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首页> 外文期刊>Scientific reports. >Identification of Photosynthetic Plankton Communities Using Sedimentary Ancient DNA and Their Response to late-Holocene Climate Change on the Tibetan Plateau
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Identification of Photosynthetic Plankton Communities Using Sedimentary Ancient DNA and Their Response to late-Holocene Climate Change on the Tibetan Plateau

机译:青藏高原古代沉积DNA对光合作用浮游生物群落的识别及其对晚全新世气候变化的响应

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Sediments from Tibetan lakes in NW China are potentially sensitive recorders of climate change and its impact on ecosystem function. However, the important plankton members in many Tibetan Lakes do not make and leave microscopically diagnostic features in the sedimentary record. Here we established a taxon-specific molecular approach to specifically identify and quantify sedimentary ancient DNA (sedaDNA) of non-fossilized planktonic organisms preserved in a 5-m sediment core from Kusai Lake spanning the last 3100 years. The reliability of the approach was validated with multiple independent genetic markers. Parallel analyses of the geochemistry of the core and paleo-climate proxies revealed that Monsoon strength-driven changes in nutrient availability, temperature, and salinity as well as orbitally-driven changes in light intensity were all responsible for the observed temporal changes in the abundance of two dominant phytoplankton groups in the lake, Synechococcus (cyanobacteria) and Isochrysis (haptophyte algae). Collectively our data show that global and regional climatic events exhibited a strong influence on the paleoecology of phototrophic plankton in Kusai Lake.
机译:来自中国西北部藏族湖泊的沉积物是气候变化及其对生态系统功能影响的潜在敏感记录者。然而,许多西藏湖泊中重要的浮游生物成员并未在沉积记录中形成微观诊断特征。在这里,我们建立了一个分类单元特异的分子方法,专门鉴定和量化在过去3100年中保存在距库塞湖5米沉积核心中的非化石化浮游生物的沉积古代DNA(sedaDNA)。该方法的可靠性已通过多个独立的遗传标记进行了验证。对核心和古气候代理的地球化学进行的平行分析显示,季风强度驱动的养分有效性,温度和盐度变化以及光强度的轨道驱动变化都是造成观测到的丰度随时间变化的原因。湖中两个主要的浮游植物群,即浮游细菌(蓝藻)和浮游细菌(触藻)。总体而言,我们的数据表明,全球和区域性气候事件对库塞湖光养浮游生物的古生态产生了重大影响。

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