School of Natural Sciences, University of California, Merced, 5200 N. Lake Road, Merced, CA 95343 USA.
Mol Ecol. 2010 Mar;19(6):1174-86. doi: 10.1111/j.1365-294X.2010.04534.x. Epub 2010 Feb 8.
A mutualistic relationship between reef-building corals and endosymbiotic dinoflagellates (Symbiodinium spp.) forms the basis for the existence of coral reefs. Genotyping tools for Symbiodinium spp. have added a new level of complexity to studies concerning cnidarian growth, nutrient acquisition, and stress. For example, the response of the coral holobiont to thermal stress is connected to the host-Symbiodinium genotypic combination, as different partnerships can have different bleaching susceptibilities. In this study, we monitored Symbiodinium physiological parameters and profiled the coral host transcriptional responses in acclimated, thermally stressed, and recovered fragments of the coral Montastraea faveolata using a custom cDNA gene expression microarray. Interestingly, gene expression was more similar among samples with the same Symbiodinium content rather than the same experimental condition. In order to discount for host-genotypic effects, we sampled fragments from a single colony of M. faveolata containing different symbiont types, and found that the host transcriptomic states grouped according to Symbiodinium genotype rather than thermal stress. As the first study that links coral host transcriptomic patterns to the clade content of their Symbiodinium community, our results provide a critical step to elucidating the molecular basis of the apparent variability seen among different coral-Symbiodinium partnerships.
造礁石珊瑚与其共生的虫黄藻(Symbiodinium spp.)之间的互利共生关系是珊瑚礁存在的基础。Symbiodinium spp. 的基因分型工具为有关腔肠动物生长、营养获取和胁迫的研究增添了新的复杂性。例如,珊瑚共生体对热胁迫的反应与其宿主-共生藻基因型组合有关,因为不同的共生伙伴可能具有不同的白化易感性。在这项研究中,我们使用定制的 cDNA 基因表达微阵列监测了适应热胁迫和恢复过程中珊瑚 Montastraea faveolata 的共生藻生理参数和宿主转录组响应。有趣的是,具有相同共生藻含量的样本之间的基因表达更为相似,而不是具有相同实验条件的样本。为了排除宿主基因型的影响,我们从含有不同共生体类型的 M. faveolata 的单个菌落中采集了样本,发现宿主转录组状态根据共生藻基因型而不是热胁迫分组。作为将珊瑚宿主转录组模式与共生藻群落的类群组成联系起来的第一项研究,我们的结果为阐明不同珊瑚-共生藻伙伴关系中观察到的明显可变性的分子基础提供了关键步骤。