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高山松甲虫的野外转移表明携播螨群落具有局部适应性,且螨种群对气候变暖的反应各不相同。

Field Translocation of Mountain Pine Beetles Suggests Phoretic Mite Communities Are Locally Adapted, and Mite Populations Respond Variably to Climate Warming.

作者信息

Vissa Sneha, Soderberg David N, Hofstetter Richard W

机构信息

School of Forestry, Northern Arizona University, 200 E Pine Knoll, Flagstaff, AZ 86011, USA.

Wildland Resources Department, Utah State University, 5230 Old Main Hill, Logan, UT 84321, USA.

出版信息

Insects. 2021 Feb 2;12(2):131. doi: 10.3390/insects12020131.

Abstract

Temperature is a key determining factor in the population dynamics of forest insects and their associated biota. Bark beetles, often considered key agents of change in forest ecosystems, are particularly affected by warming in their environment. Beetles associate with various phoretic mite species that have direct/indirect effects on beetle fitness and population dynamics, although there is limited knowledge of how temperature affects these communities. Here, we use a field reciprocal translocation experiment with the addition of a novel "warming" environment to represent future changes in local environment in two populations of a keystone bark beetle species (). We hypothesize that mite community abundances as carried by bark beetles are significantly altered when not in their native environments and when subjected to climate warming. We use multivariate generalized linear models based on species abundance data to show that mite community compositions significantly differ across different field climates; and that these patterns diverge between source populations, indicating local adaptation. Our study offers foundational information on the general effects of simulated climate-warming on the compositional shifts of common and abundant biotic associates of mountain pine beetles and may be used as a model system for other important insect-mite systems.

摘要

温度是森林昆虫及其相关生物群落种群动态的关键决定因素。树皮甲虫常被视为森林生态系统变化的关键因素,其受环境变暖的影响尤为显著。甲虫与多种携播螨类物种相关联,这些螨类对甲虫的适应性和种群动态具有直接或间接影响,不过对于温度如何影响这些群落的了解有限。在此,我们进行了一项田间相互移栽实验,并增设了一个新型“变暖”环境,以模拟关键树皮甲虫物种两个种群当地环境的未来变化。我们假设,当树皮甲虫不在其原生环境中且遭遇气候变暖时,其所携带的螨类群落丰度会发生显著改变。我们基于物种丰度数据使用多元广义线性模型,结果表明,不同田间气候条件下螨类群落组成存在显著差异;且这些模式在源种群之间有所不同,表明存在局部适应性。我们的研究提供了关于模拟气候变暖对山松甲虫常见且丰富的生物关联物种组成变化的总体影响的基础信息,可作为其他重要昆虫 - 螨类系统的模型体系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8039/7913132/fa98dc4e9f27/insects-12-00131-g001.jpg

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