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首页> 外文期刊>Brazilian Journal of Oceanography >Morphometric analysis in the shells of the planktonic foraminifera Orbulina universa : a source for paleoceanographic information?
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Morphometric analysis in the shells of the planktonic foraminifera Orbulina universa : a source for paleoceanographic information?

机译:浮游有孔虫Orbulina universa壳的形态计量分析:古海洋学信息的来源吗?

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In this study, we describe morphometric analyses of Orbulina universa morphotypes presently found in the Western South Atlantic, and their relation to the upper water thermohaline indexes. We also investigate this relationship under glacial and interglacial conditions between 7.2 and 32 kyr BP. Ten plankton samples distributed between 32o55' and 26o20'S were selected for the analyses of modern O. universa specimens. Core SIS188 was retrieved at 29o22’S, 47o28’W enabling the analysis of 21 fossil samples. Shell diameter, pore diameter, pore density and porosity were measured using SEM images. Chronology of core SIS188 is based on four AMS 14 C ages and the planktonic foraminifera oxygen isotope curve. Planktonic foraminifera relative abundances were converted into SST data using the Modern Analog Technique (MAT). Correlations between the morphometric parameters and temperature and salinity of surface Waters (modern samples) or paleotemperature (fossil samples) were calculated. Morphological characteristics of the analyzed shells allowed to differentiate two morphotypes of O. universa , namely Caribbean and Mediterranean in the studied region. For the Caribbean morphotype, the large pore density showed a negative correlation with both temperature and salinity. For the Mediterranean morphotype, no significant correlations were found. For fossil samples, no significant correlations were found between summer SST (0-50m) and morphometric parameters for the Caribbean or the Mediterranean morphotypes. Possibly, other genotypes do exist in the fossil record, so modern and fossil morphotypes would not have the same behavior. Another explanation for the absence of correlation in fossil samples are errors associated with the SST estimates. Furthermore, fossil samples could represent distinct and more complex oceanographic conditions compared to current configuration, with Plata Plume Water and Brazil Malvinas Confluence migration playing a most significant role in the past.
机译:在这项研究中,我们描述了目前在南大西洋西部发现的Orbulina universa形态型的形态计量学分析,以及它们与上层水热盐指数的关系。我们还研究了在7.2至32千yr BP之间的冰川和冰间条件下的这种关系。选择了分布在32o55'和26o20's之间的十个浮游生物样品,用于分析现代O.universa标本。 SIS188核心位于西纬29o22′,西经47o28′,可以分析21个化石样品。使用SEM图像测量壳直径,孔径,孔密度和孔隙率。核心SIS188的年代学基于四个AMS 14 C年龄和浮游有孔虫的氧同位素曲线。使用现代模拟技术(MAT)将浮游有孔虫的相对丰度转换为SST数据。计算了形态参数与地表水(现代样品)或古温度(化石样品)的温度和盐度之间的相关性。被分析贝壳的形态特征使其能够区分被研究地区的两种O. universa形态,即加勒比和地中海。对于加勒比海形态,大孔隙密度与温度和盐度均呈负相关。对于地中海形态,未发现显着相关性。对于化石样品,夏季SST(0-50m)与加勒比或地中海形态类型的形态计量参数之间没有发现显着相关性。化石记录中可能确实存在其他基因型,因此现代形态和化石形态将不会具有相同的行为。化石样品中不存在相关性的另一种解释是与SST估计值相关的误差。此外,与目前的构造相比,化石样品可能代表了独特且更为复杂的海洋学条件,其中Plata Plume Water和巴西Malvinas Confluence迁移在过去发挥了最重要的作用。

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