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A new insight into root responses to external cues: Paradigm shift in nutrient sensing

机译:对根对外部线索的反应的新见解:营养感测中的范式转变

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摘要

Higher plants are sessile and their growth relies on nutrients present in the soil. The acquisition of nutrients is challenging for plants. Phosphate and nitrate sensing and signaling cascades play significant role during adverse conditions of nutrient unavailability. Therefore, it is important to dissect the mechanism by which plant roots acquire nutrients from the soil. Root system architecture (RSA) exhibits extensive developmental flexibility and changes during nutrient stress conditions. Growth of root system in response to external concentration of nutrients is a joint operation of sensor or receptor proteins along with several other cytoplasmic accessory proteins. After nutrient sensing, sensor proteins start the cellular relay involving transcription factors, kinases, ubiquitin ligases and miRNA. The complexity of nutrient sensing is still nebulous and many new players need to be better studied. This review presents a survey of recent paradigm shift in the advancements in nutrient sensing in relation to plant roots.
机译:高等植物是无柄的,其生长依赖于土壤中存在的养分。营养的获取对植物具有挑战性。磷酸盐和硝酸盐的感应和信号级联在营养物缺乏的不利条件下起着重要作用。因此,重要的是剖析植物根系从土壤中获取养分的机制。根系体系结构(RSA)在营养胁迫条件下表现出广泛的开发灵活性和变化。根系系统对营养物外部浓度的响应是传感器或受体蛋白与其他几种胞质辅助蛋白的共同作用。营养素感测后,传感器蛋白启动涉及转录因子,激酶,泛素连接酶和miRNA的细胞中继。营养物感测的复杂性仍不明确,许多新的参与者需要更好地研究。这篇综述提出了对与植物根系相关的养分传感研究的最新范式转变的调查。

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