A Single Amino Acid Substitution in RFC4 Leads to Endoduplication and Compromised Resistance to DNA Damage in Arabidopsis thaliana
文献类型: 外文期刊
作者: Cui, Kan 1 ; Qin, Lei 1 ; Tang, Xianyu 1 ; Nong, Jieying 1 ; Chen, Jin 2 ; Wu, Nan 1 ; Gong, Xin 1 ; Yi, Lixiong 2 ; Yang, Chenghuizi 1 ; Xia, Shitou 1 ;
作者机构: 1.Hunan Agr Univ, Hunan Prov Key Lab Phytohormones & Growth Dev, Coll Biosci & Biotechnol, Changsha 410128, Peoples R China
2.Hunan Acad Agr Sci, Changsha 410125, Peoples R China
3.Hunan Acad Agr Sci, Changsha Technol Innovat Ctr Phytoremediat Heavy, Changsha 410125, Peoples R China
关键词: Arabidopsis thaliana; replication factor C; resistance; endoduplication; DNA damage repair
期刊名称:GENES ( 影响因子:4.141; 五年影响因子:4.474 )
ISSN:
年卷期: 2022 年 13 卷 6 期
页码:
收录情况: SCI
摘要: Replication factor C (RFC) is a heteropentameric ATPase associated with the diverse cellular activities (AAA+ATPase) protein complex, which is composed of one large subunit, known as RFC1, and four small subunits, RFC2/3/4/5. Among them, RFC1 and RFC3 were previously reported to mediate genomic stability and resistance to pathogens in Arabidopsis. Here, we generated a viable rfc4e (rfc4-1/RFC4(G54E)) mutant with a single amino acid substitution by site-directed mutagenesis. Three of six positive T2 mutants with the same amino acid substitution, but different insertion loci, were sequenced to identify homozygotes, and the three homozygote mutants showed dwarfism, early flowering, and a partially sterile phenotype. RNA sequencing revealed that genes related to DNA repair and replication were highly upregulated. Moreover, the frequency of DNA lesions was found to be increased in rfc4e mutants. Consistent with this, the rfc4e mutants were very sensitive to DSB-inducing genotoxic agents. In addition, the G54E amino acid substitution in AtRFC4 delayed cell cycle progression and led to endoduplication. Overall, our study provides evidence supporting the notion that RFC4 plays an important role in resistance to genotoxicity and cell proliferation by regulating DNA damage repair in Arabidopsis thaliana.
- 相关文献
作者其他论文 更多>>
-
Trans-Kingdom sRNA Silencing in Sclerotinia sclerotiorum for Crop Fungal Disease Management
作者:Ouyang, Yuqing;Xia, Yunong;Tang, Xianyu;Xia, Shitou;Qin, Lei
关键词:trans-kingdom sRNA;
Sclerotinia sclerotiorum ; HIGS; SIGS; VIGS -
Improvement of Rice Seed Storability by Regulating Lipid Metabolism Using a CRISPR/Cas9 System
作者:Zhou, Tianshun;Wu, Liubing;Li, Xiaoxiu;Sun, Zhizhong;Yuan, Dingyang;Zhou, Tianshun;Yu, Dong;Tan, Yongjun;Sun, Zhizhong;Sun, Xuewu;Chen, Jin;Yuan, Dingyang;Yu, Dong;Tan, Yongjun;Sun, Zhizhong;Sun, Xuewu;Chen, Jin;Duan, Meijuan;Yuan, Dingyang;Yuan, Dingyang;Duan, Meijuan
关键词:rice; seedstorability; CRISPR/Cas9; lipid metabolism
-
Lipid-mediated photoprotection confers strong light resilience in hyperaccumulator Sedum alfredii
作者:Dai, Yanjiao;Chen, Jin;Jiang, Huidan;Dai, Yanjiao;Chen, Jin;Jiang, Huidan;Sheng, Song;Li, Jiaming;Zhao, Wenwen;Peng, Jing;Li, Ruibing;Wang, Ying;Guo, Purui;Zhang, Mengnan;Sheng, Song;Mao, Yang;Zhang, Chao
关键词:Sedum alfredii; Sedum plumbizincicola; Strong light; Lipid metabolic
-
In situ images of Cd2+in rice reveal Cd2+protective mechanism using DNAzyme fluorescent probe
作者:Chen, Jin;Liu, Jianbing;Yu, Dong;Sun, Zhizhong;Sheng, Xiabing;Tan, Yanning;Tan, Yongjun;Sun, Xuewu;Tang, Ning;Wang, Weiping;Tang, Wenbang;Yuan, Dingyang;Duan, Meijuan;Fan, Fan;Hu, Wenjie;Ye, Nenghui;Liu, Zhi;Pan, Jiafeng;Chen, Junhua
关键词:Rice; Cd2+; Cd2+-dependent DNAzyme fluorescence probe; In situ image; Compartmentalized body
-
Histone Methyltransferase SsDim5 Regulates Fungal Virulence through H3K9 Trimethylation in Sclerotinia sclerotiorum
作者:Qin, Lei;Gong, Xin;Nong, Jieying;Tang, Xianyu;Zhao, Yan;Xia, Shitou;Cui, Kan
关键词:S. sclerotiorum; pathogenicity; histone methylation; mycotoxins; stress
-
Novel CRISPR/Cas9 system assisted by fluorescence marker and pollen killer for high-efficiency isolation of transgene-free edited plants in rice
作者:Yu, Dong;Zhou, Tianshun;Xu, Na;Sun, Xuewu;Song, Shufeng;Liu, Hai;Sun, Zhizhong;Lv, Qiming;Chen, Jin;Tan, Yanning;Sheng, Xiabing;Li, Li;Yuan, Dingyang;Zhou, Tianshun;Li, Li;Yuan, Dingyang
关键词:CRISPR/ Cas9; Transgene-free; Fluorescence Marker; Pollen Killer; Rice
-
Novel Salinity-Tolerant Third-Generation Hybrid Rice Developed via CRISPR/Cas9-Mediated Gene Editing
作者:Sheng, Xiabing;Ai, Zhiyong;Tan, Yanning;Hu, Yuanyi;Guo, Xiayu;Liu, Xiaolin;Sun, Zhizhong;Yu, Dong;Chen, Jin;Tang, Ning;Yuan, Dingyang;Sheng, Xiabing;Duan, Meijuan;Sheng, Xiabing;Ai, Zhiyong;Tan, Yanning;Hu, Yuanyi;Guo, Xiayu;Liu, Xiaolin;Sun, Zhizhong;Yu, Dong;Chen, Jin;Tang, Ning;Yuan, Dingyang;Sheng, Xiabing;Ai, Zhiyong;Tan, Yanning;Hu, Yuanyi;Guo, Xiayu;Liu, Xiaolin;Yuan, Dingyang
关键词:CRISPR/Cas9; heterosis utilization; OsRR22; rice; salinity tolerance



