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Obligate hydrothermal vent fauna at East Diamante submarine volcano (Mariana Arc) exploit photosynthetic and chemosynthetic carbon sources

机译:东迪亚曼特海底火山(马里亚纳弧线)专性热液喷口动物区系利用光合和化学合成碳源

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Two volcanic cones in the degraded caldera of East Diamante submarine volcano (Mariana Arc) were surveyed and sampled in April 2004 as part of the 'Submarine Ring of Fire 2004' expedition. The first images revealed hydrothermal venting within the photic zone and a striking overlap between chemosynthetic and photosynthetic communities. We used fatty acid biomarkers and bulk stable isotopes to determine the relative importance of chemosynthetic and photosynthetic material in the diets of invertebrates at 6 vent sites (Eastern Cone: Barnacle Beach and Black Forest; Central Cone: Floc Storm, Boulder Vent, Mid-cone, and Fe-Mn Crust) and 1 non-vent site (Central Cone: Aquarium). Principal components analysis revealed depth-related dietary differences: vent-obligate invertebrates at Barnacle Beach (similar to 460 m) belonged to a purely chemosynthetic food web, non-vent organisms at Aquarium (179 m) had diets based on the products of photosynthesis, and most of the invertebrates at Black Forest (349 m) and Central Cone vent sites (247-288 m) had mixed chemosynthetic/photosynthetic diets. Carbon stable isotope ratios corroborated the photosynthetic input in the diets of the vent-obligate invertebrates. Long-chain polyunsaturated fatty acids were found in overlying waters and in detritus. We suggest that photosynthetic material arrives at East Diamante in the form of marine snow. Photic zone hydrothermal venting has now been found on several arc volcanoes in the western Pacific Ocean. Our study underscores the potential influence of benthic-pelagic coupling on trophic interactions and community structure for vent-obligate species in such settings.
机译:作为“ 2004年海底火环”探险活动的一部分,于2004年4月对东Diamante海底火山(马里亚纳弧线)退化的破火山口中的两个火山锥进行了调查和采样。最初的图像显示了在光合带内的热液喷发以及化学合成和光合群落之间的惊人重叠。我们使用了脂肪酸生物标志物和整体稳定同位素来确定化学合成和光合材料在6个通风点(东锥:Barnacle海滩和黑森林;中锥:Floc Storm,Boulder Vent,中锥)的饮食中的相对重要性,以及铁锰结壳)和1个非通风孔部位(中心锥:水族馆)。主成分分析揭示了与深度有关的饮食差异:藤壶海滩(约460 m)的专性无脊椎动物属于纯化学合成食物网,水族馆(179 m)的非通风性生物的饮食基于光合作用的产物,黑森林(349 m)和中央锥孔(247-288 m)的大多数无脊椎动物具有化学合成/光合合成饮食。碳稳定同位素比证实了排泄无脊椎动物的光合作用。在上覆水域和碎屑中发现了长链多不饱和脂肪酸。我们建议光合材料以海洋积雪的形式到达东迪亚曼特。现已在西太平洋的几座弧形火山中发现了相带热液喷发。我们的研究强调了在这种环境下底栖-上层耦合对营养相互作用和群落结构的潜在影响。

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