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Effects of sea-level rise on physiological ecology of populations of a ground-dwelling ant

机译:海平面上升对地下蚂蚁群体生理生态的影响

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摘要

INTRODUCTION:Sea-level rise is a consequence of climate change that can impact the ecological and physiological changes of coastal, ground-dwelling species. Sea-level rise has a potential to inundate birds, rodents, spiders, and insects that live on the ground in coastal areas. Yet, there is still much to be learned concerning the specifics of these impacts. The red imported fire ant Solenopsis invicta (Buren) excavates soil for its home and is capable of surviving flooding. Because of their ground-dwelling life history and rapid reproduction, fire ants make an ideal model for discovery and prediction of changes that may be due to sea-level rise. There are up to 500,000 individuals in a colony, and these invasive ants naturally have a painful sting. However, observations suggest that colonies of fire ants that dwell in tidally-influenced areas are more aggressive with more frequent stings and more venom injected per sting (behavioral and physiological changes) than those located inland. This may be an adaption to sea-level rise. Therefore, the objective of this study is to elucidate differences in inland and coastal defensiveness via micro-dissection and comparison of head width, head length, stinger length, and venom sac volume. But first because fire ants' ability to raft on brackish tidal water is unknown, it had to be determined if fire ants could indeed raft in brackish water and examine the behavior differences between those flooded with freshwater vs. saltwater. METHODS:To test the coastal-aggression hypothesis, inland colonies and coastal colonies, which experience relatively greater amounts of flooding, specifically regular tidal and windblown water and oscillations (i.e. El Nińo Southern Oscillation) from the Gulf of Mexico, were collected. To mimic sea-level rise, the colonies were flooded in salinities that correspond to both their collection site and conditions found in a variety of locales and situations (such as storm surge from a tropical storm). Individual ants were immediately taken from each colony for dissection before flooding, 1-hour into flooding, and 24-hours into flooding. RESULTS AND DISCUSSION:Fire ants use their venom to defend themselves and to communicate alarm or aggression. Dissections and measurement of heads, venom sacs, and stingers revealed both coastal and inland colonies experience an increase in venom sac volume after 24 hours; in fact coastal colonies increased their venom volume by 75% after 24 h of flooding Whether this venom sac enlargement is due to diffusion of water or venom sac production is unknown. These ground-dwelling ants exhibit physiological and behavioral adaptations to ongoing sea-level rise possibly indicating that they are responding to increased flooding. Fire ants will raft on high-salinity water; and sea-level rise may cause stings by flooded ants to be more severe because of increased venom volume.
机译:简介:海平面上升是气候变化可能影响沿海,地栖物种的生态和生理变化的结果。海平面上升已淹没鸟类,老鼠,蜘蛛和昆虫,在沿海地区地面上生活的可能性。然而,仍然有许多关于这些影响的具体的教训。红火蚁红火(蚁)开挖土其家庭和能够经受洪水。因为他们的地居住生活的历史和快速繁殖,火蚁做出的变化,可能是由于海平面上升的发现和预测的理想模型。最多有一个群体有50万人,而这些侵入蚂蚁自然有刺痛。但是,观察表明,在受潮汐影响的地区居住火蚁的殖民地与比地处内陆更频繁刺多的毒液蜇每(行为和生理变化)注入更具侵略性。这可能是一个适应海平面上升。因此,本研究的目的是通过显微解剖和头宽度的比较,头长,托管架长度,和毒囊体积在内陆和沿海防御阐发差异。但是,首先是因为火蚁能力筏咸水潮水未知,如果有火蚁确实可以木筏咸水和检查这些淡水与海水淹没之间的行为差​​异来确定。方法:要测试从墨西哥湾沿海侵略假说,内陆殖民地和沿海殖民地,其经验相对较大量的洪水,特别是定期潮和被风吹起的水和振荡(即厄尔尼诺 - 南方涛动),收集。为了模拟海平面上升,殖民地的盐度被淹没了对应于各种语言环境和情况(如热带风暴风暴潮)的发现,他们都收集网站和条件。个别蚂蚁立即从各菌落采取解剖泛滥,1小时到洪水之前,和24小时后驱。结果与讨论:火蚁用它们的毒液保护自己和沟通报警或侵略。解剖和负责人,毒液囊,并刺测量显示沿海和内陆殖民地经历24小时后增加毒囊体积;事实上沿海菌落由75%提高它们的毒液体积充斥无论24小时后此毒囊扩大是由于水或毒囊生产的扩散是未知的。这些地栖蚁表现出生理和行为的调整正在进行的海平面上升可能表明,他们正在应对洪水增加。火蚁会在筏高矿化度水;和海平面上升可能造成的淹蚂蚁蜇伤是因为增加的毒液量的更严重。

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