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Analysis of Arabidopsis AIR12 and Brassica carinata CIL1 in root development and response to abiotic stress.

机译:分析拟南芥AIR12和芸苔CIL1的根发育和对非生物胁迫的响应。

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摘要

The development of plants challenged by environmental stress alters plant architecture through several pathways, including those involving plant hormone responses and reactive oxygen species (ROS) production. Auxin, a phytohormone associated with every aspect of development, and abscisic acid (ABA), a phytohormone involved in abiotic stress responses, both interact with ROS. These ROS are used as secondary messengers to activate transcription of abiotic stress genes, and also in developmental responses such as cell elongation. To understand the mechanisms involved in the abiotic stress response and how the response intersects with auxin, ABA, and ROS, I examined COPPER INDUCED IN LEAVES 1 (CIL1) from Brassica carinata and its Arabidopsis orthologue, AUXIN INDUCED IN ROOTS 12 (AIR12). Expression of both genes increases in response to auxin and recent work has placed both CIL1 and AIR12 within a family of plant-specific cytochrome b561 proteins thought to be involved with transmission of ROS signals. This suggests a link between auxin and ROS production resulting from abiotic stress. Antisense CIL1 B. carinata plants produced fewer lateral roots and were resistant to salinity stress during vegetative growth. Mutant air12 plants showed a 50% reduction in lateral root number, lateral root length, and H2O2 root distribution. Growth in the presence of H2O2 was able to restore lateral root length to control levels. In silica analysis of the CIL1 and AIR12 amino acid sequences detected an attachment site for glucosylphosphatidylinositol, predicting that the protein is targeted to the extracellular leaflet of the plasma membrane where it could be cleaved and released into the apoplast. Subcellular localization using p35S::GFP-CIL1 and p35S::GFP-AIR12 translational fusions confirmed that CIL1 and AIR12 localize to the plasma membrane and are released into the apoplast. Organ localization of AIR12 using the pAIR12::GFP-AIR12 construct in stably transformed Arabidopsis showed fusion protein accumulation in the apex of the primary root and in the vascular tissue. Fusion protein also localized to cells flanking emerging lateral roots. Investigation of pAIR12::GUS Arabidopsis showed GUS accumulation in the apex of elongating lateral roots. I demonstrate that AIR12 is an extracellular protein and that air12 seedlings are susceptible to salt stress, but not osmostic stress and display increased and decreased sensitivity to ABA during germination and primary root elongation, respectively, suggesting that AIR12 acts downstream of abiotic stress recognition.
机译:受环境压力挑战的植物的发展通过多种途径改变了植物的结构,包括涉及植物激素反应和活性氧(ROS)产生的途径。生长素是与发育的各个方面相关的植物激素,脱落酸(ABA)是参与非生物胁迫反应的植物激素,两者都与ROS相互作用。这些ROS用作次级信使,以激活非生物胁迫基因的转录,并用于发育反应,例如细胞伸长。为了了解非生物应激反应的机制以及该反应如何与生长素,ABA和ROS相交,我检查了源自的叶子1 CIL1 )中的铜。 > Brassica carinata 及其拟南芥直系同源物,在根12中诱导的AUXIN AIR12 )。这两个基因的表达均响应生长素而增加,并且最近的研究已经将CIL1和AIR12置于植物特异性细胞色素 b 561蛋白家族中,这些蛋白与ROS信号的传递有关。这表明由非生物胁迫导致的生长素和ROS的产生之间存在联系。反义 CIL1 B. carinata 植物在营养生长过程中产生较少的侧根并且对盐分胁迫具有抗性。突变的 air12 植物的侧根数,侧根长度和H 2 O 2 根系分布减少了50%。在H 2 O 2 存在下的生长能够将侧根长度恢复到控制水平。 在硅胶中对CIL1和AIR12氨基酸序列的分析检测到了葡萄糖基磷脂酰肌醇的附着位点,预示该蛋白靶向质膜​​的细胞外小叶,在此可以裂解并释放到质外体中。使用 p35S :: GFP-CIL1 p35S :: GFP-AIR12 翻译融合进行亚细胞定位,证实CIL1和AIR12定位于质膜并释放到质外体中。使用 pAIR12 :: GFP-AIR12 构建体在稳定转化的拟南芥中对AIR12进行的器官定位显示融合蛋白在第一根的根尖和血管组织中积累。融合蛋白也定位在侧生根侧翼的细胞中。对 pAIR12 :: GUS 拟南芥的研究显示,GUS积累在伸长的侧根根部。我证明AIR12是一种细胞外蛋白,并且 air12 幼苗对盐胁迫敏感,但对骨应力不敏感,并且在发芽和初生根伸长过程中分别显示出对ABA的敏感性增高和降低,这表明AIR12起作用非生物压力识别的下游。

著录项

  • 作者

    Gibson, Shawn.;

  • 作者单位

    The University of Saskatchewan (Canada).;

  • 授予单位 The University of Saskatchewan (Canada).;
  • 学科 Biology Molecular.;Biology Genetics.;Biology Botany.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 230 p.
  • 总页数 230
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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