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首页> 外文期刊>Current opinion in plant biology >Improvement of phosphorus efficiency in rice on the basis of understanding phosphate signaling and homeostasis. (Special Issue: Genome studies and molecular genetics.)
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Improvement of phosphorus efficiency in rice on the basis of understanding phosphate signaling and homeostasis. (Special Issue: Genome studies and molecular genetics.)

机译:在了解磷信号和动态平衡的基础上提高水稻的磷效率。 (特刊:基因组研究和分子遗传学。)

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摘要

Rice is one of the most important cereal crops feeding a large segment of the world's population. Inefficient utilization of phosphate (Pi) fertilizer by the plant in rice production increases cost and pollution. Developing cultivars with improved Pi use efficiency is essential for the sustainability of agriculture. Pi uptake, translocation and remobilization are regulated by complex molecular mechanisms through the functions of Pi transporters (PTs) and other downstream Pi Starvation Induced (PSI) genes. Expressions of these PSI genes are regulated by the Pi Starvation Response Regulator (OsPHR2)-mediated transcriptional control and/or PHO2-mediated ubiquitination. SPX-domain containing proteins and the type I H+-PPase AVP1 involved in the maintenance and utilization of the internal phosphate. The potential application of posttranscriptional regulation of PT1 through OsPHF1 for Pi efficiency is proposed.
机译:稻米是满足世界大部分人口需求的最重要的谷物作物之一。植物在水稻生产中对磷(Pi)肥料的利用不充分会增加成本和污染。开发具有提高的磷素利用效率的品种对于农业的可持续发展至关重要。通过Pi转运蛋白(PTs)和其他下游Pi饥饿诱导(PSI)基因的功能,通过复杂的分子机制调节Pi的吸收,转运和迁移。这些PSI基因的表达由Pi饥饿反应调节剂(OsPHR2)介导的转录控制和/或PHO2介导的泛素化调节。含有SPX结构域的蛋白质和I H + -PPase AVP1类型参与内部磷酸盐的维持和利用。提出了通过OsPHF1对PT1进行转录后调控对Pi效率的潜在应用。

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