A putative plastidial adenine nucleotide transporter, BRITTLE1-3, plays an essential role in regulating chloroplast development in rice (Oryza sativa L.)

被引:0
作者
Jia Lyu
Yihua Wang
Linglong Liu
Chunming Wang
Yulong Ren
Cheng Peng
Feng Liu
Yunlong Wang
Mei Niu
Di Wang
Ming Zheng
Kunneng Zhou
Shaolu Zhao
Fuqing Wu
Haiyang Wang
Jianmin Wan
机构
[1] Nanjing Agricultural University,State Key Laboratory for Crop Genetics and Germplasm Enhancement, Jiangsu Plant Gene Engineering Research Center
[2] Chinese Academy of Agricultural Sciences,National Key Facility for Crop Resources and Genetic Improvement, Institute of Crop Science
[3] Chinese Academy of Agricultural Sciences,Biotechnology Research Institute
来源
Journal of Plant Biology | 2017年 / 60卷
关键词
Chloroplast biogenesis; OsBT1-3; Reactive oxygen species (ROS); Rice (; );
D O I
暂无
中图分类号
学科分类号
摘要
Differentiation from proplastids into chloroplasts is a light- and energy-dependent process. How this process is regulated is still poorly understood at the molecular level. We herein report a new putative plastidial adenine nucleotide transporter, BRITTLE1-3 (referred to as OsBT1-3), encoded by the rice (Oryza sativa) White Stripe Leaf 2 (WSL2) gene. Loss of OsBT1-3 function results in defective chloroplast biogenesis, severely reduced photosynthetic efficiency, and finally a white stripe leaf phenotype in the first four leaves. The expression levels of genes related to chlorophyll biosynthesis and photosynthesis are drastically reduced, accompanied with over accumulation of reactive oxygen species (ROS) in the wsl2 mutant. OsBT1-3 is targeted to the chloroplasts and it expresses in almost all tissues in plants, especially in young leaves. OsBT1-3 consists of 419 amino acids and exhibits features of all mitochondrial carrier proteins, including a typical transmembrane-spanning domain and a highly conserved sequence motif designated as the ‘mitochondrial energy transfer signatures’. Phylogenetic analysis shows that OsBT1-3 is a putative plastidial adenine nucleotide transporter and is most closely related to ZmBT1-2. Together, these observations suggest that the new putative adenine nucleotide transporter, OsBT1-3, plays an essential role in regulating chloroplast biogenesis and maintenance of ROS homeostasis during rice seedling de-etiolation.
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页码:493 / 505
页数:12
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