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Natural variation explains most transcriptomic changes among maize plants of MON810 and comparable non-GM varieties subjected to two N-fertilization farming practices

机译:自然变异解释了MON810玉米植物和相当的非转基因品种在两次氮肥耕作中的大多数转录组变化

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The introduction of genetically modified organisms (GMO) in many countries follows strict regulations to ensure that only safety-tested products are marketed. Over the last few years, targeted approaches have been complemented by profiling methods to assess possible unintended effects of transformation. Here we used a commercial (Affymertix) microarray platform (i.e. allowing assessing the expression of ~1/3 of the genes of maize) to evaluate transcriptional differences between commercial MON810 GM maize and non-transgenic crops in real agricultural conditions, in a region where about 70% of the maize grown was MON810. To consider natural variation in gene expression in relation to biotech plants we took two common MON810on-GM variety pairs as examples, and two farming practices (conventional and low-nitrogen fertilization). MON810 and comparable non-GM varieties grown in the field have very low numbers of sequences with differential expression, and their identity differs among varieties. Furthermore, we show that the differences between a given MON810 variety and the non-GM counterpart do not appear to depend to any major extent on the assayed cultural conditions, even though these differences may slightly vary between the conditions. In our study, natural variation explained most of the variability in gene expression among the samples. Up to 37.4% was dependent upon the variety (obtained by conventional breeding) and 31.9% a result of the fertilization treatment. In contrast, the MON810 GM character had a very minor effect (9.7%) on gene expression in the analyzed varieties and conditions, even though similar cryIA(b) expression levels were detected in the two MON810 varieties and nitrogen treatments. This indicates that transcriptional differences of conventionally-bred varieties and under different environmental conditions should be taken into account in safety assessment studies of GM plants.
机译:在许多国家/地区引入转基因生物(GMO)均遵循严格的规定,以确保仅销售经过安全测试的产品。在过去的几年中,有针对性的方法得到了概要分析方法的补充,以评估可能的转化意外影响。在这里,我们使用了商业(Affymertix)微阵列平台(即允许评估玉米基因的约1/3的表达)来评估商业MON810 GM玉米和非转基因作物在真实农业条件下(在该区域内)的转录差异种植的玉米中约有70%是MON810。为了考虑与生物技术植物有关的基因表达的自然变化,我们以两个常见的MON810 /非转基因品种对为例,并以两种耕作方式(常规和低氮施肥)为例。在田间生长的MON810和类似的非转基因品种具有极少的具有差异表达的序列,并且它们之间的同一性也有所不同。此外,我们表明,给定的MON810变种与非转基因对应物之间的差异似乎在很大程度上不取决于测定的培养条件,即使这些条件之间的差异可能略有不同。在我们的研究中,自然变异解释了样本之间基因表达的大部分变异。高达37.4%取决于品种(通过常规育种获得),而31.9%取决于施肥处理。相反,即使在两个MON810品种和氮处理中检测到相似的cryIA(b)表达水平,MON810 GM特性对所分析的品种和条件中的基因表达影响也很小(9.7%)。这表明在转基因植物的安全性评估研究中应考虑到传统育种品种和在不同环境条件下的转录差异。

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