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Woody plants and the application of molecular tools.

机译:木本植物和分子工具的应用。

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摘要

Using various molecular biology tools three woody plant genera, Populus, Quercus, and Montanoa were chosen as experimental systems to elucidate heretofor unanswered questions.; To elucidate genetic mechanisms of control of vascular cambial differentiation, hybrid poplar clone 47-174 (Populus deltoides × trichocarpa) was used as a model to examine gene expression in wood forming tissue and as a result of wind stress or mechanical perturbation (MP). RNA isolated from stressed and non-stressed poplar stems was examined using differential display of PCR products. One hundred thirty differential display gel bands from stem tissue were cloned and sequenced. Northern analysis and BLAST searches confirmed that more than seventy of these clones represent expressed sequence tags (ESTs) for poplar genes expressed in wood forming tissue. An abundance of representation of stress related genes indicate the ESTs are from abiotic induced mechanical perturbation.; In the second study, DNA fingerprinting techniques were used for the identification of cultivars of Quercus × hispanica , the Lucombe oak. Using inter-simple sequence repeat (ISSRs) primers, 66 Q. × hispanica (and related) samples were analyzed and compared for band pattern differences to establish identities. DNA evidence revealed that some named cultivars had identical banding patterns, which then aided in identification of other named or unnamed cultivars with the same DNA banding patterns.; A phylogeny of the genus Montanoa based on the Internal Transcribed Spacer (ITS) and the External Transcribed Spacer (ETS) was created. The combined dataset supports the monophyly of the genus and an early evolutionary split that coincides with geographic distribution. One lineage is composed mostly of central and southern Mexican species whereas the other lineage contains those species endemic to Mesoamerica and South America. The relationships of Montanoa to other genera in the Heliantheae are briefly discussed.
机译:利用各种分子生物学工具,选择了三个木本植物属,杨,Quercus Montanoa 作为实验系统,以阐明尚未解决的问题。为了阐明控制血管形成层分化的遗传机制,使用杂交杨树克隆47-174( Populus deltoides × trichocarpa )作为模型来检测木材形成组织中的基因表达。以及由于风压或机械扰动(MP)的结果。使用PCR产物的差异展示检查了从受胁迫和未受胁迫的杨树茎中分离的RNA。克隆了来自干组织的一百三十条差异显示凝胶带并进行了测序。 Northern分析和BLAST搜索证实,这些克隆中有70多个代表了在木材形成组织中表达的杨树基因的表达序列标签(EST)。大量与压力相关的基因的表象表明,EST是非生物诱导的机械扰动。在第二项研究中,DNA指纹技术用于鉴定Lucombe橡木 Quercus × hispanica 的品种。使用简单序列重复(ISSR)引物,66个 Q 。分析了×(斜体>西班牙裔(及相关)样本,并比较了谱带差异以建立身份。 DNA证据表明,一些命名品种具有相同的条带模式,然后有助于鉴定具有相同DNA条带模式的其他命名或未命名品种。建立了基于内部转录间隔物(ITS)和外部转录间隔物(ETS)的Montanoa属的系统发育树。合并后的数据集支持属的一字性和与地理分布一致的早期进化分裂。一个谱系主要由墨西哥中部和南部物种组成,而另一个谱系包含中美洲和南美特有的那些物种。简要讨论了 Montanoa 与向日葵科中其他属的关系。

著录项

  • 作者

    Plovanich, Anne Edith.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Biology Botany.; Biology Molecular.; Biology Genetics.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 271 p.
  • 总页数 271
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;分子遗传学;遗传学;
  • 关键词

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