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Regulatory feedback response mechanisms to phosphate starvation in rice

机译:水稻磷饥饿的调控反馈响应机制

摘要

Phosphorus is a growth-limiting nutrient for plants. The growing scarcity of phosphate stocks threatens global food security. Phosphate-uptake regulation is so complex and incompletely known that attempts to improve phosphorus use efficiency have had extremely limited success. This study improves our understanding of the molecular mechanisms underlying phosphate uptake by investigating the transcriptional dynamics of two regulators: the Ubiquitin ligase PHO2 and the long non-coding RNA IPS1. Temporal measurements of RNA levels have been integrated into mechanistic mathematical models using advanced statistical techniques. Models based solely on current knowledge could not adequately explain the temporal expression profiles. Further modelling and bioinformatics analysis have led to the prediction of three regulatory features: the PHO2 protein mediates th 27 e degradation of its own transcriptional activator to maintain constant PHO2 levels; the binding affinity of the transcriptional activator of PHO2 is impaired by a phosphate-sensitive transcriptional repressor/inhibitor; and the extremely high levels of IPS1 and its rapid disappearance upon Pi re-supply are best explained by Pi-sensitive RNA protection. This work offers both new opportunities for plant phosphate research that will be essential for informing the development of phosphate efficient crop varieties, and a foundation for the development of models integrating phosphate with other stress responses.
机译:磷是植物的生长限制营养素。磷酸盐库存的日益稀缺威胁着全球粮食安全。磷酸盐吸收调节是如此复杂且不完全为人所知,以至于试图提高磷的利用效率的成功极为有限。这项研究通过研究两个调节子:泛素连接酶PHO2和长的非编码RNA IPS1的转录动力学,提高了我们对磷酸盐吸收的分子机制的理解。 RNA水平的时间测量已使用先进的统计技术集成到机械数学模型中。仅基于当前知识的模型不能充分解释时间表达特征。进一步的建模和生物信息学分析已导致预测了三个调节特征:PHO2蛋白介导其自身转录激活因子的27e降解,以维持恒定的PHO2水平; PHO2的转录激活因子的结合亲和力被磷酸盐敏感的转录阻遏物/抑制剂削弱。 Pi敏感的RNA保护可以很好地解释IPS1的极高水平及其在Pi重新供应后迅速消失的原因。这项工作既为植物磷酸盐研究提供了新的机会,这对于通知有效利用磷酸盐的农作物品种的发展至关重要,也为开发将磷酸盐与其他胁迫响应相结合的模型奠定了基础。

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