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Cell size predicts morphological complexity in the brains of frogs and salamanders.

机译:细胞大小可预测青蛙和sal脑中的形态复杂性。

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摘要

The morphological organization of the brain of frogs and salamanders varies greatly in the degree to which it is subdivided and differentiated. Members of these taxa are visually oriented predators, but the morphological complexity of the visual centers in the brain varies interspecifically. We give evidence that the morphological complexity of the amphibian tectum mesencephali, the main visual center, can be predicted from knowledge of cell size, which varies greatly among these taxa. Further, cell size is highly correlated with genome size. Frogs with small cells have more complex morphologies of the tectum than do those with large cells independent of body and brain size. In contrast, in salamanders brain-body size relationships also are correlated with morphological complexity of the brain. Small salamanders with large cells have the simplest tecta, whereas large salamanders with small cells exhibit the most complex tectal morphologies. Increases in genome, and consequently cell size, are associated with a decrease in the differentiation rate of nervous tissue, which leads to the observed differences in brain morphology. On the basis of these findings we hypothesize that important features of the structure of the brain can arise independently of functional demands, from changes at a lower level of organismal organization--in this case increase in genome size, which induces simplification of brain morphology.
机译:青蛙和sal的大脑形态组织在细分和分化的程度上差异很大。这些类群的成员是视觉导向的掠食者,但大脑视觉中心的形态复杂性因种而异。我们提供的证据表明,可以从细胞大小的知识中预测出主要视觉中心的两栖动物中脑的形态复杂性,这些细胞之间的差异很大。此外,细胞大小与基因组大小高度相关。具有小细胞的青蛙比具有独立于身体和大脑大小的大细胞的青蛙具有更复杂的顶盖形态。相反,在sal中,脑与身体的大小关系也与脑的形态复杂性相关。具有大细胞的小sal具有最简单的构造,而具有小细胞的大sal具有最复杂的构造形态。基因组的增加,以及因此细胞大小的增加,与神经组织分化率的降低有关,这导致观察到的大脑形态差异。根据这些发现,我们假设大脑结构的重要特征可以独立于功能需求而出现,而不是来自机体组织水平较低的变化-在这种情况下,基因组大小的增加会导致大脑形态的简​​化。

著录项

  • 作者

    Roth, G; Blanke, J; Wake, D B;

  • 作者单位
  • 年度 1994
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  • 原文格式 PDF
  • 正文语种 en
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