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早期发育过程中的波动环境会限制成年期的表型灵活性:来自一种两栖鱼类的见解。

Fluctuating environments during early development can limit adult phenotypic flexibility: insights from an amphibious fish.

作者信息

Rossi Giulia S, Cochrane Paige V, Wright Patricia A

机构信息

Department of Integrative Biology, University of Guelph, Guelph, ON, Canada N1G 2W1

Department of Integrative Biology, University of Guelph, Guelph, ON, Canada N1G 2W1.

出版信息

J Exp Biol. 2020 Aug 26;223(Pt 16):jeb228304. doi: 10.1242/jeb.228304.

Abstract

The interaction between developmental plasticity and the capacity for reversible acclimation (phenotypic flexibility) is poorly understood, particularly in organisms exposed to fluctuating environments. We used an amphibious killifish () to test the hypotheses that organisms reared in fluctuating environments (i) will make no developmental changes to suit any one environment because fixing traits to suit one environment could be maladaptive for another, and (ii) will be highly phenotypically flexible as adults because their early life experiences predict high environmental variability in the future. We reared fish under constant (water) or fluctuating (water-air) environments until adulthood and assessed a suite of traits along the oxygen cascade (e.g. neuroepithelial cell density and size, cutaneous capillarity, gill morphology, ventricle size, red muscle morphometrics, terrestrial locomotor performance). To evaluate the capacity for phenotypic flexibility, a subset of adult fish from each rearing condition was then air-exposed for 14 days before the same traits were measured. In support of the developmental plasticity hypothesis, traits involved with O sensing and uptake were largely unaffected by water-air fluctuations during early life, but we found marked developmental changes in traits related to O transport, utilization and locomotor performance. In contrast, we found no evidence supporting the phenotypic flexibility hypothesis. Adult fish from both rearing conditions exhibited the same degree of phenotypic flexibility in various O sensing- and uptake-related traits. In other cases, water-air fluctuations attenuated adult phenotypic flexibility despite the fact that phenotypic flexibility is hypothesized to be favoured when environments fluctuate. Overall, we conclude that exposure to environmental fluctuations during development in can dramatically alter the constitutive adult phenotype, as well as diminish the scope for phenotypic flexibility in later life.

摘要

发育可塑性与可逆性驯化能力(表型灵活性)之间的相互作用目前还知之甚少,尤其是在暴露于波动环境中的生物中。我们利用一种两栖鳉鱼来检验以下假设:在波动环境中饲养的生物(i)不会为适应任何一种环境而发生发育变化,因为使性状固定以适应一种环境可能对另一种环境不利,以及(ii)成年后将具有高度的表型灵活性,因为它们早期的生活经历预示着未来环境的高变异性。我们将鱼饲养在恒定(水)或波动(水 - 空气)环境中直至成年,并评估了一系列沿氧级联的性状(例如神经上皮细胞密度和大小、皮肤毛细血管、鳃形态、心室大小、红色肌肉形态计量学、陆地运动性能)。为了评估表型灵活性的能力,然后将来自每种饲养条件的一部分成年鱼进行14天的空气暴露,之后测量相同的性状。支持发育可塑性假设的是,与氧气感知和摄取相关的性状在生命早期基本不受水 - 空气波动的影响,但我们发现与氧气运输、利用和运动性能相关的性状有明显的发育变化。相比之下,我们没有发现支持表型灵活性假设的证据。来自两种饲养条件的成年鱼在各种与氧气感知和摄取相关的性状上表现出相同程度的表型灵活性。在其他情况下,水 - 空气波动削弱了成年鱼的表型灵活性,尽管据推测当环境波动时表型灵活性是有利的。总体而言,我们得出结论,在发育过程中暴露于环境波动会显著改变成年生物的组成型表型,并减少后期生活中表型灵活性的范围。

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