具有螺旋盘绕壳的陆生腹足类动物的螺体生长速率的种内变异

J. Béguinot
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引用次数: 1

摘要

正如已故的S.J.古尔德最初报道的那样,对于大多数具有确定生长的螺旋盘绕腹足类动物,螺旋盘绕轮的几何形状通常受到轮生长率与成年期达到的轮数之间的强烈负相关的限制。然而,除了在物种水平上对壳形状的严格控制之外——这一限制导致了这种限制——在一定程度上导致了物种水平上总体壳大小的变化的螺体生长速率的种内变异性的幅度又如何呢?为了解决这个问题,我设计并实现了一种新的间接方法,用于常规评估螺旋生长速率,从而大大节省了测量时间,并且可以轻松地在足够大的样本之间进行重复测量,从而达到统计显著性。该方法应用于8种常见的陆地蜗牛。以这种方式评估的种内生长变异性的幅度证明:(i)在8个被调查物种之间存在显著差异(可能超过2倍);(ii)在所有情况下,仍然足够高,需要在成虫的轮数上进行补偿变化,以限制对成虫壳大小的种内变异性幅度的影响。尽管种间螺轮生长速率的种内变异幅度存在显著差异,但螺轮生长速率的种内变异与种特有的壳型(盘状/球形/长形)之间无显著关系,与种特有的典型壳尺寸之间仅存在微弱的正相关关系。然而,正如预期的那样,在轮生长速率的种内变异性程度与成年期达到的轮数的种内变异性程度之间发现了相当强的正相关(在8个被调查物种中有一个尚未解释的例外)。
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Intra-Specific Variability in Whorl Growth-Rate among Land Gastropods with Conispirally-Coiled Shells
For most conispirally-coiled Gastropods with determinate growth, the geometry of spirally-winding whorls is usually constrained by a strong negative correlation between whorl growth rate and the number of whorls reached at adulthood, as originally reported by the late S.J. Gould. Yet, beyond the tight control of shell-shape at the species level – resulting from this constraint – what about the amplitude of the intra-specific variability of whorl growth-rate, partly contributing to the variability of the overall shell-size at the species level? I address the issue by designing and implementing a new, indirect method for routinely evaluating whorl growth-rate, thereby aiming at considerably saving measurement time, and making it possible to easily achieve repeated measurements across samples large enough to reach statistical significance. This approach was applied to a series of eight common land snail species. The amplitude of intra-specific variability in whorl growth, evaluated this way, proves: (i) being markedly different among the eight investigated species (by a factor that can exceed 2x); (ii) being, yet, high enough, in all cases, to require compensating variations in the adult number of whorls, so as to limit the resulting consequences on the amplitude of the intra-specific variability of adult shell-size. Despite those marked differences in the amplitudes of intra-specific variability of whorl growth-rate among species, no significant relationship was observed between intraspecific variability of whorl growth rate and species-specific shell-shape types (discoidal/globular/elongate) and only weak positive relationship was observed with species-specific typical shell sizes. However, a rather strong positive correlation was found, as expected, between the degree of intra-specific variability of the whorl growth-rate and the degree of intra-specific variability of the number of whorls reached at adulthood (with the yet unexplained exception of one among the eight investigated species).
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