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The symbiotic magnetic-sensing hypothesis: do Magnetotactic Bacteria underlie the magnetic sensing capability of animals?

机译:共生的磁感应假设:趋磁细菌是动物的磁感应能力的基础吗?

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摘要

The ability to sense Earth’s magnetic field has evolved in various taxa. However, despite great efforts to find the ‘magnetic-sensor’ in vertebrates, the results of these scientific efforts remain inconclusive. A few decades ago, it was found that bacteria, known as magnetotactic bacteria (MTB), can move along a magnetic field using nanometric chain-like structures. Still, it is not fully clear why these bacteria evolved to have this capacity. Thus, while for MTB the ‘magnetic-sensor’ is known but the adaptive value is still under debate, for metazoa it is the other way around.In the absence of convincing evidence for any ‘magnetic-sensor’ in metazoan species sensitive to Earth’s magnetic field, we hypothesize that a mutualism between these species and MTB provides one. In this relationship the host benefits from a magnetotactic capacity, while the bacteria benefit a hosting environment and dispersal. We provide support for this hypothesis using existing literature, demonstrating that by placing the MTB as the ‘magnetic-sensor’, previously contradictory results are now in agreement. We also propose plausible mechanisms and ways to test the hypothesis. If proven correct, this hypothesis would shed light on the forces driving both animal and bacteria magnetotactic abilities.
机译:感应地球磁场的能力在各种分类中都有所发展。但是,尽管在寻找脊椎动物中的“磁传感器”方面付出了巨大的努力,但这些科学努力的结果仍然没有定论。几十年前,人们发现,被称为趋磁细菌(MTB)的细菌可以使用纳米链状结构沿磁场移动。但是,尚不清楚为什么这些细菌进化为具有这种能力。因此,虽然对于MTB来说,``磁传感器''是已知的,但自适应值仍在争论中,但对于后生动物则是另一回事。磁场,我们假设这些物种与MTB之间的共生提供了一种。在这种关系中,宿主受益于趋磁能力,而细菌则有利于宿主环境和扩散。我们使用现有文献为这一假设提供了支持,证明了通过将MTB用作“磁传感器”,以前相互矛盾的结果现在是一致的。我们还提出了可行的机制和方法来检验假设。如果证明是正确的,则该假设将阐明驱动动物和细菌趋磁能力的力。

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