Organization and Evolution of Plant Genomes (OEPG), Unité de Recherche en Génomique Végétale (URGV), UMR INRA 1165 - CNRS 8114 - UEVE, F-91057 Evry Cedex, France.
Unité Mixte de Recherches INRA - Agrocampus Rennes, Amélioration des Plantes & Biotechnologies Végétales, F-35653 Le Rheu, France.
New Phytol. 2010 Sep;187(4):1181-1194. doi: 10.1111/j.1469-8137.2010.03339.x. Epub 2010 Jun 25.
*The present study aims to understand regulation of gene expression in synthetic and natural wheat (Triticum aestivum) allohexaploids, that combines the AB genome of Triticum turgidum and the D genome of Aegilops tauschii; and which we have recently characterized as genetically stable. *We conducted a comprehensive genome-wide analysis of gene expression that allowed characterization of the effect of variability of the D genome progenitor, the intergenerational stability as well as the comparison with natural wheat allohexaploid. We used the Affymetrix GeneChip Wheat Genome Array, on which 55 049 transcripts are represented. *Additive expression was shown to represent the majority of expression regulation in the synthetic allohexaploids, where expression for more than c. 93% of transcripts was equal to the mid-parent value measured from a mixture of parental RNA. This leaves c. 2000 (c. 7%) transcripts, in which expression was nonadditive. No global gene expression bias or dominance towards any of the progenitor genomes was observed whereas high intergenerational stability and low effect of the D genome progenitor variability were revealed. *Our study suggests that gene expression regulation in wheat allohexaploids is established early upon allohexaploidization and highly conserved over generations, as demonstrated by the high similarity of expression with natural wheat allohexaploids.
本研究旨在了解合成和天然小麦(Triticum aestivum)异源六倍体中基因表达的调控,该异源六倍体结合了 Triticum turgidum 的 AB 基因组和 Aegilops tauschii 的 D 基因组;我们最近将其鉴定为遗传稳定。我们进行了全面的全基因组基因表达分析,以表征 D 基因组供体的变异性、代际稳定性以及与天然小麦异源六倍体的比较。我们使用了 Affymetrix GeneChip Wheat Genome Array,其中包含 55049 个转录本。研究表明,在合成异源六倍体中,加性表达代表了大多数基因表达调控,其中超过 93%的转录本的表达等于从亲本 RNA 混合物中测量到的中亲值。这留下了约 2000 个(约 7%)转录本,其表达是非加性的。没有观察到对任何一个祖先基因组的全局基因表达偏向或优势,而揭示了高度的代际稳定性和 D 基因组供体变异性的低影响。我们的研究表明,小麦异源六倍体中的基因表达调控是在异源六倍体化早期建立的,并且在几代之间高度保守,这与天然小麦异源六倍体的表达高度相似。