文献类型: 外文期刊
作者: Sun, Xueping 1 ; Singla-Rastogi, Meenu 4 ; Wang, Jingwen 1 ; Zhao, Chuanzhi 1 ; Wang, Xingjun 1 ; Li, Pengcheng 1 ;
作者机构: 1.Shandong Acad Agr Sci, Inst Crop Germplasm Resources, Biotechnol Res Ctr, Jinan 250100, Shandong, Peoples R China
2.Shandong Prov Key Lab Crop Genet Improvement, Ecol & Physiol, Jinan 250100, Shandong, Peoples R China
3.Shandong Normal Univ, Coll Life Sci, Jinan 250014, Shandong, Peoples R China
4.Indiana Univ, Dept Biol, Bloomington, IN 47405 USA
期刊名称:NUCLEIC ACIDS RESEARCH ( 影响因子:14.9; 五年影响因子:16.4 )
ISSN: 0305-1048
年卷期: 2024 年
页码:
收录情况: SCI
摘要: In plant chloroplasts, certain ribosomal proteins (RPs) and ribosome biogenesis factors (RBFs) are present in nucleoids, implying an association between nucleoids and ribosome biogenesis. In Arabidopsis, the YqeH-type GTPase Brassinazole-Insensitive Pale Green2 (BPG2) is a chloroplast nucleoid-associated RBF. Here, we investigated the relationship between nucleoids and BPG2-involved ribosome biogenesis steps by exploring how BPG2 targets ribosomes. Our findings demonstrate that BPG2 interacts with an essential plastid RP, uS10c, in chloroplast nucleoids in a ribosomal RNA (rRNA)-independent manner. We also discovered that uS10c is a haploinsufficient gene, as the heterozygous deletion of this gene leads to variegated shoots and chlorophyll aggregation. uS10c is integrated into 30S ribosomal particles when rRNA is relatively exposed and also exists in polysome fractions. In contrast, BPG2 exclusively associates with 30S ribosomal particles. Notably, the interaction between BPG2 and 30S particles is influenced by the absence of uS10c, resulting in BPG2 diffusing in chloroplasts instead of targeting nucleoids. Further, our results reveal that the loss of BPG2 function and the heterozygous deletion of uS10c impair the processing of 16S and 23S-4.5S rRNAs, reduce plastid protein accumulation, and trigger the plastid signaling response. Together, these findings indicate that the uS10c-BPG2 module mediates ribosome biogenesis in chloroplast nucleoids. Graphical Abstract
- 相关文献
作者其他论文 更多>>
-
Nitrogen application in pod zone improves yield and quality of two peanut cultivars by modulating nitrogen accumulation and metabolism
作者:Li, Guanghui;Guo, Xin;Hou, Lei;Wang, Guanghao;Tian, Ruizheng;Wang, Xingjun;Zhao, Chuanzhi;Sun, Wei;Qu, Chunjuan
关键词:Peanut; Pod zone nitrogen application; Yield; Enzymatic activity; Gene expression
-
Transcriptome profiling of MYB-overexpressed transgenic lines provides crucial molecular insights into anthocyanin and remodel the biosynthesis regulatory network in Nicotiana tabacum
作者:Raziq, Abdul;Zhang, Kun;Ahmad, Naveed;Zhao, Huiling;Zhao, Shuzhen;Pan, Jiaowen;Li, Aiqin;Wang, Xingjun;Zhao, Chuanzhi;Raziq, Abdul;Ahmed, Shabeer;Raziq, Abdul;Ahmed, Shabeer;Sun, Wei;Ahmad, Naveed;Raza, Muhammad Ali;Din, Atta Mohi Ud;Wang, Xingjun;Zhao, Chuanzhi
关键词:Transcriptome; Differentially expressed genes; Anthocyanin biosynthesis; MYB genes; Abiotic stress; Nicotiana tabacum
-
High-density bin-based genetic map reveals a 530-kb chromosome segment derived from wild peanut contributing to late leaf spot resistance
作者:Pan, Jiaowen;Li, Xiaojie;Yu, Conghui;Wang, Guanghao;Tian, Ruizheng;Li, Changsheng;Xia, Han;Zhao, Shuzhen;Hou, Lei;Zi, Hailing;Wang, Xingjun;Zhao, Chuanzhi;Pan, Jiaowen;Li, Xiaojie;Yu, Conghui;Tian, Ruizheng;Xia, Han;Zhao, Shuzhen;Hou, Lei;Wang, Xingjun;Zhao, Chuanzhi;Fu, Chun;Song, Xiaofeng;Wang, Zhenyu;Gao, Meng;Bian, Jianxin;Liu, Xiaoqin;Bertioli, David;Leal-Bertioli, Soraya;Pandey, Manish K.
关键词:
-
Phylogenomic Analysis of Cytochrome P450 Gene Superfamily and Their Association with Flavonoids Biosynthesis in Peanut (Arachis hypogaea L.)
作者:Zhang, Kun;Qin, Yongmei;Zhao, Jin;Yang, Xiangli;Zhang, Kun;Zhao, Shuzhen;Li, Changsheng;Pan, Jiaowen;Wang, Guanghao;Zhao, Chuanzhi;Sun, Wei;Shi, Hourui;He, Liangqiong;Han, Zhuqiang
关键词:A. hypogaea; cytochrome P450; expression pattern; flavonoid biosynthesis pathway
-
Genome-wide identification and expression analysis of GA20ox and GA3ox genes during pod development in peanut
作者:Sun, Jie;Zhang, Xiaoqian;Zhao, Chuanzhi;Hou, Lei;Pan, Jiaowen;Wang, Xingjun;Zhao, Shuzhen;Sun, Jie;Hou, Lei;Pan, Jiaowen;Wang, Xingjun;Zhao, Shuzhen;Sun, Jie;Zhang, Xiaoqian;Wang, Xingjun;Zhao, Shuzhen;Fu, Chun;Ahmad, Naveed;Naeem, Muhammad
关键词:Arachis hypogaea; Gibberellin biosynthesis; Gene expression analysis; Pod development
-
Transcriptional networks orchestrating red and pink testa color in peanut
作者:Ahmad, Naveed;Zhang, Kun;Ma, Jing;Zhao, Shuzhen;Pan, Jiaowen;Li, Changsheng;Wang, Xingjun;Li, Aiqin;Zhao, Chuanzhi;Ahmad, Naveed;Zhang, Kun;Ma, Jing;Zhao, Shuzhen;Pan, Jiaowen;Li, Changsheng;Wang, Xingjun;Li, Aiqin;Zhao, Chuanzhi;Ahmad, Naveed;Zhang, Kun;Ma, Jing;Ma, Changle;Wang, Xingjun;Zhao, Chuanzhi;Yuan, Mei;Wang, Mingqing;Deng, Li;Ren, Li;Gangurde, Sunil S.;Guo, Baozhu;Gangurde, Sunil S.;Guo, Baozhu
关键词:Peanut; Testa color; Anthocyanin biosynthesis; flavonoids; Bulk RNA-seq (BR-seq); Transcription factors
-
Bulk RNA-Seq Analysis Reveals Differentially Expressed Genes Associated with Lateral Branch Angle in Peanut
作者:Ahmad, Naveed;Hou, Lei;Ma, Junjie;Xia, Han;Zhao, Shuzhen;Tian, Ruizheng;Pan, Jiaowen;Li, Changsheng;Li, Aiqin;Wang, Xingjun;Zhao, Chuanzhi;Hou, Lei;Zhou, Ximeng;Wang, Mingxiao;Wang, Xingjun;Zhao, Chuanzhi;Leal-Bertioli, Soraya;Bertioli, David;Leal-Bertioli, Soraya;Bertioli, David
关键词:bulk RNA-sequencing (BR-seq); branch angle; gravitropism; plant hormones; alternative splicing; peanut



