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广布深度珊瑚类——多变扁脑珊瑚中的光驱动表型可塑性

Light-driven phenotypic plasticity in the depth-generalist coral, Pavona varians.

作者信息

Lewis Claire J, Matsuda Shayle B, Sale Tayler L, Genovese Caitlyn, Wolke Chelsea S, Chan Norton, Ranson Stephen, Ferguson Jake M, Moran Amy L, Gulko David A, Marko Peter B

机构信息

School of Life Sciences, University of Hawai'i at Mānoa, Honolulu, Hawai'i, United States of America.

Hawai'i Institute of Marine Biology, Kāne'ohe, Hawai'i, United States of America.

出版信息

PLoS One. 2025 Jul 1;20(7):e0326069. doi: 10.1371/journal.pone.0326069. eCollection 2025.

Abstract

Climate change is causing shifts in the spatial distribution of species and a reshuffling of the composition of multiple community types. On coral reefs, deep water can act as both refuges and refugia for corals from the combined negative effects of heat and light stress. Phenotypically plastic generalists that can tolerate both low and high light environments could be disproportionately important on future reefs, persisting in refugia and colonizing vacant shallow reefs. We performed a common garden experiment to investigate the effect of light on three different wild-collected genotypes of the abundant, depth-generalist coral Pavona varians. We measured the growth response and reaction norms of six other morphological and functional traits in full sunlight, 75%, and 90% shade. We also modeled the combined effects of light and temperature on growth. P. varians had positive growth in all three treatments, but increased both skeletal mass and 2-D colony footprint most in 90% shade, with a higher density of corallites, and a less rugose skeleton that may enhance light capture. Areas of the colony corresponding to new growth had greater fluorescence of Symbiodiniaceae communities in the darkest treatment. Light did not alter the functional lipid ratio, nor did communities of Symbiodiniaceae vary with light treatments. The model revealed additively negative, but not synergistic, effects of light and temperature on growth. This additively negative relationship in the model is consistent with the hypothesis that reductions in bleaching at depth could be the product of reduced light stress at depth rather than reduced temperature stress. Light-associated plasticity likely allows P.varians to live in a wide variety of habitats and across a broad depth gradient. In reduced light conditions, this species may mitigate some of the negative effects of bleaching temperatures on growth. We predict that P. varians is likely one of a minority of species that may benefit from deep reef refugia.

摘要

气候变化正在导致物种的空间分布发生变化,以及多种群落类型的组成重新洗牌。在珊瑚礁上,深水可以作为珊瑚的避难所,使其免受高温和光照压力的综合负面影响。表型可塑性的通才型珊瑚能够耐受低光照和高光照环境,在未来的珊瑚礁上可能格外重要,它们会在避难所中生存,并在空旷的浅礁上定殖。我们进行了一项共同花园实验,以研究光照对三种不同野生采集的、分布深度广泛的常见珊瑚——多变扁脑珊瑚(Pavona varians)的不同基因型的影响。我们测量了在全日照、75%遮荫和90%遮荫条件下,另外六个形态和功能性状的生长反应及反应规范。我们还模拟了光照和温度对生长的综合影响。多变扁脑珊瑚在所有三种处理中均有正生长,但在90%遮荫条件下,骨骼质量和二维群体足迹增加最多,珊瑚石密度更高,骨骼皱纹较少,这可能有助于增强光线捕获。在最暗处理中,群体中与新生长对应的区域,共生藻群落的荧光更强。光照并未改变功能脂质比率,共生藻群落也未随光照处理而变化。该模型显示,光照和温度对生长具有累加性负面影响,但无协同作用。模型中的这种累加性负相关关系与以下假设一致:深度处白化现象的减少可能是深度处光照压力降低的结果,而非温度压力降低的结果。与光照相关的可塑性可能使多变扁脑珊瑚能够生活在各种栖息地,并跨越广泛的深度梯度。在光照减少的条件下,该物种可能会减轻白化温度对生长的一些负面影响。我们预测,多变扁脑珊瑚可能是少数能够从深海珊瑚礁避难所中受益的物种之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c25/12212529/fb070a926241/pone.0326069.g001.jpg

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