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Zhou L  Mitra R  Atkinson PW  Hickman AB  Dyda F  Craig NL 《Nature》2004,432(7020):995-1001
Transposons are DNA sequences that encode functions that promote their movement to new locations in the genome. If unregulated, such movement could potentially insert additional DNA into genes, thereby disrupting gene expression and compromising an organism's viability. Transposable elements are classified by their transposition mechanisms and by the transposases that mediate their movement. The mechanism of movement of the eukaryotic hAT superfamily elements was previously unknown, but the divergent sequence of hAT transposases from other elements suggested that these elements might use a distinct mechanism. Here we have analysed transposition of the insect hAT element Hermes in vitro. Like other transposons, Hermes excises from DNA via double-strand breaks between the donor-site DNA and the transposon ends, and the newly exposed transposon ends join to the target DNA. Interestingly, the ends of the donor double-strand breaks form hairpin intermediates, as observed during V(D)J recombination, the process which underlies the combinatorial formation of antigen receptor genes. Significant similarities exist in the catalytic amino acids of Hermes transposase, the V(D)J recombinase RAG, and retroviral integrase superfamily transposases, thereby linking the movement of transposable elements and V(D)J recombination.  相似文献   

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小盐芥(Thellungiella salsuginea)CBF1基因的克隆   总被引:8,自引:1,他引:7  
CBFs ( CRT/DRE-binding factor )是结合DNA顺式元件CCGAC的转录因子.拟南芥中CBFs由一个小的基因家族编码,包括3个成员:CBF1、CBF2和CBF3,它们在植物抗逆性调控中起重要作用.为了获得高度耐盐耐旱的转基因植物,我们以盐生植物小盐芥为材料,依据拟南芥中CBF1的序列信息设计引物,扩增出小盐芥中CBF1的部分序列,然后使用SMART^TM RACE等方法,从小盐芥中克隆到全长的CBF1 cDNA序列,进而重组到植物表达载体中,为植物抗逆基因工程提供了有用基因.  相似文献   

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The upstream regulatory region of a seed-specific gene was isolated from the genomic DNA of Brassica napus by PCR amplification. The cloned fragment contained 1755 nucleotides, and shared a sequence homology of 99.6% with the reported data. The coding region of oleic acid desaturase gene was then cloned from Arabidopsis thaliana. The sequencing analysis indicated that the sequence of the PCR product was just the same as reported before. In addition, the plant expression vector harboring the seed-specific promoter and trans-Fad2 gene was constructed.  相似文献   

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The upstream regulatory region of a seed-specific gene was isolated from the genomic DNA of Brassica napus by PCR amplification. The cloned fragment contained 1755 nucleotides, and shared a sequence homology of 99.6% with the reported data. The coding region of oleic acid desaturase gene was then cloned from Arabidopsis thaliana. The sequencing analysis indicated that the sequence of the PCR product was just the same as reported before. In addition, the plant expression vector harboring the seed-specific promoter and trans-Fad2 gene was constructed.  相似文献   

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通过Ac/Ds转座子系统的诱变,得到拟南芥突变体DS254.它的发育进程比野生型慢,植株比野生型矮小,连座叶柄比野生型的短,花苞数目比野生型的多,分枝的数量比野生型的多,且雄性不育.遗传分析表明突变体属于隐性单基因突变,稳定遗传,并且与Ds是紧密连锁的。可能是Ds插入直接引起的突变.TAIL—PCR的方法将该基因定位在第4条染色体上.Ds上携带的GUS基因表迭的初步分析表明,GUS基因在突变体的花药和连座叶中表达,说明该基因也可能在这些部位表达.突变体的表型分析结果说明该基因可能在植物的许多发育过程中起作用.  相似文献   

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Analysis of the genome sequence of the flowering plant Arabidopsis thaliana   总被引:16,自引:0,他引:16  
The flowering plant Arabidopsis thaliana is an important model system for identifying genes and determining their functions. Here we report the analysis of the genomic sequence of Arabidopsis. The sequenced regions cover 115.4 megabases of the 125-megabase genome and extend into centromeric regions. The evolution of Arabidopsis involved a whole-genome duplication, followed by subsequent gene loss and extensive local gene duplications, giving rise to a dynamic genome enriched by lateral gene transfer from a cyanobacterial-like ancestor of the plastid. The genome contains 25,498 genes encoding proteins from 11,000 families, similar to the functional diversity of Drosophila and Caenorhabditis elegans--the other sequenced multicellular eukaryotes. Arabidopsis has many families of new proteins but also lacks several common protein families, indicating that the sets of common proteins have undergone differential expansion and contraction in the three multicellular eukaryotes. This is the first complete genome sequence of a plant and provides the foundations for more comprehensive comparison of conserved processes in all eukaryotes, identifying a wide range of plant-specific gene functions and establishing rapid systematic ways to identify genes for crop improvement.  相似文献   

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Zheng X  Pontes O  Zhu J  Miki D  Zhang F  Li WX  Iida K  Kapoor A  Pikaard CS  Zhu JK 《Nature》2008,455(7217):1259-1262
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Xie Q  Guo HS  Dallman G  Fang S  Weissman AM  Chua NH 《Nature》2002,419(6903):167-170
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多基因植物表达载体用于植物遗传转化是培育具有多种优良品质作物的有效策略. 双T-DNA系统是实现筛选完成后选择标记基因删除的一种简便可行的方式. 为培育高度抗逆或去除标记基因的农作物,构建了多基因双T-DNA植物表达载体2T-bbgdD,其中含有一个抗除草剂基因bar, 3个抗逆相关基因(DREB1A, Na+依赖性Pi转运体基因(d5), betA)和一个报告基因gfp. 利用农杆菌介导法将该载体转入拟南芥,获得了多基因共转化及去除标记基因的转基因拟南芥. 可将此植物表达载体进一步用于作物的遗传转化.  相似文献   

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The higher plant Arabidopsis thaliana (Arabidopsis) is an important model for identifying plant genes and determining their function. To assist biological investigations and to define chromosome structure, a coordinated effort to sequence the Arabidopsis genome was initiated in late 1996. Here we report one of the first milestones of this project, the sequence of chromosome 4. Analysis of 17.38 megabases of unique sequence, representing about 17% of the genome, reveals 3,744 protein coding genes, 81 transfer RNAs and numerous repeat elements. Heterochromatic regions surrounding the putative centromere, which has not yet been completely sequenced, are characterized by an increased frequency of a variety of repeats, new repeats, reduced recombination, lowered gene density and lowered gene expression. Roughly 60% of the predicted protein-coding genes have been functionally characterized on the basis of their homology to known genes. Many genes encode predicted proteins that are homologous to human and Caenorhabditis elegans proteins.  相似文献   

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Gene regulation: ancient microRNA target sequences in plants   总被引:2,自引:0,他引:2  
Floyd SK  Bowman JL 《Nature》2004,428(6982):485-486
MicroRNAs are an abundant class of small RNAs that are thought to regulate the expression of protein-coding genes in plants and animals. Here we show that the target sequence of two microRNAs, known to regulate genes in the class-III homeodomain-leucine zipper (HD-Zip) gene family of the flowering plant Arabidopsis, is conserved in homologous sequences from all lineages of land plants, including bryophytes, lycopods, ferns and seed plants. We also find that the messenger RNAs from these genes are cleaved within the same microRNA-binding site in representatives of each land-plant group, as they are in Arabidopsis. Our results indicate not only that microRNAs mediate gene regulation in non-flowering as well as flowering plants, but also that the regulation of this class of plant genes dates back more than 400 million years.  相似文献   

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IntroductionSevereenvironmentalchanges ,suchaslow temperature ,droughtandhigh salt ,affectthegrowthanddevelopmentof plantsandtheproductivityofcrops .Plantcellcannotobtainwaterwhensubjectedtodroughtorhigh saltcondition .Low temperaturealsoreduceswaterstateof …  相似文献   

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