首页> 美国卫生研究院文献>Plant Physiology >Exposure of oat seedlings to blue light results in amplified phosphorylation of the putative photoreceptor for phototropism and in higher sensitivity of the plants to phototropic stimulation.
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Exposure of oat seedlings to blue light results in amplified phosphorylation of the putative photoreceptor for phototropism and in higher sensitivity of the plants to phototropic stimulation.

机译:燕麦幼苗暴露在蓝光下会导致假定的感光细胞发生向光性的放大磷酸化并导致植物对光致刺激的敏感性更高。

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摘要

Dark recovery of blue light-induced in vitro phosphorylation in oat (Avena sativa L.) seedlings after in vivo preirradiation with blue light revealed different recovery kinetics for the coleoptile base and tip. Although, in both cases, maximum in vitro phosphorylation was observed 90 min after in vivo blue light treatment, the phosphorylation levels for the entire base were about 3-fold higher than those found in nonpreirradiated plants. The tip response only slightly exceeded that of the dark controls. The fluence applied during preirradiation determined the extent of the increase in phosphorylation. Consequently, unilateral irradiation and subsequent dark incubation resulted in a more pronounced increase in phosphorylation in the irradiated than in the shaded side of the coleoptile base. Furthermore, blue light-irradiation conditions, known to induce neither first- nor second-positive curvature in nonpreirradiated plants, stimulated both asymmetric distribution of protein phosphorylation and second-positive phototropic curvature in the coleoptile base when administered to blue light-pretreated plants. Based on these data, we conclude that photosensitivity of the coleoptile base increases upon exposure to blue light in a time-and fluence-dependent manner, providing an excellent explanation of the invalidity of the Bunsen-Roscoe reciprocity law for second-positive phototropism.
机译:体内预辐射蓝光后,燕麦(Avena sativa L.)幼苗中蓝光诱导的体外磷酸化的暗恢复表明胚芽鞘碱和叶尖的恢复动力学不同。尽管在两种情况下,在体内蓝光处理后90分钟都观察到最大的体外磷酸化,但是整个碱基的磷酸化水平比未辐照植物高约3倍。笔尖的响应仅略大于深色控件的响应。预辐照期间施加的能量密度决定了磷酸化程度的提高。因此,与胚芽鞘碱的阴影侧相比,单侧辐射和随后的黑暗温育导致被辐照的磷酸化增加更为明显。此外,已知在未照射植物中不会诱发第一或第二正曲率的蓝光照射条件,在施用于蓝光预处理的植物时,会刺激胚芽鞘碱基中蛋白质磷酸化的不对称分布和第二正向光性曲率。基于这些数据,我们得出结论,胚芽鞘碱的光敏性在暴露于蓝光时会以时间和通量依赖的方式增加,从而很好地解释了本生-罗斯科互惠定律对第二种正向光致性的无效性。

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