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Microbial and microfaunal community structure in cropping systems with genetically modified plants

机译:转基因植物在耕作系统中的微生物和微真菌群落结构

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Soils from field sites at Foulum (DK), Narbons (FR) and Varois (FR) planted with genetically modified maize expressing either the insecticidal Bacillus thuringiensis protein (Bt) or herbicide tolerance (HT), as described elsewhere in this volume, were analysed for nematodes, protozoa and microbial community structure. These analyses were mirrored in single-species testing and in mesocosm experiments, and were coordinated with field samples taken for microarthropods, enchytraeids and earthworms so allowing for cross-comparison and a better understanding of the results observed in the field. Over the first 2 years of the field experiments (in 2002 and 2003), the effect of Bt-maize was within the normal variation expected in these agricultural systems. Sampling in 2004 and 2005 was expanded to include the effects of tillage (i.e. reduced tillage versus conventional tillage) and also the use of HT-maize. Tillage had major effects regardless of soil type (Varois or Foulum), with reduced-tillage plots having a greater abundance of microfauna and a different microbial community structure (measured both by phospholipid fatty-acid analysis (PLFA) and by community-level physiological profiling (CLPP)) from conventionally titled plots. Grass, as a contrasting cropping system to maize, also had an effect regardless of soil type and resulted in greater microfaunal abundance and an altered microbial community structure. Differences in crop management, which for the Bt-maize was removal of the insecticide used to control European corn borer and for HT-maize was a change in herbicide formulation, were only tested at single sites. There were differences in microbial community structure (CLPP but not PLFA) and sporadic increases in protozoan abundance under the Bt-crop management. The HT-maize cropping system, which covered a shorter period and only one site, showed little change from the conventional system other than an altered microbial community structure (as measured by PLFA only) at the final harvest. The Bt-trait had a minimal impact, with fewer amoebae at Foulum in May 2003, fewer nematodes at Foulum in May 2004 but more protozoa at Varois in October 2002 and an altered microbial community structure (PLFA) at Foulum in August 2005. These were not persistent effects and could not be distinguished from varietal effects. Based on the field evaluations of microfauna and microorganisms, we conclude that there were no soil ecological consequences for these communities associated with the use of Bt- or HT-maize in place of conventional varieties. Other land management options, such as tillage, crop type and pest management regime, had significantly larger effects on the biology of the soil than the type of maize grown. (C) 2007 Elsevier GmbH. All rights reserved.
机译:分析了富勒姆(DK),纳本斯(FR)和瓦鲁瓦斯(FR)的田间土壤,种植了转基因玉米,它们表达了杀虫性苏云金芽孢杆菌蛋白(Bt)或除草剂耐受性(HT),如本卷其他地方所述,用于线虫,原生动物和微生物群落结构。这些分析在单一物种测试和中观实验中得到了反映,并与针对节肢动物,for类和and的田间采样相协调,因此可以进行交叉比较并更好地了解在现场观察到的结果。在田间试验的前两年(2002年和2003年)中,Bt玉米的影响在这些农业系统预期的正常变异范围内。 2004年和2005年的采样范围扩大到包括耕作的影响(即减少耕作与常规耕作相比)以及使用HT-玉米。不论土壤类型如何(Varois或Foulum),耕作均会产生重大影响,减少耕作的地块具有更大的微动物区系和不同的微生物群落结构(通过磷脂脂肪酸分析(PLFA)和通过社区水平的生理学分析来测量) (CLPP))。禾本科植物作为玉米的对比种植系统,无论土壤类型如何,其效果也都不同,并导致更大的微生物群落丰富度和微生物群落结构的改变。仅在单个地点测试了作物管理方面的差异,对于Bt玉米而言,这种差异是用于控制欧洲玉米bore的杀虫剂的去除,而对于HT玉米而言,是除草剂配方的一种差异。在Bt作物管理下,微生物群落结构(CLPP而非PLFA)存在差异,原生动物的丰度也有零星的增加。 HT-玉米种植系统涵盖了一个较短的时期,只有一个地点,除了在最终收获时改变了微生物群落结构(仅通过PLFA进行了测量)外,与常规系统相比几乎没有变化。 Bt性状的影响最小,2003年5月在Foulum发生的变形虫较少,2004年5月在Foulum发生的线虫较少,但2002年10月在Varois发生的原生动物较多,2005年8月在Foulum发生了微生物群落结构(PLFA)改变。不是持久的影响,也无法与品种的影响区分开。根据对微型动物和微生物的现场评估,我们得出结论,与使用Bt或HT玉米代替常规品种相关的这些群落没有土壤生态后果。其他土地管理选择,例如耕种,作物类型和病虫害管理制度,对土壤生物学的影响远大于种植的玉米类型。 (C)2007 Elsevier GmbH。版权所有。

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