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局部环境适应性的信号会被实验室培养稀释吗?

Are Signals of Local Environmental Adaptation Diluted by Laboratory Culture?

作者信息

Huisamen Elizabeth J, Karsten Minette, Terblanche John S

机构信息

Centre for Invasion Biology, Department of Conservation Ecology and Entomology, Stellenbosch University, Stellenbosch, South Africa.

出版信息

Curr Res Insect Sci. 2022 Oct 7;2:100048. doi: 10.1016/j.cris.2022.100048. eCollection 2022.

Abstract

Insects have the ability to readily adapt to changes in environmental conditions, however the strength of local environmental adaptation signals under divergent conditions and the occurrence of trait inertia after relaxation of selection, remains poorly understood, especially for traits of climate stress resistance (CSR) and their phenotypic plasticity. The strength of environmental adaptation signals depend on several selection pressures present in the local environment, while trait inertia often occurs when there is a weakening or removal of a source of selection. Here, using , we asked whether signals of adaptation in CSR traits (critical thermal limits, heat and chill survival and, desiccation and starvation resistance) persist after exposure to laboratory culture for different durations (two vs. ten generations) across four climatically distinct populations. We show that culture duration has large effects on CSR traits and can both amplify or dilute signals of local adaptation. Effects were however dependent upon interactions between the source population, acclimation (adult acclimation at either 18 °C, 23 °C or 28 °C) conditions and the sex of the flies. Trait plasticity is markedly affected by the interaction between the source population, the specific acclimation conditions employed, and the duration in the laboratory. Therefore, a complex matrix of dynamic CSR trait responses is shown in space and time. Given these strong interaction effects, 'snapshot' estimates of environmental adaptation can result in misleading conclusions about the fitness consequences of climate variability.

摘要

昆虫具有迅速适应环境条件变化的能力,然而,在不同条件下局部环境适应信号的强度以及选择放松后性状惯性的发生情况,仍知之甚少,尤其是对于气候抗逆性(CSR)性状及其表型可塑性而言。环境适应信号的强度取决于当地环境中存在的几种选择压力,而性状惯性通常在选择源减弱或消除时出现。在此,我们通过[具体实验方法未给出],研究了在四个气候不同的种群中,经过不同培养时长(两代与十代)的实验室培养后,CSR性状(临界热极限、耐热和耐寒存活率以及抗干燥和抗饥饿能力)的适应信号是否依然存在。我们发现,培养时长对CSR性状有很大影响,既可以放大也可以稀释局部适应信号。然而,这些影响取决于源种群、驯化(在18°C、23°C或28°C下对成虫进行驯化)条件以及果蝇性别的相互作用。性状可塑性受到源种群、所采用的特定驯化条件以及在实验室中的时长之间相互作用的显著影响。因此,在空间和时间上呈现出一个复杂的动态CSR性状反应矩阵。鉴于这些强烈的相互作用效应,对环境适应的“快照”估计可能会导致关于气候变异性对适应性影响的误导性结论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9d3/9846451/065e0b94639f/gr1.jpg

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