Rose Alan B, Baer Aaron, Shaker Isaac, Monroe J Grey, Korf Ian, Rose Lesilee S
Department of Molecular and Cellular Biology, University of California, Davis, 95616, USA.
Department of Plant Sciences, University of California, Davis, 95616, USA.
Sci Rep. 2025 May 7;15(1):15862. doi: 10.1038/s41598-025-99739-6.
The wide diversity of organisms in which introns stimulate gene expression suggests that this is an ancient phenomenon. However, the mechanisms through which introns boost expression remain poorly understood, and the degree the which the action of introns is evolutionarily conserved is unknown. Here we compared the effect on expression of introns at different positions and tested ten different introns at the same location in a reporter gene in single-copy transgenic nematodes. The introns boosted expression most when near the start of the gene, as previously observed in several organisms. All ten introns tested at the same position increased mRNA accumulation 10- to 17-fold, in contrast to plants where introns vary widely in their effect on expression and relatively few increase mRNA levels 10-fold or more. These results suggest that some aspects of the mechanisms through which introns boost expression are fundamentally different in nematodes and plants.
内含子能刺激基因表达,这一现象存在于多种多样的生物体中,表明这是一种古老的现象。然而,内含子促进基因表达的机制仍知之甚少,而且内含子的作用在进化上的保守程度也不清楚。在这里,我们比较了不同位置的内含子对基因表达的影响,并在单拷贝转基因线虫的报告基因中的同一位置测试了十个不同的内含子。正如之前在几种生物体中观察到的那样,内含子在基因起始位置附近时对基因表达的促进作用最为明显。在同一位置测试的所有十个内含子都使mRNA积累增加了10至17倍,相比之下,植物中的内含子对基因表达的影响差异很大,只有相对较少的内含子能使mRNA水平增加10倍或更多。这些结果表明,内含子促进基因表达的机制在某些方面在线虫和植物中存在根本差异。