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摇蚊-温度关系:自然表达及古环境意义。

The chironomid-temperature relationship: expression in nature and palaeoenvironmental implications.

机构信息

Royal Belgian Institute of Natural Sciences, Freshwater Biology, Vautierstraat 29, 1000 Brussels, Belgium.

出版信息

Biol Rev Camb Philos Soc. 2012 May;87(2):430-56. doi: 10.1111/j.1469-185X.2011.00206.x. Epub 2011 Oct 27.

DOI:10.1111/j.1469-185X.2011.00206.x
PMID:22032243
Abstract

Fossils of chironomid larvae (non-biting midges) preserved in lake sediments are well-established palaeotemperature indicators which, with the aid of numerical chironomid-based inference models (transfer functions), can provide quantitative estimates of past temperature change. This approach to temperature reconstruction relies on the strong relationship between air and lake surface water temperature and the distribution of individual chironomid taxa (species, species groups, genera) that has been observed in different climate regions (arctic, subarctic, temperate and tropical) in both the Northern and Southern hemisphere. A major complicating factor for the use of chironomids for palaeoclimate reconstruction which increases the uncertainty associated with chironomid-based temperature estimates is that the exact nature of the mechanism responsible for the strong relationship between temperature and chironomid assemblages in lakes remains uncertain. While a number of authors have provided state of the art overviews of fossil chironomid palaeoecology and the use of chironomids for temperature reconstruction, few have focused on examining the ecological basis for this approach. Here, we review the nature of the relationship between chironomids and temperature based on the available ecological evidence. After discussing many of the surveys describing the distribution of chironomid taxa in lake surface sediments in relation to temperature, we also examine evidence from laboratory and field studies exploring the effects of temperature on chironomid physiology, life cycles and behaviour. We show that, even though a direct influence of water temperature on chironomid development, growth and survival is well described, chironomid palaeoclimatology is presently faced with the paradoxical situation that the relationship between chironomid distribution and temperature seems strongest in relatively deep, thermally stratified lakes in temperate and subarctic regions in which the benthic chironomid fauna lives largely decoupled from the direct influence of air and surface water temperature. This finding suggests that indirect effects of temperature on physical and chemical characteristics of lakes play an important role in determining the distribution of lake-living chironomid larvae. However, we also demonstrate that no single indirect mechanism has been identified that can explain the strong relationship between chironomid distribution and temperature in all regions and datasets presently available. This observation contrasts with the previously published hypothesis that climatic effects on lake nutrient status and productivity may be largely responsible for the apparent correlation between chironomid assemblage distribution and temperature. We conclude our review by summarizing the implications of our findings for chironomid-based palaeoclimatology and by pointing towards further avenues of research necessary to improve our mechanistic understanding of the chironomid-temperature relationship.

摘要

摇蚊幼虫(不叮人的蚊子)的化石保存在湖泊沉积物中,是一种成熟的古温度指标。借助于基于数值摇蚊的推理模型(转移函数),可以对过去温度变化进行定量估计。这种温度重建方法依赖于空气和湖泊表面水温之间的紧密关系,以及在北半球和南半球的不同气候区(北极、亚北极、温带和热带)观察到的个别摇蚊分类群(种、种组、属)的分布。在利用摇蚊进行古气候重建时,一个主要的复杂因素是增加了基于摇蚊的温度估计的不确定性,这是因为负责湖泊中温度与摇蚊组合之间强关系的机制的确切性质仍然不确定。虽然许多作者对化石摇蚊古生态学和利用摇蚊进行温度重建进行了最新的概述,但很少有人关注检查这种方法的生态基础。在这里,我们根据现有生态证据回顾了摇蚊与温度之间关系的性质。在讨论了许多描述在湖泊表层沉积物中与温度有关的摇蚊分类群分布的调查之后,我们还检查了探索温度对摇蚊生理学、生命周期和行为影响的实验室和野外研究的证据。我们表明,尽管水温对摇蚊发育、生长和生存的直接影响得到了很好的描述,但摇蚊古气候学目前面临着一个矛盾的情况,即摇蚊分布与温度之间的关系在温带和亚北极地区相对较深、温度分层的湖泊中最强,在这些湖泊中,底栖摇蚊动物群的生活在很大程度上与空气和地表水温度的直接影响脱钩。这一发现表明,温度对湖泊物理和化学特性的间接影响在决定湖泊中生活的摇蚊幼虫的分布方面起着重要作用。然而,我们也表明,目前还没有确定任何单一的间接机制可以解释所有地区和现有数据集的摇蚊分布与温度之间的强关系。这一观察结果与之前发表的假设形成对比,该假设认为气候对湖泊营养状况和生产力的影响可能在很大程度上解释了摇蚊组合分布与温度之间的明显相关性。在总结我们的发现对基于摇蚊的古气候学的影响并指出进一步研究的必要途径以提高我们对摇蚊-温度关系的机制理解之后,我们结束了综述。

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