Objectives: To obtain very end full-length cDNA ofhepatitis C virus (HCV) 5’ untranslated region(5’UTR) and analyze its primary and secondarystructure.Methods: A patient infected genotype 2a HCV wasidentified by rev...Objectives: To obtain very end full-length cDNA ofhepatitis C virus (HCV) 5’ untranslated region(5’UTR) and analyze its primary and secondarystructure.Methods: A patient infected genotype 2a HCV wasidentified by reverse transcription-nested polymerasechain reaction (RT-PCR) and restriction fragmentlength polymorphism (RFLP). Total RNA isolatedfrom the serum was used as template, and the cDNAof the 5’ untranslated region was amplified using rap-id amplification of cDNA ends (RACE). The frag-ments were recombinated by A-T clone strategy, andthe recombinants were confirmed by RFLP andPCR, and sequenced subsequently. Secondary struc-tures were analysed by RNAdraw.Results: Very end full-length cDNA of genotype 2aHCV 5’ UTR was obtained by RACE. In five clonesobtained, three contained full-length 5’UTR cDNA;A21G, G170A, T222C, T247C, C339T substitutionswere found as compared to HC-J6. Homological re-sults of HCV-1, HC-J6, HC-C2, HC-J8 were 93.6%-94.4%, 92.1%-93%, 98.8%-99.7%, 96.2%-96.5%, respectively; however, the substitutions didnot alter secondary structure. Two of 5 clones weredeletions of 53bp and 135bp at the 5’terminal ofHCV 5’UTR, respectively.Conclusions: RACE can be used to obtain the full-length cDNA of 2a genotype HCV 5’UTR. Genes de-leted at the 5’ terminal of HCV circulate in hepatitisC patients.展开更多
Based on part of a known cDNA sequence of Suaeda Liaotungensis choline monooxygenase, the authors successfully cloned the 5′ cDNA end of Suaeda Lianotungensis choline monooxygenase using Inverse PCR RACE with a speci...Based on part of a known cDNA sequence of Suaeda Liaotungensis choline monooxygenase, the authors successfully cloned the 5′ cDNA end of Suaeda Lianotungensis choline monooxygenase using Inverse PCR RACE with a specially designed 5′-phosphated RT primer and two pairs of specific inverse PCR primers. Compared with the anchored PCR RACE, inverse PCR RACE has better specificity and higher amplification.展开更多
UDP-glucose pyrophosphorylase is an important enzyme concerned with carbohydrate metabolism in plants. Cloning of UGPase is a premise for further study on molecular level, and it is also crucial for study of carbohydr...UDP-glucose pyrophosphorylase is an important enzyme concerned with carbohydrate metabolism in plants. Cloning of UGPase is a premise for further study on molecular level, and it is also crucial for study of carbohydrate metabolism. UGPase cDNA sequence as a template, designed primer, then 3'-untranslate region (3' UTR) of UGPase were amplified by 3'-rapid amplification of cDNA ends (3'-RACE). The results suggested the 3' UTR were 243 bp, contained AATAA sequence and Poly(A).展开更多
[Objective] The purpose of this experiment was to reveal the sequence and characteristics of Trachidermus fasciatus beta-actin gene.[Method] Using total RNA of muscle in T.fasciatus as template,three cDNA fragments of...[Objective] The purpose of this experiment was to reveal the sequence and characteristics of Trachidermus fasciatus beta-actin gene.[Method] Using total RNA of muscle in T.fasciatus as template,three cDNA fragments of beta-actin gene in T.fasciatus were amplified by RT-PCR,5'-RACE and 3'-RACE.[Result] A full-length of 1905 bp beta-actin cDNA sequence in T.fasciatus,which includes a 1128 bp length open reading frame encoding a 375-amino acid peptide,was obtained.Sequence alignment of nucleotide and amino acid sequence revealed that T.fasciatus beta-actin shared high homology with that of Epinephelus coioides,Rachycentron canadum,Chrysophrys auratus and of relatively low homology with mammalian and bird.The phylogenetic analysis showed that T.fasciatus beta-actin had closest relationship with Epinephelus coioides.And RT-PCR analysis suggested that the beta-actin gene expressed in four tissues,i.e.,muscle,liver,intestine and brain.[Conclusion] The full length sequence of beta-actin gene with high conservation in T.fasciatus was obtained for the first time.展开更多
Blue-grained wheat derived from the hybrid Triticum aestivum L. X Thinopyrum ponticum (Podp.) Barkworth et D. R. Dewey (Agropyron elongatum (Host) P. Beauv., 2n=70). The molecular biological mechanism of the biosynthe...Blue-grained wheat derived from the hybrid Triticum aestivum L. X Thinopyrum ponticum (Podp.) Barkworth et D. R. Dewey (Agropyron elongatum (Host) P. Beauv., 2n=70). The molecular biological mechanism of the biosynthetic pathway of blue pigments in the blue grain remains unclear yet. Dihydroflavonol 4-reductase (DFR) is one of the key enzymes controlling flavonoid synthesis in anthocyanin biosynthetic pathway, and may directly participate in the formation of blue pigment in the aleurone layer of blue-grained wheat. Here we cloned a DFR cDNA (TaDFR) from the developing seeds of blue-grained wheat, and four DFR genomic DNAs from Th. ponticum (ThpDFR.t), blue-grained wheat (TaDFR.bg), white-grained offspring of light blue-grained wheat (TaDFR.wg) and Chinese Spring (2n=42) (TaDFR.csg), respectively. TaDFR cDNA encodes a 354 amino-acids polypeptide with high identity to DFR from Hordeum vulgare L. (94%), Oryza sativa L. (83%), Zea mays L.(84%). The result of cluster analysis showed that TaDFR cDNA nucleotide sequence has 100% identity with that of TaDFR.csg. The four DFR genomic DNAs have extraordinary high homology and each has three introns. The differences of the four DFR genomic DNAs mainly exist in introns. Southern blotting analysis showed that there are at least 3-5 DFR copies in wheat, the copy numbers in different color grain wheats are not significantly different. The hybridization band patterns were the same, but different from that of Th. ponticum. DFR in blue-grained wheat belongs to a DFR superfamily. Northern blotting analysis indicated that the DFR expressed in the developing seeds of both blue- and white-grained wheat at 15 d after flowering (DAF), the mRNA levels of DFR reached the highest at 18 DAF, then declined quickly and disappeared at 33 DAF But the expression levels in blue-grained seeds were higher than that in white grain at the same seed developing stages. DFR transcripts accumulated in young leaves, and leaf sheaths of blue- and white-grained wheat and Th ponticum, but not detected in roots from different color wheats and developing seeds of Th. ponticum. Results indicated that there may exist some regulatory gene(s) which can increase the expression of DFR in the aleurone layer of blue-grained wheat, and thus resulting in the formation of blue pigments.展开更多
利用RT-PCR和cDNA末端快速扩增技术(rapid amplification of cDNA ends,RACE)克隆了黄颡鱼DMRT1基因cDNA全长序列,并利用实时荧光定量RT-PCR技术对该基因在黄颡鱼成体不同组织及不同发育阶段的表达情况进行研究。结果表明,黄颡鱼DMRT1基...利用RT-PCR和cDNA末端快速扩增技术(rapid amplification of cDNA ends,RACE)克隆了黄颡鱼DMRT1基因cDNA全长序列,并利用实时荧光定量RT-PCR技术对该基因在黄颡鱼成体不同组织及不同发育阶段的表达情况进行研究。结果表明,黄颡鱼DMRT1基因cDNA序列全长1 381bp,其中5′端非翻译区30bp,3′端非翻译区454bp[不包括poly(A)],开放阅读框885bp,编码295个氨基酸。氨基酸序列同源性分析表明,黄颡鱼DMRT1基因与革胡子鲶同源性最高(为81%),与黑鲷、虹鳟、斑马鱼、青鳉的同源性分别为60%、59%、64%和52%,与小鼠、人的同源性较低,分别为42%和44%。实时荧光定量RT-PCR分析表明:DMRT1基因在黄颡鱼胚胎发育阶段及胚后发育的1~51d仔鱼均有表达,且在胚后发育的第31天表达量最高;在成体,只在雄性精巢中特异性表达,其他组织均无表达,且性腺发育阶段的Ⅳ期精巢表达量最高,表明该基因可能在黄颡鱼雄性性腺的形成或功能维持上具有重要作用。展开更多
基金This work was supported by two grants from National Science Foundation of China (No: 39770684, 30170844).
文摘Objectives: To obtain very end full-length cDNA ofhepatitis C virus (HCV) 5’ untranslated region(5’UTR) and analyze its primary and secondarystructure.Methods: A patient infected genotype 2a HCV wasidentified by reverse transcription-nested polymerasechain reaction (RT-PCR) and restriction fragmentlength polymorphism (RFLP). Total RNA isolatedfrom the serum was used as template, and the cDNAof the 5’ untranslated region was amplified using rap-id amplification of cDNA ends (RACE). The frag-ments were recombinated by A-T clone strategy, andthe recombinants were confirmed by RFLP andPCR, and sequenced subsequently. Secondary struc-tures were analysed by RNAdraw.Results: Very end full-length cDNA of genotype 2aHCV 5’ UTR was obtained by RACE. In five clonesobtained, three contained full-length 5’UTR cDNA;A21G, G170A, T222C, T247C, C339T substitutionswere found as compared to HC-J6. Homological re-sults of HCV-1, HC-J6, HC-C2, HC-J8 were 93.6%-94.4%, 92.1%-93%, 98.8%-99.7%, 96.2%-96.5%, respectively; however, the substitutions didnot alter secondary structure. Two of 5 clones weredeletions of 53bp and 135bp at the 5’terminal ofHCV 5’UTR, respectively.Conclusions: RACE can be used to obtain the full-length cDNA of 2a genotype HCV 5’UTR. Genes de-leted at the 5’ terminal of HCV circulate in hepatitisC patients.
文摘Based on part of a known cDNA sequence of Suaeda Liaotungensis choline monooxygenase, the authors successfully cloned the 5′ cDNA end of Suaeda Lianotungensis choline monooxygenase using Inverse PCR RACE with a specially designed 5′-phosphated RT primer and two pairs of specific inverse PCR primers. Compared with the anchored PCR RACE, inverse PCR RACE has better specificity and higher amplification.
文摘UDP-glucose pyrophosphorylase is an important enzyme concerned with carbohydrate metabolism in plants. Cloning of UGPase is a premise for further study on molecular level, and it is also crucial for study of carbohydrate metabolism. UGPase cDNA sequence as a template, designed primer, then 3'-untranslate region (3' UTR) of UGPase were amplified by 3'-rapid amplification of cDNA ends (3'-RACE). The results suggested the 3' UTR were 243 bp, contained AATAA sequence and Poly(A).
基金Supported by Natural Science Research Program of Universities in Jiangsu Province(09KJD240001)Agricultural Science and Technology R&D Program of Suzhou City(SNG0913)~~
文摘[Objective] The purpose of this experiment was to reveal the sequence and characteristics of Trachidermus fasciatus beta-actin gene.[Method] Using total RNA of muscle in T.fasciatus as template,three cDNA fragments of beta-actin gene in T.fasciatus were amplified by RT-PCR,5'-RACE and 3'-RACE.[Result] A full-length of 1905 bp beta-actin cDNA sequence in T.fasciatus,which includes a 1128 bp length open reading frame encoding a 375-amino acid peptide,was obtained.Sequence alignment of nucleotide and amino acid sequence revealed that T.fasciatus beta-actin shared high homology with that of Epinephelus coioides,Rachycentron canadum,Chrysophrys auratus and of relatively low homology with mammalian and bird.The phylogenetic analysis showed that T.fasciatus beta-actin had closest relationship with Epinephelus coioides.And RT-PCR analysis suggested that the beta-actin gene expressed in four tissues,i.e.,muscle,liver,intestine and brain.[Conclusion] The full length sequence of beta-actin gene with high conservation in T.fasciatus was obtained for the first time.
文摘Blue-grained wheat derived from the hybrid Triticum aestivum L. X Thinopyrum ponticum (Podp.) Barkworth et D. R. Dewey (Agropyron elongatum (Host) P. Beauv., 2n=70). The molecular biological mechanism of the biosynthetic pathway of blue pigments in the blue grain remains unclear yet. Dihydroflavonol 4-reductase (DFR) is one of the key enzymes controlling flavonoid synthesis in anthocyanin biosynthetic pathway, and may directly participate in the formation of blue pigment in the aleurone layer of blue-grained wheat. Here we cloned a DFR cDNA (TaDFR) from the developing seeds of blue-grained wheat, and four DFR genomic DNAs from Th. ponticum (ThpDFR.t), blue-grained wheat (TaDFR.bg), white-grained offspring of light blue-grained wheat (TaDFR.wg) and Chinese Spring (2n=42) (TaDFR.csg), respectively. TaDFR cDNA encodes a 354 amino-acids polypeptide with high identity to DFR from Hordeum vulgare L. (94%), Oryza sativa L. (83%), Zea mays L.(84%). The result of cluster analysis showed that TaDFR cDNA nucleotide sequence has 100% identity with that of TaDFR.csg. The four DFR genomic DNAs have extraordinary high homology and each has three introns. The differences of the four DFR genomic DNAs mainly exist in introns. Southern blotting analysis showed that there are at least 3-5 DFR copies in wheat, the copy numbers in different color grain wheats are not significantly different. The hybridization band patterns were the same, but different from that of Th. ponticum. DFR in blue-grained wheat belongs to a DFR superfamily. Northern blotting analysis indicated that the DFR expressed in the developing seeds of both blue- and white-grained wheat at 15 d after flowering (DAF), the mRNA levels of DFR reached the highest at 18 DAF, then declined quickly and disappeared at 33 DAF But the expression levels in blue-grained seeds were higher than that in white grain at the same seed developing stages. DFR transcripts accumulated in young leaves, and leaf sheaths of blue- and white-grained wheat and Th ponticum, but not detected in roots from different color wheats and developing seeds of Th. ponticum. Results indicated that there may exist some regulatory gene(s) which can increase the expression of DFR in the aleurone layer of blue-grained wheat, and thus resulting in the formation of blue pigments.