Division of Biological Sciences, University of Missouri, Columbia, Missouri 65211, USA.
Department of Electrical Engineering and Computer Science, University of Missouri, Columbia, Missouri 65211, USA.
Plant Cell. 2021 May 31;33(4):917-939. doi: 10.1093/plcell/koab030.
Genomic imbalance caused by changing the dosage of individual chromosomes (aneuploidy) has a more detrimental effect than varying the dosage of complete sets of chromosomes (ploidy). We examined the impact of both increased and decreased dosage of 15 distal and 1 interstitial chromosomal regions via RNA-seq of maize (Zea mays) mature leaf tissue to reveal new aspects of genomic imbalance. The results indicate that significant changes in gene expression in aneuploids occur both on the varied chromosome (cis) and the remainder of the genome (trans), with a wider spread of modulation compared with the whole-ploidy series of haploid to tetraploid. In general, cis genes in aneuploids range from a gene-dosage effect to dosage compensation, whereas for trans genes the most common effect is an inverse correlation in that expression is modulated toward the opposite direction of the varied chromosomal dosage, although positive modulations also occur. Furthermore, this analysis revealed the existence of increased and decreased effects in which the expression of many genes under genome imbalance are modulated toward the same direction regardless of increased or decreased chromosomal dosage, which is predicted from kinetic considerations of multicomponent molecular interactions. The findings provide novel insights into understanding mechanistic aspects of gene regulation.
由个别染色体剂量变化(非整倍体)引起的基因组失衡比整套染色体剂量变化(整倍体)具有更不利的影响。我们通过玉米(Zea mays)成熟叶片组织的 RNA-seq 研究了 15 个远端和 1 个染色体间区域的剂量增加和减少对基因组失衡的影响,揭示了基因组失衡的新方面。结果表明,非整倍体中基因表达的显著变化既发生在变化的染色体(顺式)上,也发生在基因组的其余部分(反式)上,与从单倍体到四倍体的整个整倍体系列相比,调节范围更广。一般来说,非整倍体中的顺式基因从基因剂量效应到剂量补偿不等,而对于反式基因,最常见的效应是反向相关,即表达朝着变化染色体剂量的相反方向调节,尽管也存在正向调节。此外,这项分析还揭示了存在增加和减少的效应,在基因组失衡下,许多基因的表达都朝着相同的方向调节,而不管染色体剂量是增加还是减少,这是从多组分分子相互作用的动力学考虑预测的。这些发现为理解基因调控的机制方面提供了新的见解。