Laboratory of Molecular Biology of Tomato, Bioengineering College, Chongqing University, Chongqing, People's Republic of China.
Laboratory of Molecular Biology of Tomato, Bioengineering College, Chongqing University, Chongqing, People's Republic of China.
Plant Sci. 2022 Jun;319:111266. doi: 10.1016/j.plantsci.2022.111266. Epub 2022 Mar 25.
During the growth and evolution of plants, genomic DNA is subject to constant assault from endogenous and environmental DNA damage compounds, which will result in mutagenic or genotoxic covalent adducts. Whether for prokaryotes, eukaryotes or even viruses, maintaining genome integrity is critical for the continuation of life. Escherichia coli and mammals have evolved the AlkB family of Fe(II)/alpha-ketoglutarate-dependent dioxygenases that repair DNA alkylation damage. We identified a functional homologue with EsAlkB and HsALKBH2 in tomatoes, and named it SlALKBH2. In our study, the SlALKBH2 knockout mutant showed hypersensitivity to the DNA mutagen MMS and displayed more severe growth abnormalities than wild-type plants under mutagen treatment, such as slow growth, leaf deformation and early senescence. Additionally, genes with high transcriptional activity, such as rDNA, have increased methylation under MMS treatment. In conclusion, this study shows that the tomato SlALKBH2 gene may play an important role in ensuring the integrity of the genome.
在植物的生长和进化过程中,基因组 DNA 会不断受到内源性和环境 DNA 损伤化合物的攻击,从而导致诱变或遗传毒性的共价加合物。无论是原核生物、真核生物还是病毒,维持基因组完整性对于生命的延续都至关重要。大肠杆菌和哺乳动物已经进化出依赖 Fe(II)/α-酮戊二酸的 AlkB 家族双加氧酶,用于修复 DNA 烷基化损伤。我们在番茄中鉴定到一个具有功能同源物的 EsAlkB 和 HsALKBH2,并将其命名为 SlALKBH2。在我们的研究中,SlALKBH2 敲除突变体对 DNA 诱变剂 MMS 表现出超敏性,并且在诱变处理下比野生型植物表现出更严重的生长异常,如生长缓慢、叶片变形和早期衰老。此外,在 MMS 处理下,转录活性较高的基因,如 rDNA,其甲基化水平增加。综上所述,本研究表明番茄 SlALKBH2 基因可能在确保基因组完整性方面发挥重要作用。