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Nematode 18S rRNA gene is a reliable tool for environmental biosafety assessment of transgenic banana in confined field trials

机译:线虫18S rRNA基因是在密闭田间试验中用于转基因香蕉的环境生物安全性评估的可靠工具

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摘要

Information on relatedness in nematodes is commonly obtained by DNA sequencing of the ribosomal internal transcribed spacer region. However, the level of diversity at this locus is often insufficient for reliable species differentiation. Recent findings suggest that the sequences of a fragment of the small subunit nuclear ribosomal DNA (18S rRNA or SSU), identify genera of soil nematodes and can also distinguish between species in some cases. A database of soil nematode genera in a Ugandan soil was developed using 18S rRNA sequences of individual nematodes from a GM banana confined field trial site at the National Agricultural Research Laboratories, Kawanda in Uganda. The trial was planted to evaluate transgenic bananas for resistance to black Sigatoka disease. Search for relatedness of the sequences gained with entries in a public genomic database identified a range of 20 different genera and sometimes distinguished species. Molecular markers were designed from the sequence information to underpin nematode faunal analysis. This approach provides bio-indicators for disturbance of the soil environment and the condition of the soil food web. It is being developed to support environmental biosafety analysis by detecting any perturbance by transgenic banana or other GM crops on the soil environment.
机译:通常通过核糖体内部转录间隔区的DNA测序获得有关线虫相关性的信息。但是,此基因座的多样性水平通常不足以实现可靠的物种分化。最近的发现表明,小亚基核糖体DNA片段(18S rRNA或SSU)的序列可以识别土壤线虫的属,在某些情况下还可以区分物种。乌干达土壤中的线虫属数据库是使用来自乌干达国家农业研究实验室的转基因香蕉密闭田间试验场的单个线虫的18S rRNA序列开发的。种植该试验来评估转基因香蕉对黑色Sigatoka病的抗性。搜索在公共基因组数据库中输入的序列的相关性,从而确定了20种不同属的物种,有时还包括一些杰出的物种。根据序列信息设计分子标记,以支持线虫动物区系分析。这种方法为扰动土壤环境和土壤食物网状况提供了生物指标。通过检测转基因香蕉或其他转基因作物对土壤环境的任何干扰,正在开发它来支持环境生物安全分析。

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