966 resultados para Cloning of cDNA encoding Large isoform of rubisco activase
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The rapid progress in the cloning of proteoglycan genes has enabled investigators to examine in depth the functional roles these polyhedric molecules play in the control of cell proliferation. Decorin, a leucine-rich proteoglycan expressed by most connective tissues, is a prototype molecule that regulates cellular growth via two mechanisms: modulation of growth factor activity and matrix assembly. We now provide direct evidence that human colon cancer cells stably transfected with decorin cDNA exhibit a marked suppression of the transformed phenotype: the cells have a reduced growth rate in vitro, form small colonies in soft agar, and do not generate tumors in scid/scid mice. Several independent clones are arrested in the G1 phase of the cell cycle, and their growth suppression can be restored by treatment with decorin antisense oligodeoxynucleotides. These effects are independent of growth factors and are not due to either clonal selection or integration site of the decorin gene. These findings correlate well with the observation that decorin gene expression is markedly up-regulated during quiescence. Decorin thus appears to be one component of a negative loop that controls cell growth.
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Screening a rat colon cDNA library for aldosterone-induced genes resulted in the molecular cloning of a cDNA whose corresponding mRNA is strongly induced in the colon by dexamethasone, aldosterone, and a low NaCl diet. A similar mRNA was detected in kidney papilla but not in brain, heart, or skeletal muscle. Xenopus laevis oocytes injected with cRNA synthesized from this clone, designated CHIF (channel-inducing factor), express a K(+)-specific channel activity. The biophysical, pharmacological, and regulatory characteristics of this channel are very similar to those reported before for IsK (minK). These include: slow (tau > 20 s) activation by membrane depolarization with a threshold potential above -50 mV, blockade by clofilium, inhibition by phorbol ester, and activation by 8-bromoadenosine 3',5'-cyclic monophosphate and high cytoplasmic Ca2+. The primary structure of this clone, however, shows no homology to IsK. Instead, CHIF exhibits > 50% similarity to two other short bitopic membrane proteins, phospholemman and the gamma subunit of Na+K(+)-ATPase. The data are consistent with the possibility that CHIF is a member of a family of transmembrane regulators capable of activating endogenous oocyte transport proteins.
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DNA replication of the adenovirus genome complexed with viral core proteins is dependent on the host factor designated template activating factor I (TAF-I) in addition to factors required for replication of the naked genome. Recently, we have purified TAF-I as 39- and 41-kDa polypeptides from HeLa cells. Here we describe the cloning of two human cDNAs encoding TAF-I. Nucleotide sequence analysis revealed that the 39-kDa polypeptide corresponds to the protein encoded by the set gene, which is the part of the putative oncogene associated with acute undifferentiated leukemia when translocated to the can gene. The 41-kDa protein contains the same amino acid sequence as the 39-kDa protein except that short N-terminal regions differ in both proteins. Recombinant proteins, which were purified from extracts of Escherichia coli, expressing the proteins from cloned cDNAs, possessed TAF-I activities in the in vitro replication assay. A particular feature of TAF-I proteins is the presence of a long acidic tail in the C-terminal region, which is thought to be an essential part of the SET-CAN fusion protein. Studies with mutant TAF-I proteins devoid of this acidic region indicated that the acidic region is essential for TAF-I activity.
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The retinoblastoma protein (Rb) is a target of viral oncoproteins. To explore the hypothesis that viral proteins may be structural mimics of cellular proteins, we have searched cDNA libraries for Rb-binding proteins. We report here the cloning of a cDNA for the protein RIZ from rat and human cells. RIZ is a 250-kDa nuclear protein containing eight zinc-finger motifs. It contains an Rb-binding motif that shares an antigenic epitope with the C terminus of E1A. A domain is conserved between RIZ and the PRDI-BF1/Blimp-1 differentiation factor. Other motifs of RIZ include putative GTPase and SH3 (src homology domain 3) domains. RIZ is preferentially expressed in both adult and embryonic rat neuroendocrine tissues. It is also expressed in human retinoblastoma cells and at low levels in all other human cell lines examined. While the function of RIZ is not yet clear, its structure and pattern of expression suggest a role for RIZ in transcriptional regulation during neuronal differentiation and pathogenesis of retinoblastoma.
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O Brasil possui uma posição privilegiada quando se refere à produção de etanol. Por questões históricas e geográficas o país é responsável por mais de 30 % da produção mundial de etanol, com uma produção nacional de mais de 28 bilhões de litros em 2014. Para maximizar o rendimento desse processo, está em desenvolvimento a tecnologia associada ao etanol de segunda geração ou etanol lignocelulósico. Os principais desafios desta tecnologia são: melhorar a eficiência de conversão do substrato em produto e a produção em grande escala utilizando substratos de baixo custo. Com o objetivo de melhorar a eficiência do processo de conversão foram estudadas proteínas auxiliares (expansinas) que, em conjunto com celulases, melhoram a despolimerização de biomassa lignocelulósica em açúcares fermentescíveis. Além disso, realizou-se também a caracterização de enzimas ativas de carboidratos (CAZymes) de origem termofílica do organismo Thermogemmatispora sp. T81, devido a capacidade que estas proteínas apresentam de manter a atividade e conformação estrutural em altas temperaturas por um prolongado período de tempo. A partir de análises utilizando bioinformática, os genes que codificam para expansinas de Xanthomonas campestris, Bacillus licheniformis e Trichoderma reesei foram clonados e expressos em E. coli, e seus produtos gênicos (as expansinas) tiveram seus índices de sinergismo (devido atuação conjunta com coquetéis comerciais) e atividade catalítica determinados. Adicionalmente, dispondo de alinhamentos estruturais, foi proposto um mecanismo hidrolítico para elas. Em relação à bactéria Thermogemmatispora sp. T81, foram realizadas análises genômicas e proteômicas, a fim de selecionar enzimas superexpressas em meio celulósico. Seus genes foram clonados heterologamente em E. coli e o produto de expressão caracterizado bioquimicamente (cromatografia, ensaios de atividade e perfil de hidrólise) e estruturalmente (SAXS e dicroísmo circular). Os índices de sinergismo determinados foram de 2,47; 1,96 e 2,44 para as expansinas de Xanthomonas campestris, Bacillus licheniformis e Trichoderma reesei, respectivamente. A partir dos alinhamentos estruturais foi proposto a díade Asp/Glu como sitio catalítico em expansinas. As análises de proteômica possibilitaram a seleção de quatro alvos de clonagem, por apresentarem alto índice de expressão quando a bactéria foi cultivada em meio celulósico. Estas proteínas foram caracterizadas quanto a atividade e apresentaram um perfil comum: temperatura ótima de ação (de 70 a 75 °C), pH ótimo de 5, e hidrolisam preferencialmente substratos hemicelulósicos (xilano). A porcentagem de estruturais secundárias das proteínas em estudo foram confirmadas com predições teóricas ao se utilizar a técnica de dicroísmo circular. Desta maneira, os objetivos iniciais propostos neste projeto foram concluídos com a determinação do grau de sinergismo das proteínas expansinas em estudo e a proposição de um mecanismo de hidrólise para as mesmas, considerando que tais proteínas por mais de 20 anos tiveram sua atividade definida exclusivamente como acessória. Além disso, este estudo contribui com a identificação e seleção de genes para CAZymes termofilícas com aplicação biotecnológica devido às propriedades termoestáveis apresentadas.
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In vitro and in animal models, APE1, OGG1, and PARP-1 have been proposed as being involved with inflammatory response. In this work, we have investigated if the SNPs APE1 Asn148Glu, OGG1 Ser326Cys, and PARP-1 Val762Ala are associated to meningitis and also developed a system to enable the functional analysis of polymorphic proteins. Patients with bacterial meningitis (BM), aseptic meningitis (AM) and controls (non-infected) genotypes were investigated by PIRA-PCR or PCR-RFLP. DNA damages were detected in genomic DNA by Fpg treatment. IgG and IgA were measured from plasma and the cytokines and chemokines were measured from cerebrospinal fluid samples using Bio-Plex assays. The levels of NF-κB and c-Jun were measured in CSF by dot blot assays. A significant (P<0.05) increase in the frequency of APE1 148Glu allele in BM and AM patients was observed. A significant increase in the genotypes Asn/Asn in control group and Asn/Glu in BM group was also found. For the SNP OGG1 Ser326Cys, the genotype Cys/Cys was more frequent (P<0.05) in BM group. The frequency of PARP-1 Val/Val genotype was higher in control group (P<0.05). The occurrence of combined SNPs increased significantly in BM patients, indicating that these SNPs may be associated to the disease. Increasing in sensitive sites to Fpg was observed in carriers of APE1 148Glu allele or OGG1 326Cys allele, suggesting that SNPs affect DNA repair activity. Alterations in IgG production were observed in the presence of SNPs APE1Asn148Glu, OGG1Ser326Cys or PARP-1Val762Ala. Reductions in the levels ofIL-6, IL-1Ra, MCP-1/CCL2and IL-8/CXCL8 were observed in the presence of APE1148Glu allele in BM patients, however no differences were observed in the levels of NF-κB and c-Jun considering genotypes and analyzed groups. Using APE1 as model, a system to enable the analysis of cellular effects and functional characterization of polymorphic proteins was developed using strategies of cloning APE1 cDNA in pIRES2-EGFP vector, cellular transfection of the construction obtained, siRNA for endogenous APE1 and cellular cultures genotyping. In conclusion, we obtained evidences of an effect of SNPs in DNA repair genes on the regulation of immune response. This is a pioneering work in the field that shows association of BER variant enzymes with an infectious disease in human patients, suggesting that the SNPs analyzed may affect immune response and damage by oxidative stress level during brain infection. Considering these data, new approaches of functional characterization must be developed to better analysis and interactions of polymorphic proteins in response to this context
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Modern genetic research holds out the promise of a bold new future in which humanity has identified and conquered the genetic roots of many diseases. Genetic science also promises to shed light on who we are, what it is that makes us tick, what it is that makes us the way we are — in short, what it is that makes us human. Yet while genetics are a potential saviour (saving us from disease), it also appears as a threat that at the extremes appears to be the stuff of our worst nightmares, such as the prospect, probably more imagined than real, of rows of cloned individuals. The new genetics hold out the promise that through genetics we will be able to determine what we are, a promise that is simultaneously appealing and terrifying. This chapter discusses the cloning of people and parts, the law’s response to cloning, genetics and diversity, a framework for law reform.
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This paper evaluates the litigation over the biotechnology patent dispute between the University of California and Genentech. First it outlines the scientific work behind the cloning of the human growth hormone, and looks at the patent office, and its treatment of biotechnological inventions. Second, it considers the court room dispute, and the legal case of the University of California and the biotechnology company in this dispute. Finally, it considers the implications of this dispute for policy reform in respect of patent law and biotechnology.
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Sorghum is an important source of food, feed, and biofuel, especially in the semi-arid tropics because this cereal is well adapted to harsh, drought-prone environments. Post-flowering drought adaptation in sorghum is associated with the stay-green phenotype. Alleles that contribute to this complex trait have been mapped to four major QTL, Stg1-Stg4, using a population derived from BTx642 and RTx7000. Near-isogenic RTx7000 lines containing BTx642 DNA spanning one or more of the four stay-green QTL were constructed. The size and location of BTx642 DNA regions in each RTx7000 NIL were analysed using 62 DNA markers spanning the four stay-green QTL. RTx7000 NILs were identified that contained BTx642 DNA completely or partially spanning Stg1, Stg2, Stg3, or Stg4. NILs were also identified that contained sub-portions of each QTL and various combinations of the four major stay-green QTL. Physiological analysis of four RTx7000 NILs containing only Stg1, Stg2, Stg3, or Stg4 showed that BTx642 alleles in each of these loci could contribute to the stay-green phenotype. RTx7000 NILs containing BTx642 DNA corresponding to Stg2 retained more green leaf area at maturity under terminal drought conditions than RTx7000 or the other RTx7000 NILs. Under post-anthesis water deficit, a trend for delayed onset of leaf senescence compared with RTx7000 was also exhibited by the Stg2, Stg3, and Stg4 NILs, while significantly lower rates of leaf senescence in relation to RTx7000 were displayed by all of the Stg NILs to varying degrees, but particularly by the Stg2 NIL. Greener leaves at anthesis relative to RTx7000, indicated by higher SPAD values, were exhibited by the Stg1 and Stg4 NILs. The RTx7000 NILs created in this study provide the starting point for in-depth analysis of stay-green physiology, interaction among stay-green QTL and map-based cloning of the genes that underlie this trait.
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GDP-L-fucose: synthesis and role in inflammation The migration of leukocytes from intravascular locations to extravascular sites is essential to the immune responses. The initial attachment of leukocytes to the endothelium and the rolling step of the leukocyte extravasation cascade are mediated by selectins, a family of cell adhesion molecules on cell surfaces. Selectins are able to recognize glycoproteins and glycolipids containing the tetrasaccharide sialyl Lewis x (sLex, Neu5Acα2-3Galβ1-4(Fucα1-3)GlcNAc). Several glycosyltransferases are involved in the biosynthesis of sLex, fucosyltransferase VII (Fuc-TVII) being the last enzyme to modify the sLex structure. Fuc-TVII transfers L-fucose from GDP-L-fucose to sialylated N-acetyllactosamine. GDP-L-fucose is synthesized in the cytosol via two different metabolic pathways. The major, constitutively active de novo pathway involves conversion of GDP-α-D-mannose to GDP-β-L-fucose. In the alternative salvage pathway, L-fucokinase synthesizes from free fucose L-fucose-1-phosphate, which is further converted to GDP-L-fucose by GDP-L-fucose pyrophosphorylase. GDP-L-fucose is translocated from the cytosol to Golgi for fucosylation via the GDP-fucose transporter. This thesis involved the study of the synthesis of GDP-L-fucose via the salvage pathway: cloning and expression of murine L-fucokinase and GDP-L-fucose pyrophosphorylase. The gene expression levels of these enzymes were found to be relatively high in various tissues; the mRNA levels were highest in brain, ovary and testis. This study also describes molecular cloning of rat fucosyltransferase VII (FUT7) and its expression as a functional enzyme. Gene expression levels of GDP-L-fucose synthesizing enzymes, GDP-fucose transporter and FUT7 were determined in inflamed tissues as well as cancer cells. Our results revealed a clear upregulation of the enzymes involved in the synthesis of GDP-L-fucose via de novo pathway, GDP-fucose transporter and FUT7 in inflamed tissues and in cancer cells. On the contrary, the GDP-L-fucose salvage pathway was found to be irrelevant in inflammation and in tumorigenesis. Furthermore, our results indicated the transcriptional coregulation of Golgi transporters involved in the synthesis of sulfo sLex, i.e. CMP-sialic acid, GDP-fucose and 3 phosphoadenosine 5 -phosphosulfate transporters, in inflammation.
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豆科植物是动物获取植物蛋白的主要来源之一。豆类种子储藏蛋白作为一种多基因家族的产物专一性地积累于种子的发育过程。植物遗传工程需要深入地了解基因的特异性表达及调控。种子储藏蛋白基因为这类研究提供了一个理想的研究系统。在我国生长着大量的野生豆科资源,许多优良性状被期望应用于将来的植物遗传工程研究.本文选择了一种富含种子储藏蛋白高达50%的野生大豆品种Glycine soja 79-34作为材料进行了以下的研究: 1、大豆7s储藏蛋白基因同源片段的克隆。 以原生质体作为初始材料游离大片段染色体DNA,原生质体经低渗处理而破裂,方法简便,得到的DNA分子量大且重复率高。大片段染色体DNA经EcoRI酶切后,用32P标记的大豆a'-亚基基因作为探针进行分子杂交,得同源片段的杂交带。其中分子量大约为6.3kb的同源片段被克隆到Puc9质粒中,通过x-gal/IPTG培养基及原位杂交初步筛选出5个克隆。进一步的Sourthern分子杂交确认了一个克隆包含7s储藏蛋白a'-亚基基因的同源片段。其详细的序列分析尚需进一步进行。 2、种子储藏蛋白基因在体细胞胚胎发生中的表达。 以授粉20天左右的幼胚作为外植体,在含有2mg/l 2,4,5-T的B5液体培养基中直接诱导愈伤组织,一个月内得到了均一的野生大豆悬浮培养体系。悬浮培养细胞转至含有0.5mg/l萘乙酸,O.1mg/l 2,4-D,0.5mg/l BA,0.5mg/l玉米素的B5液体培养基中,得到了处于不同发育阶段的体细胞胚。分别从体细胞胚及悬浮培养细胞中提取总RNA,以种子储藏蛋白基因为探针,RNA斑点杂交首先证明种子储藏蛋白基因在体细胞胚中转录水平上的表达,而在末分化的悬浮培养细胞中则检测不到.从处于不同发育时期(球形胚,心形胚,鱼雷形胚及带有分化子叶的胚)的体细胞中分别提取盐溶蛋白,用大豆储藏蛋白的兔抗血清做Western blotting分析,发现最早在球形胚中即能检测到种子储藏蛋白的积累,大大早于合子胚发育过程中种子储藏蛋白积累的时期.随着体细胞的发育,储藏蛋白的积累略有增加,但总体水平上不如合子胚发育中的明显。本研究从几个方面探讨了种子储藏蛋白基因在体细胞胚及合子胚发育过程中表达的相似性及差异,并对其产生差异的原因作出了推测。 3、果蝇同源转化基因在植物基因组中的检测及表达的探讨。 果蝇同源转化基因(Homeotic gene)被认为是早期胚胎发育过程中形态发生的开关基因。在动物界中已有80多个同源序列从不同进化水平的动物中分离出来,是一个非常保守而与发育密切相关的基因。本研究以果蝇同源转化基因为探针,分别在野生大豆及土豆的基因组中都检测到了该基因同源序列的存在。用野生大豆染色体DNA的多种内切酶片段做分子杂交分析发现至少有一个拷贝的基因同源性非常高。进一步关于该基因表达的研究发现,在未成熟胚及浸泡过夜的种子中都能检测到该基因的表达,但在休眠种子,萌发5天以上的种子及成熟叶片中未能检测到。该基因的表达只局限于早期发育,因而推测其功能有与动物界中的一般性。
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植物细胞壁富含羟脯氨酸糖蛋白生化特性及基因克隆的研究分成三部分: 第一部分,首先从胡萝卜愈伤组织的细胞壁中获得0.2M氯气钙可溶性蛋白质组分, 经10% TCA沉淀及羧甲基纤维素层析,分离得到一个伸展蛋白,并以SDS-聚丙烯酰胺凝胶电泳,氨基酸组成分析,分子电镜观察对所得的伸展蛋白进行了鉴定,结果表明,在胡萝卜愈伤组织中只存在一种伸展蛋白;SDS-聚丙烯酰胺凝胶电泳的考马斯蓝染色和PAS反应均为阳性,表明伸展蛋白除蛋白质组分还含有糖基;氨基酸组成分析表明,羟脯氨酸的克分子含量约占全部氨基酸的40%,丝氨酸的克分子含量约为羟脯氨酸的四分之一,含有大量的碱性和中性氨基酸,而只含有非常少量的酸性氨基酸,并且这些氨基酸克分子百分数也接近于胡萝卜富含羟脯氨酸糖蚤白基因推测出的克分子百分数。这些结果表明已经得到了一个电泳纯的伸展蛋白。伸展蛋白分子电镜观察证明它是一个棒状分子,长度为87纳米。 第二部分,用得到的伸展蛋白免疫家兔和大鼠,得到的抗体的免疫双扩散效价分别为1:2和1:1,用酶联免疫吸附分析测定的兔抗体效价为1:12,800,同时还建立了竞争性酶联免疫吸附分析测定伸展蛋白含量的标准曲线,线性范围为10-0.00001微克。利用得到的抗体对大豆下胚轴伸展蛋白的合成进行了研究。免疫荧光定位表明,大豆下胚轴表皮细胞及表皮下几层薄壁细胞有大量的荧光标记,并且这些荧光标记大部分分布在细胞质内。大豆下胚轴O.lM Tris-HCl pH7.4和0.2M氯化钙的提取物Western Blotting分析证明0.2M氯化钙提取物有与胡萝卜伸展蛋白电流性质相似的组分,并且这个组分在真菌诱导物处理的大豆下胚轴中的积累明显高于受伤处理的下胚轴。受伤和真菌诱导物处理大豆下胚轴中伸展蛋白积累的变化已经用Western Blotting分析和斑点酶联免疫吸附分析来观察,发现真菌诱导物处理的对灰斑病抗性的大豆下胚轴能够较快地积累伸展蛋白(24 - 48小时),而敏感品系的大豆下胚轴则合成伸展蛋白较晚(43-72小时)。在观察大豆下胚轴免疫荧光定位也发现类似的结果。对伸展蛋白基因的转录活性的初步研究认为抗性品系的大豆下胚轴同源mRNA转录可能早于24小时,而敏感品系大豆下胚轴同源mRNA转录可能在24小时后。以上结果认为大豆下胚轴含同源的mRNA和蛋白质组分,因此推测大豆基因组DNA有伸展蛋白基因。 第三部分,根据第二部分得到的结果,用已经得到的编码胡萝卜伸展蛋白的基因(克隆于pUC8质粒载体中)作探针,与大豆基因组DNA的EcoRI部分酶解片段杂交寻找大豆伸展蛋白基因,已经发现四个片段与探针DNA有同源性。它们的分子量分别约为23kb,8kb,5kb和2.8kb,并且23kb片段可能有更高的同源性。将23kb片段插入pUC9质粒载体上进行可隆,并用菌落原位杂交筛选获得5个克隆,对其中两个克隆用ECoRI酶解并进行分子杂交分析,重组质粒被EcoRI切成四个片段。2.8kb片段为pUC9栽体,2kb片段为与pDC5AI质粒伸展蛋白同源性较好的片段。对于23kb片段的重组质粒有待于进一步的分析。
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利用聚合酶链式反应(PCR)技术从Alcaligenes eutrophus H16染色体DNA中扩增并克隆了调控聚-3-羟基丁酸(poly-3-hydroxy-butyrate,PHB)生物合成的两个关键酶基因:依赖NADPH的乙酰乙酰CoA还原酶基因(phbB)和PHB合成酶基因(phbC)。限制性内切酶图谱和核苷酸序列分析证实了克隆结果,并表明克隆的基因与国外所报道的有很高的同源性。经过基因拼接,构建了块茎特异性表达的高等植物表达载体pPSAGB(嵌合phbB)、pBIBGC(嵌合phbC)和pPSAGCB(嵌合phbB和phbC)。并以试管薯(microtuber)为外植体经Agrobacterium介导转化了虎头、京丰、Bintje、Favorita、高原4号和88-5共6个马铃薯品种,获得49个株系。经PCR检测导入phbB的株系共有44个,对其中30个株系进行DNA dot blot分析,结果表明phbC导入呈阳性的株系有20个。深入的鉴定工作还在进行中。
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低温是限制植物分布和生物产量的一个重要环境因子。低温的危害也是农业生产上经常遭受的主要自然灾害之一。改良作物的抗寒性是植物科学研究的一个重要课题。植物基因工程的兴起为此目的提供了有力的手段。 大量的研究证明,低温对植物的伤害,首先是使生物膜发生相变和相分离。因此,保持低温下生物膜功能性的液晶态是抗寒的重要机制。研究表明,生物膜这种具流动性的功能态的保持,是与其组成上的膜脂脂肪酸的不饱和度成正相关的。 已有几个关于通过提高膜脂脂肪酸不饱和度的基因操作而增加植物抗寒性的报道。在众多的植物脂肪酸去饱和酶中,硬脂酰ACP去饱和酶(SAD)是最为关键的酶之一。它催化脂肪酸的第一步去饱和反应:18:0-18:l¨。多不饱和脂肪酸是在1 8:1 中由其他去饱和酶再加入双键而生成的。因此,SAD的活性水平是决定植物膜脂不池和度的一个关键因素。 本研究以酸酚法提取的菠菜总RNA为材料,采用反转录一PCR的方法,克隆得到SAD基因,经定向缺失法获得一套该基因的缺失突变体后,用DNA 自动测序仪和双脱氧链终止法测序。获得的SAD基因序列与Nishlda(1992)等发表的菠菜sADcDNA核苷酸序列比较。两者的编码SAD的ORF都为ll97bp,核苷酸差异仅为8bp。但令人惊奇的是我们克隆到的基因,其5‘端上游还存在-个小的ORF,长30bp.编码10个氨基酸。其他报道的SAD基因中都没有这个ORF。 将克隆到的SAD基因构建成两个植物双元表达载体:正义的pB112-13和反义的pB112-6。用叶盘法转化烟草。DNA点杂交和Southern杂交筛选出转基因植株。抗寒性测定表明:当植株置于6'C40小时,转基因植株和对照的相对电导率比较一致,无明显改变;而在88小时,pB121-6转化植株和对照的相对电导率明显升高,以pB1121-6植株升高更多,但pB1121-13转化植株的相对电导率始终保持在较低水平。短暂冰冻处理(-20'C,4O分钟)后置室温下4天,pBl121-6转化烟草总叶绿素含量损失最多,对照次之,而pB1121-13转化烟草中多数植株总叶绿素损伤量都低于其他两种烟草。从这两个抗寒性测定实验,可判定pBl l 2 l—I 3烟株最抗寒,对照次之,而pB1121-6烟株最不抗寒。 由于pB1121-13是增强转基因烟草中SAD活性,而pB1121-6是削弱SAD基因的表达,因此.本研究首次证明通过SAD的基因工程可以改变植物的抗寒性。
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基因组特异序列是跟踪外源染色质、鉴定易位系的特异探针。本文介绍一种带反馈控制的PCR增效减法杂交(PEFCSH),证明可高效克隆基因组特异序列。 带PCR接头的黑麦DNA片段与固定化的小麦ssDNA杂交,同源的片段将被吸附。用PCR扩增吸附的DNA,可监测杂交液中与小麦同源的DNA,确定是否还要再杂交。5轮连续杂交后,杂交液中的DNA几乎全为黑麦特异DNA,纯化后,用PCR扩增到方便操作的数量。经检测,PEFCSH片段99%为黑麦基因组特异性序列,富集度超过230倍。 PEFCSH片段克隆后检测:插入片段在120bp~2000bp,峰值250bp左右;306个克隆中301个显黑麦特异性,表明了PEFCSH的高效性。Tomita等曾用普通减法杂交富集黑麦特异序列,所得克隆只有6.3%为黑麦特异。 与数据库对比,分离片段有的为新序列,更多的与已知的黑麦特异重复序列同源。用其中一条作探针进行Southern杂交,小麦不显带,黑麦显阶梯型带,说明它是特异性串联重复序列。 PEFCSH有如下特点:1. 实时监测杂交液中非特异DNA,首次引入反馈控制,确保杂交达到预期效果。2. 用PCR制备Tester只需少量样品就可以分离特异序列。3. 采用固相减法杂交,大大简化Test与Driver的分离。4. 用PCR克服常规减法杂交操作性差的弱点。5. 富集特异单链和双链DNA,减少特异序列丢失。6. 适用于大多数分离两组相关核酸中的差异成分。