泛素连接酶
细胞生物学
亚细胞定位
平衡
DNA连接酶
生物化学
磷酸盐
水稻
拟南芥
磷酸酶
生物
化学
突变体
泛素
酶
基因
细胞质
作者
Jian Li Yang,Meng-Yang Xie,Lan Wang,Zhili Yang,Zhihui Tian,Zhiye Wang,Jiming Xu,Baohui Liu,Liangwei Deng,Chuanzao Mao,Honghui Lin
出处
期刊:Plant and Cell Physiology
[Oxford University Press]
日期:2018-10-16
被引量:22
摘要
Phosphate (Pi), as the main form of phosphorus that can be absorbed by plants, is one of the most limiting macro-nutrients for plants. However, the mechanism for maintaining Pi homeostasis in rice (Oryza sativa) is still not well understood. We identified a Pi-starvation-induced E3 ligase (OsPIE1) in rice. Using an in vitro self-ubiquitination assay, we determined the E3 ligase activities of OsPIE1. Using GUS staining and GFP detection, we analyzed tissue expression patterns of OsPIE1 and the subcellular localization of its encoded protein. The function of OsPIE1 in Pi homeostasis was analyzed using OsPIE1 overexpressors and ospie1 mutants. OsPIE1 was localized to the nucleus, and expressed in epidermis, exodermis and sclerenchyma layers of primary root. Under Pi-sufficient condition, overexpression of OsPIE1 upregulated the expression of OsPT2, OsPT3, OsPT10 and OsPAP21b, resulting in Pi accumulation and acid phosphatases (APases) induction in roots. OsSPX2 was strongly suppressed in OsPIE1 overexpressors. Further comparative transcriptome analysis, tissue expression patterns and genetic interaction analysis indicated that the enhancing of Pi accumulation and APase activities upon overexpression of OsPIE1 was (at least in part) caused by repression of OsSPX2. These results indicate that OsPIE1 plays an important role in maintaining Pi homeostasis in rice.
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