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首页> 外文期刊>Journal of foraminiferal research >ZOOGLIDER-BASED MEASUREMENTS OF PLANKTONIC FORAMINIFERA IN THE CALIFORNIA CURRENT SYSTEM
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ZOOGLIDER-BASED MEASUREMENTS OF PLANKTONIC FORAMINIFERA IN THE CALIFORNIA CURRENT SYSTEM

机译:基于Zooglider的浮游动物Foraminifera在加利福尼亚州电流系统的测量

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Spines and rhizopodia play an important role in the feeding behavior, symbiont ecology, shell geochemistry, and density and drag of planktonic foraminifera. However, there are few empirical data on planktonic foraminifera in situ, and these delicate structures are disturbed on capture. Here, we report spine and rhizopod measurements from underwater images obtained in the California Current System near La Jolla, California by Zooglider, a new autonomous zooplankton-sensing glider. Across all observed species, we find that spine length and flexibility correlate with test size and that spines increase the effective prey encounter volume of spinose foraminifera by two to three orders of magnitude. Our data also yielded several novel observations regarding hastigerinid foraminifera (Hastigerinella digitata and Hastigerina pelagica), a group of unusually large planktonic foraminifera that are abundant in our dataset below 250 m. First, the effective encounter volume of hastigerinid foraminifera can be very large: our largest specimen occupies almost 40 cm(3) (about the size of a golf ball), while the median specimen occupies 5.3 cm(3) (about the size of a cherry). Second, the majority of hastigerinid foraminifera in our dataset have asymmetric bubble capsules, which are most frequently oriented with their bubbles on the upward side of the test, consistent with the hypothesis that the bubble capsule is positively buoyant. Third, 16% of hastigerinid foraminifera in our dataset have dispersed bubble capsules with detached bubbles distributed along the spines and rhizopodia, consistent with a regular source of natural disturbance. Taken together, our observations suggest that hastigerinid foraminifera play a larger role as mesopelagic predators in the California Current System than previously recognized.
机译:脊椎和根瘤多是在饲养行为,Symbiont生态,壳地球化学和密度和浮游动物的密度和拖曳中发挥着重要作用。然而,浮游动物的Foraminifera原位上有很少的经验数据,这些微妙的结构在捕获时受到干扰。在这里,我们通过Zooglider,由Zooglider是一款新的自治浮游车传感滑翔机,从加利福尼亚州La Jolla附近获得的水下图像报告脊柱和Rhizopod测量。在所有观察到的物种中,我们发现脊柱长度和柔韧性与测试尺寸相关,并且刺将有效的猎物对多个数量级的尖刺腹膜体积增加了两到三个数量级。我们的数据还产生了关于Hastigerinid Foraminifera(Hastigerinella Digitata和Hastigerina Pelagica)的几种新的观察,这是一组异常大的浮游动物的Foraminifera,在我们的数据集低于250米。首先,哈萨里宁花瓶的有效遭遇的体积非常大:我们最大的标本占用近40厘米(3)(关于高尔夫球的大小),而中间标本占据5.3厘米(3)(约为a的大小樱桃)。其次,我们数据集中的大多数Hastigerinid foraminifera具有不对称的气泡胶囊,其最常以其​​气泡在测试的向上侧面,与泡胶囊具有正浮力的假设一致。第三,我们数据集中的16%的Hastigerinid foraminifera具有分散的泡沫胶囊,沿着脊柱和根瘤菌分布的分离气泡,与常规的自然扰动源符合。我们的观察结果表明,Hastigerinid foraminifera在加州电流系统中的凹面系掠夺者在比以前认可的那样发挥更大的作用。

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