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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Carotenoid accumulation in the eyespot apparatus required for phototaxis is independent of chloroplast development in Euglena gracilis
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Carotenoid accumulation in the eyespot apparatus required for phototaxis is independent of chloroplast development in Euglena gracilis

机译:光涛所需的眼镜仪中的类胡萝卜素积累与Euglena Gracilis的叶绿体发育无关

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Euglena gracilis exhibits photomovements in response to various light stimuli, such as phototactic and photophobic responses. Our recent study revealed that carotenoids in the eyespot apparatus are required for triggering phototaxis in this alga. However, the role of chloroplasts in eyespot formation is not understood. Here, we isolated carotenoid-less (cl) strains of E. gracilis from cells silenced gene expression of phytoene synthase (EgcrtB). Unlike WT, the culture colors of cl1, cl3, and the non-photosynthetic mutant SM-ZK were orange, while that of cl4 was white. Electron microscope observations showed that SM-ZK, cl1, and cl3 had no developed chloroplast and formed a normal eyespot apparatus, similar to that of WT, but this was not the case for cl4. Carotenoids detected in WT were diadinoxanthin, neoxanthin, and beta-carotene. However, the most abundant species of SM-ZK, c11, and c13 was zeaxanthin, and there was no diadinoxanthin or neoxanthin. Photomovement analysis showed that SM-ZK, cl1, and cl3 exhibited negative phototactic and photophobic responses, similar to those of WT, whereas cl4 lacked negative phototaxis. Taken together, the formation of the eyespot apparatus required for phototaxis is independent of chloroplast development in E. gracilis, suggesting that this property is different from other photosynthetic flagellates.
机译:Euglena Gracilis响应于各种光刺激而呈现出光膜,例如光或料理反应。我们最近的研究表明,在该藻类中触发光刻需要眼镜装置中的类胡萝卜素。然而,叶绿体在眼睛形成中的作用尚未理解。在此,我们从细胞沉默基因表达(EGCRTB)的细胞沉默基因表达中孤立的类胡萝卜素(Cl)的E. Gracilis菌株。与WT不同,CL1,Cl3和非光合突变体SM-ZK的培养色是橙色的,而CL4的培养色是白色的。电子显微镜观察表明,SM-ZK,Cl1和Cl3没有显影叶绿体,形成了类似于WT的普通眼镜装置,但这不是CL4的情况。在wt中检测到的类胡萝卜素是粘附蛋白,Neoxanthin和β-胡萝卜素。然而,最丰富的SM-ZK,C11和C13是玉米黄蛋白,并且没有杀死毒素或Neoxantanin。光电子分析表明,SM-ZK,Cl1和Cl3表现出与WT类似的负光或光响应,而CL4缺少阴性光辐射。连胜,光涛所需的眼镜装置的形成与E. Gracilis中的叶绿体发育无关,这表明该物业与其他光合鞭毛不同。

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