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首页> 外文期刊>Journal of nanoscience and nanotechnology >Valve morphogenesis in the diatom genus Pleurosigma W. Smith (Bacillariophyceae): Nature's alternative sandwich
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Valve morphogenesis in the diatom genus Pleurosigma W. Smith (Bacillariophyceae): Nature's alternative sandwich

机译:硅藻属Pleurosigma W. Smith(Bacillariophyceae)的瓣膜形态发生:自然界的另一种三明治

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The loculate ("chambered") valve structure of centric diatoms like Triceratium favus Ehrenberg has been mentioned time and again in the nanostructure literature. Here we draw attention to the fundamentally different alternative sandwich model nature developed in the genus Pleurosigma, where it is nonloculate. This has so far been overlooked in nanostructural studies. We suggest some mechanical aspects that would offer interesting avenues for experimental testing. The first description of the natural fabrication process ("morphogenesis") is presented. This begins with the development of the raphe sternum, which then acts as a rigid backbone. The inner layer of the sandwich-structured valve develops next, with relatively large round single internal foramina not yet closed by a sieve membrane, in offset arrangement. This serves as a substrate for rows of stubby hollow pillars, also in offset arrangement. Then the outer layer of the sandwich develops and two different patterns ("coarse-mesh" and "stellate bridges") have been observed. At first, the external areolar foramina are relatively large and +/- oval, gradually filling up until the tiny slits characteristic of the genus remain. In Pleurosigma species with double internal areolar foramina, small bridges grow from the opposite margins of the single foramina until they fuse. The sieve-membranes then close the internal areolar foramina. The finished valve is a lightweight structure expected to offer excellent strength with parsimonious expenditure of the raw material-silica.
机译:在纳米结构文献中,一次又一次提到了中心硅藻(如Triceratium favus Ehrenberg)的定位(“腔室”)瓣膜结构。在这里,我们引起人们的关注,即截肢线属(Pleurosigma)属非定居地开发出的根本不同的夹心模型性质。到目前为止,这在纳米结构研究中被忽略了。我们建议一些机械方面,将为实验测试提供有趣的途径。首先介绍了自然制造过程(“形态发生”)。这始于缝制胸骨的发展,然后充当刚性骨干。接着形成夹层结构的阀的内层,其具有较大的圆形单内部孔,该内部孔还没有被筛膜以偏移布置封闭。这用作成排的粗短空心柱的基底,也以偏置布置。然后,三明治的外层展开,并观察到两种不同的样式(“粗筛网”和“星状桥”)。起初,外部的乳晕孔是相对较大的,并且是+/-椭圆形,逐渐填满,直到保留该属的细小缝隙为止。在具有双内部乳晕孔的Pleurosigma物种中,小桥从单个孔的相对边缘开始生长直至融合。然后,筛膜关闭内部乳晕孔。成品阀是一种轻质结构,有望在不消耗原料二氧化硅的情况下提供出色的强度。

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