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首页> 外文期刊>The Plant Cell >Chloroplasts Modulate Elongation Responses to Canopy Shade by Retrograde Pathways Involving HY5 and Abscisic Acid
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Chloroplasts Modulate Elongation Responses to Canopy Shade by Retrograde Pathways Involving HY5 and Abscisic Acid

机译:叶绿体通过涉及Hy5和脱离酸的逆行途径调节对冠层阴影的伸长响应

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摘要

Plants use light as energy for photosynthesis but also as a signal of competing vegetation. Using different concentrations of norflurazon and lincomycin, we found that the response to canopy shade in Arabidopsis (Arabidopsis thaliana) was repressed even when inhibitors only caused a modest reduction in the level of photosynthetic pigments. High inhibitor concentrations resulted in albino seedlings that were unable to elongate when exposed to shade, in part due to attenuated light perception and signaling via phytochrome B and phytochrome-interacting factors. The response to shade was further repressed by a retrograde network with two separate nodes represented by the transcription factor LONG HYPOCOTYL 5 and the carotenoid-derived hormone abscisic acid. The unveiled connection among chloroplast status, light (shade) signaling, and developmental responses should contribute to achieve optimal photosynthetic performance under light-changing conditions.
机译:植物用光作为光合作用的能量,而且作为竞争植被的信号。 使用不同浓度的Norflurazon和Lincomcin,我们发现,即使仅在抑制剂在光合色素水平导致适度降低时,即使仅在抑制剂降低时也被压抑了对拟南芥的响应(Arabidopsis Thilana)。 高抑制剂浓度导致在暴露于阴影时不能伸长的白化幼苗,部分原因是通过植物B和Phytochrome-相互作用因子衰减的光感知和信号传导。 逆行网络进一步抑制了对阴影的响应,其具有由转录因子长次杆杆菌5和类胡萝卜素衍生的激素脱盐酸表示的两个单独的节点。 在叶绿体状态,光(SHADE)信号传导和发育反应之间的揭开连接应该有助于在变形条件下实现最佳的光合性能。

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