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Expression profiling of the spermidine synthase3 (SPDS3) and spermine synthase ( SPMS) genes during the life of Arabidopsis.

机译:在拟南芥的生活中亚精胺合酶3(SPDS3)和亚精胺合酶(SPMS)基因的表达谱。

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摘要

Polyamines are low molecular weight nitrogenous compounds found in all living organisms. These omnipresent molecules have been extensively studied in plant systems and have been implicated in a number of physiological responses including growth, development, and stress response. The proposed role of polyamines in vital processes such as cell division and differentiation has sparked enthusiasm in further investigation of this relatively small biosynthetic pathway. Very little is known about the regulation of polyamine biosynthetic genes, an aspect that can elucidate further functions of these ubiquitous compounds. In the following study, the expression profiles of two of these genes, spermidine synthase3 (SPDS3) and spermine synthase (SPMS), were analyzed in the model plant, Arabidopsis thaliana. The promoter::GUS fusion technique was used to provide a detailed expression profile of both genes during the entire life cycle of A. thaliana. Three constructs were designed for each gene containing different segments of the putative promoter region, the entire 5'UTR, and in some cases, a portion of the open reading frame. Each construct was individually transformed into A. thaliana and transformed plants were assayed for GUS activity in every organ, during various time points of development. Overall, the expression of SPDS3 was found to be high in young developing tissues with continued, but weaker, expression in the vascular tissue of mature plants. A similar expression profile was observed for SPMS, however, expression was observed in meristematic and elongating regions of tissue. In addition to the developmental profile, the changes in expression were observed during various abiotic stress conditions. Overall, both SPDS3 and SPMS appear to be induced in response to drought and 100 mM salt stress. There appears to be a slight increase in expression during chilling stress, but expression soon decreased over a 24 h period. SPDS3 was also induced during wounding.
机译:多胺是在所有活生物体中发现的低分子量含氮化合物。这些无所不在的分子已在植物系统中进行了广泛研究,并与许多生理反应有关,包括生长,发育和胁迫反应。提议的多胺在重要过程(如细胞分裂和分化)中的作用激发了人们对这种相对小的生物合成途径进行进一步研究的热情。关于多胺生物合成基因的调控知之甚少,这一方面可以阐明这些普遍存在的化合物的进一步功能。在以下研究中,在模型植物拟南芥中分析了其中两个基因亚精胺合酶3(SPDS3)和亚精胺合酶(SPMS)的表达谱。使用启动子:: GUS融合技术在拟南芥的整个生命周期中提供了这两个基因的详细表达情况。为每个基因设计了三个构建体,每个基因包含推定的启动子区域的不同片段,整个5'UTR,在某些情况下还包含一部分开放阅读框。将每种构建体分别转化到拟南芥中,并在发育的各个时间点分析转化的植物在每个器官中的GUS活性。总体而言,发现SPDS3在年轻的发育组织中表达高,而在成熟植物的维管组织中表达持续但弱。对于SPMS,观察到相似的表达谱,但是,在组织的分生和伸长区域中观察到表达。除了发育概况,在各种非生物胁迫条件下观察到表达的变化。总体而言,SPDS3和SPMS似乎都响应干旱和100 mM盐胁迫而被诱导。在低温胁迫下表达似乎略有增加,但在24小时内表达很快下降。在受伤期间也诱导了SPDS3。

著录项

  • 作者

    Rice, Charles F.;

  • 作者单位

    University of New Hampshire.;

  • 授予单位 University of New Hampshire.;
  • 学科 Biology Botany.;Biology Plant Physiology.;Biology Genetics.
  • 学位 M.S.
  • 年度 2006
  • 页码 185 p.
  • 总页数 185
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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