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Bright Fluorescent Vacuolar Marker Lines Allow Vacuolar Tracing Across Multiple Tissues and Stress Conditions in Rice

机译:明亮的荧光真空标记线允许在水稻中的多组织和胁迫条件下进行真空跟踪

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摘要

The vacuole is indispensable for cells to maintain their water potential and to respond to environmental changes. Nevertheless, investigations of vacuole morphology and its functions have been limited to Arabidopsis thaliana with few studies in the model crop rice (Oryza sativa). Here, we report the establishment of bright rice vacuole fluorescent reporter systems using OsTIP1;1, a tonoplast water channel protein, fused to either an enhanced green fluorescent protein or an mCherry red fluorescent protein. We used the corresponding transgenic rice lines to trace the vacuole morphology in roots, leaves, anthers, and pollen grains. Notably, we observed dynamic changes in vacuole morphologies in pollen and root epidermis that corresponded to their developmental states as well as vacuole shape alterations in response to abiotic stresses. Our results indicate that the application of our vacuole markers may aid in understanding rice vacuole function and structure across different tissues and environmental conditions in rice.
机译:对于细胞来维持其水势并响应环境变化是必不可少的。然而,对液泡形态及其功能的调查仅限于拟南芥,在模型作物稻米(Oryza Sativa)中的研究少。在这里,我们报告使用OSTIP1的明亮水稻芳瓦荧光报告系统的建立; 1,一种铜绿体水通道蛋白,融合到增强的绿色荧光蛋白或MCHERRY红色荧光蛋白。我们使用相应的转基因水稻线来追踪根,叶,花药和花粉颗粒中的液压形态。值得注意的是,我们观察到花粉和根表皮中的液泡形态的动态变化,其对应于其发育状态以及响应非生物应激的液泡形状改变。我们的结果表明,我们的液泡标记物的应用可以有助于了解水稻不同组织和环境条件的水稻液泡功能和结构。

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