Spatially varying plankton synchrony patterns at seasonal and interannual scales in a well-connected shelf sea

IF 5.1 2区 地球科学 Q1 LIMNOLOGY Limnology and Oceanography Letters Pub Date : 2023-08-04 DOI:10.1002/lol2.10348
Isabel A. Honda, Rubao Ji, Andrew R. Solow
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Abstract

Spatial population synchrony, defined as spatial covariation in population density fluctuations, exists across different temporal and spatial scales. Determining the degree of spatial synchrony is useful for inferring environmental drivers of population variability in the wake of climate change. In this study, we applied novel statistical methods to detect spatial synchrony patterns of Calanus finmarchicus on the Northeast U.S. Shelf at multiple spatiotemporal scales using unevenly distributed data. Our results reveal that C. finmarchicus subpopulations connected by advection are not necessarily in synchrony, indicating that the degree of synchrony is likely influenced by heterogeneity of local habitats. In addition, regionally synchronous environmental conditions (e.g., sea surface temperature) may not play as significant a role in influencing subregional population dynamics as was previously hypothesized. Overlooking the spatial heterogeneity of synchronous patterns at different time scales could lead to erroneous inferences of potential environmental drivers responsible for C. finmarchicus variability.

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连接良好的陆架海浮游生物季节和年际同步格局的空间变化
人口空间同步性是指人口密度波动的空间共变,存在于不同的时空尺度上。确定空间同步程度有助于推断气候变化后人口变异的环境驱动因素。本研究采用新颖的统计方法,利用非均匀分布的数据,在多个时空尺度上检测美国东北陆架大角鲸的空间同步格局。结果表明,通过平流连接的C. finmarchicus亚群并不一定是同步的,这表明同步的程度可能受到当地生境异质性的影响。此外,区域同步环境条件(例如,海面温度)在影响分区域人口动态方面可能不像以前假设的那样发挥重要作用。忽视同步模式在不同时间尺度上的空间异质性,可能导致对造成金杉变异的潜在环境驱动因素的错误推断。
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来源期刊
CiteScore
10.00
自引率
3.80%
发文量
63
审稿时长
25 weeks
期刊介绍: Limnology and Oceanography Letters (LO-Letters) serves as a platform for communicating the latest innovative and trend-setting research in the aquatic sciences. Manuscripts submitted to LO-Letters are expected to present high-impact, cutting-edge results, discoveries, or conceptual developments across all areas of limnology and oceanography, including their integration. Selection criteria for manuscripts include their broad relevance to the field, strong empirical and conceptual foundations, succinct and elegant conclusions, and potential to advance knowledge in aquatic sciences.
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