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首页> 外文期刊>Trends in Plant Science >Canalization without flux sensors: a traveling-wave hypothesis
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Canalization without flux sensors: a traveling-wave hypothesis

机译:没有通量传感器的渠化:行波假设

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In 1969, Tsvi Sachs published his seminal hypothesis of vascular development in plants: the canalization hypothesis. A positive feedback loop between the flux of the phytohormone auxin and the cells' auxin transport capacity would canalize auxin progressively into discrete channels, which would then differentiate into vascular tissues. Recent experimental studies confirm the central role of polar auxin flux in plant vasculogenesis, but it is unclear if and by which mechanism plant cells could respond to auxin flux. In this Opinion article, we review auxin perception mechanisms and argue that these respond more likely to auxin concentrations than to auxin flux. We propose an alternative mechanism for polar auxin channeling, which is more consistent with recent molecular observations.
机译:1969年,Tsvi Sachs发表了他关于植物中血管发育的开创性假说:渠化假说。植物激素生长素通量与细胞生长素运输能力之间的正反馈回路将逐渐将生长素引入离散的通道,然后分化为血管组织。最近的实验研究证实了极性植物生长素通量在植物血管生成中的核心作用,但目前尚不清楚植物细胞是否以及通过何种机制对植物生长素通量作出反应。在这篇观点文章中,我们回顾了植物生长素的感知机制,并认为这些机制对植物生长素浓度的反应比对植物生长素通量的反应更可能。我们提出了极性植物生长素通道的另一种机制,这与最近的分子观察更加一致。

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