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Size shape relationships in the Mesozoic planispiral ammonites

机译:中生代平面螺旋藻中的尺寸形状关系

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Ammonites are of outstanding importance in dating events of the Mesozoic and in the study of mechanisms, modes and timing of evolutionary processes. These applications rely on a detailed understanding of their morphology and the modes of variation. It has been known for a long time that their shape is composed of a number of highly correlated features. A new model, called the ADA model, is introduced for the study of shell morphology (size and shape). The new model is based on classic dimensions which are stable parameters throughout ontogeny, giving very close agreement between pre dictions and actual observations. It was applied in the exploration of the morphospace occupied by the planispirally coiled and the regularly uncoiled Mesozoic Ammonoidea, based on two new reduced morphospaces introduced for the analysis. Results obtained expose close relationships between size and shape, and general patterns in the ammonite shell morphol ogy and morphogenesis. (i) The relative apertural height of the whorl section relative to the diameter of the shell (H2/D) is involved in definition of size and shape. (ii) This same dimension shows a strong tendency to beH2/D= 0.3. (iii) There are some geometrically possible shell shapes (or morphotypes) which seem to have not been developed since they are not known in the current record. Assuming the known ranges of protoconch size and whorl number as constraints, the ADA model strongly suggests that these morphotypes have not been developed for the too large or too small sizes the shells would have attained, well outside of the actual size range of the planispirally coiled Ammonoidea. (iv) The law of covariation is shown to be a general pattern within the planispiral ammonites which describes structured variation of the shell shape. (v) A large fraction of the non structured variation seems originate in the lack of correlation between the rela tive umbilical diameter and width of the whorl section.
机译:炸药在中生代的年代事件以及对演化过程的机制,模式和时间的研究中具有极其重要的意义。这些应用程序需要对它们的形态和变化模式有详细的了解。长期以来,人们已经知道它们的形状是由许多高度相关的特征组成的。引入了一种称为ADA模型的新模型,用于研究壳的形态(大小和形状)。新模型基于经典维度,这些维度是整个个体发育过程中的稳定参数,从而使预测与实际观察结果非常吻合。基于引入的两个新的简化形态空间,它被用于探索平面螺旋状和规则未卷曲中生Ammonoidea占据的形态空间。获得的结果揭示了大小和形状之间的密切关系,以及氨铁矿壳的形态学和形态发生的一般模式。 (i)螺纹段相对于壳体直径的相对孔口高度(H2 / D)与尺寸和形状的定义有关。 (ii)相同的尺寸显示出很强的趋势,即H 2 /D=0.3。 (iii)由于目前的记录尚不清楚,因此似乎还没有开发出一些可能的几何形状的壳形(或形态型)。假定已知的原型精炼机尺寸和螺纹数范围为约束条件,ADA模型强烈暗示,这些形态型尚未针对将要达到的壳尺寸过大或过小而开发,远远超出了盘旋盘旋的实际尺寸范围Ammonoidea。 (iv)协变定律被证明是平面螺旋形虫体内的一般模式,描述了壳形的结构变化。 (v)大部分非结构性变化似乎是由于脐带相对直径与螺纹截面宽度之间缺乏相关性所致。

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