Suppr超能文献

缺氧作为珊瑚幼虫的生理线索和病理应激源。

Hypoxia as a physiological cue and pathological stress for coral larvae.

机构信息

Faculty of Science, Climate Change Cluster, University of Technology Sydney, Ultimo, NSW, Australia.

Department of Biology, University of Konstanz, Konstanz, Germany.

出版信息

Mol Ecol. 2022 Jan;31(2):571-587. doi: 10.1111/mec.16259. Epub 2021 Nov 14.

Abstract

Ocean deoxygenation events are intensifying worldwide and can rapidly drive adult corals into a state of metabolic crisis and bleaching-induced mortality, but whether coral larvae are subject to similar stress remains untested. We experimentally exposed apo-symbiotic coral larvae of Acropora selago to deoxygenation stress with subsequent reoxygenation aligned to their night-day light cycle, and followed their gene expression using RNA-Seq. After 12 h of deoxygenation stress (~2 mg O /L), coral planulae demonstrated a low expression of HIF-targeted hypoxia response genes concomitant with a significantly high expression of PHD2 (a promoter of HIFα proteasomal degradation), similar to corresponding adult corals. Despite exhibiting a consistent swimming phenotype compared to control samples, the differential gene expression observed in planulae exposed to deoxygenation-reoxygenation suggests a disruption of pathways involved in developmental regulation, mitochondrial activity, lipid metabolism, and O -sensitive epigenetic regulators. Importantly, we found that treated larvae exhibited a disruption in the expression of conserved HIF-targeted developmental regulators, for example, Homeobox (HOX) genes, corroborating how changes in external oxygen levels can affect animal development. We discuss how the observed deoxygenation responses may be indicative of a possible acclimation response or alternatively may imply negative latent impacts for coral larval fitness.

摘要

海洋脱氧事件在全球范围内日益加剧,可能会使成年珊瑚迅速陷入代谢危机和漂白诱导的死亡状态,但珊瑚幼虫是否会受到类似的压力仍未得到验证。我们通过实验将无共生的鹿角杯形珊瑚幼虫暴露在脱氧应激下,随后按照它们的日夜光照周期进行再氧化,并使用 RNA-Seq 跟踪它们的基因表达。在脱氧应激 12 小时后(~2 mg O/L),珊瑚浮游幼虫表现出低水平的 HIF 靶向缺氧反应基因表达,同时 PHD2(HIFα 蛋白酶体降解的启动子)的表达显著升高,与相应的成年珊瑚相似。尽管与对照样品相比,浮游幼虫表现出一致的游动表型,但在经历脱氧-再氧化处理的幼虫中观察到的差异基因表达表明,参与发育调控、线粒体活性、脂质代谢和 O 敏感表观遗传调节剂的途径受到了干扰。重要的是,我们发现处理后的幼虫表现出保守的 HIF 靶向发育调节剂的表达中断,例如同源盒(HOX)基因,这证实了外部氧气水平的变化如何影响动物的发育。我们讨论了观察到的脱氧反应可能表明可能的适应反应,或者可能暗示对珊瑚幼虫适应性的负面影响。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验