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Changes in pteropod distributions and shell dissolution across a frontal system in the California Current System

机译:加州现行系统中整个额叶系统的翼足类分布和壳溶解的变化

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We tested the sensitivity of the vertical distributions and shell dissolution patterns of thecosome pteropods to spatial gradients associated with an eddy-associated front in the southern California Current System. The aragonite saturation horizon (Omega(arag) = 1.0) shoaled from > 200 to <75 m depth across the front. The vertical distribution of thecosome pteropods tracked these changes, with all 5 species showing reduced occurrence at depths below 100 m where waters were less saturated with respect to aragonite. Shell dissolution patterns of the numerically dominant thecosome Limacina helicina corresponded to the cross-frontal changes in Omega(arag) saturation state. Severe shell dissolution ( categorized here as Type II and Type III) was low in near-surface waters where Omega(arag) > 1.4, while peak dissolution occurred in depths where Omega(arag) = 1.0 to 1.4. Vertical habitat compression and increased shell dissolution may be expected to accompany future shoaling of waters that are undersaturated with respect to aragonite.
机译:我们测试了共栖翼足类的垂直分布和壳溶解模式对与南加州电流系统中与涡流相关的前沿相关的空间梯度的敏感性。文石饱和层位(Omega(arag)= 1.0)从正面穿过> 200到<75 m的深度。浆体翼足类的垂直分布追踪了这些变化,所有5个物种在低于100 m的深度处的文石的水饱和度较低,显示出减少的发生。数值上占主导地位的巧克力小鳞甲的壳溶解模式与Omega(arag)饱和状态的横额变化相对应。在Omega(arag)> 1.4的近地表水域中,严重的壳溶解(在这里分类为II型和III型)很低,而在Omega(arag)= 1.0至1.4的深度发生了峰值溶解。垂直生境的压缩和壳层溶解的增加可能会伴随文石的不饱和水的未来泛滥。

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