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E2Fb和E2Fa转录因子在拟南芥中紫外线B照射后独立调节DNA损伤反应。

E2Fb and E2Fa transcription factors independently regulate the DNA damage response after ultraviolet B exposure in Arabidopsis.

作者信息

Gómez María Sol, Sheridan María Luján, Casati Paula

机构信息

Centro de Estudios Fotosintéticos y Bioquímicos (CEFOBI), Universidad Nacional de Rosario, Suipacha 531, Rosario, 2000, Argentina.

出版信息

Plant J. 2022 Mar;109(5):1098-1115. doi: 10.1111/tpj.15616. Epub 2021 Dec 14.

Abstract

Ultraviolet (UV)B radiation affects plant growth inhibiting cell proliferation. This inhibition is in part controlled by the activity of transcription factors from the E2F family. In particular, the participation of E2Fc and E2Fe in UV-B responses in Arabidopsis plants was previously reported. However, the E2Fa and E2Fb contribution to these processes has still not been investigated. Thus, in this work, we provide evidence that, in Arabidopsis, both E2Fa and E2Fb control leaf size under UV-B conditions without participating in the repair of cyclobutane pyrimidine dimers in the DNA. Nevertheless, in UV-B-exposed seedlings, E2Fa, but not E2Fb, regulates primary root elongation, cell proliferation, and programmed cell death in the meristematic zone. Using e2fa mutants that overexpress E2Fb, we showed that the role of E2Fa in the roots could not be replaced by E2Fb. Finally, our results show that E2Fa and E2Fb differentially regulate the expression of genes that activate the DNA damage response and cell cycle progression, both under conditions without UV-B and after exposure. Overall, we showed that both E2Fa and E2Fb have different and non-redundant roles in developmental and DNA damage responses in Arabidopsis plants exposed to UV-B.

摘要

紫外线(UV)B辐射通过抑制细胞增殖来影响植物生长。这种抑制作用部分受E2F家族转录因子活性的控制。特别地,先前已有报道E2Fc和E2Fe参与拟南芥植物对UV-B的反应。然而,E2Fa和E2Fb对这些过程的贡献仍未得到研究。因此,在这项研究中,我们提供了证据表明,在拟南芥中,E2Fa和E2Fb在UV-B条件下控制叶片大小,而不参与DNA中环丁烷嘧啶二聚体的修复。然而,在暴露于UV-B的幼苗中,E2Fa而非E2Fb调节分生区的主根伸长、细胞增殖和程序性细胞死亡。利用过表达E2Fb的e2fa突变体,我们表明E2Fb无法取代E2Fa在根中的作用。最后,我们的结果表明,在没有UV-B的条件下以及暴露后,E2Fa和E2Fb对激活DNA损伤反应和细胞周期进程的基因表达有不同的调节作用。总体而言,我们表明E2Fa和E2Fb在暴露于UV-B的拟南芥植物的发育和DNA损伤反应中具有不同且非冗余的作用。

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