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光热感应的光色素介导的物理化学建模。

Physicochemical modeling of the phytochrome-mediated photothermal sensing.

机构信息

Department of Chemistry, Seoul National University, Seoul, 08826, Korea.

Plant Genomics and Breeding Institute, Seoul National University, Seoul, 08826, Korea.

出版信息

Sci Rep. 2019 Jul 19;9(1):10485. doi: 10.1038/s41598-019-47019-5.

Abstract

Light and temperature cues share many common signaling events towards plant photothermal morphogenesis. Particularly, the red (R)/far-red (FR)-absorbing phytochrome photoreceptors also function as temperature sensors, suggesting that light and temperature responses are intimately associated with each other. Here, we present data from physicochemical modeling of temperature sensing and thermomorphogenic patterning of hypocotyl growth, which illustrate that the two seemingly distinct stimulating cues are tightly coupled through physicochemical principles and temperature effects can be described as a function of infra-red (IR) thermal radiation. It is possible that the dark reversion from the FR-absorbing Pfr to the R-absorbing Pr phytochromes is essentially an IR-mediated thermal conversion. We propose that the phytochromes modulate photothermal responses by monitoring R:IR ratios, as they sense R:FR ratios during photomorphogenesis.

摘要

光和温度线索在植物光热形态发生中共享许多共同的信号事件。特别是,红光 (R)/远红光 (FR) 吸收的光敏色素光受体也作为温度传感器发挥作用,这表明光和温度反应密切相关。在这里,我们展示了对温度感应的物理化学建模和下胚轴生长的热形态发生模式的数据,这些数据表明,这两个看似不同的刺激线索通过物理化学原理紧密耦合,并且温度效应可以描述为红外 (IR) 热辐射的函数。可能的情况是,从吸收 FR 的 Pfr 到吸收 R 的 Pr 光敏色素的黑暗反转本质上是一种 IR 介导的热转换。我们提出,光敏色素通过监测 R:IR 比值来调节光热反应,因为它们在光形态发生过程中感知 R:FR 比值。

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