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玉米 ATR 在核发育过程中保护基因组稳定性,以防止早期胚乳内圈起始和细胞死亡。

Maize ATR safeguards genome stability during kernel development to prevent early endosperm endocycle onset and cell death.

机构信息

Department of Plant Biotechnology and Bioinformatics, Ghent University, Ghent B-9052, Belgium.

Center for Plant Systems Biology, VIB, Ghent B-9052, Belgium.

出版信息

Plant Cell. 2021 Aug 31;33(8):2662-2684. doi: 10.1093/plcell/koab158.

Abstract

The ataxia-telangiectasia mutated (ATM) and ATM and Rad3-related (ATR) kinases coordinate the DNA damage response. The roles described for Arabidopsis thaliana ATR and ATM are assumed to be conserved over other plant species, but molecular evidence is scarce. Here, we demonstrate that the functions of ATR and ATM are only partially conserved between Arabidopsis and maize (Zea mays). In both species, ATR and ATM play a key role in DNA repair and cell cycle checkpoint activation, but whereas Arabidopsis plants do not suffer from the absence of ATR under control growth conditions, maize mutant plants accumulate replication defects, likely due to their large genome size. Moreover, contrarily to Arabidopsis, maize ATM deficiency does not trigger meiotic defects, whereas the ATR kinase appears to be crucial for the maternal fertility. Strikingly, ATR is required to repress premature endocycle onset and cell death in the maize endosperm. Its absence results in a reduction of kernel size, protein and starch content, and a stochastic death of kernels, a process being counteracted by ATM. Additionally, while Arabidopsis atr atm double mutants are viable, no such mutants could be obtained for maize. Therefore, our data highlight that the mechanisms maintaining genome integrity may be more important for vegetative and reproductive development than previously anticipated.

摘要

共济失调毛细血管扩张突变(ATM)和 ATM 和 Rad3 相关(ATR)激酶协调 DNA 损伤反应。拟南芥 ATR 和 ATM 的作用被认为在其他植物物种中是保守的,但分子证据很少。在这里,我们证明 ATR 和 ATM 在拟南芥和玉米(Zea mays)之间的功能只有部分保守。在这两个物种中,ATR 和 ATM 在 DNA 修复和细胞周期检查点激活中都起着关键作用,但在对照生长条件下,拟南芥植物不会因缺乏 ATR 而受到影响,而玉米突变体植物则会积累复制缺陷,这可能是由于其基因组较大。此外,与拟南芥相反,玉米 ATM 缺陷不会引发减数分裂缺陷,而 ATR 激酶似乎对母体育性至关重要。引人注目地,ATR 被要求抑制玉米胚乳中过早的内周期起始和细胞死亡。其缺失导致核仁大小、蛋白质和淀粉含量减少,以及核仁的随机死亡,而 ATM 可拮抗这一过程。此外,虽然拟南芥 atr atm 双突变体是可行的,但在玉米中无法获得这种突变体。因此,我们的数据强调,维持基因组完整性的机制可能比以前预期的对营养和生殖发育更为重要。

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