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转录组分析揭示了过度表达转录因子 ABF3 的耐旱转基因植物中不存在非预期效应。

Transcriptome analysis reveals absence of unintended effects in drought-tolerant transgenic plants overexpressing the transcription factor ABF3.

机构信息

Agriculture and Agri-Food Canada, Ottawa, ON, K1A 0C6 Canada.

出版信息

BMC Genomics. 2010 Jan 28;11:69. doi: 10.1186/1471-2164-11-69.

Abstract

BACKGROUND

Plants engineered for abiotic stress tolerance may soon be commercialized. The engineering of these plants typically involves the manipulation of complex multigene networks and may therefore have a greater potential to introduce pleiotropic effects than the simple monogenic traits that currently dominate the plant biotechnology market. While research on unintended effects in transgenic plant systems has been instrumental in demonstrating the substantial equivalence of many transgenic plant systems, it is essential that such analyses be extended to transgenic plants engineered for stress tolerance. Drought-tolerant Arabidopsis thaliana were engineered through overexpression of the transcription factor ABF3 in order to investigate unintended pleiotropic effects. In order to eliminate position effects, the Cre/lox recombination system was used to create control plant lines that contain identical T-DNA insertion sites but with the ABF3 transgene excised. This additionally allowed us to determine if Cre recombinase can cause unintended effects that impact the transcriptome.

RESULTS

Microarray analysis of control plant lines that underwent Cre-mediated excision of the ABF3 transgene revealed only two genes that were differentially expressed in more than one plant line, suggesting that the impact of Cre recombinase on the transcriptome was minimal. In the absence of drought stress, overexpression of ABF3 had no effect on the transcriptome, but following drought stress, differences were observed in the gene expression patterns of plants overexpressing ABF3 relative to control plants. Examination of the functional distribution of the differentially expressed genes revealed strong similarity indicating that unintended pathways were not activated.

CONCLUSIONS

The action of ABF3 is tightly controlled in Arabidopsis. In the absence of drought stress, ectopic activation of drought response pathways does not occur. In response to drought stress, overexpression of ABF3 results in a reprogramming of the drought response, which is characterized by changes in the timing or strength of expression of some drought response genes, without activating any unexpected gene networks. These results illustrate that important gene networks are highly regulated in Arabidopsis and that engineering stress tolerance may not necessarily cause extensive changes to the transcriptome.

摘要

背景

具有抗非生物胁迫能力的植物工程即将商业化。这些植物的工程通常涉及复杂的多基因网络的操作,因此可能比目前主导植物生物技术市场的简单单基因性状具有更大的引入多效性的潜力。虽然对转基因植物系统的意外影响的研究对于证明许多转基因植物系统的实质性等同性是至关重要的,但重要的是,这种分析必须扩展到为耐受胁迫而工程化的转基因植物。通过过表达转录因子 ABF3 来工程抗旱拟南芥,以研究意外的多效性效应。为了消除位置效应,使用 Cre/lox 重组系统创建了对照植物系,这些对照植物系包含相同的 T-DNA 插入位点,但 ABF3 转基因已被切除。这还使我们能够确定 Cre 重组酶是否可以引起影响转录组的意外影响。

结果

对经历 Cre 介导的 ABF3 转基因切除的对照植物系进行的微阵列分析表明,只有两个基因在一个以上的植物系中差异表达,这表明 Cre 重组酶对转录组的影响最小。在没有干旱胁迫的情况下,过表达 ABF3 对转录组没有影响,但在干旱胁迫后,与对照植物相比,过表达 ABF3 的植物的基因表达模式存在差异。对差异表达基因的功能分布进行检查,发现它们具有很强的相似性,表明未激活意外途径。

结论

ABF3 在拟南芥中的作用受到严格控制。在没有干旱胁迫的情况下,不会发生异位激活干旱反应途径。对干旱胁迫的响应,过表达 ABF3 导致干旱反应的重新编程,其特征在于一些干旱反应基因的表达时间或强度发生变化,而不会激活任何意外的基因网络。这些结果表明,重要的基因网络在拟南芥中受到高度调控,并且耐受胁迫的工程化不一定会导致转录组的广泛变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0acd/2837038/aca7077c3721/1471-2164-11-69-1.jpg

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