Zoology and Evolutionary Biology, Department of Biology, University of Konstanz, Konstanz, Germany.
Department of Biological Sciences, University of Notre Dame, Notre Dame, IN, USA.
Genome Biol Evol. 2024 Jul 3;16(7). doi: 10.1093/gbe/evae125.
Determining how internal and external stimuli interact to determine developmental trajectories of traits is a challenge that requires the integration of different subfields of biology. Internal stimuli, such as hormones, control developmental patterns of phenotypic changes, which might be modified by external environmental cues (e.g. plasticity). Thyroid hormone (TH) modulates the timing of opsin gene expression in developing Midas cichlid fish (Amphilophus citrinellus). Moreover, fish reared in red light accelerate this developmental timing compared to fish reared in white light. Hence, we hypothesized that plasticity caused by variation in light conditions has coopted the TH signaling pathway to induce changes in opsin gene expression. We treated Midas cichlids with TH and crossed this treatment with two light conditions, white and red. We observed that not only opsin expression responded similarly to TH and red light but also that, at high TH levels, there is limited capacity for light-induced plasticity. Transcriptomic analysis of the eye showed that genes in the TH pathway were affected by TH, but not by light treatments. Coexpression network analyses further suggested that response to light was independent of the response to TH manipulations. Taken together, our results suggest independent mechanisms mediating development and plasticity during development of opsin gene expression, and that responses to environmental stimuli may vary depending on internal stimuli. This conditional developmental response to external factors depending on internal ones (e.g. hormones) might play a fundamental role in the patterns of phenotypic divergence observed in Midas cichlids and potentially other organisms.
确定内部和外部刺激如何相互作用以决定特征的发育轨迹是一个挑战,需要整合生物学的不同子领域。内部刺激,如激素,控制表型变化的发育模式,而外部环境线索(例如可塑性)可能会修改这些模式。甲状腺激素 (TH) 调节发育中的 Midas 慈鲷鱼(Amphilophus citrinellus)中视蛋白基因表达的时间。此外,与在白光中饲养的鱼相比,在红光中饲养的鱼会加速这种发育时间。因此,我们假设由光照条件变化引起的可塑性已经利用了 TH 信号通路来诱导视蛋白基因表达的变化。我们用 TH 处理 Midas 慈鲷鱼,并将这种处理与两种光照条件(白光和红光)交叉。我们观察到,不仅视蛋白表达对 TH 和红光的反应相似,而且在高 TH 水平下,光诱导可塑性的能力有限。眼睛的转录组分析表明,TH 途径中的基因受 TH 影响,但不受光照处理影响。共表达网络分析进一步表明,对光的反应独立于对 TH 处理的反应。总之,我们的结果表明,在视蛋白基因表达的发育和可塑性过程中存在独立的机制,并且对环境刺激的反应可能取决于内部刺激。这种对外界因素的条件性发育反应取决于内部因素(例如激素),可能在 Midas 慈鲷鱼和潜在其他生物体中观察到的表型分化模式中发挥着基本作用。