Crowder Camerron M, Meyer Eli, Fan Tung-Yung, Weis Virginia M
Department of Integrative Biology, Oregon State University, Corvallis, OR, USA.
Institute of Marine Biology, National Dong Hwa University, Pingtung, Taiwan, R.O.C.
Mol Ecol. 2017 Aug;26(15):3913-3925. doi: 10.1111/mec.14162. Epub 2017 Jun 19.
Reproductive timing in brooding corals has been correlated to temperature and lunar irradiance, but the mechanisms by which corals transduce these environmental variables into molecular signals are unknown. To gain insight into these processes, global gene expression profiles in the coral Pocillopora damicornis were examined (via RNA-Seq) across lunar phases and between temperature treatments, during a monthly planulation cycle. The interaction of temperature and lunar day together had the largest influence on gene expression. Mean timing of planulation, which occurred at lunar days 7.4 and 12.5 for 28- and 23°C-treated corals, respectively, was associated with an upregulation of transcripts in individual temperature treatments. Expression profiles of planulation-associated genes were compared between temperature treatments, revealing that elevated temperatures disrupted expression profiles associated with planulation. Gene functions inferred from homologous matches to online databases suggest complex neuropeptide signalling, with calcium as a central mediator, acting through tyrosine kinase and G protein-coupled receptor pathways. This work contributes to our understanding of coral reproductive physiology and the impacts of environmental variables on coral reproductive pathways.
育幼珊瑚的繁殖时间与温度和月辐照度相关,但珊瑚将这些环境变量转化为分子信号的机制尚不清楚。为深入了解这些过程,在每月一次的放散幼虫周期中,通过RNA测序检查了鹿角杯形珊瑚在月相期间和不同温度处理之间的全球基因表达谱。温度和月日的相互作用对基因表达的影响最大。放散幼虫的平均时间分别出现在28°C和23°C处理的珊瑚的月日7.4和12.5,这与各个温度处理中转录本的上调有关。比较了不同温度处理之间与放散幼虫相关基因的表达谱,发现温度升高会破坏与放散幼虫相关的表达谱。从与在线数据库的同源匹配推断出的基因功能表明存在复杂的神经肽信号传导,钙作为中心介质,通过酪氨酸激酶和G蛋白偶联受体途径起作用。这项工作有助于我们理解珊瑚的生殖生理学以及环境变量对珊瑚生殖途径的影响。