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Rapid transporter regulation prevents substrate flow traffic jams in boron transport

机译:快速的运输机调节可防止硼运输中的基材流交通拥堵

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摘要

Nutrient uptake by roots often involves substrate-dependent regulated nutrient transporters. For robust uptake, the system requires a regulatory circuit within cells and a collective, coordinated behaviour across the tissue. A paradigm for such systems is boron uptake, known for its directional transport and homeostasis, as boron is essential for plant growth but toxic at high concentrations. In Arabidopsis thaliana, boron uptake occurs via diffusion facilitators (NIPs) and exporters (BORs), each presenting distinct polarity. Intriguingly, although boron soil concentrations are homogenous and stable, both transporters manifest strikingly swift boron-dependent regulation. Through mathematical modelling, we demonstrate that slower regulation of these transporters leads to physiologically detrimental oscillatory behaviour. Cells become periodically exposed to potentially cytotoxic boron levels, and nutrient throughput to the xylem becomes hampered. We conclude that, while maintaining homeostasis, swift transporter regulation within a polarised tissue context is critical to prevent intrinsic traffic-jam like behaviour of nutrient flow.
机译:根部对养分的吸收通常涉及依赖底物的调节型营养转运蛋白。为了稳定吸收,该系统需要细胞内的调节电路和整个组织的集体协调行为。这种系统的一个范例是硼的吸收,以其定向运输和体内稳态而著称,因为硼对于植物生长至关重要,但在高浓度下有毒。在拟南芥中,硼的吸收通过扩散促进剂(NIP)和出口者(BORs)发生,它们各自呈现出不同的极性。有趣的是,尽管硼的土壤浓度是均匀且稳定的,但两种转运蛋白都表现出了迅速的硼依赖性调节作用。通过数学建模,我们证明了这些转运蛋白的较慢调节导致生理有害的振荡行为。细胞会定期暴露于潜在的细胞毒性硼水平,并且阻碍木质部的养分通过。我们得出的结论是,在维持体内平衡的同时,在极化的组织环境中快速调节转运蛋白对于预防内在的交通堵塞样营养流非常关键。

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