8年取样努力对季节性植物-传粉者相互作用周转的影响。

IF 2.3 2区 环境科学与生态学 Q2 ECOLOGY
Isabella Manning, Leana Zoller, Julian Resasco
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引用次数: 0

摘要

植物-传粉者相互作用网络在时间和空间上都是动态的。相互作用更替包括相互作用重新布线(即,独立于物种更替的相互作用的变化)和物种更替(即,网络中存在的物种的增加或减少)。为了捕捉网络动态,解决采样努力的影响是至关重要的,因为数据不足会扭曲明显的网络模式。我们使用来自亚高山草甸的8年植物-传粉者相互作用数据来研究时间(每周)相互作用转换的模式和采样努力的作用。随着采样努力的增加,相互作用周转率和物种周转率降低,重新布线增加。饱和度曲线表明了一种接近真实值的方法,需要更高的采样努力。在八年中,观察到每周和季节性相互作用营业额的实质性变化,在所有累计年份中都有可识别的季节性趋势。这些结果表明,交互周转及其组成部分的解释对抽样努力很敏感,强调了考虑其在网络研究中的作用的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impacts of sampling effort on seasonal plant-pollinator interaction turnover over eight years.

Plant-pollinator interaction networks are dynamic in time and space. Interaction turnover consists of interaction rewiring (i.e., changes in interactions independent of species turnover) and species turnover (i.e., the gain or loss of species present in the network). To capture network dynamics, it is crucial to address the effect of sampling effort because insufficient data can distort apparent network patterns. We used eight years of plant-pollinator interaction data from a subalpine meadow to examine patterns of temporal (week-to-week) interaction turnover and the role of sampling effort. With increasing sampling effort, values of interaction turnover and species turnover decreased, and rewiring increased. Saturation curves suggest an approach towards true values with higher sampling effort. Across the eight years, substantial variation in weekly and seasonal interaction turnover was observed, with identifiable seasonal trends across all aggregated years. These results demonstrated that the interpretation of interaction turnover and its components is sensitive to sampling effort, stressing the importance of considering its role in network studies.

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来源期刊
Oecologia
Oecologia 环境科学-生态学
CiteScore
5.10
自引率
0.00%
发文量
192
审稿时长
5.3 months
期刊介绍: Oecologia publishes innovative ecological research of international interest. We seek reviews, advances in methodology, and original contributions, emphasizing the following areas: Population ecology, Plant-microbe-animal interactions, Ecosystem ecology, Community ecology, Global change ecology, Conservation ecology, Behavioral ecology and Physiological Ecology. In general, studies that are purely descriptive, mathematical, documentary, and/or natural history will not be considered.
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