首页> 外文期刊>American journal of botany >Both LOV1 and LOV2 domains of phototropin2 function as the photosensory domain for hypocotyl phototropic responses in Arabidopsis thaliana (Brassicaceae).
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Both LOV1 and LOV2 domains of phototropin2 function as the photosensory domain for hypocotyl phototropic responses in Arabidopsis thaliana (Brassicaceae).

机译:phototropin2的LOV1和LOV2结构域均充当拟南芥(Brassicaceae)下胚轴光化学反应的光敏结构域。

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Premise of study: Phototropins (phot) are blue light receptor proteins that mediate phototropism and control photomovement responses, such as chloroplast photorelocation movement and stomatal opening. Arabidopsis thaliana has two phototropins, phot1 and phot2. Although both phot1 and phot2 redundantly mediate photomovement responses, phot2 uniquely regulates phototropism and the chloroplast avoidance response under high-intensity blue light. However, compared to that of phot1, the mechanistic basis of phot2 function is poorly understood, and in particular, the importance of the LOV2 domain in phot2 function has not been clearly demonstrated. Indeed, photocycle-deficient LOV2 transgenic lines expressing phot2 in a phot1phot2 mutant background retained phototropism, although with less sensitivity than wild-type plants. Methods: We isolated 11 alleles of phot2 mutants and determined the molecular lesion in each allele. We analyzed hypocotyl phototropism, chloroplast photorelocation movement, and leaf flattening in the phot2 mutant and the respective phot1phot2 double mutant plants. Key results: We demonstrated that unlike the phot2 null mutant, the phot2-10 mutant, which has the defective phot2 LOV2 domain, retained the phototropic response and had unusual chloroplast movement. Mutants phot2-2 and phot2-6, which have a missense mutation in the kinase activation loop of phot2, had the phot2-null mutant phenotype. Furthermore, we convincingly demonstrated that the commonly used phot2-1 mutant allele is a phot2-null mutant. Conclusions: The analyses of the multiple phot2 mutant alleles provided strong evidence for the importance of both LOV domains and the kinase activation loop of phot2 in phototropism and other phot-dependent responses and also demonstrated that phot2-1 allele is a null mutant.
机译:研究前提:光蛋白(phot)是蓝光受体蛋白,可介导光致并控制光运动响应,例如叶绿体光定位运动和气孔开放。拟南芥有两种光蛋白,phot1和phot2。尽管phot1和phot2都多余地介导了光运动响应,但phot2在高强度蓝光下唯一调节光致性和叶绿体避免响应。但是,与phot1相比,对phot2功能的机理基础了解甚少,尤其是LOV2域在phot2功能中的重要性尚未得到明确证明。的确,尽管在光敏性方面比野生型植物敏感性低,但在phot1phot2突变体背景中表达phot2的光周期缺陷型LOV2转基因株系仍保持光致。方法:我们分离了11个phot2突变体等位基因,并确定了每个等位基因中的分子损伤。我们分析了phot2突变体和各个phot1phot2双重突变体植物的下胚轴向光性,叶绿体光重新定位运动和叶片变平。关键结果:我们证明了与phot2 null突变体不同,具有缺陷性phot2 LOV2结构域的phot2-10突变体保留了光致反应并具有异常的叶绿体运动。在phot2的激酶激活环中发生错义突变的突变体phot2-2和phot2-6具有phot2-null突变表型。此外,我们令人信服地证明了常用的phot2-1突变体等位基因是phot2-null突变体。结论:对多个phot2突变体等位基因的分析为LOV域和phot2的激酶激活环在向光性和其他phot依赖性反应中的重要性提供了有力证据,并且还证明了phot2-1等位基因是无效突变体。

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