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植物形态学和一种光敏色素B模型表明,远红光对类似避荫反应的影响在高光强度下依然存在。

Plant Morphology and a Phytochrome B Model Reveal That the Effects of Far-Red Light on Shade-Avoidance-Like Responses Persist Under High Light Intensity.

作者信息

Shin Jiyong, Runkle Erik S

机构信息

Department of Horticulture, Michigan State University, East Lansing, Michigan, USA.

出版信息

Plant Cell Environ. 2025 Apr 17. doi: 10.1111/pce.15562.

Abstract

Several studies have concluded that high photon flux density (PFD) attenuates the effects of the red (R; 600-699 nm) to far-red (FR; 700-750 nm) light ratio on morphology. However, the suppressive effects can depend on individual wavebands that modulate photoreceptor activity. We postulated that morphological responses of shade-avoiding plants to the FR fraction (FR-PFD divided by R + FR PFD) act independent of total PFD (TPFD; 400-750 nm) when TPFD increases are only from R and FR light. We grew kale and lettuce under three FR fractions and four TPFDs while maintaining a constant blue (B; 400-499 nm) PFD. An increase in the R + FR PFD reduced leaf elongation and specific leaf area (SLA). However, higher light did not suppress the FR-fraction effects on leaf elongation and SLA. We estimated PHYB activity with a three-state PHYB model to mechanistically explain the suppressive effects of high light on leaf elongation and SLA but not on FR-mediated leaf elongation and SLA increase. PHYB model predictions were in accordance with the morphological responses of kale and lettuce. This study is the first to apply the three-state PHYB model to explain photon-spectrum-induced morphology of light-grown whole plants, demonstrating its potential use to crops and for applications.

摘要

多项研究得出结论,高光量子通量密度(PFD)会减弱红光(R;600 - 699纳米)与远红光(FR;700 - 750纳米)光比对形态的影响。然而,抑制效应可能取决于调节光受体活性的各个波段。我们推测,当总PFD(TPFD;400 - 750纳米)仅因红光和远红光增加时,避荫植物对远红光比例(FR - PFD除以R + FR PFD)的形态反应与总PFD无关。我们在保持恒定蓝光(B;400 - 499纳米)PFD的情况下,将羽衣甘蓝和生菜种植在三种远红光比例和四种总PFD条件下。R + FR PFD的增加会降低叶片伸长和比叶面积(SLA)。然而,较高的光照并没有抑制远红光比例对叶片伸长和SLA的影响。我们用三态PHYB模型估计了PHYB活性,以从机制上解释高光对叶片伸长和SLA的抑制作用,但对远红光介导的叶片伸长和SLA增加没有抑制作用。PHYB模型的预测与羽衣甘蓝和生菜的形态反应一致。本研究首次应用三态PHYB模型来解释光培养的整株植物的光子光谱诱导形态,证明了其在作物和应用方面的潜在用途。

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