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抗性转基因和常规水稻之间的转录组差异只有一半与转基因有关。

Only half the transcriptomic differences between resistant genetically modified and conventional rice are associated with the transgene.

机构信息

Institut de Tecnologia Agroalimentària (INTEA), Universitat de Girona, Campus Montilivi, Girona, Spain.

出版信息

Plant Biotechnol J. 2011 Aug;9(6):693-702. doi: 10.1111/j.1467-7652.2010.00572.x. Epub 2010 Oct 29.

Abstract

Besides the intended effects that give a genetically modified (GM) plant the desired trait, unintended differences between GM and non-GM comparable plants may also occur. Profiling technologies allow their identification, and a number of examples demonstrating that unintended effects are limited and diverse have recently been reported. Both from the food safety aspect and for research purposes, it is important to discern unintended changes produced by the transgene and its expression from those that may be attributed to other factors. Here, we show differential expression of around 0.40% transcriptome between conventional rice var. Senia and Senia-afp constitutively expressing the AFP antifungal protein. Analysis of one-fifth of the regulated sequences showed that around 35% of the unintended effects could be attributed to the process used to produce GM plants, based on in vitro tissue culture techniques. A further ∼15% were event specific, and their regulation was attributed to host gene disruption and genome rearrangements at the insertion site, and effects on proximal sequences. Thus, only around half the transcriptional unintended effects could be associated to the transgene itself. A significant number of changes in Senia-afp and Senia are part of the plant response to stress conditions, and around half the sequences for which up-regulation was attributed to the transgene were induced in conventional (but not transgenic) plants after wounding. Unintended effects might, as such, putatively result in widening the self-resistance characteristics because of the transgene in GM plants.

摘要

除了赋予转基因(GM)植物所需特性的预期效果外,GM 和非 GM 可比植物之间也可能发生意外的差异。分析技术可以识别这些差异,最近有许多例子表明,意外效应是有限的,而且多种多样。从食品安全的角度和研究的目的来看,重要的是要区分转基因及其表达所产生的非预期变化与可能归因于其他因素的变化。在这里,我们显示了常规水稻品种 Senia 和持续表达 AFP 抗真菌蛋白的 Senia-afp 之间约 0.40%转录组的差异表达。对受调控序列的五分之一进行分析表明,约 35%的非预期效应可归因于用于生产 GM 植物的过程,该过程基于体外组织培养技术。另有约 15%是事件特异性的,其调控归因于宿主基因中断和插入位点的基因组重排,以及对近端序列的影响。因此,只有大约一半的转录非预期效应可以与转基因本身相关联。在 Senia-afp 和 Senia 中,大量的变化是植物对胁迫条件的反应的一部分,大约一半被归因于转基因的上调序列在受伤后被传统(但非转基因)植物诱导。因此,非预期效应可能会因为 GM 植物中的转基因而潜在地扩大其自身抗性特征。

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