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寄生蜂多样性的异常纬度梯度——温度范围较大地区的热点。

Anomalous latitudinal gradients in parasitoid wasp diversity-Hotspots in regions with larger temperature range.

作者信息

Castellanos-Labarcena Jessica, Steinke Dirk, Adamowicz Sarah J

机构信息

Department of Integrative Biology, University of Guelph, Guelph, Ontario, Canada.

Centre for Biodiversity Genomics, University of Guelph, Guelph, Ontario, Canada.

出版信息

J Anim Ecol. 2025 Mar;94(3):410-422. doi: 10.1111/1365-2656.14196. Epub 2024 Oct 13.

Abstract

Knowledge of global patterns of genetic diversity is essential for biodiversity conservation as this parameter describes the ability of a species to respond to environmental changes. Ichneumonoids parasitoid wasps are among the few taxa showing an anomalous latitudinal diversity gradient. Using the largest georeferenced molecular dataset for this group, we used a macrogenetics approach to examine latitudinal patterns and predictors of intraspecific genetic diversity. We calculated the mean nucleotide diversity of mitochondrial DNA barcode sequences at three geographic levels: grid cells, latitudinal bands and climatic zones. Nucleotide diversity values were consistently higher at northern temperate latitudes, peaking at 50°. We found a positive but weak relationship between intraspecific diversity and the latitude, between intra- and interspecific diversity, and a positive effect of the temperature range. Examining the spatial relationship between different levels of biodiversity and its drivers is particularly relevant considering climate change and its impact on species distribution. Yet, in insects, it has been challenging to integrate ecological, evolutionary and geographical components when analysing the processes leading to species richness gradients.

摘要

了解全球遗传多样性模式对于生物多样性保护至关重要,因为这一参数描述了一个物种应对环境变化的能力。姬蜂科寄生蜂是少数呈现异常纬度多样性梯度的类群之一。利用该类群最大的地理参考分子数据集,我们采用宏观遗传学方法来研究种内遗传多样性的纬度模式及其预测因素。我们在三个地理层面计算了线粒体DNA条形码序列的平均核苷酸多样性:网格单元、纬度带和气候区。核苷酸多样性值在北温带纬度地区一直较高,在50°达到峰值。我们发现种内多样性与纬度之间存在正相关但较弱的关系,种内和种间多样性之间也存在正相关,并且温度范围有积极影响。考虑到气候变化及其对物种分布的影响,研究不同生物多样性水平与其驱动因素之间的空间关系尤为重要。然而,在昆虫中,在分析导致物种丰富度梯度的过程时,整合生态、进化和地理成分一直具有挑战性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95d2/11880658/97c80aeb77e5/JANE-94-410-g001.jpg

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