首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Simplifying the root dynamics: from complex hormone-environment interactions to specific root architectural modulation
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Simplifying the root dynamics: from complex hormone-environment interactions to specific root architectural modulation

机译:简化根动态:从复杂的激素环境相互作用到特定的根架构调制

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The recent unveiling of the intriguing interactions among phytohormones and environmental cues in regulating root architecture for optimum plant acclimation has opened new avenues for research. Additional functions of transcriptional as well as protein-level regulators are being identified, uncovering novel interactions between hormonal and environmental signaling pathways, for shaping the root system architecture (RSA). Owing to the importance of root architectural dynamics under constantly encountered external factors, it is crucial to have a regular and comprehensive update of these interactions, affecting RSA, in order to improve crop performance. Moreover, it is equally important to identify and highlight, in crop species, the crucial regulators, which actively mediate hormonal as well as hormone-environment interactions, but have so far been characterized only in model plants such as Arabidopsis. Such updates will open up new research possibilities for plant biologists in extending the present knowledge on root system plasticity from Arabidopsis to economically important crop plants. Here, we provide a consolidated review of the recent findings on novel inter-hormonal and hormone-environment interactions with special emphasis on key downstream regulators and signaling pathways. We conclude by dissecting the gaps and challenges encountered at present, with an outline for future perspectives to channel the enormous information on hormone-environment regulation of RSA, towards a common output in the form of specific modulation of RSA components.
机译:最近揭示了植物激素和环境提示之间的兴趣相互作用,用于调节最佳植物适应的根系结构,为研究开辟了新的途径。正在识别转录和蛋白质级调节器的额外功能,揭示了荷尔蒙和环境信令途径之间的新型相互作用,用于塑造根系结构(RSA)。由于在不断遇到的外部因素下根系架构动态的重要性,对这些互动的定期和全面更新,影响RSA是至关重要的,以改善作物表现。此外,在作物物种中识别和突出显示关键调节剂同样重要的是,积极介导荷尔蒙和激素环境相互作用,但到目前为止仅在拟南芥等模型植物中表征。这些更新将开辟植物生物学家的新研究可能性,在将目前从拟南芥从拟南芥延伸到经济上重要的作物植物。在这里,我们对新型激素和激素环境相互作用的最新发现的综合审查与关键下游调节因子和信号通路的特殊重点进行了综合。我们通过解剖目前遇到的差距和挑战来结束,其中概述未来的观点,以引导关于RSA的激素环境调节的巨大信息,朝着RSA组分的特异性调制形式的共同产出。

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