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低纬度高原湖泊中蓝细菌群落的气候和养分驱动的生态系统状态变化。

Climate and Nutrient-Driven Regime Shifts of Cyanobacterial Communities in Low-Latitude Plateau Lakes.

机构信息

State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, Beijing 100012, China.

College of Water Sciences, Beijing Normal University, Beijing 100012, China.

出版信息

Environ Sci Technol. 2021 Mar 2;55(5):3408-3418. doi: 10.1021/acs.est.0c05234. Epub 2021 Feb 15.

Abstract

Cyanobacterial blooms that form in response to climate warming and nutrient enrichment in freshwater lakes have become a global environmental challenge. Historical legacy effects and the mechanisms underlying cyanobacterial community succession are not well understood, especially for plateau lakes that are important global freshwater resources. This study investigated the temporal dynamics of cyanobacterial communities over centuries in response to nutrient enrichment and climate warming in low-latitude plateau lakes using high-throughput DNA sequencing of sedimentary DNA combined with traditional paleolimnological analyses. Our results confirmed that nutrients and climate warming drive shifts in cyanobacterial communities over time. Cyanobacterial community turnover was pronounced with regime shifts toward new ecological states, occurring after exceeding a tipping point of aquatic total phosphorus (TP). The inferred species interactions, niche differentiation, and identity of keystone taxa significantly changed after crossing the aquatic TP ecological threshold, as demonstrated by network analysis of cyanobacterial taxa. Further, the contribution of aquatic TP to cyanobacterial community dynamics was greater than that of air temperature when lakes were in an oligotrophic state. In contrast, as the aquatic TP threshold was exceeded, the contribution to community dynamics by air temperature increased and potentially surpassed that of aquatic TP. Overall, these results provide new evidence for how past nutrient levels in lacustrine ecosystems influence contemporary cyanobacterial community responses to global warming in low-latitude plateau lakes.

摘要

蓝藻水华是对淡水湖泊气候变暖与富营养化的响应,已成为全球性的环境挑战。历史遗留效应和蓝藻群落演替的机制尚不清楚,特别是对于作为重要全球淡水资源的高原湖泊。本研究采用高通量 DNA 测序结合传统古湖沼学分析,研究了低纬度高原湖泊在养分富化和气候变暖条件下,数百年间蓝藻群落对养分和气候变暖的时间动态响应。结果证实,养分和气候变暖驱动了蓝藻群落随时间的变化。蓝藻群落的更替明显,随着向新生态状态的转变,在超过水生总磷(TP)转折点后发生。推断的物种相互作用、生态位分化和关键分类群的身份在跨越水生 TP 生态阈值后发生了显著变化,这可以通过蓝藻分类群的网络分析得到证明。此外,当湖泊处于贫营养状态时,水生 TP 对蓝藻群落动态的贡献大于空气温度;而当超过水生 TP 阈值时,空气温度对群落动态的贡献增加,并可能超过水生 TP。总的来说,这些结果为过去湖泊生态系统中的养分水平如何影响低纬度高原湖泊中当代蓝藻群落对全球变暖的响应提供了新的证据。

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