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1.
In Arabidopsis thaliana, four genes have been identified inthe RBCS gene family, one being assigned to subfamily RBCS-Aand the other three to subfamily RBCS-B (1B, 2B and 3B). Todetermine the chromosomal location ofthese genes, hybridizationanalysis with CIC YAC high-density filters was carried out forthe RBCS-A gene, and CAPS analysis for the three RBCS-B genes,based on the finding that restriction fragment length polymorphismis present in the upstream region of the gene RBCS-3B. The RBCS-Agene was mapped at 100.8 cM from the top of chromosome 1 andthe three RBCS-B genes at 62.70 cM from the top of chromosome5.  相似文献   

2.
A gene encoding a novel geranylgeranyl pyrophosphate (GGPP)synthase from Arabidopsis thaliana has been identified and termedGGPS5. The gene has been sequenced and expressed in Escherichiacoli. The deduced amino acid sequence showed 64.5% and 57.5%identity with a putative GGPP synthase from Arabidopsis andCapsicum annuum, respectively. GGPP enzymatic activity was detectedin E. coli cells expressing the GGPS5 gene in two differentways. One was the direct measurement of GGPP synthase activityin cell extracts and the other was the yellow color productionof cells when the GGPS5 gene was co-expressed with crtB, crtI,crtX, crtY and crtZ genes derived from Erwinia uredovora. (Received May 20, 1996; Accepted December 14, 1996)  相似文献   

3.
为验证家蚕Bombyx mori热休克蛋白基因hsp20.4启动子的活性以及家蚕核多角体病毒egt的表达产物对家蚕发育的影响, 本实验通过PCR扩增分别得到hsp20.4启动子片段和egt片段。利用hsp20.4的启动子和红色荧光蛋白报告基因DsRed构建重组载体, 在家蚕BmN细胞以及家蚕组织中得到了瞬时表达, 表明所克隆的hsp20.4启动子序列具有热休克蛋白基因的启动子活性。又利用hsp20.4启动子和家蚕核多角体病毒的egt构建重组载体, 通过注射到蚕蛹中进行瞬时表达, 以检测egt表达产物对家蚕发育的影响, 经42℃ 1 h热诱导后, hsp20.4启动子控制的egt表达产物可以延迟家蚕发育。  相似文献   

4.
Molecular Characterization of the waxy Locus of Rice (Oryza sativa)   总被引:10,自引:0,他引:10  
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5.
Buchnera aphidicola is an intracellular prokaryote (endosymbiont)that lives in the body cavity of the aphid. Phylogenetic studiesindicated that it is closely related to Escherichia coli andmembers of Enterobacteria. The gene order of the region containingthe dnaA gene is well conserved in many bacteria. Seven genesof the endosymbiont of the aphid Schizaphis graminum, gyrB,dnaN, dnaA, rpmH, rnpA, yidD, and 60K, were found to be homologousin sequence and relative location to those of E. coli. We havefurther sequenced the region downstream of the 60K gene to elucidatethe boundary of the conserved region, and found that one moregene, thdF , is conserved. The comparison of gene organizationsof the dnaA region of the related bacteria supported the closephylogenetic relationship of B. aphidicola to E. coli. In addition,we have identified groES and groEL genesnext to the thdF gene.GroEL protein was reported to be expressed at an elevated levelin the endosymbionts of aphids, and is considered to play animportant role in their association with the aphid host. Comparisonof the structure of the groE operon with that of the endosymbiontof the aphid Acyrthosiphon pisum revealed the conservation ofa sequence resembling the E. coli consensus heat shock promoter,and this sequence may be responsible for the high expressionof the groEL gene in aphid endosymbionts.  相似文献   

6.
The frxC gene, found in liverwort chloroplast DNA, encodes aprotein of unknown function. The deduced amino acid sequenceof the protein shows significant homology to that of ni-trogenaseFe-protein encoded by the nifH gene. We have cloned the frxCand nifH genes from the nitrogen-fixing cyanobacterium Plectonemaboryanum, using frxC- and nifH-specific probes, and have determinedtheir nucleotide sequences. The amino acid sequence deducedfrom the frxC gene of P. boryanum exhibits 83% homology to thatof the protein encoded by the/rxCgene from liverwort, whereasit exhibits only 34% homology to that encoded by the nifH genefrom the same organism, namely, P. boryanum. Northern blot analysisshowed that the frxC gene was transcribed more actively undernitrogenase-repressed conditions than under nitrogenase-inducedconditions, suggesting that the FrxC protein has a functiondistinct from nitrogen fixation. These results, together withthe phylogenetic relationship between the nifH and frxC genes,indicate that the frxC and nifH genes are derived from a commonancestral gene but have evolved independently to encode proteinswith different functions. (Received April 27, 1991; Accepted August 12, 1991)  相似文献   

7.
为评价pH对红褐斑腿蝗Catantops pinguis (Stål)中肠蛋白酶活性的影响, 本文用3种专性底物测定了不同pH环境下蝗虫中肠类胰蛋白酶和类胰凝乳蛋白酶的活性。结果表明: 雄性红褐斑腿蝗中肠肠液的pH值为6.92±0.043, 雌性为7.03±0.054, 两性间差异不显著(P>0.05)。并且发现3种蛋白酶的最适pH值各不相同, 其中雌雄虫的强碱性类胰蛋白酶(以BAPNA为底物)最适pH分别为8.5和10.5; 雌雄虫的弱碱性类胰蛋白酶(以TAME为底物)最适pH分别为9.0和9.5; 而雌雄虫的类胰凝乳蛋白酶(以BTEE为底物)最适pH雌性为8.5, 雄性为8.0。统计结果显示, pH对红褐斑腿蝗中肠蛋白酶活性影响显著(P<0.01), 两性间蛋白酶活性差异显著(P<0.01)。在最适pH情况下, 雌性的类胰蛋白酶活性高于雄性, 而类胰凝乳蛋白酶活性则是雄性高于雌性。在中肠pH范围内雌性比雄性具有更高的消化蛋白酶活性, 显示雌性具有较强的食物处理能力以摄取更多的营养物质为繁殖活动(孕卵)作准备, 而该种蝗虫最适pH范围较宽, 可能与其取食植物范围较宽有关。  相似文献   

8.
The waxy (wx) locus, which controls the amylose synthesis, isknown to be expressed specifically in the endosperm and pollen.To study the tissue-specific regulation of the wx+ gene, weintroduced a fusion gene that consisted of the upstream sequenceof the wx+ gene and the gene for rß-glucuronidase(GUS) into cells of rice (Oryza sativa L.) and petunia (Petuniahybrida L.). GUS activity was examined in the regenerated transgenicrice and petunia plants. In transgenic rice, the upstream sequenceof the wx+ gene was sufficient to direct the tissue-specificexpression of GUS in the endosperm and pollen, and the controlof expression was quantitative. By contrast, in transgenic petunia,the same fusion gene was expressed in pollen but not in theendosperm. These results suggest that the putative cis-actingelements that direct pollen-specific expression are common toor similar in both monocotyledonous and dicotyledonous plants,whereas ciy-elements responsible for the endosperm-specificexpression of the rice wx+ gene do not function in petunia,in which development of the endosperm differs from that in rice. 4Present address: Division of Biological Sciences, GraduateSchool of Science, Hokkaido University, Kita-ku, Sapporo, 060Japan  相似文献   

9.
The Japanese morning glory carrying the recessive mutable speckledallele with the dominant speckled-activator bears colorlessflowers with fine and round colored spots distributed over thecorolla whereas the plant without the speckled-activator producespale yellow flowers. Previous chemical analysis has indicatedthat a mutation in the gene for flavanone 3-hydroxylase (F3H)is a likely candidate for the speckled allele. However, theF3HmRNA without sequence alteration accumulates normally inthe pale yellow flowers, indicating that the speckled alleleis neither the F3H gene nor a regulatory gene acting on theF3H gene expression. (Received April 4, 1997; Accepted June 2, 1997)  相似文献   

10.
In synchronized Chlorella sorokiniana cells, the NH4+ inducibleNADP-specific glutamate dehydrogenase enzyme (NADP-GDH) accumulatedin a linear manner throughout the first cell cycle. Early inthe following second cell cycle, an increase in its rate ofaccumulation occurred that was proportional to the increasein total cellular DNA in the previous cell cycle. In synchronizedbacterial cells, increases in rate of linear accumulation ofinducible enzymes coincide with the time of replication of theirstructural genes. To determine whether the rate change in NADPGDHaccumulation resulted from a delay in replication of its nuclearstructural gene (gdhN) in fully induced C. sorokiniana cells,the cell cycle timing of replication of this gene was comparedto that of another nuclear gene, nitrate reductase (nia), andof a chloroplast gene, ribulose bisphosphate carboxylase large-subunit(rbcL), in synchronized cells cultured in NH4+ or NO3(uninduced) medium. The gdhN and nia genes replicated withinthe period of nDNA synthesis and rbcL within the period of ctDNAsynthesis in cells growing in either nitrogen source. Therefore,the delayed rate change in enzyme accumulation results froma process that regulates expression of the gdhN gene after itsreplication. (Received July 16, 1994; Accepted November 28, 1994)  相似文献   

11.
A transformation system is described for Solanum dulcamara usingthe supervirulentAgrobacterium tumefaciens strain 1065, carryingboth the ß-glucuronidase (gus) and neomycin phosphotransferaseII (npt II) genes adjacent to the right and left T-DNA borders,respectively. Leaf explants were more efficient for the productionof transformed plants compared to stem explants on medium containing50 mg l-1of kanamycin sulphate. A 1:10 (v:v) dilution of anovernight culture ofAgrobacterium gave optimal transformationin terms of transgenic plant regeneration. From a total of 174kanamycin-resistant plants selected by their antibiotic resistance,16 failed to exhibit GUS activity. Southern analysis revealedthat these GUS-negative transformants originated from threeindependently transformed cell lines. Restriction enzyme analysesshowed that the GUS-negative plants had both the gus and nptII genes integrated into their genome (one plant had a singlecopy of each gene; the other two plants had multiple copies),with major rearrangement of the gus gene occurring in plantswith several copies of the transgene. GUS-negative plants showedleaf malformations, delayed flowering and a reduction in flower,fruit and seed production compared to GUS-positive and non-transformed(control) plants. Although gene silencing of the gus gene occurred,albeit at a low frequency (9.2%), the transformation systemdescribed generates large numbers of phenotypically normal,stably transformed plants. Copyright 2000 Annals of Botany Company Agrobacterium -mediated transformation, gene silencing, Solanum dulcamara L. (Bittersweet, Woody Nightshade), T-DNA truncation, transgene expression  相似文献   

12.
13.
Synechococcus PCC 7942 contains two fructose-1,6-bisphosphataseisozymes (FBPase-I and FBPase-II), while Synechocystis PCC 6803has only one (FBPase-I) in spite of the occurrence of two FBPaseisozyme genes [Tamoi et al. (1998) Biochim. Biophys. Acta 1383:232]. We now demonstrate that disruption of the gene encodingFBPase-II (fbp-II) with a kanamycin resistance gene cartridgedoes not affect cell growth, Chl content, or CO2 assimilationin Synechococcus PCC 7942, and disruption of the gene encodingFBPase-I (fbp-I) is a lethal mutation in both cyanobacteria.Accordingly, it is clear that FBPase-I is necessary to sustainphotosynthesis and gluconeogenesis in cyanobacteria. (Received September 10, 1998; Accepted December 10, 1998)  相似文献   

14.
15.
Cells of the VSR751 strain, which was previously isolated asa photoresistant revertant of the visA-deleted (hemH-deleted)strain of Escherichia coli K-12, accumulated uroporphyrin (uro),coproporphyrin (copro) and protoporphyrin IX (proto), but didnot accumulate as much protoporphyrin as cells of the parentalstrain (hemH-deleted). Therefore, we concluded that strain VSR751must be defective in protoporphyrinogen oxidase (PPO), the productof the hemG gene. By complementation analysis using VSR751,we isolated and identified this gene. The hemG gene is locatedat 86 mim on the E. coli chromosome, just upstream of the rrnAoperon, and is transcribed clockwise in the same direction asthe rrnA operon. This gene encodes a 181-amino acid proteinwith a calculated molecular mass of about 21 kDa. Sequence analysisrevealed the presence of flavodoxin motif, suggesting that acofactor of this enzyme is flavin mononucleotide, which is consistentwith the previous report that the mammalian PPO had the flavincofactor.  相似文献   

16.
17.
We have cloned and sequenced a gene encoding polyphosphate kinase(PPK) from Pseudomonas aeruginosa PAO1. The gene immediatelyfollows the hemB gene encoding porphobilinogen synthase responsiblefor heme synthesis. The predicted amino acid sequence of P.aeruginosa PPK is similar to those of PPKs previously characterizedexcept that it possesses an extra stretch of 46 amino acidsat its N-terminus, which has significant similarity to the Ras-relatedprotein ARA5 of Arabidopsis thaliana. When P. aeruginosa PPKwas overproduced in Escherichia coli, ATP-dependent polyphosphate-synthesizingactivity was drastically enhanced, confirming that the proteinis a PPK.  相似文献   

18.
We have introduced the maize Ac transposable element in Arabidopsisthaliana and found that after three selfing generations, theelement is immobile and extensively methylated. Moreover, thenopaline synthase (nos) gene present on the same transferredT-DNA, was active early after transformation and regeneration,but inactive in most of the S1 progeny. We used 5-azacytidine(5AzaC) to determine whether a reduction in the methylationwould affect both Ac transposition and expression of the nosgene. After treatment with 5AzaC doses from 0.3 mM to 1.0 mM,approximately 25% of the plants produced detectable amountsof nopaline, indicating that the nos gene was reactivated. Usingthe polymerase chain reaction (PCR) to detect the empty donorsite left by Ac transposition, we demonstrated that 5AzaC alsoactivates Ac excision in the transgenic plants. Approximately13% of the 5AzaC treated plants (doses from 0.1 mM to 1.0 mM)were shown to have empty donor sites due to Ac excision. Noneof the plants cultivated in the absence of 5AzaC showed evidencefor Ac transposition or reactivation of the nos gene. Furtheranalysis using Southern blot indicate that some de-methylationocurred in the genome of individual plants. These results mayrepresent demethylation in few cells during development whichmay be sufficient to reactivate in these cells the expressionof the nos and Ac transposase transgenes, the latter promotingAc transposition in somatic cells. (Received July 16, 1996; Accepted January 8, 1997)  相似文献   

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