Intrapopulation variation in shell morphological traits and banding polymorphism of the land snail Cepaea vindobonensis (Gastropoda; Pulmonata; Helicidae)

A. Kramarenko, Zh.V. Ignatenko, O. Yulevich, Y. Barkar, A. Markowska, O. O. Salamatina, V. M. Stamat, S. Kramarenko
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引用次数: 1

Abstract

The main goal of this paper was to analyze intrapopulation variation of both morphological traits and shell banding polymorphism using the example of a continuous population (a metapopulation) of the land snail Cepaea vindobonensis (Férussac, 1821). A total of 14 samples of the land snail C. vindobonensis from a population located in the “Dubki” Park (Ukraine, Mykolayiv) were collected in May-July 2007. The land snail collection sites are divided into three areas by buildings and asphalt roads, indicated by the Latin letters A, B and C. The major diameter of shell (MJD), the minor diameter of shell (MID) and the shell height (SH) were measured with a digital calliper to the nearest 0.05 mm. Two shell shape indices (SF1 and SF2) were also computed. A high level of the intrapopulation variation of the land snail C. vindobonensis was found in our study. Significant differences between sample means were found for all shell traits and indices used (except for SF1), however, maximum difference was noted for SH and SF2 (in both cases: P < 0.001). About 80% of the total variation of the variance-covariance matrix was explained by the 1 and 2 Principal Components (PC1 and PC2). The PC1 was characterized by high positive factor loadings of MJD, MID and SH and thus can be interpreted as “shell size dimension” and the PC2 had a high correlation with SF2 and thus it can be interpreted as “shell globularity”. The PC1 and PC2 determined a high level of spatial differentiation of intrapopulation morphological variation of the land snail C. vindobonensis. Samples with small (area A) and large (areas B and C) shells were separated from each other according to the PC1. Areas B and C were characterized by individuals with flatness and globularity shells, respectively. The areas A, B and C differed significantly in the total number of morphs, average number of morphs and frequency of rare morphs (Kruskal-Wallis H-test; in all cases P < 0.010). At the same time, the highest value of phenetic diversity was noted for samples collected within A and C areas. In general all phenetic diversity estimators showed a positive correlation with sample size (Spearman's correlation coefficient; in all cases P < 0.05). It was found that the type of biotope did not likely affect the frequency of individual morphs with respect to the shell banding polymorphism pattern. With regard to the most common morphs two patterns of the spatial arrangement of the intrapopulation variation were found – clinal pattern was for the frequency of pallescens morph and chaotic pattern was for frequency of “12345” morph.
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腹足纲地螺(Cepaea vindobonensis)壳形态特征及带型多态性的种群内变异肺螺亚纲;Helicidae)
本文的主要目的是以陆地蜗牛Cepaea vindobonensis(Férussac,1821)的连续种群(集合种群)为例,分析形态特征和壳带多态性的种群内变异。2007年5月至7月,从“Dubki”公园(乌克兰,Mykolayiv)的一个种群中总共采集了14个陆生蜗牛C.vindobonensis的样本。陆地蜗牛采集点按建筑物和柏油路分为三个区域,用拉丁字母A、B和C表示。用数字卡尺测量外壳的大直径(MJD)、小直径(MID)和外壳高度(SH),精确到0.05mm。还计算了两个外壳形状指数(SF1和SF2)。在我们的研究中发现了陆地蜗牛C.vindobonensis种群内的高水平变异。所有外壳性状和所用指数(SF1除外)的样本均值之间存在显著差异,但SH和SF2的差异最大(在两种情况下:P<0.001)。方差协方差矩阵的总变异约80%由1和2个主成分(PC1和PC2)解释。PC1的特征是MJD、MID和SH的高正因子负载,因此可以解释为“壳大小尺寸”,而PC2与SF2具有高相关性,因此可以理解为“壳球度”。PC1和PC2决定了陆地蜗牛C.vindobonensis种群内形态变异的高度空间分化。根据PC1将具有小(区域A)和大(区域B和C)外壳的样品彼此分离。B区和C区的特征分别是具有扁平外壳和球状外壳的个体。A区、B区和C区在形态总数、平均形态数和罕见形态频率方面存在显著差异(Kruskal-Wallis H检验;所有情况下P<0.010)。总体而言,所有表型多样性估计量都与样本量呈正相关(Spearman相关系数;在所有情况下,P<0.05)。研究发现,生物区系的类型不太可能影响外壳条带多态性模式的个体形态频率。对于最常见的形态,发现种群内部变异的空间排列有两种模式——渐变模式是pallescens形态的频率,混沌模式是“12345”形态的频率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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