OsWHY1 Interacts with OsTRX z and is Essential for Early Chloroplast Development in Rice

被引:0
作者
Zhennan Qiu
Dongdong Chen
Linhong Teng
Peiyan Guan
Guoping Yu
Peiliang Zhang
Jian Song
Qiangcheng Zeng
Li Zhu
机构
[1] Dezhou University,Shandong Key Laboratory of Functional Biological Resources Development and Utilization in Universities, College of Life Science
[2] China National Rice Research Institute,State Key Laboratory of Rice Biology
[3] National Nanfan Research Institute,undefined
[4] Chinese Academy of Agricultural Sciences,undefined
来源
Rice | 2022年 / 15卷
关键词
OsWHY1; OsTRX z; Chloroplast development; Rice;
D O I
暂无
中图分类号
学科分类号
摘要
WHIRLY (WHY) family proteins, a small family of single-stranded DNA (ssDNA) binding proteins, are widely found in plants and have multiple functions to regulate plant growth and development. However, WHY in rice has received less attention. In this study, we continued our previous study on OsTRX z that is important for chloroplast development. OsTRX z was discovered to interact with OsWHY1, which was confirmed using yeast two-hybrid, pull-down, and BiFC assays. Subsequently, the oswhy1 mutants were obtained by CRISPR/Cas9, which exhibited an albino phenotype and died after the three-leaf stage. Consistent with this albino phenotype, low amounts of Chl a, Chl b, and Car were detected in the oswhy1-1 mutant. Moreover, the oswhy1-1 mutant had chloroplasts with disrupted architecture and no stacked grana and thylakoid membranes. Subcellular localization showed that the OsWHY1-GFP fusion protein was targeted to the chloroplast. What’s more, OsWHY1 was found to be preferentially expressed in young leaves and was involved in chloroplast RNA editing and splicing. Mutation of OsWHY1 significantly affected the expression of chloroplast and ribosome development-related and chlorophyll synthesis-related genes. In conclusion, OsWHY1 contributes to early chloroplast development and normal seedling survival in rice. These results will further elucidate the molecular mechanism of chloroplast development and expand our understanding of WHY1 functions.
引用
收藏
相关论文
共 355 条
[1]  
Arnon DI(1949)Copper enzymes in isolated chloroplasts. Polyphenoloxidase in Beta Vulgaris Plant Physiol 24 1-15
[2]  
Arsova B(2010)Plastidial thioredoxin z interacts with two fructokinase-like proteins in a thiol-dependent manner: evidence for an essential role in chloroplast development in Plant Cell 22 1498-1515
[3]  
Hoja U(1998) and EMBO J 17 868-876
[4]  
Wimmelbacher M(2010)Identification of a functional respiratory complex in chloroplasts through analysis of tobacco mutants containing disrupted plastid ndh genes Plant Cell 22 1849-1867
[5]  
Greiner E(2019)Crystal structures of DNA-Whirly complexes and their role in Plant Cell Physiol 60 587-598
[6]  
Ustün S(2015) organelle genome repair Plant Physiol 168 1140-1151
[7]  
Melzer M(1995) encodes a novel pentatricopeptide repeat protein required for chloroplast development and 16S rRNA processing in rice Plant Cell 7 589-598
[8]  
Petersen K(2005)WHIRLY1 functions in the control of responses to nitrogen deficiency but not aphid infestation in barley Trends Plant Sci 10 95-102
[9]  
Lein W(2018)The activation of the potato Nat Commun 9 50-410
[10]  
Börnke F(2014)- Philos Trans R Soc Lond B Biol Sci 369 20130226-1804