Long life at low temperatures – The life-history of Folsomia candida at ecological relevant temperatures

IF 2.2 3区 农林科学 Q3 ECOLOGY
Vanessa Roeben , Luisa Montoya-Tzschoppe , Martina Roß-Nickoll
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引用次数: 0

Abstract

Collembola are among the most abundant terrestrial microarthropods and are widely used in ecotoxicological testing since they are important for soil ecosystem processes (Fountain and Hopkin 2005). In their natural environment, these arthropods are often exposed to varying temperatures (Smit and Van Gestel 1997; Fountain and Hopkin 2005; Bindesbøl 2008). However, when applied as a model organism for ecotoxicological testing, experiments are performed at 20 °C; Smit and Van Gestel 1997; International Organization for Standardization (ISO) 1999; OECD 2009). The temperature choice might be beneficial concerning the timeline of these 28-day experiments (e.g., covering juvenile phase, first reproduction, and first generation hatching) but does not reflect the reality in the field. Variable climate can influence the functioning of organisms and thereby induce changes in susceptibility for toxicant stress (Smit and Van Gestel 1997; Bindesbøl 2008; de Boer et al. 2010). The presented study aims to investigate: (1) longevity of F. candida at different temperatures; (2) reproduction of the species also under different temperatures. Two different test designs were developed, each aiming to analyse a different aspect of the life cycle of F. candida. The results showed that temperature has a significant impact on the life-history traits, longevity, and reproduction of Folsomia candida. Temperatures below the standard of 20 °C significantly increased the life span up to 922.5 days at 4 °C. Furthermore, our results highlight the effect of temperature on developmental processes, such as hatching time and maturation.

低温下的长寿——念珠菌在生态相关温度下的生活史
弹尾虫是最丰富的陆地微丝足类动物之一,由于它们对土壤生态系统过程很重要,因此被广泛用于生态毒理学测试(Fountain和Hopkin,2005年)。在自然环境中,这些节肢动物经常暴露在不同的温度下(Smit和Van Gestel,1997年;Fountain和Hopkin,2005年;Bindesbøl,2008年)。然而,当用作生态毒理学测试的模式生物时,实验在20°C下进行;Smit和Van Gestel 1997;国际标准化组织(ISO)1999;经合组织,2009年)。关于这些28天实验的时间线(例如,涵盖幼年期、首次繁殖和第一代孵化),温度选择可能是有益的,但不能反映该领域的现实。多变的气候会影响生物体的功能,从而导致对有毒应激的易感性发生变化(Smit和Van Gestel,1997年;Bindesbøl,2008年;de Boer等人,2010年)。本研究旨在研究:(1)念珠菌在不同温度下的寿命;(2) 物种在不同温度下的繁殖。开发了两种不同的测试设计,每种设计都旨在分析念珠菌生命周期的不同方面。结果表明,温度对念珠菌的生活史特征、寿命和繁殖有显著影响。低于20°C标准的温度显著延长了4°C下长达922.5天的使用寿命。此外,我们的研究结果强调了温度对发育过程的影响,如孵化时间和成熟度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Pedobiologia
Pedobiologia 环境科学-生态学
CiteScore
4.20
自引率
8.70%
发文量
38
审稿时长
64 days
期刊介绍: Pedobiologia publishes peer reviewed articles describing original work in the field of soil ecology, which includes the study of soil organisms and their interactions with factors in their biotic and abiotic environments. Analysis of biological structures, interactions, functions, and processes in soil is fundamental for understanding the dynamical nature of terrestrial ecosystems, a prerequisite for appropriate soil management. The scope of this journal consists of fundamental and applied aspects of soil ecology; key focal points include interactions among organisms in soil, organismal controls on soil processes, causes and consequences of soil biodiversity, and aboveground-belowground interactions. We publish: original research that tests clearly defined hypotheses addressing topics of current interest in soil ecology (including studies demonstrating nonsignificant effects); descriptions of novel methodological approaches, or evaluations of current approaches, that address a clear need in soil ecology research; innovative syntheses of the soil ecology literature, including metaanalyses, topical in depth reviews and short opinion/perspective pieces, and descriptions of original conceptual frameworks; and short notes reporting novel observations of ecological significance.
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