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Diatoms in Space: Testing Prospects for Reliable Diatom Nanotechnology in Microgravity

机译:太空中的硅藻:在微重力中测试可靠的硅藻纳米技术的前景

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The worldwide effort to grow nanotechnology, rather than use lithography, focuses on diatoms, single cell eukaryotic algae with ornate silica shells, which can be replaced by oxides and ceramics, or reduced to elemental silicon, to create complex nanostructures with compositions of industrial and electronics importance. Diatoms produce an enormous variety of structures, some of which are microtubule dependent and perhaps sensitive to microgravity The NASA Single Loop for Cell Culture (SLCC) for culturing and observing microorganisms permits inexpensive, low labor in-space experiments, We propose to send up to the International Space Station diatom cultures of the three diatom species whose genomes are currently being sequenced, plus the giant diatoms of Antarctica (up to 6 mm length for a single cell) and the unique colonial diatom, Bacillaria paradoxa. Bacillaria cells move against each other in partial synchrony, like a sliding deck of cards, by a microfluidics mechanism, Will normal diatoms have aberrant patterns, shapes or motility compared to ground controls? The generation time is typically one day, so that many generations may be examined from one flight, Rapid, directed evolution may be possible running the SLCC as a compustat The shell shapes and patterns are preserved in hard silica, so that the progress of normal and aberrant morphogenesis may be followed by drying samples on a moving filter paper "diatom tape recorder", With a biodiversity of 100,000 distinct species, diatom nanotechnology may offer a compact and portable nanotechnology toolkit for space exploration anywhere.
机译:在全世界都在努力生长纳米技术,而不是使用光刻法,集中于硅藻,单细胞真核藻类华丽二氧化硅壳,其可以由氧化物和陶瓷代替,或元素硅减小,以产生具有的工业组合物和电子复合的纳米结构重要性。硅藻产生巨大种类的结构,其中一些是微管依赖性,也许对微匍匐的敏感性培养和观察微生物的细胞培养(SLCC)的NASA单环允许廉价,低劳动空间实验,我们建议发送目前测序三种硅藻种类的国际空间站硅藻培养,加上抗野凝的巨型硅藻(单细胞长度为6mm)和独特的殖民地硅藻,Bacillaria paradoxa。 Bacillaria细胞在部分同步中互相移动,就像一张卡片的滑块,通过微流体机制,正常的硅藻具有类似的抗体模式,形状或动力与地面控制相比?生成时间通常是一天,因此可以从一个飞行中检查许多世代,可以在硬硅胶中保留壳体形状和图案,从一个飞行中检查许多世代,可以将SLCC运行,使得壳体形状和图案保持在硬硅胶中,使得正常的进度和模式在移动滤纸“硅藻卷记录仪”中可以进行异常的形态发生,然后达到10万种不同物种的生物多样性,硅藻纳米技术可以为空间勘探提供紧凑且便携的纳米技术工具包。

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