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植物 DNA 聚合酶 theta 对于修复复制相关的 DNA 损伤至关重要。

The plant DNA polymerase theta is essential for the repair of replication-associated DNA damage.

机构信息

Institute of Plant Sciences Paris-Saclay (IPS2), Université Paris-Saclay, CNRS, INRAE, Univ Evry, Orsay, 91405, France.

Institute of Plant Sciences Paris Saclay, Université de Paris, CNRS, INRAE, Orsay, (IPS2) 91405, France.

出版信息

Plant J. 2021 Jun;106(5):1197-1207. doi: 10.1111/tpj.15295. Epub 2021 May 14.

Abstract

Safeguarding of genome integrity is a key process in all living organisms. Due to their sessile lifestyle, plants are particularly exposed to all kinds of stress conditions that could induce DNA damage. However, very few genes involved in the maintenance of genome integrity are indispensable to plants' viability. One remarkable exception is the POLQ gene, which encodes DNA polymerase theta (Pol θ), a non-replicative polymerase involved in trans-lesion synthesis during DNA replication and double-strand break (DSB) repair. The Arabidopsis tebichi (teb) mutants, deficient in Pol θ, have been reported to display severe developmental defects, leading to the conclusion that Pol θ is required for normal plant development. However, this essential role of Pol θ in plants is challenged by contradictory reports regarding the phenotypic defects of teb mutants and the recent finding that rice (Oryza sativa) null mutants develop normally. Here we show that the phenotype of teb mutants is highly variable. Taking advantage of hypomorphic mutants for the replicative DNA polymerase epsilon, which display constitutive replicative stress, we show that Pol θ allows maintenance of meristem activity when DNA replication is partially compromised. Furthermore, we found that the phenotype of Pol θ mutants can be aggravated by modifying their growth conditions, suggesting that environmental conditions impact the basal level of replicative stress and providing evidence for a link between plants' responses to adverse conditions and mechanisms involved in the maintenance of genome integrity.

摘要

基因组完整性的保护是所有生物体内的关键过程。由于植物的固着生活方式,它们特别容易受到各种可能导致 DNA 损伤的胁迫条件的影响。然而,对于植物的生存力来说,参与维持基因组完整性的基因非常少。一个显著的例外是 POLQ 基因,它编码 DNA 聚合酶θ(Pol θ),一种参与 DNA 复制过程中跨损伤合成以及双链断裂(DSB)修复的非复制性聚合酶。已经报道过,拟南芥 tebichi(teb)突变体缺乏 Pol θ,表现出严重的发育缺陷,这导致了 Pol θ对于正常植物发育是必需的这一结论。然而,Pol θ在植物中的这种必需作用受到了 teb 突变体表型缺陷的矛盾报道以及最近发现的水稻(Oryza sativa)null 突变体正常发育的研究结果的挑战。在这里,我们展示了 teb 突变体的表型具有高度的可变性。利用复制 DNA 聚合酶 epsilon 的弱突变体,该突变体显示出持续的复制应激,我们表明 Pol θ 允许在 DNA 复制部分受损时维持分生组织的活性。此外,我们发现 Pol θ 突变体的表型可以通过改变其生长条件来加重,这表明环境条件会影响复制应激的基础水平,并为植物对不利条件的反应与参与维持基因组完整性的机制之间的联系提供了证据。

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