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转座元件有助于玉米基因在非生物胁迫下的激活。

Transposable elements contribute to activation of maize genes in response to abiotic stress.

作者信息

Makarevitch Irina, Waters Amanda J, West Patrick T, Stitzer Michelle, Hirsch Candice N, Ross-Ibarra Jeffrey, Springer Nathan M

机构信息

Department of Biology, Hamline University, Saint Paul, Minnesota, United States of America; Department of Plant Biology, University of Minnesota, Saint Paul, Minnesota, United States of America.

Department of Plant Biology, University of Minnesota, Saint Paul, Minnesota, United States of America.

出版信息

PLoS Genet. 2015 Jan 8;11(1):e1004915. doi: 10.1371/journal.pgen.1004915. eCollection 2015 Jan.

Abstract

Transposable elements (TEs) account for a large portion of the genome in many eukaryotic species. Despite their reputation as "junk" DNA or genomic parasites deleterious for the host, TEs have complex interactions with host genes and the potential to contribute to regulatory variation in gene expression. It has been hypothesized that TEs and genes they insert near may be transcriptionally activated in response to stress conditions. The maize genome, with many different types of TEs interspersed with genes, provides an ideal system to study the genome-wide influence of TEs on gene regulation. To analyze the magnitude of the TE effect on gene expression response to environmental changes, we profiled gene and TE transcript levels in maize seedlings exposed to a number of abiotic stresses. Many genes exhibit up- or down-regulation in response to these stress conditions. The analysis of TE families inserted within upstream regions of up-regulated genes revealed that between four and nine different TE families are associated with up-regulated gene expression in each of these stress conditions, affecting up to 20% of the genes up-regulated in response to abiotic stress, and as many as 33% of genes that are only expressed in response to stress. Expression of many of these same TE families also responds to the same stress conditions. The analysis of the stress-induced transcripts and proximity of the transposon to the gene suggests that these TEs may provide local enhancer activities that stimulate stress-responsive gene expression. Our data on allelic variation for insertions of several of these TEs show strong correlation between the presence of TE insertions and stress-responsive up-regulation of gene expression. Our findings suggest that TEs provide an important source of allelic regulatory variation in gene response to abiotic stress in maize.

摘要

转座元件(TEs)在许多真核生物物种的基因组中占很大比例。尽管它们素有“垃圾”DNA或对宿主有害的基因组寄生虫之名,但TEs与宿主基因有着复杂的相互作用,并且有可能导致基因表达的调控变异。据推测,TEs及其附近插入的基因可能会在应激条件下被转录激活。玉米基因组中有许多不同类型的TEs与基因交错分布,为研究TEs对基因调控的全基因组影响提供了一个理想的系统。为了分析TEs对基因表达响应环境变化的影响程度,我们分析了暴露于多种非生物胁迫下的玉米幼苗中基因和TEs转录本水平。许多基因在这些胁迫条件下表现出上调或下调。对插入上调基因上游区域的TE家族进行分析发现,在每种胁迫条件下,有4到9个不同的TE家族与上调的基因表达相关,影响了高达20%的对非生物胁迫上调的基因,以及多达33%的仅在胁迫响应时表达的基因。许多相同的TE家族的表达也对相同的胁迫条件做出反应。对胁迫诱导转录本以及转座子与基因的接近程度的分析表明,这些TEs可能提供局部增强子活性,刺激胁迫响应基因的表达。我们关于其中几个TEs插入的等位基因变异的数据表明,TEs插入的存在与基因表达的胁迫响应上调之间存在很强的相关性。我们的研究结果表明,TEs为玉米中基因对非生物胁迫响应的等位基因调控变异提供了一个重要来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d027/4287451/833275f88c75/pgen.1004915.g001.jpg

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