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PHO2 和 GIGANTEA 之间的分子相互作用揭示了水稻中开花时间和磷酸盐稳态之间的新串扰。

Molecular interaction between PHO2 and GIGANTEA reveals a new crosstalk between flowering time and phosphate homeostasis in Oryza sativa.

机构信息

State Key Laboratory of Plant Physiology and Biochemistry, College of Life Sciences, Zhejiang University, Hangzhou, 310058, China.

College of Life Sciences, Qingdao Agricultural University, Qingdao, 266109, China.

出版信息

Plant Cell Environ. 2017 Aug;40(8):1487-1499. doi: 10.1111/pce.12945. Epub 2017 May 19.

Abstract

Plants are often confronted to nutrient limiting conditions, such as inorganic phosphate (Pi) deficiency, resulting in a reduction in growth and yield. PHO2, encoding a ubiquitin-conjugating E2 enzyme, is a central component of the Pi-starvation response signalling pathway. A yeast-two-hybrid screen using Oryza sativa (rice) PHO2 as bait, revealed an interaction between OsPHO2 and OsGIGANTEA, a key regulator of flowering time, which was confirmed using bimolecular fluorescence complementation (BiFC). Characterization of rice Osgi and Ospho2 mutants revealed that they displayed several similar phenotypic features supporting a physiological role for this interaction. Reduced growth, leaf tip necrosis, delayed flowering and over-accumulation of Pi in leaves compared to wild type were shared features of Osgi and Ospho2 plants. Pi analysis of individual leaves demonstrated that Osgi, similar to Ospho2 mutants, were impaired in Pi remobilization from old to young leaves, albeit to a lesser extent. Transcriptome analyses revealed more than 55% of the genes differentially expressed in Osgi plants overlapped with the set of differentially expressed genes in Ospho2 plants. The interaction between OsPHO2 and OsGI links high-level regulators of Pi homeostasis and development in rice.

摘要

植物经常面临养分限制条件,例如无机磷酸盐(Pi)缺乏,导致生长和产量减少。PHO2 编码泛素连接酶 E2 酶,是 Pi 饥饿响应信号通路的核心组成部分。使用拟南芥(水稻)PHO2 作为诱饵的酵母双杂交筛选,揭示了 OsPHO2 与 OsGIGANTEA 之间的相互作用,OsGIGANTEA 是开花时间的关键调节剂,使用双分子荧光互补(BiFC)进行了确认。对水稻 Osgi 和 Ospho2 突变体的特征分析表明,它们表现出几种相似的表型特征,支持这种相互作用的生理作用。与野生型相比,生长缓慢、叶尖坏死、开花延迟和叶片中 Pi 过度积累是 Osgi 和 Ospho2 植物的共同特征。对单个叶片的 Pi 分析表明,Osgi 与 Ospho2 突变体一样,在将 Pi 从老叶向嫩叶再转移过程中受到损伤,尽管程度较轻。转录组分析表明,Osgi 中差异表达的基因中有超过 55%与 Ospho2 植物中差异表达的基因集重叠。OsPHO2 和 OsGI 之间的相互作用将 Pi 稳态和发育的高级调控因子联系起来。

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