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两种葡萄园节肢动物的种群动态同步发生在多个时空尺度上。

Synchrony of population dynamics of two vineyard arthropods occurs at multiple spatial and temporal scales.

机构信息

University of California, Environmental Science, Policy and Management, 137 Mulford Hall, Berkeley, California 94720-3114, USA.

出版信息

Ecol Appl. 2010 Oct;20(7):1926-35. doi: 10.1890/09-0468.1.

Abstract

When populations are synchronized, they rise and fall together. Analysis of population synchrony and its relationship to distance has played a major role in population ecology but has been absent from most studies of managed populations, such as agricultural arthropods. The extent to which populations at different locations are synchronized reflects the relative roles of shared environmental impacts, such as weather, and localizing processes, such as dispersal. The strength and pattern of synchrony, and the processes generating synchrony, have direct management implications. For the first time, we bring together two major paths of population-ecology research: spatial synchrony of population dynamics, which has been studied across birds, mammals, and insects, and spatial ecology of agricultural arthropod populations. We compare and contrast synchrony of two arthropod species, a spider mite and a leafhopper, across a vineyard region spanning 30-km distances, at within-year (weekly) and between-year time scales. Despite the enormous scope of agriculture, such long-term, large-scale data sets suitable for investigating local and regional dynamics are rare. For both species, synchrony is more strongly localized for annual peak abundance across 11 years than it typically is for weekly dynamics within each year's growing season. This suggests that between-year processes such as overwintering merit greater investigation. Within each year, both localized and region-wide synchrony was found for both species, but leafhoppers showed stronger localization than spider mites, corresponding to their longer generation time and stronger dispersal ability. This demonstrates that the overall herbivore dynamics of the system occur at multiple spatial scales and that the importance of different processes generating synchrony varies by species. The analysis includes new spatiotemporal randomization and bootstrap tests that can be applied to many systems. Our results highlight the value of large-scale, long-term monitoring programs for many kinds of managed populations. They also point toward the potential to test synchrony mechanisms more directly and to synthesize synchrony and landscape analyses.

摘要

当种群同步时,它们会一起上升和下降。对种群同步及其与距离的关系的分析在种群生态学中起着重要作用,但在大多数管理种群(如农业节肢动物)的研究中却没有。不同地点的种群同步程度反映了共享环境影响(如天气)和本地化过程(如扩散)的相对作用。同步的强度和模式,以及产生同步的过程,对管理有直接的影响。我们首次将种群生态学研究的两个主要途径结合起来:种群动态的空间同步性,这在鸟类、哺乳动物和昆虫中都有研究,以及农业节肢动物种群的空间生态学。我们比较和对比了跨越一个葡萄园地区的两种节肢动物物种,一种是叶螨,另一种是叶蝉,在 30 公里范围内,在年内(每周)和年际时间尺度上的同步性。尽管农业的范围如此之大,但适合调查本地和区域动态的长期、大规模数据集却很少。对于这两个物种,在 11 年的时间里,年度峰值丰度的同步性比每年生长季节内每周动态的同步性更本地化。这表明,像越冬这样的年际过程值得更深入的研究。在每年内,两种物种都表现出局部和区域范围的同步性,但叶蝉的本地化程度比叶螨更强,这与它们较长的世代时间和较强的扩散能力相对应。这表明,系统中总的食草动物动态发生在多个空间尺度上,产生同步性的不同过程的重要性因物种而异。该分析包括可应用于许多系统的新的时空随机化和引导测试。我们的结果强调了大规模、长期监测计划对许多管理种群的价值。它们还指出了更直接地测试同步机制和综合同步和景观分析的潜力。

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