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Photoinduction of seed germination in Arabidopsis thaliana is modulated by phototropins

机译:拟南芥对种子萌发的光诱导受光蛋白的调控

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摘要

Light exposure is an important environmental factor which breaks seed dormancy in many plant species. Phytochromes have been identified as playing a crucial role in perception of the light signal that releases seed germination in Arabidopsis. Phototropins (Phot1, Phot2) are blue/UV-photoreceptors in plants which mediate phototropic responses, chloroplast relocation, hypocotyl growth inhibition and stomata opening. We studied germination under different light conditions in Arabidopsis Phot1-null and Phot2-null mutants and in a double phot1phot2 mutant. Germination of single phot1 and phot2 mutants in darkness was much lower than in wildtype (WT) seeds, whereas double phot1phot2 mutant lacking both functional phototropins germinated at frequency comparable to WT seeds, irrespective of light and temperature conditions. Light treatment of imbibed seeds was essential for effective germination of phot1, irrespective of low-temperature conditioning. In contrast, cold stratification promoted dark germination of phot2 seeds after imbibition in dim light. Low germination frequency of phot1 seeds under low light intensity suggests that the presence of functional Phot1 might be crucial for effective germination at these conditions. The lower germination frequency of phot2 seeds under continuous light suggests that Phot2 might be responsible for stimulating germination of seeds exposed to direct daylight. Thus, the phototropin system may cooperate with phytochromes regulating the germination competence of seeds under different environmental conditions
机译:光照是破坏许多植物物种种子休眠的重要环境因素。已发现植物色素在感知光信号中起着至关重要的作用,该光信号在拟南芥中释放种子发芽。光合蛋白(Phot1,Phot2)是植物中的蓝色/紫外线感光体,介导光致反应,叶绿体重新定位,下胚轴生长抑制和气孔开放。我们研究了拟南芥Phot1-null和Phot2-null突变体以及双phot1phot2突变体在不同光照条件下的萌发。在黑暗中,单个phot1和phot2突变体的发芽率比野生型(WT)种子低得多,而缺少光和温度条件下,缺少两种功能性光蛋白的双phot1phot2突变体发芽的频率与WT种子相当。无论低温条件如何,吸光种子的光处理对于有效发芽phot1都是必不可少的。相反,在弱光下吸收后,冷分层促进了phot2种子的黑暗发芽。在低光照强度下,phot1种子的发芽频率低,表明功能性Phot1的存在对于在这些条件下有效发芽可能至关重要。在连续光照下,phot2种子的萌发频率较低,这表明Phot2可能是刺激暴露在直接日光下的种子发芽的原因。因此,在不同的环境条件下,光养蛋白系统可以与调节种子发芽能力的植物色素配合使用。

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