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Towards functional characterisation of the members of the
R2R3-MYB
gene family from
Arabidopsis thaliana 总被引:3,自引:4,他引:3
Harald D. Kranz Marten Denekamp Raffaella Greco Hailing Jin Antonio Leyva Ruth C. Meissner Katia Petroni Ana Urzainqui Michael Bevan Cathie Martin Sjef Smeekens Chiara Tonelli Javier Paz-Ares Bernd Weisshaar 《The Plant journal : for cell and molecular biology》1998,16(2):263-276
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The R2R3-MYB transcription factor gene family in maize 总被引:2,自引:0,他引:2
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AtMYB61, an R2R3-MYB transcription factor controlling stomatal aperture in Arabidopsis thaliana 总被引:2,自引:0,他引:2
Liang YK Dubos C Dodd IC Holroyd GH Hetherington AM Campbell MM 《Current biology : CB》2005,15(13):1201-1206
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Zhu Lu Li Shushun Ma Qiuyue Yan Kunyuan Ren Jie Chen Zhu Wen Jing Li Qianzhong 《Journal of Plant Growth Regulation》2023,42(2):1017-1030
Journal of Plant Growth Regulation - Low temperature is one of the most prominent environmental factors affecting plant growth. As a deciduous arboreal tree, Acer palmatum has considerable... 相似文献
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The phenylalanine ammonia-lyase gene family in Arabidopsis thaliana 总被引:12,自引:0,他引:12
Leslie A. Wanner Guoqing Li Doreen Ware Imre E. Somssich Keith R. Davis 《Plant molecular biology》1995,27(2):327-338
Phenylpropanoid derivatives are a complex class of secondary metabolites that have many important roles in plants during normal growth and in responses to environmental stress. Phenylalanine ammonialyase (PAL) catalyzes the first step in the biosynthesis of phenylpropanoids, and is usually encoded by a multi-gene family. Genomic clones for three Arabidopsis thaliana PAL genes containing the entire protein-coding region and upstream and downstream sequences have been obtained and completely sequenced. Two A. thaliana PAL genes (PAL1 and PAL2) are structurally similar to PAL genes that have been cloned from other plant species, with a single intron at a conserved position, and a long highly conserved second exon. Previously identified promoter motifs plus several additional sequence motifs were found in the promoter regions of PAL1 and PAL2. Expression of PAL1 and PAL2 is both qualitatively and quantitatively similar in different plant organs and under various inductive conditions. A third A. thaliana PAL gene, PAL3, differs significantly from PAL1 and PAL2 and other sequenced plant PAL genes. PAL3 contains an additional intron, and its deduced amino acid sequence is less homologous to other PAL proteins. The PAL3 promoter region lacks several sequence motifs conserved between A. thaliana PAL1 and PAL2, as well as motifs described in other genes involved in phenylpropanoid metabolism. A. thaliana PAL3 was expressed at very low levels under the conditions examined. 相似文献
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赤霉素是一类重要的植物激素,它参与调节植物生长发育的各个阶段。真核基因的表达受多种因素的调控,其中启动子在转录水平上的调节作用至关重要,但是目前对拟南芥GA2ox基因家族上游顺式元件的详细分析较少。本研究分析了AtGA2ox基因家族染色体定位、进化关系、蛋白模体以及顺式元件。分析结果表明:AtGA2ox基因家族分为2个亚类;具有相对集中的染色体分布:具有相似的内含子和外显子结构;AtGA2ox基因家族成员进化关系越相近,模体和顺式元件则越保守且分布位置更接近。PLACE和Plant CARE以及DMB分析显示,AtGA2ox基因家族存在许多保守元件,受多因素的调控,在此家族的上游调控区域普遍存在组织和器官特异性表达元件、光响应元停、激素响应元件以及其他环境响应元件。基因表达谱分析结果表明,在激素诱导下,AtGA2ox基因家族均有响应。这些元件不仅作为正调控元件,诱导部分AtGA2ox基因的表达,而且还能作为负调控元件.抑制其他AtGA2ox基因的表达。 相似文献
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Xi Cao Ke-Zhen Yang Chuan Xia Xue-Qin Zhang Li-Qun Chen De Ye 《Plant molecular biology》2010,72(1-2):61-73
Eighteen genes that encode the proteins with highly conserved Domain of Unknown Function 724 (DUF724) and Agenet domains were identified in plant taxa but not in animals and fungi. They are actively expressed in many different plant tissues, implying that they may play important roles in plants. Here we report the characterization of their structural organizations, expression patterns and protein–protein interactions. In Arabidopsis, the DUF724 genes were expressed in roots, leaves, shoot apical meristems, anthers and pollen grains. At least seven of the ten Arabidopsis DUF724 proteins (AtDuf1 to AtDuf10) were localized in nucleus. Three of them (AtDuf3, AtDuf5 and AtDuf7) may form homodimers or homopolymers, but did not interact with other members of the same family. Together with the significant similarity between DUF724 proteins and FMRP in the fundamental and characteristic molecular architecture, the results implies the DUF724 gene family may be involved in the polar growth of plant cells via transportation of RNAs. 相似文献
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Two new loci have been found to be clustered with five other genes for the nitrate assimilation pathway in the Chlamydomonas reinhardtii genome. One gene, located close to the 3′-end of the high-affinity nitrate transporter (HANT) gene Nrt2;2, corresponds to the nitrite reductase (NiR) structural gene Nii1. This is supported by a number of experimental findings: (i) NiR-deficient mutants have lost Nii1 gene expression; (ii) Nii1 mRNA accumulation is co-regulated with the expression of other structural genes of the nitrate assimilation pathway; (iii)
nitrite (nitrate) utilization ability is recovered in the NiR mutants by functional complementation with a wild-type Nii1 gene; (iv) the elucidated NII1 amino acid sequence is highly similar to that of the cyanobacterial and higher-plant enzyme,
and contains the predicted domains for plastidic ferredoxin-NiRs. Thus, the mutant phenotype and the mRNA sequence and expression
of the Nii1 gene have been unequivocally related. Accumulation of mRNA for the second locus identified, Lde1 (light-dependent expression), was not regulated by nitrogen, but like nitrate-assimilation clustered genes, its expression
was down-regulated in the dark.
Received: 27 November 1997 / Accepted: 19 January 1998 相似文献