Transposable elements and xenobiotic resistance

R. ffrench-Constant
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Abstract

Transposable elements or TEs are well known drivers of adaptive change in plants and animals but their role in insecticide resistance remains poorly documented. This review examines the potential role of transposons in resistance and identifies key areas where our understanding remains unclear. Despite well-known model systems such as upregulation of Drosophila Cyp6g1, many putative examples lack functional validation. The potential types of transposon-associated changes that could lead to resistance are reviewed, including changes in up-regulation, message stability, loss of function and alternative splicing. Where potential mechanisms appear absent from the resistance literature examples are drawn from other areas of biology. Finally, ways are suggested in which transgenic expression could be used to validate the biological significance of TE insertion. In the absence of such functional expression studies many examples of the association of TEs and resistance genes therefore remain as correlations.
转座因子与外源性耐药性
转座因子(te)是众所周知的植物和动物适应性变化的驱动因素,但它们在杀虫剂抗性中的作用仍然缺乏文献记载。这篇综述探讨了转座子在耐药性中的潜在作用,并确定了我们尚不清楚的关键领域。尽管众所周知的模型系统,如果蝇Cyp6g1的上调,许多假定的例子缺乏功能验证。本文综述了可能导致抗性的转座子相关变化的潜在类型,包括上调、信息稳定性、功能丧失和选择性剪接的变化。在抗药性文献中没有出现潜在机制的地方,例子来自生物学的其他领域。最后,提出了利用转基因表达验证TE插入生物学意义的方法。在缺乏这种功能表达研究的情况下,许多TEs与抗性基因相关的例子因此仍然是相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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