Institute of Biology and Environmental Sciences, Carl von Ossietzky Universität Oldenburg , Oldenburg 26111, Germany.
Institute of Physics, Carl von Ossietzky Universität Oldenburg , Oldenburg 26111, Germany.
J R Soc Interface. 2024 Jun;21(215):20240035. doi: 10.1098/rsif.2024.0035. Epub 2024 Jun 5.
The Earth's magnetic field can provide reliable directional information, allowing migrating animals to orient themselves using a magnetic compass or estimate their position relative to a target using map-based orientation. Here we show for the first time that young, inexperienced herring (, Ch) have a magnetic compass when they migrate hundreds of kilometres to their feeding grounds. In birds, such as the European robin (), radical pair-based magnetoreception involving cryptochrome 4 (ErCRY4) was demonstrated; the molecular basis of magnetoreception in fish is still elusive. We show that expression in the eye of herring is upregulated during the migratory season, but not before, indicating a possible use for migration. The amino acid structure of herring ChCRY4 shows four tryptophans and a flavin adenine dinucleotide-binding site, a prerequisite for a magnetic receptor. Using homology modelling, we successfully reconstructed ChCRY4 of herring, DrCRY4 of zebrafish () and StCRY4 of brown trout () and showed that ChCRY4, DrCRY4 and ErCRY4a, but not StCRY4, exhibit very comparable dynamic behaviour. The electron transfer could take place in ChCRY4 in a similar way to ErCRY4a. The combined behavioural, transcriptomic and simulation experiments provide evidence that CRY4 could act as a magnetoreceptor in Atlantic herring.
地球磁场可以提供可靠的方向信息,使迁徙动物能够使用磁罗盘定位自己,或使用基于地图的定向来估计相对于目标的位置。在这里,我们首次表明,在迁徙数百公里到觅食地的过程中,年幼的、没有经验的鲱鱼()拥有磁罗盘。在鸟类中,已经证明了涉及隐色素 4(ErCRY4)的基于自由基对的磁受体;鱼类磁受体的分子基础仍然难以捉摸。我们表明,鲱鱼眼睛中的表达在迁徙季节上调,但在迁徙季节之前没有上调,这表明它可能用于迁徙。鲱鱼 ChCRY4 的氨基酸结构显示有四个色氨酸和一个黄素腺嘌呤二核苷酸结合位点,这是磁受体的必要条件。使用同源建模,我们成功地重建了鲱鱼的 ChCRY4、斑马鱼的 DrCRY4 和褐鳟的 StCRY4,并表明 ChCRY4、DrCRY4 和 ErCRY4a,但不是 StCRY4,表现出非常相似的动态行为。电子转移可能在 ChCRY4 中以类似于 ErCRY4a 的方式发生。综合行为学、转录组学和模拟实验提供了证据表明 CRY4 可能在大西洋鲱鱼中作为磁受体发挥作用。