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Scanning force microscopy of DNA molecules elongated by convective fluid flow in an evaporating droplet.

机译:对流流体在蒸发液滴中流动而延长的DNA分子的扫描力显微镜检查。

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摘要

Scanning force microscopy (SFM) was used to image intact, nearly fully elongated lambda bacteriophage DNA molecules, fixed onto freshly cleaved mica surfaces. Molecular elongation and fixation were accomplished using a newly characterized fixation technique, termed "fluid fixation." Here convective fluid flows generated within an evaporating droplet of DNA solution efficiently elongate DNA molecules for fixation onto suitably charged surfaces. SFM images of a very large bacteriophage genome, G, showed the presence of double-stranded bubbles. We speculate that these structures may contain putative replication forks. Overall, the experiments presented here demonstrate the viability of using fluid fixation for the preparation of DNA molecules for SFM imaging. The combination of largely automatable optically based techniques with the high-resolution SFM imaging presented here will likely produce a high-throughput system for detailed physical mapping of genomic DNA or clones.
机译:使用扫描力显微镜(SFM)对完整的,几乎完全拉长的λ噬菌体DNA分子进行成像,并将其固定在新鲜裂解的云母表面上。分子的延伸和固定是使用一种称为“流体固定”的新型固定技术完成的。在此,在DNA溶液的蒸发液滴内产生的对流流体有效地拉长了DNA分子,使其固定在适当充电的表面上。很大的噬菌体基因组G的SFM图像显示存在双链气泡。我们推测这些结构可能包含推定的复制叉。总体而言,此处介绍的实验证明了使用流体固定法制备用于SFM成像的DNA分子的可行性。很大程度上基于光学的自动化技术与此处介绍的高分辨率SFM成像相结合,可能会产生一个高通量系统,用于基因组DNA或克隆的详细物理定位。

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