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Seasonal Changes in the Rhizosphere Microbial Communities Associated with Field-Grown Genetically Modified Canola (Brassica napus)

机译:田间种植的转基因油菜(甘蓝型油菜)与根际微生物群落的季节性变化

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摘要

The introduction of transgenic plants into agricultural ecosystems has raised the question of the ecological impact of these plants on nontarget organisms, such as soil bacteria. Although differences in both the genetic structure and the metabolic function of the microbial communities associated with some transgenic plant lines have been established, it remains to be seen whether these differences have an ecological impact on the soil microbial communities. We conducted a 2-year, multiple-site field study in which rhizosphere samples associated with a transgenic canola variety and a conventional canola variety were sampled at six times throughout the growing season. The objectives of this study were to identify differences between the rhizosphere microbial community associated with the transgenic plants and the rhizosphere microbial community associated with the conventional canola plants and to determine whether the differences were permanent or depended on the presence of the plant. Community-level physiological profiles, fatty acid methyl ester profiles, and terminal amplified ribosomal DNA restriction analysis profiles of rhizosphere microbial communities were compared to the profiles of the microbial community associated with an unplanted, fallow field plot. Principal-component analysis showed that there was variation in the microbial community associated with both canola variety and growth season. Importantly, while differences between the microbial communities associated with the transgenic plant variety were observed at several times throughout the growing season, all analyses indicated that when the microbial communities were assessed after winter, there were no differences between microbial communities from field plots that contained harvested transgenic canola plants and microbial communities from field plots that did not contain plants during the field season. Hence, the changes in the microbial community structure associated with genetically modified plants were temporary and did not persist into the next field season.
机译:将转基因植物引入农业生态系统提出了这些植物对非目标生物(例如土壤细菌)的生态影响的问题。尽管已经建立了与某些转基因植物系相关的微生物群落的遗传结构和代谢功能的差异,但这些差异是否对土壤微生物群落产生生态影响尚待观察。我们进行了为期2年的多站点野外研究,在整个生长季节中,与转基因油菜品种和常规油菜品种相关的根际样品被采样了六次。这项研究的目的是确定与转基因植物相关的根际微生物群落与与常规油菜植物相关的根际微生物群落之间的差异,并确定差异是永久的还是取决于植物的存在。将根际微生物群落的群落水平生理概况,脂肪酸甲酯概况和末端扩增的核糖体DNA限制性分析概况与未种植的休耕田地相关的微生物群落概况进行了比较。主成分分析表明,油菜品种和生长季节均与微生物群落有关。重要的是,尽管在整个生长季节中几次都观察到了与转基因植物品种相关的微生物群落之间的差异,但所有分析均表明,当冬季过后对微生物群落进行评估时,包含收获的田间微生物群落之间没有差异转基因油菜植物和田间季中不含植物的微生物群落。因此,与转基因植物有关的微生物群落结构的变化是暂时的,不会持续到下一个田间季节。

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