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Marine environmental DNA biomonitoring reveals seasonal patterns in biodiversity and identifies ecosystem responses to anomalous climatic events

机译:海洋环境DNA生物监测揭示了生物多样性的季节性模式并确定了生态系统对异常气候事件的反应

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Marine ecosystems are changing rapidly as the oceans warm and become more acidic. The physical factors and the changes to ocean chemistry that they drive can all be measured with great precision. Changes in the biological composition of communities in different ocean regions are far more challenging to measure because most biological monitoring methods focus on a limited taxonomic or size range. Environmental DNA (eDNA) analysis has the potential to solve this problem in biological oceanography, as it is capable of identifying a huge phylogenetic range of organisms to species level. Here we develop and apply a novel multi-gene molecular toolkit to eDNA isolated from bulk plankton samples collected over a five-year period from a single site. This temporal scale and level of detail is unprecedented in eDNA studies. We identified consistent seasonal assemblages of zooplankton species, which demonstrates the ability of our toolkit to audit community composition. We were also able to detect clear departures from the regular seasonal patterns that occurred during an extreme marine heatwave. The integration of eDNA analyses with existing biotic and abiotic surveys delivers a powerful new long-term approach to monitoring the health of our world’s oceans in the context of a rapidly changing climate. Author summary All environments contain genetic remnants of the life they contain and support. For example, samples collected from the ocean contain biological material such as microscopic organisms, shed cells, excrement and saliva—the DNA from which reveals the surrounding marine biodiversity. Environmental DNA (eDNA) approaches have the ability to identify marine species that are notoriously difficult to identify using morphology alone. Here we develop, and apply, a DNA ‘toolkit’ to five years of samples collected from a single site in the Indian ocean. It is rare to find a temporal series of samples of this duration that are also suitable for DNA analysis. We show that eDNA techniques have the capacity to monitor ocean biology in fine detail. We demonstrate how the biological communities of plankton and fish respond to normal seasonal changes and, more importantly, to that of an uncharacteristic heatwave. The methods embodied in this paper are applicable to marine studies across the globe and, as such, pave the way for the design of long-term monitoring programs using eDNA.
机译:随着海洋变暖和变得更加酸性,海洋生态系统正在迅速变化。可以精确地测量物理因素及其驱动的海洋化学变化。由于大多数生物监测方法只关注有限的生物分类或规模范围,因此测量不同海洋区域的群落生物组成的变化要困难得多。环境DNA(eDNA)分析具有解决生物海洋学中这一问题的潜力,因为它能够确定物种到物种的巨大系统发育范围。在这里,我们开发并应用了一种新颖的多基因分子工具包,将eDNA从五年内从单一地点收集的大量浮游生物样品中分离出来。这种时间尺度和细节水平在eDNA研究中是前所未有的。我们确定了浮游动物种类的一致季节性组合,这证明了我们的工具包能够审核群落组成。我们还能够发现与极端海洋热浪期间发生的常规季节性模式明显不同的情况。 eDNA分析与现有的生物和非生物调查相结合,提供了一种强有力的新的长期方法,可以在气候变化迅速的情况下监控我们世界海洋的健康状况。作者摘要所有环境都包含其所包含和支持的生命的遗传遗留物。例如,从海洋中收集的样本包含诸如微生物,棚细胞,排泄物和唾液之类的生物材料,而这些DNA可以揭示周围的海洋生物多样性。环境DNA(eDNA)方法具有识别众所周知很难单独使用形态识别的海洋物种的能力。在这里,我们开发并应用了一种DNA“工具箱”,并将其应用于从印度洋一个地点采集的五年样本中。很少找到这种时间长度的样本也适合进行DNA分析的时间序列。我们表明,eDNA技术具有监测海洋生物学细节的能力。我们证明了浮游生物和鱼类的生物群落如何响应正常的季节性变化,更重要的是,对异常热浪的响应。本文中包含的方法适用于全球海洋研究,因此,为使用eDNA设计长期监测程序铺平了道路。

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