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Impact of field -grown genetically modified canola on the diversity of rhizosphere and root -interior microbial communities.

机译:田间种植的转基因油菜对根际和根系内部微生物群落多样性的影响。

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摘要

Transgenic or genetically modified plants possess novel genes that impart beneficial characteristics such as herbicide resistance. Unfortunately there is a paucity of information on the interaction and impact of transgenic plants on the soil microbial community. A 3-year field study was conducted to assess the effects of herbicide-tolerant genetically modified canola on microbial communities. Four genetically modified and four non-genetically modified canola varieties were grown at six locations across Saskatchewan, Canada. The rhizosphere and root-interior microbial communities were characterized using community level physiological profiles (CLPP), fatty acid methyl ester analysis (FAME) and terminal amplified ribosomal DNA restriction analysis (T-ARDRA). The microbial communities associated with genetically modified canola varieties were significantly different than the microbial communities associated with conventional canola varieties. However, this effect was dependent on the transgene. In particular, the glyphosate-tolerant variety Quest supported a unique microbial community compared to the communities supported by the four conventional varieties and three glufosinate ammonium-tolerant varieties tested.;Analysis of rhizosphere microbial communities associated with canola throughout the field season demonstrated that these communities are subject to seasonal variation. Importantly, in April (after plants were harvested in the preceding September) no differences were observed between microbial communities from field plots that contained harvested transgenic canola stubble and field plots that contained no plants during the field season, demonstrating that the effect of transgenic plants on the microbial community was temporary.;The composition and functional diversity of microbial communities from fallow soil and rhizosphere and root-interior microbial communities associated with canola plants were significantly influenced by field site. Furthermore, field site interacted with plant variety in its influence on the microbial community. The effect of plant variety on the microbial community at one field site was sometimes entirely different in another field site. Therefore, generalizations about the effect of genetically modified plants on all soil microbial communities are not possible.;The interaction between microbial communities, transgenic plants and field site, along with the season variability in microbial communities documented in this study emphasizes the complexity and need for a multifaceted approach to study the risks of transgenic plants to the diversity of the microbial community.
机译:转基因或转基因植物具有赋予有益特性(例如除草剂抗性)的新基因。不幸的是,关于转基因植物对土壤微生物群落的相互作用和影响的信息很少。进行了为期3年的田间研究,以评估耐除草剂的转基因油菜对微生物群落的影响。在加拿大萨斯喀彻温省的六个地点种植了四个转基因和非转基因的双低油菜籽品种。根际和根部内部微生物群落的特征是通过群落水平的生理特征(CLPP),脂肪酸甲酯分析(FAME)和末端扩增的核糖体DNA限制性酶切分析(T-ARDRA)。转基因油菜品种的微生物群落与常规油菜品种的微生物群落显着不同。但是,这种作用取决于转基因。尤其是,耐草甘膦品种Quest与测试的四个常规品种和三个耐草铵膦铵盐品种支持的社区相比,具有独特的微生物群落。受季节变化的影响。重要的是,在4月(在去年9月收获植物之后),在包含收获的转基因低芥酸菜籽残茬的田间地块和田间季节不包含任何植物的田间地块之间,没有观察到微生物群落之间的差异,这表明转基因植物对休耕地显着影响休耕土壤和根际微生物群落的组成和功能多样性,以及油菜植物与根部内在微生物群落的关系。此外,田间地点与植物品种相互作用对微生物群落的影响。在一个田地中,植物品种对微生物群落的影响有时在另一个田地中完全不同。因此,不可能对转基因植物对所有土壤微生物群落的影响进行归纳总结。这项研究中记载的微生物群落,转基因植物和田地之间的相互作用以及微生物群落的季节变异性强调了其复杂性和需要。研究转基因植物对微生物群落多样性的风险的多方面方法。

著录项

  • 作者

    Dunfield, Kari Edith.;

  • 作者单位

    The University of Saskatchewan (Canada).;

  • 授予单位 The University of Saskatchewan (Canada).;
  • 学科 Agriculture Soil Science.;Biology Microbiology.;Agriculture Plant Culture.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 162 p.
  • 总页数 162
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:46:34

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