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拟南芥PRMT5缓冲前体mRNA剪接和发育,以应对供体剪接位点的遗传变异。

Arabidopsis PRMT5 buffers pre-mRNA splicing and development against genetic variation in donor splice sites.

作者信息

Beckel Maximiliano S, San Martín Abril, Sánchez Sabrina E, Seymour Danelle K, de Leone María José, Careno Daniel A, Mora-García Santiago, Weigel Detlef, Yanovsky Marcelo J, Chernomoretz Ariel

机构信息

Instituto de Investigaciones Bioquímicas de Buenos Aires, Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires, C1425FQB, Argentina.

Fundación Instituto Leloir, Buenos Aires, C1405BWE, Argentina.

出版信息

New Phytol. 2025 Aug;247(4):1727-1741. doi: 10.1111/nph.70293. Epub 2025 Jun 13.

DOI:10.1111/nph.70293
PMID:40515451
Abstract

Genetic variation at splice site signals significantly influences alternative splicing, leading to transcriptomic and proteomic diversity that enhances phenotypic plasticity and adaptation. However, novel splice variants can negatively impact gene expression and developmental stability. Canalization-the ability of an organism to maintain a consistent phenotype despite genetic or environmental variations-helps balance the effects of genetic variation on development and evolution. Protein arginine methyltransferase 5 (PRMT5) is a key splicing regulator in plants and animals. Most splicing changes in prmt5 mutants are linked to weak donor splice sites, suggesting that PRMT5 may buffer splicing against genetic variation. We examined PRMT5's effects on splicing and development in two genetically divergent Arabidopsis thaliana accessions with different single nucleotide polymorphisms affecting donor splice sites. We found that PRMT5 inactivation significantly increased splicing and phenotypic differences between the accessions. Our findings suggest that PRMT5 contributes to canalization, mitigating the impact of splice site polymorphisms and facilitating the evolution of adaptive splicing patterns.

摘要

剪接位点信号的遗传变异显著影响可变剪接,导致转录组和蛋白质组的多样性,增强了表型可塑性和适应性。然而,新的剪接变体可能对基因表达和发育稳定性产生负面影响。稳态化——生物体在遗传或环境变异的情况下保持一致表型的能力——有助于平衡遗传变异对发育和进化的影响。蛋白质精氨酸甲基转移酶5(PRMT5)是植物和动物中的关键剪接调节因子。prmt5突变体中的大多数剪接变化与弱供体剪接位点有关,这表明PRMT5可能缓冲剪接以应对遗传变异。我们研究了PRMT5对两种遗传差异较大的拟南芥生态型剪接和发育的影响,这两种生态型具有影响供体剪接位点的不同单核苷酸多态性。我们发现,PRMT5失活显著增加了生态型之间的剪接和表型差异。我们的研究结果表明,PRMT5有助于稳态化,减轻剪接位点多态性的影响,并促进适应性剪接模式的进化。

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Arabidopsis PRMT5 buffers pre-mRNA splicing and development against genetic variation in donor splice sites.拟南芥PRMT5缓冲前体mRNA剪接和发育,以应对供体剪接位点的遗传变异。
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