构建了球毛壳菌菌丝的cDNA文库,并获得了1410条ESTs序列,用里氏木霉(Hypocrea jecorina,AAM76068)和粗糙脉胞菌(Neurospora crassa,CAA25761)的组蛋白H3基因(Histone H3)蛋白序列对球毛壳菌(Chaetomium globosum)ESTs序列本地数据库进行tBlastn检索,获得了球毛壳菌组蛋白H3cDNA序列。cDNA序列全长739bp,开放阅读框411bp,编码136个氨基酸组成的多肽,蛋白分子量为15.4kD。BlastP同源性分析表明该基因与里氏木霉同源性最高为100%;与地钱(Marchantia polymorpha)同源性最低为95%。三级结构预测表明,该蛋白C端为球状结构域,而N端结构对其发挥调控作用起重要作用。该基因的cDNA序列及推测的氨基酸序列在GenBank登录(登录号分别为AY669068,AAT74576)。  相似文献   

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We isolated a rice cDNA clone which is similar to the bovine brain-specific 14-3-3 protein (an activator protein of tyrosine and tryptophan hydroxylase involved in the synthetic pathway of monoamine) gene. The deduced amino acid sequence of the cDNA indicated a surprising similarity to a potent inhibitor of Ca2+-phospholipid-dependent protein kinase C. DNA blot analysis indicated that this gene is located at more than a single locus in rice genome DNA. Expression of this gene is regulated by external stresses.  相似文献   

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Tsuji E  Tsuji Y 《Genetica》2000,108(3):259-262
We have isolated a novel human cDNA coding for human salt-tolerant protein (HSTP), that is a homologue of the rat salt-tolerant protein (STP) and may contribute to salt-induced hypertension by modulating renal cation transport. The nucleotide sequence (1988 bp) of the HSTP cDNA contains an open reading frame encoding a polypeptide comprising 545 amino acids, two residues fewer than the rat STP cDNA. The predicted amino acid sequence exhibits 92% identity to that of the rat protein. HSTP contains predicted coiled-coil domains and Src Homology 3 domain, and shows a high degree of identity to CIP4 (Cdc42 target protein) and human Trip 10 (thyroid-hormone receptor interacting protein). We have mapped the HSTPgene to human chromosome 19 by fluorescence in situhybridization. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

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The TATA-box binding protein (TBP) is one of the 4 DNA-binding proteins that has been shown to associate with the proximal promoter region (−295) of the gene for bean seed storage protein phaseolin. The −295 promoter is essential for spatial and temporal control of the phaseolin gene expression. We designed a pair of degenerated primers based on the highly conserved sequence of the carboxyl-terminal domain of yeast TBP and used PCR to amplify the corresponding sequence from the bean cDNA. By using the amplified fragment as a probe, we screened a cDNA library derived from poly A(+) RNA from developing bean seeds and isolated 2 nearly full-length cDNA clones (813 and 826 bp long). The cDNAs encode 2 distinct isoforms of bean TBP, PV1 and PV2, each with an open reading frame of 200 amino acid residues. The 2 cDNA sequences share an 85.8% overall nucleotide sequence identity, with the coding region showing a higher degree of identity (94.4%) than the 5′- and 3′-untranslated regions (69%). The deduced amino acid sequence of the bean TBP isoforms differ in only 3 amino acid residues at positions 5, 9, and 16, all located in the amino-terminal region. The carboxyl-terminal domain of 180 amino acid residues shows a high degree (>82%) of evolutionary sequence conservation with the TBP sequences from other eukaryotic species. This domain possesses the 3 highly conserved structural motifs, namely the 2 direct repeat sequences, a central basic region rich in basic amino acid residues, and a region similar to the sigma factor of prokaryote. On the basis of this and other findings, we suggest that higher plants in general may have at least 2 copies of TBP gene, presumably resulting from the global duplication of the genome. Accession numbers AF015784 and AF015785 at the GenBank.  相似文献   

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目的:利用3’RACE技术克隆植物泛素基因,是进一步研究其功能的基础。方法:本研究从桑树(丰驰桑)(Morus bomby-cis)幼叶中提取总RNA,反转录成cDNA,根据已报道的泛素基因序列设计1条正向引物,利用3’RACE(Rapid Amplification of cDNAEnd)技术进行扩增。结果:扩增出1条690 bp的泛素基因片段。该片段5’端为编码156个氨基酸残基的阅读框,3’末端有219bp的非翻译区。结论:同源分析表明,此cDNA序列为泛素延伸蛋白基因(Genebank登录号为DQ839403)。用Genedoc软件对该片段编码的氨基酸序列进行同源性分析的结果表明:桑树泛素延伸蛋白与马铃薯、烟草、陆地棉、黄瓜的泛素延伸蛋白以及苜蓿的核糖体S27A蛋白的同源性都在96%以上。  相似文献   

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姜鸣  霍棠  吕淑敏  张雅林 《昆虫学报》2012,55(7):860-868
3-羟甲基戊二酰辅酶A-还原酶(3-hydroxy-3-methylglutaryl coenzyme A reductase, HMGR)是甲羟戊酸途径的关键酶。获得芫菁体内HMGR基因信息是确定甲羟戊酸途径与斑蝥素合成相关性的基础。本研究利用RACE技术从细纹豆芫菁Epicauta mannerheimi (Maklin)体内克隆获得HMGR基因全长cDNA序列, 命名为EmHMGR(GenBank登录号为JQ690539)。该基因全长3 118 bp, 其中5′端非翻译区178 bp, 3′端非翻译区414 bp, 开放阅读框2 526 bp, 编码842个氨基酸。推测的蛋白质分子量为92.8 kDa, 理论等电点为6.0, 预测分子式为C4135H6604N1098O1216S50, 不稳定系数为43.37, 总亲水性系数为0.091, 为疏水性不稳定蛋白。序列分析发现该基因编码的蛋白与已报道的其他昆虫HMGR的氨基酸序列一致性达50%以上, 而且包含HMGR_Class I保守功能域、 固醇敏感多肽区及HMGR蛋白的其他保守功能位点。系统进化分析发现该基因与叶甲科昆虫HMGR基因的关系最近。本研究首次从芫菁科昆虫体内克隆获得甲羟戊酸途径的关键酶EmHMGR基因, 为后期芫菁体内斑蝥素生物合成途径的研究奠定了基础。  相似文献   

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甘油-3-磷酸酰基转移酶(GPAT)基因与植物抗冷性密切相关。克隆到的长柔毛野豌豆(Vicia villosa)GPAT基因的编码区完整的cDNA片段长1377bp,编码458个氨基酸残基,与蚕豆(Vicia faba)和豌豆(Pissum sativum)比较,其核苷酸序列的同源性分别为94.1%和93.3%,氨基酸序列的同源性分别为96.9%和98.0%。  相似文献   

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UDP葡萄糖-类黄酮-3-O-葡萄糖基转移酶(Flavonoid-3-O-glucosyltransferas,3GT)是植物重要的次生代谢产物生物合成途径中的关键酶。文中采用现代生物信息手段,经3GT的同源比对后设计基因特异引物,运用RT-PCR及RACE技术从天山雪莲Saussurea involucrata Kar.et Kir.叶片中克隆得到3GT基因的全长序列(GenBank Accession No.JN092127)。3GT基因的cDNA全长序列含有1个1 548 bp的开放阅读框(ORF),编码516个氨基酸,该基因推断的蛋白与草莓GT6蛋白的相似性为91%,与毛杨梅3GT的相似性为89%;经序氨基酸序列比对,推断的天山雪莲3GT具有糖基转移酶基因家族特有的结构域PSPG-box。半定量PCR的结果显示,天山雪莲3GT基因在叶及愈伤组织中表达量最高,在根中有少量表达,茎中不表达。将该基因构建到含有35S启动子的植物表达载体上,利用农杆菌介导的遗传转化法进行同源转化,将筛选到的含有转3GT基因的愈伤组织进行悬浮培养,并用紫外分光光度法测量其黄酮含量是非转基因愈伤组织总黄酮平均值的2.06倍。  相似文献   

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旨在克隆内蒙古白绒山羊IGF-IR基因并分析其基本表达模式.采用RT-PCR克隆基因,将得到的IGF-IR基因cDNA片段的核苷酸序列及其编码的氨基酸序列进行生物信息学分析.半定量RT-PCR进行组织特异性表达检测.获得了内蒙古白绒山羊IGF-IR基因3’端编码区2118 bp的cDNA序列(JN200823),编码705个氨基酸残基.核苷酸序列与牛的IGF-IR( XM606794.3)基因同源性为98%,相应的氨基酸序列同源性为99%.SMART分析表明,推导出的编码蛋白具有跨膜域,酪氨酸激酶催化域.半定量RT-PCR检测表明,IGF-IR基因在绒山羊脑、胰腺、肝、肾组织中均有表达.  相似文献   

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黑子南瓜甘油-3-磷酸酰基转移酶基因的克隆及序列分析   总被引:6,自引:3,他引:3  
依据国外报道的南瓜甘油-3-磷酸转酰酶(GPAT)基因的cDNA序列合成相应引物,用RT-PCR技术,成功地分离了黑子南瓜(Cucurbitaficifolia)GPAT基因的cDNA片段,并亚克隆到了pGEM-T载体系统的多克隆位点上,序列分析表明黑子南瓜GPAT基因的cDNA序列及递推的氨基酸序列与南瓜(Cucurbitamoschata)相比分别具有98%和965%的同源性。在1188bp中有22个核苷酸发生变化,导致13个氨基酸的改变  相似文献   

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The endosperm of hexaploid wheat (Triticum aestivum [L.]) was shown to contain a high molecular weight starch synthase (SS) analogous to the product of the maize du1 gene, starch synthase III (SSIII; DU1). cDNA and genomic DNA sequences encoding wheat SSIII were isolated and characterized. The wheat SSIII cDNA is 5,346 bp long and contains an open reading frame that encodes a 1,628-amino acid polypeptide. A putative N-terminal transit peptide, a 436-amino acid C-terminal catalytic domain, and a central 470-amino acid SSIII-specific domain containing three regions of repeated amino acid similarity were identified in the wheat gene. A fourth region between the transit peptide and the SSIII-specific domain contains repeat motifs that are variable with respect to motif sequence and repeat number between wheat and maize. In dicots, this N-terminal region does not contain repeat motifs and is truncated. The gene encoding wheat SSIII, designated ss3, consists of 16 exons extending over 10 kb, and is located on wheat chromosome I. Expression of ss3 mRNA in wheat was detected in leaves, pre-anthesis florets, and from very early to middle stage of endosperm development. The entire N-terminal variable repeat region and the majority of the SSIII-specific domain are encoded on a single 2,703-bp exon. A gene encoding a class III SS from the Arabidopsis genome sequencing project shows a strongly conserved exon structure to the wheat ss3 gene, with the exception of the N-terminal region. The evolutionary relationships of the genes encoding monocot and dicot class III SSs are discussed.  相似文献   

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The nucleotide sequence of a cDNA clone encoding the wheat Em protein.   总被引:12,自引:2,他引:10       下载免费PDF全文
The nucleotide sequence of a cDNA clone isolated from developing wheat embryos and encoding the Em protein is reported. The entire coding region for Em and the 3' non-translated flank are contained within this clone. The amino acid sequence deduced for Em is very rich in glycine (18 mol%) as well as both basic and acidic residues. The molecular weight of the protein is ca. 9,900 daltons. The deduced sequence is supported by direct amino acid sequencing of cyanogen bromide cleavage fragments obtained from purified Em protein. Em is shown by Southern blots to be a product of a gene family of approximately ten members.  相似文献   

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