OsNRAMP2 facilitates Cd efflux from vacuoles and contributes to the difference in grain Cd accumulation between japonica and indica rice

生物 液泡 粳稻 去壳 单倍型 粳稻 水稻 基因 染色体易位 植物 遗传学 基因型 细胞质 冶金 材料科学
作者
Yang Wu,Luo Chen,Yamei Ma,Rui Hu,Jian Wang,Wenhui Li,Jingfang Dong,Ting Yang,Lian Zhou,Jiansong Chen,Dilin Liu,Na Yu,Zhixia Liu,Lingyan Zhou,Shaohong Zhang,Junliang Zhao,Bin Liu
出处
期刊:Crop Journal [Elsevier]
卷期号:11 (2): 417-426 被引量:5
标识
DOI:10.1016/j.cj.2022.09.013
摘要

Cadmium (Cd) accumulation in rice grain is of health concern. Identifying genes involved in grain Cd accumulation and performing molecular breeding may reduce it. In this study, knockout of OsNRAMP2, a member of the NRAMP family, reduced grain Cd concentrations by more than 38%, and overexpressing OsNRAMP2 increased grain Cd concentrations by more than 50%. Physiological experiments showed that OsNRAMP2 facilitated Cd translocation from root to shoot by positively regulating Cd efflux from the vacuoles. At filling stage, OsNRAMP2 was highly expressed in all tissues except for husk, suggesting its role in Cd remobilization. Changes in OsNRAMP2 expression affected the concentrations of Fe, Mn, Zn, and Cu in grain and also affected rice growth. Phylogenetic analysis showed that the distribution of OsNRAMP2 haplotypes between japonica and indica was different. Among the four haplotypes of OsNRAMP2, Hap 1, with a 6-bp nucleotide insertion in exon 1, had grain Cd concentration at least 45.3% lower than any of the other three haplotypes. Almost all (99.3%) japonica accessions but rare indica accessions (4.44%) from the 3K sequenced rice genomes carry Hap 1 of OsNRAMP2. Our study sheds light on the molecular mechanism of grain Cd accumulation and provides a promising target for low-Cd rice breeding.
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