首页> 外文期刊>Palaios: An International Journal of the Society of Economic Paleontologists & Mineralogists >UNVEILING THE CONSEQUENCES OF ENVIRONMENTAL VARIATION AND SPECIES ABUNDANCES ON BEACH TAPHOFACIES IN BAHAMAS: THE ROLE OF CEMENTATION AND EXHUMATION
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UNVEILING THE CONSEQUENCES OF ENVIRONMENTAL VARIATION AND SPECIES ABUNDANCES ON BEACH TAPHOFACIES IN BAHAMAS: THE ROLE OF CEMENTATION AND EXHUMATION

机译:揭开环境变异和物种对巴哈马海滩梭状遗传的影响:胶泥和挖掘的作用

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Although environmental variability generates differences in the preservation of shell assemblages, intrinsic variations in shell characteristics can confound the effects of environment on preservation. However, several studies proposed that the composition of shell supply only affects the intensity of alteration but not its preservation trend along the environmental gradient and that environmental variability represents a major driver of taphofacies preservation. Here, we examine whether taphonomic differences among four infaunal and aragonitic bivalve species differing in shell thickness affect the definition of beach taphofacies in tropical carbonate environments on San Salvador Island (Bahamas). We show that (1) taphofacies can be discriminated with respect to (a) wave and storm activity as a function of exposure to Trade Winds, and (b) sandy beaches versus beaches with a mixture of sands and beach rock (representing a source of exhumed and cemented shells), and (2) species-specific bivalve assemblages show similar gradients in preservation, documenting that differences in preservation between species have minor effects on taphonomic discrimination of beach environments. Environments with a mixture of sands and beach rock are characterized by higher frequency of external cementation and abrasion than sandy beaches. Shells from low-energy beaches are more fragmented and discolored than shells from high-energy beaches. Previous studies showed that shells from San Salvador sandy beaches are more time-averaged than shells from rocky beaches. Differences in preservation between these two environments indicate two pathways: (1) assemblages on sandy beaches are degraded at higher rate but are enriched by old exhumed and lithified shells, and (2) assemblages on rocky beaches are cemented at higher rate. Old and lithified shells on sandy beaches are probably derived from submerged or exposed beach rock patches, leading to the mixture of young, well-preserved shells with o
机译:虽然环境变异性产生壳体组合的保存的差异,但壳体特性的固有变化可以混淆环境对保存的影响。然而,若干研究提出了壳牌供应的组成仅影响改变的强度,而不是环境梯度的保存趋势,并且环境变异性代表了脱过遗传保存的主要驱动因素。在这里,我们检查在壳体厚度不同的四种婴儿和金属族双抗体种类之间的差异是否影响了圣萨尔瓦多岛(巴哈马)的热带碳酸盐环境中海滩脱毛的定义。我们展示(1)如(a)波浪和风暴活动可以作为暴露于贸易风的函数,并且(b)沙滩与海滩与沙滩和海滩岩石的混合(代表源泉(代表源)挖掘和粘合的壳)和(2)特定的比例组合物在保存中显示出类似的梯度,记录了物种之间保存的差异对海滩环境的鉴定差异很小。砂岩和沙滩岩体混合的环境的特点是较高的外部胶泥和磨损而不是沙滩。低能量海滩的壳比高能海滩的贝壳更碎片和变色。以前的研究表明,来自圣萨尔瓦多沙滩的壳比来自岩石海滩的贝壳更乘坐。这两个环境之间的保存的差异表示两个通路:(1)沙滩上的组装以更高的速度降级,但是由旧的膨胀和光滑的炮弹富集,而(2)岩石海滩上的组件以更高的速度粘合。沙滩上的老和石头壳可能来自淹没或暴露的沙滩岩斑块,导致年轻,保存的壳体的混合物

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