IF 2.1 3区 生物学 Q3 ECOLOGY
Graham A McCulloch, Brodie J Foster, Gracie C Kroos, Yasmin Foster, Steven Ni, Marianne F S Vogel, Jonathan M Waters
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引用次数: 0

摘要

缩翅是高地昆虫群落的一个常见特征。这种现象被认为主要是由反飞行选择驱动的,由于高地环境中的大风和低温,飞行通常是不利的。在一些昆虫类群中,翅的减少与繁殖力的提高直接相关。然而,很少有研究直接测试繁殖力的变化是否与飞行肌肉有关。在这里,我们对广泛分布的亚高山石蝇 Zelandoperla fenestrata 的传播-繁殖力权衡进行了测试。我们对81个地点的450只石蝇进行的分析表明,分散与繁殖力之间存在显著的权衡关系。具体来说,我们发现石蝇的飞行肌肉大小与翅膀长度之间存在正相关,而翅膀长度与卵巢质量之间存在负相关。此外,我们还发现飞行肌肉与卵巢质量之间存在明显的负相关。这些结果代表了野外传播-繁殖力权衡的一个罕见实例,并说明这种权衡可能涉及飞行肌肉和翅膀发育的相应减少。我们的研究结果表明,环境条件多变的广布类群可能会受益于能量资源的灵活分配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dispersal-fecundity trade-offs in wild insect populations.

Wing reduction is a common feature of upland insect communities. This phenomenon is thought to be primarily driven by selection against flight, which is typically unfavorable in upland environments due to high winds and cold temperatures. In some insect taxa, wing-reduction has been directly linked to increased fecundity. However, few studies have directly tested for shifts in fecundity linked to flight musculature. Here we test for dispersal-fecundity trade-offs in the widespread subalpine stonefly Zelandoperla fenestrata. Our analysis of 450 stoneflies across 81 localities reveals significant dispersal-fecundity tradeoffs. Specifically, we identify a positive association between the size of their flight muscles and the length of their wings, and a negative association between wing length and ovarian mass. Furthermore, we found a significant negative relationship between flight musculature and ovary mass. These results represent a rare example of a dispersal-fecundity tradeoff in the wild, and illustrate that such tradeoffs can potentially involve corresponding reductions in both flight musculature and wing development. Our findings suggest that widespread taxa subject to variable environmental conditions may benefit from flexible allocation of energetic resources.

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来源期刊
Journal of Evolutionary Biology
Journal of Evolutionary Biology 生物-进化生物学
CiteScore
4.20
自引率
4.80%
发文量
152
审稿时长
3-6 weeks
期刊介绍: It covers both micro- and macro-evolution of all types of organisms. The aim of the Journal is to integrate perspectives across molecular and microbial evolution, behaviour, genetics, ecology, life histories, development, palaeontology, systematics and morphology.
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