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首页> 外文期刊>Journal of Imaging >Real-Time In Vivo Imaging of the Developing Pupal Wing Tissues in the Pale Grass Blue Butterfly Zizeeria maha : Establishing the Lycaenid System for Multiscale Bioimaging
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Real-Time In Vivo Imaging of the Developing Pupal Wing Tissues in the Pale Grass Blue Butterfly Zizeeria maha : Establishing the Lycaenid System for Multiscale Bioimaging

机译:苍白草蓝蝴蝶Zizeeria maha中发育中的Pu翼组织的实时体内成像:建立用于多尺度生物成像的Lycaenid系统

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To systematically analyze biological changes with spatiotemporal dynamics, it is important to establish a system that is amenable for real-time in vivo imaging at various size levels. Herein, we focused on the developing pupal wing tissues in the pale grass blue butterfly, Zizeeria maha , as a system of choice for a systematic multiscale approach in vivo in real time. We showed that the entire pupal wing could be monitored throughout development using a high-resolution bright-field time-lapse imaging system under the forewing-lift configuration; we recorded detailed dynamics of the dorsal and ventral epithelia that behaved independently for peripheral adjustment. We also monitored changes in the dorsal hindwing at the compartmental level and directly observed evaginating scale buds. We also employed a confocal laser microscopy system with multiple fluorescent dyes for three-dimensional observations at the tissue and cellular levels. We discovered extensive cellular clusters that may be functionally important as a unit of cellular communication and differentiation. We also identified epithelial discal and marginal dents that may function during development. Together, this lycaenid forewing system established a foundation to study the differentiation process of epithelial cells and can be used to study biophysically challenging mechanisms such as the determination of color patterns and scale nanoarchitecture at the multiscale levels.
机译:为了系统地分析具有时空动态的生物变化,建立一个适用于各种大小水平的实时体内成像的系统非常重要。在这里,我们专注于在苍白的青草蓝蝴蝶Zizeeria maha中发育的p翅组织,作为实时系统化多尺度方法的系统选择。我们显示,在前举配置下,可以使用高分辨率明场延时成像系统对整个p翼进行全程监视;我们记录了背侧和腹侧上皮细胞的详细动力学过程,这些动力学行为独立于外周调节。我们还监测了在隔室水平后背的变化,并直接观察到外延鳞芽。我们还采用了具有多种荧光染料的共聚焦激光显微镜系统,以便在组织和细胞水平上进行三维观察。我们发现了广泛的细胞簇,它们在功能上可能是细胞通讯和分化的重要单元。我们还确定了在发育过程中可能起作用的上皮椎间盘和边缘凹痕。一起,这种lycaenid预示系统为研究上皮细胞的分化过程奠定了基础,并且可用于研究生物物理挑战性的机制,例如在多尺度水平上确定颜色图案和规模纳米结构。

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