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Characterization of sugar-insensitive mutants and analysis of sugar-regulated gene expression in Arabidopsis thaliana.

机译:糖不敏感突变体的表征和拟南芥中糖调节基因表达的分析。

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摘要

Sugars serve as signaling molecules in plants, affecting gene expression and a number of developmental processes, but their precise role and the pathways through which they act are not well characterized. In addition, sugar-signaling pathways interact with the vast network of phytohormone-signaling pathways. In order to facilitate an understanding of sugar sensing and signaling pathways in Arabidopsis, sugar-insensitive mutants have been isolated for study and global genome analysis of wild-type and mutant responses to sugars and the phytohormones abscisic acid, ethylene, and gibberellin have been undertaken.; Sugar-insensitive mutants were isolated based on their ability to form true leaves and expanded cotyledons in the presence of high concentrations (0.27 M to 0.34 M) of sucrose or glucose. The sis3 and sis6 mutants were chosen for further study.; The sis3-1 mutation is recessive and is not linked to the presence of a T-DNA insert carried by the mutant. The sis3 mutation maps to the bottom arm of chromosome 3. The sis3 mutant is slightly insensitive to the effects of exogenously applied abscisic acid (ABA) on seed germination and root elongation but has a wild-type response to all other phytohormones tested.; The sis6-1 mutant carries a cDNA encoding the At4g28240 putative wound-inducible gene on a T-DNA insert. The dominant nature of the mutation suggests that the five-fold overexpression of the cDNA in the mutant may be the cause of the sis phenotype. However, disruption of a gene by the T-DNA insertion is also a possible cause of the phenotype. The sis6 mutant is resistant to the inhibition of seed germination and root elongation caused by application of exogenous ABA. It is also resistant to the inhibition of germination caused by application of exogenous paclobutrazol (an inhibitor of gibberellin biosynthesis). This suggests a possible link between sugar and gibberellin signaling pathways.; Analysis of gene expression in response to sugars and phytohormones was undertaken using the Affymetrix GeneChip Arabidopsis ATH 1 Genome Array which includes over 24,000 Arabidopsis genes. Both wild-type germinating seeds and adult plants were studied in order to begin determining the impact of the developmental age of the plant on sugar-regulated gene expression.
机译:糖作为植物中的信号分子,影响基因表达和许多发育过程,但是它们的确切作用和作用途径尚不明确。另外,糖信号通路与植物激素信号通路的庞大网络相互作用。为了促进对拟南芥中糖感测和信号传导途径的理解,已分离出对糖不敏感的突变体进行研究,并对野生型和突变体对糖的反应和植物激素脱落酸,乙烯和赤霉素进行了全基因组分析。 。;在高浓度(0.27 M至0.34 M)的蔗糖或葡萄糖存在下,根据对糖不敏感的突变体形成真实叶片和扩增子叶的能力进行分离。选择了sis3和sis6突变体用于进一步研究。 sis3-1突变是隐性的,与突变体携带的T-DNA插入片段的存在无关。 sis3突变映射到3号染色体的下臂。sis3突变体对外源施加的脱落酸(ABA)对种子发芽和根伸长的影响不敏感,但对所有其他受试植物激素均具有野生型应答。 sis6-1突变体在T-DNA插入片段上携带一个编码At4g28240假定的伤口诱导基因的cDNA。突变的显性性质表明,突变体中cDNA的五倍过度表达可能是sis表型的原因。但是,通过T-DNA插入破坏基因也是表型的可能原因。 sis6突变体对应用外源ABA引起的种子发芽和根伸长的抑制具有抗性。它也抵抗因应用外源多效唑(赤霉素生物合成抑制剂)而引起的发芽抑制。这表明糖和赤霉素信号传导途径之间可能存在联系。使用Affymetrix GeneChip拟南芥ATH 1基因组阵列分析了对糖和植物激素的响应的基因表达,该阵列包括超过24,000个拟南芥基因。为了开始确定植物的发育年龄对糖调节基因表达的影响,对野生型发芽种子和成年植物都进行了研究。

著录项

  • 作者

    Pattison, Donna Lynn.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 450 p.
  • 总页数 450
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;
  • 关键词

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